/[MITgcm]/MITgcm/verification/obcs_ctrl/results/output_adm.txt
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Annotation of /MITgcm/verification/obcs_ctrl/results/output_adm.txt

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Revision 1.7 - (hide annotations) (download)
Thu Nov 28 00:28:57 2013 UTC (10 years, 5 months ago) by jmc
Branch: MAIN
CVS Tags: checkpoint64y, checkpoint64x, checkpoint64z, checkpoint64s, checkpoint64r, checkpoint64u, checkpoint64t, checkpoint64w, checkpoint64v, checkpoint65
Changes since 1.6: +680 -459 lines
File MIME type: text/plain
update results after changing calc_adv_flow.F and removing rTrans storage dir.
 (12 digits for AD grad, same FWD grad)

1 jmc 1.1 (PID.TID 0000.0001)
2     (PID.TID 0000.0001) // ======================================================
3     (PID.TID 0000.0001) // MITgcm UV
4     (PID.TID 0000.0001) // =========
5     (PID.TID 0000.0001) // ======================================================
6     (PID.TID 0000.0001) // execution environment starting up...
7     (PID.TID 0000.0001)
8 jmc 1.7 (PID.TID 0000.0001) // MITgcmUV version: checkpoint64q
9 jmc 1.5 (PID.TID 0000.0001) // Build user: jmc
10 jmc 1.1 (PID.TID 0000.0001) // Build host: baudelaire
11 jmc 1.7 (PID.TID 0000.0001) // Build date: Wed Nov 27 19:19:00 EST 2013
12 jmc 1.1 (PID.TID 0000.0001)
13     (PID.TID 0000.0001) // =======================================================
14     (PID.TID 0000.0001) // Execution Environment parameter file "eedata"
15     (PID.TID 0000.0001) // =======================================================
16     (PID.TID 0000.0001) ># Example "eedata" file
17     (PID.TID 0000.0001) ># Lines beginning "#" are comments
18     (PID.TID 0000.0001) ># nTx - No. threads per process in X
19     (PID.TID 0000.0001) ># nTy - No. threads per process in Y
20     (PID.TID 0000.0001) > &EEPARMS
21     (PID.TID 0000.0001) > nTx=1,
22     (PID.TID 0000.0001) > nTy=1,
23     (PID.TID 0000.0001) > /
24     (PID.TID 0000.0001) ># Note: Some systems use & as the
25     (PID.TID 0000.0001) ># namelist terminator. Other systems
26     (PID.TID 0000.0001) ># use a / character (as shown here).
27     (PID.TID 0000.0001)
28     (PID.TID 0000.0001) // =======================================================
29     (PID.TID 0000.0001) // Computational Grid Specification ( see files "SIZE.h" )
30     (PID.TID 0000.0001) // ( and "eedata" )
31     (PID.TID 0000.0001) // =======================================================
32     (PID.TID 0000.0001) nPx = 1 ; /* No. processes in X */
33     (PID.TID 0000.0001) nPy = 1 ; /* No. processes in Y */
34 heimbach 1.4 (PID.TID 0000.0001) nSx = 2 ; /* No. tiles in X per process */
35     (PID.TID 0000.0001) nSy = 2 ; /* No. tiles in Y per process */
36     (PID.TID 0000.0001) sNx = 32 ; /* Tile size in X */
37     (PID.TID 0000.0001) sNy = 32 ; /* Tile size in Y */
38 jmc 1.1 (PID.TID 0000.0001) OLx = 2 ; /* Tile overlap distance in X */
39     (PID.TID 0000.0001) OLy = 2 ; /* Tile overlap distance in Y */
40     (PID.TID 0000.0001) nTx = 1 ; /* No. threads in X per process */
41     (PID.TID 0000.0001) nTy = 1 ; /* No. threads in Y per process */
42     (PID.TID 0000.0001) Nr = 8 ; /* No. levels in the vertical */
43     (PID.TID 0000.0001) Nx = 64 ; /* Total domain size in X ( = nPx*nSx*sNx ) */
44     (PID.TID 0000.0001) Ny = 64 ; /* Total domain size in Y ( = nPy*nSy*sNy ) */
45 heimbach 1.4 (PID.TID 0000.0001) nTiles = 4 ; /* Total no. tiles per process ( = nSx*nSy ) */
46 jmc 1.1 (PID.TID 0000.0001) nProcs = 1 ; /* Total no. processes ( = nPx*nPy ) */
47     (PID.TID 0000.0001) nThreads = 1 ; /* Total no. threads per process ( = nTx*nTy ) */
48     (PID.TID 0000.0001) usingMPI = F ; /* Flag used to control whether MPI is in use */
49     (PID.TID 0000.0001) /* note: To execute a program with MPI calls */
50     (PID.TID 0000.0001) /* it must be launched appropriately e.g */
51     (PID.TID 0000.0001) /* "mpirun -np 64 ......" */
52     (PID.TID 0000.0001) useCoupler= F ;/* Flag used to control communications with */
53     (PID.TID 0000.0001) /* other model components, through a coupler */
54 jmc 1.3 (PID.TID 0000.0001) debugMode = F ; /* print debug msg. (sequence of S/R calls) */
55 jmc 1.1 (PID.TID 0000.0001) printMapIncludesZeros= F ; /* print zeros in Std.Output maps */
56     (PID.TID 0000.0001) maxLengthPrt1D= 65 /* maxLength of 1D array printed to StdOut */
57     (PID.TID 0000.0001)
58     (PID.TID 0000.0001) // ======================================================
59     (PID.TID 0000.0001) // Mapping of tiles to threads
60     (PID.TID 0000.0001) // ======================================================
61 heimbach 1.4 (PID.TID 0000.0001) // -o- Thread 1, tiles ( 1: 2, 1: 2)
62 jmc 1.1 (PID.TID 0000.0001)
63     (PID.TID 0000.0001) // ======================================================
64     (PID.TID 0000.0001) // Tile <-> Tile connectvity table
65     (PID.TID 0000.0001) // ======================================================
66 jmc 1.7 (PID.TID 0000.0001) // Tile number: 000001 (process no. = 000000)
67     (PID.TID 0000.0001) // WEST: Tile = 000002, Process = 000000, Comm = put
68 heimbach 1.4 (PID.TID 0000.0001) // bi = 000002, bj = 000001
69 jmc 1.7 (PID.TID 0000.0001) // EAST: Tile = 000002, Process = 000000, Comm = put
70 heimbach 1.4 (PID.TID 0000.0001) // bi = 000002, bj = 000001
71 jmc 1.7 (PID.TID 0000.0001) // SOUTH: Tile = 000003, Process = 000000, Comm = put
72 heimbach 1.4 (PID.TID 0000.0001) // bi = 000001, bj = 000002
73 jmc 1.7 (PID.TID 0000.0001) // NORTH: Tile = 000003, Process = 000000, Comm = put
74 heimbach 1.4 (PID.TID 0000.0001) // bi = 000001, bj = 000002
75 jmc 1.7 (PID.TID 0000.0001) // Tile number: 000002 (process no. = 000000)
76     (PID.TID 0000.0001) // WEST: Tile = 000001, Process = 000000, Comm = put
77 jmc 1.1 (PID.TID 0000.0001) // bi = 000001, bj = 000001
78 jmc 1.7 (PID.TID 0000.0001) // EAST: Tile = 000001, Process = 000000, Comm = put
79 jmc 1.1 (PID.TID 0000.0001) // bi = 000001, bj = 000001
80 jmc 1.7 (PID.TID 0000.0001) // SOUTH: Tile = 000004, Process = 000000, Comm = put
81 heimbach 1.4 (PID.TID 0000.0001) // bi = 000002, bj = 000002
82 jmc 1.7 (PID.TID 0000.0001) // NORTH: Tile = 000004, Process = 000000, Comm = put
83 heimbach 1.4 (PID.TID 0000.0001) // bi = 000002, bj = 000002
84 jmc 1.7 (PID.TID 0000.0001) // Tile number: 000003 (process no. = 000000)
85     (PID.TID 0000.0001) // WEST: Tile = 000004, Process = 000000, Comm = put
86 heimbach 1.4 (PID.TID 0000.0001) // bi = 000002, bj = 000002
87 jmc 1.7 (PID.TID 0000.0001) // EAST: Tile = 000004, Process = 000000, Comm = put
88 heimbach 1.4 (PID.TID 0000.0001) // bi = 000002, bj = 000002
89 jmc 1.7 (PID.TID 0000.0001) // SOUTH: Tile = 000001, Process = 000000, Comm = put
90 jmc 1.1 (PID.TID 0000.0001) // bi = 000001, bj = 000001
91 jmc 1.7 (PID.TID 0000.0001) // NORTH: Tile = 000001, Process = 000000, Comm = put
92 jmc 1.1 (PID.TID 0000.0001) // bi = 000001, bj = 000001
93 jmc 1.7 (PID.TID 0000.0001) // Tile number: 000004 (process no. = 000000)
94     (PID.TID 0000.0001) // WEST: Tile = 000003, Process = 000000, Comm = put
95 heimbach 1.4 (PID.TID 0000.0001) // bi = 000001, bj = 000002
96 jmc 1.7 (PID.TID 0000.0001) // EAST: Tile = 000003, Process = 000000, Comm = put
97 heimbach 1.4 (PID.TID 0000.0001) // bi = 000001, bj = 000002
98 jmc 1.7 (PID.TID 0000.0001) // SOUTH: Tile = 000002, Process = 000000, Comm = put
99 heimbach 1.4 (PID.TID 0000.0001) // bi = 000002, bj = 000001
100 jmc 1.7 (PID.TID 0000.0001) // NORTH: Tile = 000002, Process = 000000, Comm = put
101 heimbach 1.4 (PID.TID 0000.0001) // bi = 000002, bj = 000001
102 jmc 1.1 (PID.TID 0000.0001)
103     (PID.TID 0000.0001) INI_PARMS: opening model parameter file "data"
104     (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data
105     (PID.TID 0000.0001) // =======================================================
106     (PID.TID 0000.0001) // Parameter file "data"
107     (PID.TID 0000.0001) // =======================================================
108     (PID.TID 0000.0001) ># Model parameters
109     (PID.TID 0000.0001) ># Continuous equation parameters
110     (PID.TID 0000.0001) > &PARM01
111     (PID.TID 0000.0001) > tRef=20.,16.,12.,10., 9., 8., 7., 6.,
112     (PID.TID 0000.0001) > sRef=35.,35.,35.,35.,35.,35.,35.,35.,
113     (PID.TID 0000.0001) > viscAz=1.E-4,
114     (PID.TID 0000.0001) > viscAh=1.E1,
115     (PID.TID 0000.0001) > no_slip_sides=.FALSE.,
116     (PID.TID 0000.0001) > no_slip_bottom=.TRUE.,
117     (PID.TID 0000.0001) > diffKhT=0.E0,
118     (PID.TID 0000.0001) > diffKzT=0.E-5,
119     (PID.TID 0000.0001) > rotationPeriod=86400.,
120     (PID.TID 0000.0001) > beta=1.E-11,
121 jmc 1.2 (PID.TID 0000.0001) > eosType='LINEAR',
122 jmc 1.1 (PID.TID 0000.0001) > tAlpha=2.E-4,
123     (PID.TID 0000.0001) > sBeta =0.,
124     (PID.TID 0000.0001) > gravity=9.81,
125     (PID.TID 0000.0001) > rigidLid=.FALSE.,
126     (PID.TID 0000.0001) > implicitFreeSurface=.TRUE.,
127     (PID.TID 0000.0001) > readBinaryPrec=32,
128     (PID.TID 0000.0001) ># extras...
129     (PID.TID 0000.0001) > implicitDiffusion=.true.,
130     (PID.TID 0000.0001) > implicitViscosity=.true.,
131     (PID.TID 0000.0001) > vectorInvariantMomentum=.TRUE.,
132     (PID.TID 0000.0001) > staggerTimeStep=.TRUE.,
133     (PID.TID 0000.0001) > multiDimAdvection=.FALSE.,
134     (PID.TID 0000.0001) > tempAdvScheme=30,
135     (PID.TID 0000.0001) > saltAdvScheme=30,
136     (PID.TID 0000.0001) > writeBinaryPrec=32,
137     (PID.TID 0000.0001) > /
138     (PID.TID 0000.0001) ># Elliptic solver parameters
139     (PID.TID 0000.0001) > &PARM02
140     (PID.TID 0000.0001) > cg2dMaxIters=500,
141     (PID.TID 0000.0001) > cg2dTargetResidual=1.E-8,
142     (PID.TID 0000.0001) > /
143     (PID.TID 0000.0001) ># Time stepping parameters
144     (PID.TID 0000.0001) > &PARM03
145     (PID.TID 0000.0001) > startTime=0.,
146 heimbach 1.4 (PID.TID 0000.0001) > endTime=4800.,
147 jmc 1.1 (PID.TID 0000.0001) > deltaTmom=1200.0,
148     (PID.TID 0000.0001) > deltaTtracer=1200.0,
149     (PID.TID 0000.0001) > dumpInitAndLast=.TRUE.,
150     (PID.TID 0000.0001) > abEps=0.1,
151     (PID.TID 0000.0001) > pChkptFreq=0.0,
152     (PID.TID 0000.0001) > chkptFreq=0.0,
153     (PID.TID 0000.0001) > dumpFreq=2628000.0,
154 jmc 1.2 (PID.TID 0000.0001) >#monitorFreq=432000.,
155     (PID.TID 0000.0001) > monitorFreq=3600.,
156     (PID.TID 0000.0001) > monitorSelect=1,
157 jmc 1.1 (PID.TID 0000.0001) > /
158     (PID.TID 0000.0001) ># Gridding parameters
159     (PID.TID 0000.0001) > &PARM04
160     (PID.TID 0000.0001) > usingSphericalPolarGrid=.TRUE.,
161     (PID.TID 0000.0001) > ygOrigin=25.,
162     (PID.TID 0000.0001) > delX=64*0.25,
163     (PID.TID 0000.0001) > delY=64*0.25,
164     (PID.TID 0000.0001) > delZ=500.,500.,500.,500.,500.,500.,500.,500.,
165     (PID.TID 0000.0001) > /
166     (PID.TID 0000.0001) > &PARM05
167     (PID.TID 0000.0001) > bathyFile='topog.box',
168     (PID.TID 0000.0001) > uVelInitFile= 'Uini.bin',
169     (PID.TID 0000.0001) > vVelInitFile= 'Vini.bin',
170     (PID.TID 0000.0001) >#hydrogThetaFile=,
171     (PID.TID 0000.0001) >#hydrogSaltFile=,
172     (PID.TID 0000.0001) >#zonalWindFile=,
173     (PID.TID 0000.0001) >#meridWindFile=,
174     (PID.TID 0000.0001) > /
175     (PID.TID 0000.0001)
176     (PID.TID 0000.0001) INI_PARMS ; starts to read PARM01
177     (PID.TID 0000.0001) INI_PARMS ; read PARM01 : OK
178     (PID.TID 0000.0001) INI_PARMS ; starts to read PARM02
179     (PID.TID 0000.0001) INI_PARMS ; read PARM02 : OK
180     (PID.TID 0000.0001) INI_PARMS ; starts to read PARM03
181     (PID.TID 0000.0001) INI_PARMS ; read PARM03 : OK
182     (PID.TID 0000.0001) INI_PARMS ; starts to read PARM04
183     (PID.TID 0000.0001) INI_PARMS ; read PARM04 : OK
184     (PID.TID 0000.0001) INI_PARMS ; starts to read PARM05
185     (PID.TID 0000.0001) INI_PARMS ; read PARM05 : OK
186     (PID.TID 0000.0001) INI_PARMS: finished reading file "data"
187     (PID.TID 0000.0001) PACKAGES_BOOT: opening data.pkg
188     (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.pkg
189     (PID.TID 0000.0001) // =======================================================
190     (PID.TID 0000.0001) // Parameter file "data.pkg"
191     (PID.TID 0000.0001) // =======================================================
192     (PID.TID 0000.0001) ># Packages
193     (PID.TID 0000.0001) > &PACKAGES
194     (PID.TID 0000.0001) > useECCO=.TRUE.,
195     (PID.TID 0000.0001) > useOBCS=.TRUE.,
196     (PID.TID 0000.0001) > useEXF=.TRUE.,
197     (PID.TID 0000.0001) > useDiagnostics=.TRUE.,
198     (PID.TID 0000.0001) > useGrdchk = .TRUE.,
199     (PID.TID 0000.0001) > /
200     (PID.TID 0000.0001)
201     (PID.TID 0000.0001) PACKAGES_BOOT: finished reading data.pkg
202     (PID.TID 0000.0001) CAL_READPARMS: opening data.cal
203     (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.cal
204     (PID.TID 0000.0001) // =======================================================
205     (PID.TID 0000.0001) // Parameter file "data.cal"
206     (PID.TID 0000.0001) // =======================================================
207     (PID.TID 0000.0001) ># *******************
208     (PID.TID 0000.0001) ># Calendar Parameters
209     (PID.TID 0000.0001) ># *******************
210     (PID.TID 0000.0001) > &CAL_NML
211     (PID.TID 0000.0001) > TheCalendar='gregorian',
212     (PID.TID 0000.0001) ># TheCalendar='model',
213     (PID.TID 0000.0001) > startDate_1=20070101,
214     (PID.TID 0000.0001) > startDate_2= 000000,
215     (PID.TID 0000.0001) > /
216     (PID.TID 0000.0001)
217     (PID.TID 0000.0001) CAL_READPARMS: finished reading data.cal
218     (PID.TID 0000.0001) EXF_READPARMS: opening data.exf
219     (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.exf
220     (PID.TID 0000.0001) // =======================================================
221     (PID.TID 0000.0001) // Parameter file "data.exf"
222     (PID.TID 0000.0001) // =======================================================
223     (PID.TID 0000.0001) ># *********************
224     (PID.TID 0000.0001) ># External Forcing Data
225     (PID.TID 0000.0001) ># *********************
226     (PID.TID 0000.0001) > &EXF_NML_01
227     (PID.TID 0000.0001) > useExfCheckRange = .FALSE.,
228     (PID.TID 0000.0001) > exf_iprec = 32,
229 jmc 1.2 (PID.TID 0000.0001) > exf_monFreq=0.,
230 jmc 1.1 (PID.TID 0000.0001) > /
231 jmc 1.7 (PID.TID 0000.0001) >
232 jmc 1.1 (PID.TID 0000.0001) > &EXF_NML_02
233     (PID.TID 0000.0001) > /
234 jmc 1.7 (PID.TID 0000.0001) >
235 jmc 1.1 (PID.TID 0000.0001) > &EXF_NML_03
236     (PID.TID 0000.0001) > /
237 jmc 1.7 (PID.TID 0000.0001) >
238     (PID.TID 0000.0001) >#&EXF_NML_04
239     (PID.TID 0000.0001) >#&
240     (PID.TID 0000.0001) >
241 jmc 1.1 (PID.TID 0000.0001) > &EXF_NML_OBCS
242     (PID.TID 0000.0001) > obcsNstartdate1 = 20061231,
243     (PID.TID 0000.0001) > obcsNstartdate2 = 00000,
244     (PID.TID 0000.0001) > obcsNperiod = 00.0,
245     (PID.TID 0000.0001) >#
246     (PID.TID 0000.0001) > obcsSstartdate1 = 20061231,
247     (PID.TID 0000.0001) > obcsSstartdate2 = 00000,
248     (PID.TID 0000.0001) > obcsSperiod = 00.0,
249     (PID.TID 0000.0001) >#
250     (PID.TID 0000.0001) > obcsWstartdate1 = 20061231,
251     (PID.TID 0000.0001) > obcsWstartdate2 = 00000,
252     (PID.TID 0000.0001) > obcsWperiod = 00.0,
253     (PID.TID 0000.0001) >#
254     (PID.TID 0000.0001) > obcsEstartdate1 = 20061231,
255     (PID.TID 0000.0001) > obcsEstartdate2 = 00000,
256     (PID.TID 0000.0001) > obcsEperiod = 00.0,
257     (PID.TID 0000.0001) > /
258     (PID.TID 0000.0001)
259     (PID.TID 0000.0001) EXF_READPARMS: reading EXF_NML_01
260     (PID.TID 0000.0001) EXF_READPARMS: reading EXF_NML_02
261     (PID.TID 0000.0001) EXF_READPARMS: reading EXF_NML_03
262     (PID.TID 0000.0001) EXF_READPARMS: reading EXF_NML_OBCS
263     (PID.TID 0000.0001) EXF_READPARMS: finished reading data.exf
264     (PID.TID 0000.0001) OBCS_READPARMS: opening data.obcs
265     (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.obcs
266     (PID.TID 0000.0001) // =======================================================
267     (PID.TID 0000.0001) // Parameter file "data.obcs"
268     (PID.TID 0000.0001) // =======================================================
269     (PID.TID 0000.0001) ># ***************
270     (PID.TID 0000.0001) ># Open boundaries
271     (PID.TID 0000.0001) ># ***************
272     (PID.TID 0000.0001) > &OBCS_PARM01
273     (PID.TID 0000.0001) > OB_Jnorth= 64*64,
274     (PID.TID 0000.0001) > OB_Jsouth= 64*1,
275     (PID.TID 0000.0001) > OB_Iwest= 64*1,
276     (PID.TID 0000.0001) > OB_Ieast= 64*64,
277     (PID.TID 0000.0001) >
278     (PID.TID 0000.0001) >#
279     (PID.TID 0000.0001) > useOrlanskiNorth=.FALSE.,
280     (PID.TID 0000.0001) > useOBCSsponge=.TRUE.,
281     (PID.TID 0000.0001) > useOBCSbalance=.FALSE.,
282     (PID.TID 0000.0001) > useOBCSprescribe=.TRUE.,
283     (PID.TID 0000.0001) >#
284     (PID.TID 0000.0001) > OBNuFile='Unbc.bin',
285     (PID.TID 0000.0001) > OBNvFile='Vnbc.bin',
286     (PID.TID 0000.0001) > OBNtFile='Tnbc.bin',
287     (PID.TID 0000.0001) > OBNsFile='Snbc.bin',
288     (PID.TID 0000.0001) >#
289     (PID.TID 0000.0001) > OBSuFile='Usbc.bin',
290     (PID.TID 0000.0001) > OBSvFile='Vsbc.bin',
291     (PID.TID 0000.0001) > OBStFile='Tsbc.bin',
292     (PID.TID 0000.0001) > OBSsFile='Ssbc.bin',
293     (PID.TID 0000.0001) >#
294     (PID.TID 0000.0001) > OBWuFile='Uwbc.bin',
295     (PID.TID 0000.0001) > OBWvFile='Vwbc.bin',
296     (PID.TID 0000.0001) > OBWtFile='Twbc.bin',
297     (PID.TID 0000.0001) > OBWsFile='Swbc.bin',
298     (PID.TID 0000.0001) >#
299     (PID.TID 0000.0001) > OBEuFile='Uebc.bin',
300     (PID.TID 0000.0001) > OBEvFile='Vebc.bin',
301     (PID.TID 0000.0001) > OBEtFile='Tebc.bin',
302     (PID.TID 0000.0001) > OBEsFile='Sebc.bin',
303     (PID.TID 0000.0001) >#
304     (PID.TID 0000.0001) > /
305     (PID.TID 0000.0001) >
306     (PID.TID 0000.0001) ># *****************************************
307     (PID.TID 0000.0001) ># Orlanski Boundary Condition Parameters.
308     (PID.TID 0000.0001) ># *****************************************
309 jmc 1.7 (PID.TID 0000.0001) >#&OBCS_PARM02
310 jmc 1.1 (PID.TID 0000.0001) ># cvelTimeScale = 2000.,
311 jmc 1.7 (PID.TID 0000.0001) >#&
312 jmc 1.1 (PID.TID 0000.0001) >
313     (PID.TID 0000.0001) ># *****************************************
314     (PID.TID 0000.0001) ># Sponge Layer Parameters.
315     (PID.TID 0000.0001) ># *****************************************
316     (PID.TID 0000.0001) > &OBCS_PARM03
317     (PID.TID 0000.0001) > Urelaxobcsinner=432000.E0,
318     (PID.TID 0000.0001) > Urelaxobcsbound=43200.E0,
319     (PID.TID 0000.0001) > Vrelaxobcsinner=432000.E0,
320     (PID.TID 0000.0001) > Vrelaxobcsbound=43200.E0,
321     (PID.TID 0000.0001) > spongeThickness=08,
322     (PID.TID 0000.0001) > /
323     (PID.TID 0000.0001) >
324     (PID.TID 0000.0001)
325     (PID.TID 0000.0001) OBCS_READPARMS: finished reading data.obcs
326 jmc 1.7 (PID.TID 0000.0001) OB_indexUnset = /* unset OB index value (i.e. no OB) */
327     (PID.TID 0000.0001) 0
328     (PID.TID 0000.0001) ;
329 jmc 1.3 (PID.TID 0000.0001) Northern OB global indices : OB_Jnorth =
330     (PID.TID 0000.0001) 64 @ 64 /* I = 1: 64 */
331     (PID.TID 0000.0001) Southern OB global indices : OB_Jsouth =
332     (PID.TID 0000.0001) 64 @ 1 /* I = 1: 64 */
333     (PID.TID 0000.0001) Eastern OB global indices : OB_Ieast =
334     (PID.TID 0000.0001) 64 @ 64 /* J = 1: 64 */
335     (PID.TID 0000.0001) Western OB global indices : OB_Iwest =
336     (PID.TID 0000.0001) 64 @ 1 /* J = 1: 64 */
337     (PID.TID 0000.0001)
338 jmc 1.7 (PID.TID 0000.0001) AUTODIFF_READPARMS: opening data.autodiff
339     (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.autodiff
340     (PID.TID 0000.0001) // =======================================================
341     (PID.TID 0000.0001) // Parameter file "data.autodiff"
342     (PID.TID 0000.0001) // =======================================================
343     (PID.TID 0000.0001) ># =========================
344     (PID.TID 0000.0001) ># pkg AUTODIFF parameters :
345     (PID.TID 0000.0001) ># =========================
346     (PID.TID 0000.0001) ># inAdExact :: get an exact adjoint (no approximation) (def=.True.)
347     (PID.TID 0000.0001) >#
348     (PID.TID 0000.0001) > &AUTODIFF_PARM01
349     (PID.TID 0000.0001) ># inAdExact = .FALSE.,
350     (PID.TID 0000.0001) > /
351     (PID.TID 0000.0001)
352     (PID.TID 0000.0001) AUTODIFF_READPARMS: finished reading data.autodiff
353     (PID.TID 0000.0001) // ===================================
354     (PID.TID 0000.0001) // AUTODIFF parameters :
355     (PID.TID 0000.0001) // ===================================
356     (PID.TID 0000.0001) inAdExact = /* get an exact adjoint (no approximation) */
357     (PID.TID 0000.0001) T
358     (PID.TID 0000.0001) ;
359     (PID.TID 0000.0001) useKPPinAdMode = /* use KPP in adjoint mode */
360     (PID.TID 0000.0001) F
361     (PID.TID 0000.0001) ;
362     (PID.TID 0000.0001) useGMRediInAdMode = /* use GMRedi in adjoint mode */
363     (PID.TID 0000.0001) F
364     (PID.TID 0000.0001) ;
365     (PID.TID 0000.0001) useSEAICEinAdMode = /* use SEAICE in adjoint mode */
366     (PID.TID 0000.0001) F
367     (PID.TID 0000.0001) ;
368     (PID.TID 0000.0001) useGGL90inAdMode = /* use GGL90 in adjoint mode */
369     (PID.TID 0000.0001) F
370     (PID.TID 0000.0001) ;
371     (PID.TID 0000.0001) useSALT_PLUMEinAdMode = /* use SALT_PLUME in adjoint mode */
372     (PID.TID 0000.0001) F
373     (PID.TID 0000.0001) ;
374     (PID.TID 0000.0001) dumpAdVarExch = /* control adexch before dumpinp */
375     (PID.TID 0000.0001) 2
376     (PID.TID 0000.0001) ;
377     (PID.TID 0000.0001) mon_AdVarExch = /* control adexch before monitor */
378     (PID.TID 0000.0001) 2
379     (PID.TID 0000.0001) ;
380     (PID.TID 0000.0001)
381 jmc 1.1 (PID.TID 0000.0001) OPTIM_READPARMS: opening data.optim
382     (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.optim
383     (PID.TID 0000.0001) // =======================================================
384     (PID.TID 0000.0001) // Parameter file "data.optim"
385     (PID.TID 0000.0001) // =======================================================
386     (PID.TID 0000.0001) ># ********************************
387     (PID.TID 0000.0001) ># Off-line optimization parameters
388     (PID.TID 0000.0001) ># ********************************
389     (PID.TID 0000.0001) > &OPTIM
390     (PID.TID 0000.0001) > optimcycle=0,
391     (PID.TID 0000.0001) > numiter=1,
392     (PID.TID 0000.0001) > nfunc=3,
393     (PID.TID 0000.0001) > fmin=30.0,
394     (PID.TID 0000.0001) > iprint=10,
395     (PID.TID 0000.0001) > nupdate=4,
396     (PID.TID 0000.0001) > /
397     (PID.TID 0000.0001)
398     (PID.TID 0000.0001) OPTIM_READPARMS: finished reading data.optim
399     (PID.TID 0000.0001) CTRL_READPARMS: opening data.ctrl
400     (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.ctrl
401     (PID.TID 0000.0001) // =======================================================
402     (PID.TID 0000.0001) // Parameter file "data.ctrl"
403     (PID.TID 0000.0001) // =======================================================
404     (PID.TID 0000.0001) ># *********************
405     (PID.TID 0000.0001) ># ECCO controlvariables
406     (PID.TID 0000.0001) ># *********************
407     (PID.TID 0000.0001) > &CTRL_NML
408     (PID.TID 0000.0001) >## doMainPack = .TRUE.,
409     (PID.TID 0000.0001) >## doMainUnpack = .TRUE.,
410     (PID.TID 0000.0001) > doinitxx = .TRUE.,
411     (PID.TID 0000.0001) > doPackDiag = .FALSE.,
412     (PID.TID 0000.0001) > doZscalePack = .FALSE.,
413     (PID.TID 0000.0001) > delZexp = 1.,
414     (PID.TID 0000.0001) ># doSinglePrecTapelev = .TRUE.,
415     (PID.TID 0000.0001) >#
416     (PID.TID 0000.0001) > xx_obcsnstartdate1 = 20070101,
417     (PID.TID 0000.0001) > xx_obcsnstartdate2 = 00000,
418     (PID.TID 0000.0001) > xx_obcsnperiod = 0.0,
419     (PID.TID 0000.0001) > xx_obcsn_file = 'xx_obcsn',
420     (PID.TID 0000.0001) >#
421     (PID.TID 0000.0001) > xx_obcssstartdate1 = 20070101,
422     (PID.TID 0000.0001) > xx_obcssstartdate2 = 00000,
423     (PID.TID 0000.0001) > xx_obcssperiod = 0.0,
424     (PID.TID 0000.0001) > xx_obcss_file = 'xx_obcss',
425     (PID.TID 0000.0001) >#
426     (PID.TID 0000.0001) > xx_obcswstartdate1 = 20070101,
427     (PID.TID 0000.0001) > xx_obcswstartdate2 = 00000,
428     (PID.TID 0000.0001) > xx_obcswperiod = 0.0,
429     (PID.TID 0000.0001) > xx_obcsw_file = 'xx_obcsw',
430     (PID.TID 0000.0001) >#
431     (PID.TID 0000.0001) > xx_obcsestartdate1 = 20070101,
432     (PID.TID 0000.0001) > xx_obcsestartdate2 = 00000,
433     (PID.TID 0000.0001) > xx_obcseperiod = 0.0,
434     (PID.TID 0000.0001) > xx_obcse_file = 'xx_obcse',
435     (PID.TID 0000.0001) > /
436     (PID.TID 0000.0001) >#
437     (PID.TID 0000.0001) ># *********************
438     (PID.TID 0000.0001) ># names for ctrl_pack/unpack
439     (PID.TID 0000.0001) ># *********************
440     (PID.TID 0000.0001) > &CTRL_PACKNAMES
441     (PID.TID 0000.0001) > ctrlname = 'ecco_ctrl',
442     (PID.TID 0000.0001) > costname = 'ecco_cost',
443     (PID.TID 0000.0001) > /
444     (PID.TID 0000.0001)
445     (PID.TID 0000.0001) CTRL_READPARMS: finished reading data.ctrl
446     (PID.TID 0000.0001) COST_READPARMS: opening data.cost
447     (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.cost
448     (PID.TID 0000.0001) // =======================================================
449     (PID.TID 0000.0001) // Parameter file "data.cost"
450     (PID.TID 0000.0001) // =======================================================
451     (PID.TID 0000.0001) ># ******************
452     (PID.TID 0000.0001) ># cost function
453     (PID.TID 0000.0001) ># ******************
454     (PID.TID 0000.0001) > &COST_NML
455     (PID.TID 0000.0001) > /
456     (PID.TID 0000.0001)
457     (PID.TID 0000.0001) COST_READPARMS: finished reading data.cost
458     (PID.TID 0000.0001) GRDCHK_READPARMS: opening data.grdchk
459     (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.grdchk
460     (PID.TID 0000.0001) // =======================================================
461     (PID.TID 0000.0001) // Parameter file "data.grdchk"
462     (PID.TID 0000.0001) // =======================================================
463     (PID.TID 0000.0001) >
464     (PID.TID 0000.0001) ># *******************
465     (PID.TID 0000.0001) ># ECCO gradient check
466     (PID.TID 0000.0001) ># *******************
467     (PID.TID 0000.0001) > &GRDCHK_NML
468     (PID.TID 0000.0001) > grdchk_eps = 1.d-4,
469     (PID.TID 0000.0001) ># nbeg = 4,
470     (PID.TID 0000.0001) > iGloPos = 1,
471 heimbach 1.4 (PID.TID 0000.0001) > jGloPos = 1,
472 jmc 1.1 (PID.TID 0000.0001) > kGloPos = 4,
473 heimbach 1.4 (PID.TID 0000.0001) >### iGloTile = 1,
474     (PID.TID 0000.0001) >### jgloTile = 1,
475 jmc 1.1 (PID.TID 0000.0001) > nstep = 1,
476     (PID.TID 0000.0001) > nend = 4,
477     (PID.TID 0000.0001) > grdchkvarindex = 13,
478 heimbach 1.4 (PID.TID 0000.0001) >#ph: currently only 12 and 13 work,
479     (PID.TID 0000.0001) >#ph: and only for South j=1 or West i=1
480 jmc 1.1 (PID.TID 0000.0001) > /
481     (PID.TID 0000.0001)
482     (PID.TID 0000.0001) GRDCHK_READPARMS: finished reading data.grdchk
483     (PID.TID 0000.0001)
484     (PID.TID 0000.0001) // =======================================================
485     (PID.TID 0000.0001) // Gradient check configuration >>> START <<<
486     (PID.TID 0000.0001) // =======================================================
487     (PID.TID 0000.0001)
488     (PID.TID 0000.0001) eps: 0.100E-03
489     (PID.TID 0000.0001) First location: 0
490     (PID.TID 0000.0001) Last location: 4
491     (PID.TID 0000.0001) Increment: 1
492 jmc 1.5 (PID.TID 0000.0001) grdchkWhichProc: 0
493     (PID.TID 0000.0001) iLocTile = 1 , jLocTile = 1
494 jmc 1.1 (PID.TID 0000.0001)
495     (PID.TID 0000.0001) // =======================================================
496     (PID.TID 0000.0001) // Gradient check configuration >>> END <<<
497     (PID.TID 0000.0001) // =======================================================
498     (PID.TID 0000.0001)
499     (PID.TID 0000.0001) ECCO_READPARMS: opening data.ecco
500     (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.ecco
501     (PID.TID 0000.0001) // =======================================================
502     (PID.TID 0000.0001) // Parameter file "data.ecco"
503     (PID.TID 0000.0001) // =======================================================
504     (PID.TID 0000.0001) ># ******************
505     (PID.TID 0000.0001) ># ECCO cost function
506     (PID.TID 0000.0001) ># ******************
507     (PID.TID 0000.0001) > &ECCO_COST_NML
508     (PID.TID 0000.0001) > data_errfile = 'data.err',
509     (PID.TID 0000.0001) > tbarfile = 'tbar',
510     (PID.TID 0000.0001) >#
511     (PID.TID 0000.0001) > temp0errfile = 'errorTtot.err',
512     (PID.TID 0000.0001) ># temperrfile = 'errorTtot.err',
513     (PID.TID 0000.0001) > tdatfile = 'FinalThetaObs.bin',
514     (PID.TID 0000.0001) >#
515     (PID.TID 0000.0001) >#
516     (PID.TID 0000.0001) > mult_temp0 = 1.0,
517     (PID.TID 0000.0001) > mult_temp = 1.0,
518     (PID.TID 0000.0001) > mult_obcsn = 1.0,
519     (PID.TID 0000.0001) > mult_obcss = 1.0,
520     (PID.TID 0000.0001) > mult_obcsw = 1.0,
521     (PID.TID 0000.0001) > mult_obcse = 1.0,
522     (PID.TID 0000.0001) >#
523     (PID.TID 0000.0001) > cost_iprec = 32,
524     (PID.TID 0000.0001) > cost_yftype = 'RL',
525     (PID.TID 0000.0001) > /
526     (PID.TID 0000.0001)
527     (PID.TID 0000.0001) ECCO_READPARMS: finished reading #1: ecco_cost_nml
528     (PID.TID 0000.0001) ECCO_READPARMS: done
529     (PID.TID 0000.0001) DIAGNOSTICS_READPARMS: opening data.diagnostics
530     (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.diagnostics
531     (PID.TID 0000.0001) // =======================================================
532     (PID.TID 0000.0001) // Parameter file "data.diagnostics"
533     (PID.TID 0000.0001) // =======================================================
534     (PID.TID 0000.0001) ># Diagnostic Package Choices
535 jmc 1.7 (PID.TID 0000.0001) >#--------------------
536     (PID.TID 0000.0001) ># dumpAtLast (logical): always write output at the end of simulation (default=F)
537     (PID.TID 0000.0001) ># diag_mnc (logical): write to NetCDF files (default=useMNC)
538     (PID.TID 0000.0001) >#--for each output-stream:
539     (PID.TID 0000.0001) ># fileName(n) : prefix of the output file name (max 80c long) for outp.stream n
540 jmc 1.1 (PID.TID 0000.0001) ># frequency(n):< 0 : write snap-shot output every |frequency| seconds
541     (PID.TID 0000.0001) ># > 0 : write time-average output every frequency seconds
542     (PID.TID 0000.0001) ># timePhase(n) : write at time = timePhase + multiple of |frequency|
543 jmc 1.7 (PID.TID 0000.0001) ># averagingFreq : frequency (in s) for periodic averaging interval
544     (PID.TID 0000.0001) ># averagingPhase : phase (in s) for periodic averaging interval
545     (PID.TID 0000.0001) ># repeatCycle : number of averaging intervals in 1 cycle
546 jmc 1.1 (PID.TID 0000.0001) ># levels(:,n) : list of levels to write to file (Notes: declared as REAL)
547 jmc 1.7 (PID.TID 0000.0001) ># when this entry is missing, select all common levels of this list
548     (PID.TID 0000.0001) ># fields(:,n) : list of selected diagnostics fields (8.c) in outp.stream n
549     (PID.TID 0000.0001) ># (see "available_diagnostics.log" file for the full list of diags)
550     (PID.TID 0000.0001) ># missing_value(n) : missing value for real-type fields in output file "n"
551     (PID.TID 0000.0001) ># fileFlags(n) : specific code (8c string) for output file "n"
552     (PID.TID 0000.0001) >#--------------------
553     (PID.TID 0000.0001) > &DIAGNOSTICS_LIST
554     (PID.TID 0000.0001) ># dumpAtLast = .TRUE.,
555 jmc 1.1 (PID.TID 0000.0001) ># diag_mnc = .FALSE.,
556     (PID.TID 0000.0001) >#---
557 jmc 1.7 (PID.TID 0000.0001) ># fields(1:1,1) = 'DRHODR ',
558     (PID.TID 0000.0001) ># filename(1) = 'dRhodz_5',
559     (PID.TID 0000.0001) ># frequency(1) = 864000.0,
560 jmc 1.1 (PID.TID 0000.0001) >#---
561     (PID.TID 0000.0001) > /
562 jmc 1.7 (PID.TID 0000.0001) >
563     (PID.TID 0000.0001) >#--------------------
564 jmc 1.1 (PID.TID 0000.0001) ># Parameter for Diagnostics of per level statistics:
565 jmc 1.7 (PID.TID 0000.0001) >#--------------------
566     (PID.TID 0000.0001) ># diagSt_mnc (logical): write stat-diags to NetCDF files (default=diag_mnc)
567     (PID.TID 0000.0001) ># diagSt_regMaskFile : file containing the region-mask to read-in
568     (PID.TID 0000.0001) ># nSetRegMskFile : number of region-mask sets within the region-mask file
569     (PID.TID 0000.0001) ># set_regMask(i) : region-mask set-index that identifies the region "i"
570     (PID.TID 0000.0001) ># val_regMask(i) : region "i" identifier value in the region mask
571     (PID.TID 0000.0001) >#--for each output-stream:
572     (PID.TID 0000.0001) ># stat_fName(n) : prefix of the output file name (max 80c long) for outp.stream n
573 jmc 1.1 (PID.TID 0000.0001) ># stat_freq(n):< 0 : write snap-shot output every |stat_freq| seconds
574     (PID.TID 0000.0001) ># > 0 : write time-average output every stat_freq seconds
575     (PID.TID 0000.0001) ># stat_phase(n) : write at time = stat_phase + multiple of |stat_freq|
576     (PID.TID 0000.0001) ># stat_region(:,n) : list of "regions" (default: 1 region only=global)
577 jmc 1.7 (PID.TID 0000.0001) ># stat_fields(:,n) : list of selected diagnostics fields (8.c) in outp.stream n
578     (PID.TID 0000.0001) ># (see "available_diagnostics.log" file for the full list of diags)
579     (PID.TID 0000.0001) >#--------------------
580 jmc 1.1 (PID.TID 0000.0001) > &DIAG_STATIS_PARMS
581     (PID.TID 0000.0001) ># an example just to check the agreement with MONITOR output:
582 jmc 1.7 (PID.TID 0000.0001) ># stat_fields(1:5,1) = 'ETAN ','UVEL ','VVEL ','WVEL ', 'THETA ',
583     (PID.TID 0000.0001) ># stat_fName(1) = 'dynStDiag',
584     (PID.TID 0000.0001) ># stat_freq(1) = -864000.,
585     (PID.TID 0000.0001) ># stat_phase(1) = 0.,
586 jmc 1.1 (PID.TID 0000.0001) > /
587     (PID.TID 0000.0001)
588     (PID.TID 0000.0001) S/R DIAGNOSTICS_READPARMS, read namelist "diagnostics_list": start
589     (PID.TID 0000.0001) S/R DIAGNOSTICS_READPARMS, read namelist "diagnostics_list": OK
590     (PID.TID 0000.0001) S/R DIAGNOSTICS_READPARMS, read namelist "DIAG_STATIS_PARMS": start
591     (PID.TID 0000.0001) S/R DIAGNOSTICS_READPARMS, read namelist "DIAG_STATIS_PARMS": OK
592 heimbach 1.4 (PID.TID 0000.0001) DIAGNOSTICS_READPARMS: global parameter summary:
593     (PID.TID 0000.0001) dumpAtLast = /* always write time-ave diags at the end */
594     (PID.TID 0000.0001) F
595     (PID.TID 0000.0001) ;
596     (PID.TID 0000.0001) diag_mnc = /* write NetCDF output files */
597     (PID.TID 0000.0001) F
598     (PID.TID 0000.0001) ;
599     (PID.TID 0000.0001) useMissingValue = /* put MissingValue where mask = 0 */
600     (PID.TID 0000.0001) F
601     (PID.TID 0000.0001) ;
602     (PID.TID 0000.0001) diagCG_maxIters = /* max number of iters in diag_cg2d */
603     (PID.TID 0000.0001) 500
604     (PID.TID 0000.0001) ;
605     (PID.TID 0000.0001) diagCG_resTarget = /* residual target for diag_cg2d */
606     (PID.TID 0000.0001) 1.000000000000000E-08
607     (PID.TID 0000.0001) ;
608 jmc 1.1 (PID.TID 0000.0001) -----------------------------------------------------
609     (PID.TID 0000.0001) DIAGNOSTICS_READPARMS: active diagnostics summary:
610     (PID.TID 0000.0001) -----------------------------------------------------
611     (PID.TID 0000.0001) -----------------------------------------------------
612     (PID.TID 0000.0001) DIAGNOSTICS_READPARMS: statistics diags. summary:
613     (PID.TID 0000.0001) -----------------------------------------------------
614     (PID.TID 0000.0001)
615     (PID.TID 0000.0001) SET_PARMS: done
616     (PID.TID 0000.0001) Enter INI_VERTICAL_GRID: setInterFDr= T ; setCenterDr= F
617     (PID.TID 0000.0001) %MON XC_max = 1.5875000000000E+01
618     (PID.TID 0000.0001) %MON XC_min = 1.2500000000000E-01
619     (PID.TID 0000.0001) %MON XC_mean = 8.0000000000000E+00
620     (PID.TID 0000.0001) %MON XC_sd = 4.6182383004778E+00
621     (PID.TID 0000.0001) %MON XG_max = 1.5750000000000E+01
622     (PID.TID 0000.0001) %MON XG_min = 0.0000000000000E+00
623     (PID.TID 0000.0001) %MON XG_mean = 7.8750000000000E+00
624     (PID.TID 0000.0001) %MON XG_sd = 4.6182383004778E+00
625     (PID.TID 0000.0001) %MON DXC_max = 2.5164565846439E+04
626     (PID.TID 0000.0001) %MON DXC_min = 2.1016408153767E+04
627     (PID.TID 0000.0001) %MON DXC_mean = 2.3234669796800E+04
628     (PID.TID 0000.0001) %MON DXC_sd = 1.2196670107312E+03
629     (PID.TID 0000.0001) %MON DXF_max = 2.5164565846439E+04
630     (PID.TID 0000.0001) %MON DXF_min = 2.1016408153767E+04
631     (PID.TID 0000.0001) %MON DXF_mean = 2.3234669796800E+04
632     (PID.TID 0000.0001) %MON DXF_sd = 1.2196670107312E+03
633     (PID.TID 0000.0001) %MON DXG_max = 2.5190252460503E+04
634     (PID.TID 0000.0001) %MON DXG_min = 2.1056040215949E+04
635     (PID.TID 0000.0001) %MON DXG_mean = 2.3267533068028E+04
636     (PID.TID 0000.0001) %MON DXG_sd = 1.2155846267781E+03
637     (PID.TID 0000.0001) %MON DXV_max = 2.5190252460503E+04
638     (PID.TID 0000.0001) %MON DXV_min = 2.1056040215949E+04
639     (PID.TID 0000.0001) %MON DXV_mean = 2.3267533068028E+04
640     (PID.TID 0000.0001) %MON DXV_sd = 1.2155846267781E+03
641     (PID.TID 0000.0001) %MON YC_max = 4.0875000000000E+01
642     (PID.TID 0000.0001) %MON YC_min = 2.5125000000000E+01
643     (PID.TID 0000.0001) %MON YC_mean = 3.3000000000000E+01
644     (PID.TID 0000.0001) %MON YC_sd = 4.6182383004778E+00
645     (PID.TID 0000.0001) %MON YG_max = 4.0750000000000E+01
646     (PID.TID 0000.0001) %MON YG_min = 2.5000000000000E+01
647     (PID.TID 0000.0001) %MON YG_mean = 3.2875000000000E+01
648     (PID.TID 0000.0001) %MON YG_sd = 4.6182383004778E+00
649     (PID.TID 0000.0001) %MON DYC_max = 2.7794368338010E+04
650     (PID.TID 0000.0001) %MON DYC_min = 2.7794368338010E+04
651 heimbach 1.4 (PID.TID 0000.0001) %MON DYC_mean = 2.7794368338010E+04
652     (PID.TID 0000.0001) %MON DYC_sd = 4.7293724492192E-10
653 jmc 1.1 (PID.TID 0000.0001) %MON DYF_max = 2.7794368338010E+04
654     (PID.TID 0000.0001) %MON DYF_min = 2.7794368338010E+04
655 heimbach 1.4 (PID.TID 0000.0001) %MON DYF_mean = 2.7794368338010E+04
656     (PID.TID 0000.0001) %MON DYF_sd = 4.7293724492192E-10
657 jmc 1.1 (PID.TID 0000.0001) %MON DYG_max = 2.7794368338010E+04
658     (PID.TID 0000.0001) %MON DYG_min = 2.7794368338010E+04
659 heimbach 1.4 (PID.TID 0000.0001) %MON DYG_mean = 2.7794368338010E+04
660     (PID.TID 0000.0001) %MON DYG_sd = 4.7293724492192E-10
661 jmc 1.1 (PID.TID 0000.0001) %MON DYU_max = 2.7794368338010E+04
662     (PID.TID 0000.0001) %MON DYU_min = 2.7794368338010E+04
663 heimbach 1.4 (PID.TID 0000.0001) %MON DYU_mean = 2.7794368338010E+04
664     (PID.TID 0000.0001) %MON DYU_sd = 4.7293724492192E-10
665 jmc 1.1 (PID.TID 0000.0001) %MON RA_max = 6.9943265735959E+08
666     (PID.TID 0000.0001) %MON RA_min = 5.8413732598622E+08
667     (PID.TID 0000.0001) %MON RA_mean = 6.4579245825328E+08
668     (PID.TID 0000.0001) %MON RA_sd = 3.3899847254083E+07
669     (PID.TID 0000.0001) %MON RAW_max = 6.9943265735959E+08
670     (PID.TID 0000.0001) %MON RAW_min = 5.8413732598622E+08
671     (PID.TID 0000.0001) %MON RAW_mean = 6.4579245825328E+08
672     (PID.TID 0000.0001) %MON RAW_sd = 3.3899847254083E+07
673     (PID.TID 0000.0001) %MON RAS_max = 7.0014660000591E+08
674     (PID.TID 0000.0001) %MON RAS_min = 5.8523887324667E+08
675     (PID.TID 0000.0001) %MON RAS_mean = 6.4670587139401E+08
676 heimbach 1.4 (PID.TID 0000.0001) %MON RAS_sd = 3.3786380060804E+07
677 jmc 1.1 (PID.TID 0000.0001) %MON RAZ_max = 7.0014660000591E+08
678     (PID.TID 0000.0001) %MON RAZ_min = 5.8523887324667E+08
679     (PID.TID 0000.0001) %MON RAZ_mean = 6.4670587139401E+08
680 heimbach 1.4 (PID.TID 0000.0001) %MON RAZ_sd = 3.3786380060804E+07
681 jmc 1.1 (PID.TID 0000.0001) %MON AngleCS_max = 1.0000000000000E+00
682     (PID.TID 0000.0001) %MON AngleCS_min = 1.0000000000000E+00
683     (PID.TID 0000.0001) %MON AngleCS_mean = 1.0000000000000E+00
684     (PID.TID 0000.0001) %MON AngleCS_sd = 0.0000000000000E+00
685     (PID.TID 0000.0001) %MON AngleSN_max = 0.0000000000000E+00
686     (PID.TID 0000.0001) %MON AngleSN_min = 0.0000000000000E+00
687     (PID.TID 0000.0001) %MON AngleSN_mean = 0.0000000000000E+00
688     (PID.TID 0000.0001) %MON AngleSN_sd = 0.0000000000000E+00
689 jmc 1.7 (PID.TID 0000.0001)
690     (PID.TID 0000.0001) // =======================================================
691     (PID.TID 0000.0001) // Calendar configuration >>> START <<<
692     (PID.TID 0000.0001) // =======================================================
693     (PID.TID 0000.0001)
694     (PID.TID 0000.0001) modelstart = /* Start time of the model integration [s] */
695     (PID.TID 0000.0001) 0.000000000000000E+00
696     (PID.TID 0000.0001) ;
697     (PID.TID 0000.0001) modelend = /* End time of the model integration [s] */
698     (PID.TID 0000.0001) 4.800000000000000E+03
699     (PID.TID 0000.0001) ;
700     (PID.TID 0000.0001) modelstep = /* Time interval for a model forward step [s] */
701     (PID.TID 0000.0001) 1.200000000000000E+03
702     (PID.TID 0000.0001) ;
703     (PID.TID 0000.0001) usingGregorianCalendar= /* Calendar Type: Gregorian Calendar */
704     (PID.TID 0000.0001) T
705     (PID.TID 0000.0001) ;
706     (PID.TID 0000.0001) usingJulianCalendar = /* Calendar Type: Julian Calendar */
707     (PID.TID 0000.0001) F
708     (PID.TID 0000.0001) ;
709     (PID.TID 0000.0001) usingModelCalendar = /* Calendar Type: Model Calendar */
710     (PID.TID 0000.0001) F
711     (PID.TID 0000.0001) ;
712     (PID.TID 0000.0001) modelstartdate YYYYMMDD = /* Model start date YYYY-MM-DD */
713     (PID.TID 0000.0001) 20070101
714     (PID.TID 0000.0001) ;
715     (PID.TID 0000.0001) modelstartdate HHMMSS = /* Model start date HH-MM-SS */
716     (PID.TID 0000.0001) 0
717     (PID.TID 0000.0001) ;
718     (PID.TID 0000.0001) modelenddate YYYYMMDD = /* Model end date YYYY-MM-DD */
719     (PID.TID 0000.0001) 20070101
720     (PID.TID 0000.0001) ;
721     (PID.TID 0000.0001) modelenddate HHMMSS = /* Model end date HH-MM-SS */
722     (PID.TID 0000.0001) 12000
723     (PID.TID 0000.0001) ;
724     (PID.TID 0000.0001) intyears = /* Number of calendar years affected by the integration */
725     (PID.TID 0000.0001) 1
726     (PID.TID 0000.0001) ;
727     (PID.TID 0000.0001) intmonths= /* Number of calendar months affected by the integration */
728     (PID.TID 0000.0001) 1
729     (PID.TID 0000.0001) ;
730     (PID.TID 0000.0001) intdays = /* Number of calendar days affected by the integration */
731     (PID.TID 0000.0001) 1
732     (PID.TID 0000.0001) ;
733     (PID.TID 0000.0001) modeliter0 = /* Base timestep number */
734     (PID.TID 0000.0001) 0
735     (PID.TID 0000.0001) ;
736     (PID.TID 0000.0001) modeliterend = /* Final timestep number */
737     (PID.TID 0000.0001) 4
738     (PID.TID 0000.0001) ;
739     (PID.TID 0000.0001) modelintsteps= /* Number of model timesteps */
740     (PID.TID 0000.0001) 4
741     (PID.TID 0000.0001) ;
742     (PID.TID 0000.0001)
743     (PID.TID 0000.0001) // =======================================================
744     (PID.TID 0000.0001) // Calendar configuration >>> END <<<
745     (PID.TID 0000.0001) // =======================================================
746     (PID.TID 0000.0001)
747 jmc 1.1 (PID.TID 0000.0001) GAD_INIT_FIXED: GAD_OlMinSize= 2 0 1
748     (PID.TID 0000.0001)
749     (PID.TID 0000.0001) // ===================================
750     (PID.TID 0000.0001) // GAD parameters :
751     (PID.TID 0000.0001) // ===================================
752     (PID.TID 0000.0001) tempAdvScheme = /* Temp. Horiz.Advection scheme selector */
753     (PID.TID 0000.0001) 30
754     (PID.TID 0000.0001) ;
755     (PID.TID 0000.0001) tempVertAdvScheme = /* Temp. Vert. Advection scheme selector */
756     (PID.TID 0000.0001) 30
757     (PID.TID 0000.0001) ;
758     (PID.TID 0000.0001) tempMultiDimAdvec = /* use Muti-Dim Advec method for Temp */
759     (PID.TID 0000.0001) F
760     (PID.TID 0000.0001) ;
761     (PID.TID 0000.0001) tempSOM_Advection = /* use 2nd Order Moment Advection for Temp */
762     (PID.TID 0000.0001) F
763     (PID.TID 0000.0001) ;
764     (PID.TID 0000.0001) AdamsBashforthGt = /* apply Adams-Bashforth extrapolation on Gt */
765     (PID.TID 0000.0001) F
766     (PID.TID 0000.0001) ;
767     (PID.TID 0000.0001) AdamsBashforth_T = /* apply Adams-Bashforth extrapolation on Temp */
768     (PID.TID 0000.0001) F
769     (PID.TID 0000.0001) ;
770     (PID.TID 0000.0001) saltAdvScheme = /* Salt. Horiz.advection scheme selector */
771     (PID.TID 0000.0001) 30
772     (PID.TID 0000.0001) ;
773     (PID.TID 0000.0001) saltVertAdvScheme = /* Salt. Vert. Advection scheme selector */
774     (PID.TID 0000.0001) 30
775     (PID.TID 0000.0001) ;
776     (PID.TID 0000.0001) saltMultiDimAdvec = /* use Muti-Dim Advec method for Salt */
777     (PID.TID 0000.0001) F
778     (PID.TID 0000.0001) ;
779     (PID.TID 0000.0001) saltSOM_Advection = /* use 2nd Order Moment Advection for Salt */
780     (PID.TID 0000.0001) F
781     (PID.TID 0000.0001) ;
782     (PID.TID 0000.0001) AdamsBashforthGs = /* apply Adams-Bashforth extrapolation on Gs */
783     (PID.TID 0000.0001) F
784     (PID.TID 0000.0001) ;
785     (PID.TID 0000.0001) AdamsBashforth_S = /* apply Adams-Bashforth extrapolation on Salt */
786     (PID.TID 0000.0001) F
787     (PID.TID 0000.0001) ;
788     (PID.TID 0000.0001) // ===================================
789     (PID.TID 0000.0001)
790     (PID.TID 0000.0001) // =======================================================
791 jmc 1.7 (PID.TID 0000.0001) // External forcing (EXF) configuration >>> START <<<
792 jmc 1.1 (PID.TID 0000.0001) // =======================================================
793     (PID.TID 0000.0001)
794     (PID.TID 0000.0001) EXF general parameters:
795     (PID.TID 0000.0001)
796     (PID.TID 0000.0001) exf_iprec = /* exf file precision */
797     (PID.TID 0000.0001) 32
798     (PID.TID 0000.0001) ;
799     (PID.TID 0000.0001) useExfYearlyFields = /* add extension _YEAR to input file names */
800     (PID.TID 0000.0001) F
801     (PID.TID 0000.0001) ;
802     (PID.TID 0000.0001) twoDigitYear = /* use 2-digit year extension */
803     (PID.TID 0000.0001) F
804     (PID.TID 0000.0001) ;
805     (PID.TID 0000.0001) exf_verbose = /* print more messages to STDOUT */
806     (PID.TID 0000.0001) F
807     (PID.TID 0000.0001) ;
808     (PID.TID 0000.0001) useExfCheckRange = /* check for fields range */
809     (PID.TID 0000.0001) F
810     (PID.TID 0000.0001) ;
811     (PID.TID 0000.0001) exf_monFreq = /* EXF monitor frequency [ s ] */
812 jmc 1.2 (PID.TID 0000.0001) 0.000000000000000E+00
813 jmc 1.1 (PID.TID 0000.0001) ;
814     (PID.TID 0000.0001) repeatPeriod = /* period for cycling forcing dataset [ s ] */
815     (PID.TID 0000.0001) 0.000000000000000E+00
816     (PID.TID 0000.0001) ;
817     (PID.TID 0000.0001) climTempFreeze= /* Minimum climatological temperature [deg.C] */
818     (PID.TID 0000.0001) -1.900000000000000E+00
819     (PID.TID 0000.0001) ;
820     (PID.TID 0000.0001) windStressMax = /* Maximum absolute windstress [ Pa ] */
821     (PID.TID 0000.0001) 2.000000000000000E+00
822     (PID.TID 0000.0001) ;
823     (PID.TID 0000.0001) stressIsOnCgrid = /* set u,v_stress on Arakawa C-grid */
824     (PID.TID 0000.0001) F
825     (PID.TID 0000.0001) ;
826     (PID.TID 0000.0001) cen2kel = /* conversion of deg. Centigrade to Kelvin [K] */
827     (PID.TID 0000.0001) 2.731500000000000E+02
828     (PID.TID 0000.0001) ;
829     (PID.TID 0000.0001) gravity_mks= /* gravitational acceleration [m/s^2] */
830     (PID.TID 0000.0001) 9.810000000000000E+00
831     (PID.TID 0000.0001) ;
832     (PID.TID 0000.0001) atmrho = /* mean atmospheric density [kg/m^3] */
833     (PID.TID 0000.0001) 1.200000000000000E+00
834     (PID.TID 0000.0001) ;
835     (PID.TID 0000.0001) atmcp = /* mean atmospheric specific heat [J/kg/K] */
836     (PID.TID 0000.0001) 1.005000000000000E+03
837     (PID.TID 0000.0001) ;
838     (PID.TID 0000.0001) flamb = /* latent heat of evaporation [J/kg] */
839     (PID.TID 0000.0001) 2.500000000000000E+06
840     (PID.TID 0000.0001) ;
841     (PID.TID 0000.0001) flami = /* latent heat of pure-ice melting [J/kg] */
842     (PID.TID 0000.0001) 3.340000000000000E+05
843     (PID.TID 0000.0001) ;
844     (PID.TID 0000.0001) cvapor_fac = /* const. for Saturation calculation [?] */
845     (PID.TID 0000.0001) 6.403800000000000E+05
846     (PID.TID 0000.0001) ;
847     (PID.TID 0000.0001) cvapor_exp = /* const. for Saturation calculation [?] */
848     (PID.TID 0000.0001) 5.107400000000000E+03
849     (PID.TID 0000.0001) ;
850     (PID.TID 0000.0001) cvapor_fac_ice= /* const. for Saturation calculation [?] */
851     (PID.TID 0000.0001) 1.163780000000000E+07
852     (PID.TID 0000.0001) ;
853     (PID.TID 0000.0001) cvapor_exp_ice= /* const. for Saturation calculation [?] */
854     (PID.TID 0000.0001) 5.897800000000000E+03
855     (PID.TID 0000.0001) ;
856     (PID.TID 0000.0001) humid_fac = /* humidity coef. in virtual temp. [(kg/kg)^-1] */
857     (PID.TID 0000.0001) 6.060000000000000E-01
858     (PID.TID 0000.0001) ;
859     (PID.TID 0000.0001) gamma_blk = /* adiabatic lapse rate [?] */
860     (PID.TID 0000.0001) 1.000000000000000E-02
861     (PID.TID 0000.0001) ;
862     (PID.TID 0000.0001) saltsat = /* reduction of Qsat over salty water [-] */
863     (PID.TID 0000.0001) 9.800000000000000E-01
864     (PID.TID 0000.0001) ;
865     (PID.TID 0000.0001) noNegativeEvap = /* prevent negative Evaporation */
866     (PID.TID 0000.0001) F
867     (PID.TID 0000.0001) ;
868     (PID.TID 0000.0001) sstExtrapol = /* extrapolation coeff from lev. 1 & 2 to surf [-] */
869     (PID.TID 0000.0001) 0.000000000000000E+00
870     (PID.TID 0000.0001) ;
871     (PID.TID 0000.0001) cDrag_1 = /* coef used in drag calculation [?] */
872     (PID.TID 0000.0001) 2.700000000000000E-03
873     (PID.TID 0000.0001) ;
874     (PID.TID 0000.0001) cDrag_2 = /* coef used in drag calculation [?] */
875     (PID.TID 0000.0001) 1.420000000000000E-04
876     (PID.TID 0000.0001) ;
877     (PID.TID 0000.0001) cDrag_3 = /* coef used in drag calculation [?] */
878     (PID.TID 0000.0001) 7.640000000000000E-05
879     (PID.TID 0000.0001) ;
880     (PID.TID 0000.0001) cStanton_1 = /* coef used in Stanton number calculation [?] */
881     (PID.TID 0000.0001) 3.270000000000000E-02
882     (PID.TID 0000.0001) ;
883     (PID.TID 0000.0001) cStanton_2 = /* coef used in Stanton number calculation [?] */
884     (PID.TID 0000.0001) 1.800000000000000E-02
885     (PID.TID 0000.0001) ;
886     (PID.TID 0000.0001) cDalton = /* coef used in Dalton number calculation [?] */
887     (PID.TID 0000.0001) 3.460000000000000E-02
888     (PID.TID 0000.0001) ;
889     (PID.TID 0000.0001) exf_scal_BulkCdn= /* Drag coefficient scaling factor [-] */
890     (PID.TID 0000.0001) 1.000000000000000E+00
891     (PID.TID 0000.0001) ;
892     (PID.TID 0000.0001) zolmin = /* minimum stability parameter [?] */
893     (PID.TID 0000.0001) -1.000000000000000E+02
894     (PID.TID 0000.0001) ;
895     (PID.TID 0000.0001) psim_fac = /* coef used in turbulent fluxes calculation [-] */
896     (PID.TID 0000.0001) 5.000000000000000E+00
897     (PID.TID 0000.0001) ;
898     (PID.TID 0000.0001) zref = /* reference height [ m ] */
899     (PID.TID 0000.0001) 1.000000000000000E+01
900     (PID.TID 0000.0001) ;
901     (PID.TID 0000.0001) hu = /* height of mean wind [ m ] */
902     (PID.TID 0000.0001) 1.000000000000000E+01
903     (PID.TID 0000.0001) ;
904     (PID.TID 0000.0001) ht = /* height of mean temperature [ m ] */
905     (PID.TID 0000.0001) 2.000000000000000E+00
906     (PID.TID 0000.0001) ;
907     (PID.TID 0000.0001) hq = /* height of mean spec.humidity [ m ] */
908     (PID.TID 0000.0001) 2.000000000000000E+00
909     (PID.TID 0000.0001) ;
910     (PID.TID 0000.0001) uMin = /* minimum wind speed [m/s] */
911     (PID.TID 0000.0001) 5.000000000000000E-01
912     (PID.TID 0000.0001) ;
913     (PID.TID 0000.0001) useStabilityFct_overIce= /* transfert Coeffs over sea-ice depend on stability */
914     (PID.TID 0000.0001) F
915     (PID.TID 0000.0001) ;
916     (PID.TID 0000.0001) exf_iceCd = /* drag coefficient over sea-ice (fixed) [-] */
917     (PID.TID 0000.0001) 1.630000000000000E-03
918     (PID.TID 0000.0001) ;
919     (PID.TID 0000.0001) exf_iceCe = /* transfert coeff. over sea-ice, for Evap (fixed) [-] */
920     (PID.TID 0000.0001) 1.630000000000000E-03
921     (PID.TID 0000.0001) ;
922     (PID.TID 0000.0001) exf_iceCh = /* transfert coeff. over sea-ice, Sens.Heat.(fixed)[-] */
923     (PID.TID 0000.0001) 1.630000000000000E-03
924     (PID.TID 0000.0001) ;
925     (PID.TID 0000.0001) exf_albedo = /* Sea-water albedo [-] */
926     (PID.TID 0000.0001) 1.000000000000000E-01
927     (PID.TID 0000.0001) ;
928     (PID.TID 0000.0001) useExfZenAlbedo = /* Sea-water albedo varies with zenith angle */
929     (PID.TID 0000.0001) F
930     (PID.TID 0000.0001) ;
931     (PID.TID 0000.0001) select_ZenAlbedo = /* Sea-water albedo computation method */
932     (PID.TID 0000.0001) 0
933     (PID.TID 0000.0001) ;
934     (PID.TID 0000.0001) useExfZenIncoming = /* compute incoming solar radiation */
935     (PID.TID 0000.0001) F
936     (PID.TID 0000.0001) ;
937     (PID.TID 0000.0001) ocean_emissivity = /* longwave ocean-surface emissivity [-] */
938     (PID.TID 0000.0001) 9.700176366843034E-01
939     (PID.TID 0000.0001) ;
940     (PID.TID 0000.0001) ice_emissivity = /* longwave seaice emissivity [-] */
941     (PID.TID 0000.0001) 9.500000000000000E-01
942     (PID.TID 0000.0001) ;
943     (PID.TID 0000.0001) snow_emissivity = /* longwave snow emissivity [-] */
944     (PID.TID 0000.0001) 9.500000000000000E-01
945     (PID.TID 0000.0001) ;
946     (PID.TID 0000.0001)
947     (PID.TID 0000.0001) EXF main CPP flags:
948     (PID.TID 0000.0001)
949 jmc 1.7 (PID.TID 0000.0001) // USE_EXF_INTERPOLATION: NOT defined
950 jmc 1.1 (PID.TID 0000.0001) // ALLOW_ATM_TEMP: NOT defined
951 jmc 1.7 (PID.TID 0000.0001) // ALLOW_ATM_WIND (useAtmWind): NOT defined
952 jmc 1.1 (PID.TID 0000.0001) // ALLOW_DOWNWARD_RADIATION: NOT defined
953     (PID.TID 0000.0001) // ALLOW_BULKFORMULAE: NOT defined
954     (PID.TID 0000.0001)
955     (PID.TID 0000.0001) Zonal wind stress forcing starts at 0.
956     (PID.TID 0000.0001) Zonal wind stress forcing period is 0.
957     (PID.TID 0000.0001) Zonal wind stress forcing is read from file:
958     (PID.TID 0000.0001) >> <<
959     (PID.TID 0000.0001)
960     (PID.TID 0000.0001) Meridional wind stress forcing starts at 0.
961     (PID.TID 0000.0001) Meridional wind stress forcing period is 0.
962     (PID.TID 0000.0001) Meridional wind stress forcing is read from file:
963     (PID.TID 0000.0001) >> <<
964     (PID.TID 0000.0001)
965     (PID.TID 0000.0001) Heat flux forcing starts at 0.
966     (PID.TID 0000.0001) Heat flux forcing period is 0.
967     (PID.TID 0000.0001) Heat flux forcing is read from file:
968     (PID.TID 0000.0001) >> <<
969     (PID.TID 0000.0001)
970     (PID.TID 0000.0001) Salt flux forcing starts at 0.
971     (PID.TID 0000.0001) Salt flux forcing period is 0.
972     (PID.TID 0000.0001) Salt flux forcing is read from file:
973     (PID.TID 0000.0001) >> <<
974     (PID.TID 0000.0001)
975     (PID.TID 0000.0001) Net shortwave flux forcing starts at 0.
976     (PID.TID 0000.0001) Net shortwave flux forcing period is 0.
977     (PID.TID 0000.0001) Net shortwave flux forcing is read from file:
978     (PID.TID 0000.0001) >> <<
979     (PID.TID 0000.0001)
980     (PID.TID 0000.0001) // EXF_READ_EVAP: NOT defined
981     (PID.TID 0000.0001)
982     (PID.TID 0000.0001) // ALLOW_RUNOFF: NOT defined
983     (PID.TID 0000.0001)
984     (PID.TID 0000.0001) Atmospheric pressure forcing starts at 0.
985     (PID.TID 0000.0001) Atmospheric pressure forcing period is 0.
986     (PID.TID 0000.0001) Atmospheric pressureforcing is read from file:
987     (PID.TID 0000.0001) >> <<
988     (PID.TID 0000.0001)
989     (PID.TID 0000.0001) // =======================================================
990 jmc 1.7 (PID.TID 0000.0001) // External forcing (EXF) climatology configuration :
991 jmc 1.1 (PID.TID 0000.0001) // =======================================================
992     (PID.TID 0000.0001)
993     (PID.TID 0000.0001) // ALLOW_CLIMSST_RELAXATION: NOT defined
994     (PID.TID 0000.0001) // ALLOW_CLIMSSS_RELAXATION: NOT defined
995     (PID.TID 0000.0001)
996     (PID.TID 0000.0001) // =======================================================
997 jmc 1.7 (PID.TID 0000.0001) // External forcing (EXF) configuration >>> END <<<
998 jmc 1.1 (PID.TID 0000.0001) // =======================================================
999     (PID.TID 0000.0001)
1000     (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.err
1001     (PID.TID 0000.0001) // =======================================================
1002     (PID.TID 0000.0001) // Parameter file "data.err"
1003     (PID.TID 0000.0001) // =======================================================
1004     (PID.TID 0000.0001) >1, 0.0001
1005     (PID.TID 0000.0001) >0.50000, 0.100000, 0.1
1006     (PID.TID 0000.0001) >0.50000, 0.100000, 0.1
1007     (PID.TID 0000.0001) >0.50000, 0.100000, 0.1
1008     (PID.TID 0000.0001) >0.50000, 0.100000, 0.1
1009     (PID.TID 0000.0001) >0.50000, 0.100000, 0.1
1010     (PID.TID 0000.0001) >0.50000, 0.100000, 0.1
1011     (PID.TID 0000.0001) >0.50000, 0.100000, 0.1
1012     (PID.TID 0000.0001) >0.50000, 0.100000, 0.1
1013     (PID.TID 0000.0001)
1014     (PID.TID 0000.0001)
1015     (PID.TID 0000.0001) // =======================================================
1016     (PID.TID 0000.0001) // ECCO cost function configuration >>> START <<<
1017     (PID.TID 0000.0001) // =======================================================
1018     (PID.TID 0000.0001)
1019     (PID.TID 0000.0001) Multipliers for the indivdual cost function contributions:
1020     (PID.TID 0000.0001)
1021     (PID.TID 0000.0001) Net heat flux: 0.000E+00
1022     (PID.TID 0000.0001) Salt flux: 0.000E+00
1023     (PID.TID 0000.0001) Zonal wind stress: 0.000E+00
1024     (PID.TID 0000.0001) Meridional wind stress: 0.000E+00
1025     (PID.TID 0000.0001) Mean sea surface height: 0.000E+00
1026     (PID.TID 0000.0001) Sea surface height anomalies: 0.100E+01
1027     (PID.TID 0000.0001) Temperature Lev.: 0.100E+01
1028     (PID.TID 0000.0001) Salinity Lev.: 0.000E+00
1029     (PID.TID 0000.0001) Temperature ini.: 0.100E+01
1030     (PID.TID 0000.0001) Salinity ini.: 0.000E+00
1031     (PID.TID 0000.0001) Sea level ini.: 0.000E+00
1032     (PID.TID 0000.0001) zonal velocity ini.: 0.000E+00
1033     (PID.TID 0000.0001) merid velocity ini.: 0.000E+00
1034     (PID.TID 0000.0001) TMI Sea surface temperature: 0.000E+00
1035     (PID.TID 0000.0001) Sea surface temperature: 0.000E+00
1036     (PID.TID 0000.0001) Sea surface salinity: 0.000E+00
1037     (PID.TID 0000.0001) CTD temperature: 0.000E+00
1038     (PID.TID 0000.0001) CTD salinity: 0.000E+00
1039     (PID.TID 0000.0001) CTD clim temperature: 0.000E+00
1040     (PID.TID 0000.0001) CTD clim salinity: 0.000E+00
1041     (PID.TID 0000.0001) XBT Temperature: 0.000E+00
1042     (PID.TID 0000.0001) ARGO Temperature: 0.000E+00
1043     (PID.TID 0000.0001) ARGO Salt: 0.000E+00
1044     (PID.TID 0000.0001) drifter velocities: 0.000E+00
1045     (PID.TID 0000.0001) drift between last and 1st year: 0.000E+00
1046     (PID.TID 0000.0001) drift between last and 1st year: 0.000E+00
1047     (PID.TID 0000.0001) Ageostrophic bdy flow: 0.000E+00
1048     (PID.TID 0000.0001) OB North: 0.100E+01
1049     (PID.TID 0000.0001) OB South: 0.100E+01
1050     (PID.TID 0000.0001) OB West: 0.100E+01
1051     (PID.TID 0000.0001) OB East: 0.100E+01
1052     (PID.TID 0000.0001)
1053     (PID.TID 0000.0001)
1054     (PID.TID 0000.0001) Temperature data are read from: FinalThetaObs.bin
1055     (PID.TID 0000.0001) Salinity data are read from:
1056     (PID.TID 0000.0001) ctrl-wet 1: nvarlength = 40960
1057 heimbach 1.4 (PID.TID 0000.0001) ctrl-wet 2: surface wet C = 1024
1058     (PID.TID 0000.0001) ctrl-wet 3: surface wet W = 1024
1059     (PID.TID 0000.0001) ctrl-wet 4: surface wet S = 1024
1060 jmc 1.1 (PID.TID 0000.0001) ctrl-wet 4a:surface wet V = 0
1061 heimbach 1.4 (PID.TID 0000.0001) ctrl-wet 5: 3D wet points = 8192
1062 jmc 1.1 (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 1 1
1063     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 2 0
1064     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 3 0
1065     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 4 0
1066     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 5 0
1067     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 6 0
1068     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 7 0
1069     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 8 0
1070     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 9 0
1071     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 10 0
1072     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 11 4
1073     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 12 4
1074     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 13 4
1075     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 14 4
1076     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 15 0
1077     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 16 0
1078     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 17 0
1079     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 18 0
1080     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 19 0
1081     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 20 0
1082     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 21 0
1083     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 22 0
1084     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 23 0
1085     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 24 0
1086     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 25 0
1087     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 26 0
1088     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 27 0
1089     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 28 0
1090     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 29 0
1091     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 30 0
1092     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 31 0
1093     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 32 0
1094     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 33 0
1095     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 34 0
1096     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 35 0
1097     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 36 0
1098     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 37 0
1099     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 38 0
1100     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 39 0
1101     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 40 0
1102     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 41 0
1103     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 42 0
1104     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 43 0
1105     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 44 0
1106     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 45 0
1107     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 46 0
1108     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 47 0
1109     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 48 0
1110     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 49 0
1111     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 50 0
1112     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 51 0
1113     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 52 0
1114     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 53 0
1115     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 54 0
1116     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 55 0
1117     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 56 0
1118     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 57 0
1119     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 58 0
1120     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 59 0
1121     (PID.TID 0000.0001) ctrl-wet 6: no recs for i = 60 0
1122 heimbach 1.4 (PID.TID 0000.0001) ctrl-wet 7: flux 16384
1123     (PID.TID 0000.0001) ctrl-wet 8: atmos 16384
1124     (PID.TID 0000.0001) ctrl-wet 9: surface wet obcsn = 0 0 0 0
1125     (PID.TID 0000.0001) ctrl-wet 10: surface wet obcss = 32 32 32 32
1126     (PID.TID 0000.0001) ctrl-wet 11: surface wet obcsw = 32 32 32 32
1127     (PID.TID 0000.0001) ctrl-wet 12: surface wet obcse = 0 0 0 0
1128 jmc 1.1 (PID.TID 0000.0001) ctrl-wet -------------------------------------------------
1129     (PID.TID 0000.0001) ctrl-wet 13: global nvarlength for Nr = 8 40960
1130     (PID.TID 0000.0001) ctrl-wet -------------------------------------------------
1131     (PID.TID 0000.0001) ctrl-wet 14: global nWet C/S/W/V k= 1 4096 4096 4096 0
1132     (PID.TID 0000.0001) ctrl-wet 14: global nWet C/S/W/V k= 2 4096 4096 4096 0
1133     (PID.TID 0000.0001) ctrl-wet 14: global nWet C/S/W/V k= 3 4096 4096 4096 0
1134     (PID.TID 0000.0001) ctrl-wet 14: global nWet C/S/W/V k= 4 4096 4096 4096 0
1135     (PID.TID 0000.0001) ctrl-wet 14: global nWet C/S/W/V k= 5 4096 4096 4096 0
1136     (PID.TID 0000.0001) ctrl-wet 14: global nWet C/S/W/V k= 6 4096 4096 4096 0
1137     (PID.TID 0000.0001) ctrl-wet 14: global nWet C/S/W/V k= 7 4096 4096 4096 0
1138     (PID.TID 0000.0001) ctrl-wet 14: global nWet C/S/W/V k= 8 4096 4096 4096 0
1139     (PID.TID 0000.0001) ctrl-wet -------------------------------------------------
1140     (PID.TID 0000.0001) ctrl-wet 15a: global obcsN T,S,U,V k= 1 64 64 64 64
1141     (PID.TID 0000.0001) ctrl-wet 15b: global obcsS T,S,U,V k= 1 64 64 64 64
1142     (PID.TID 0000.0001) ctrl-wet 15c: global obcsW T,S,U,V k= 1 64 64 64 64
1143     (PID.TID 0000.0001) ctrl-wet 15d: global obcsE T,S,U,V k= 1 64 64 64 64
1144     (PID.TID 0000.0001) ctrl-wet 15a: global obcsN T,S,U,V k= 2 64 64 64 64
1145     (PID.TID 0000.0001) ctrl-wet 15b: global obcsS T,S,U,V k= 2 64 64 64 64
1146     (PID.TID 0000.0001) ctrl-wet 15c: global obcsW T,S,U,V k= 2 64 64 64 64
1147     (PID.TID 0000.0001) ctrl-wet 15d: global obcsE T,S,U,V k= 2 64 64 64 64
1148     (PID.TID 0000.0001) ctrl-wet 15a: global obcsN T,S,U,V k= 3 64 64 64 64
1149     (PID.TID 0000.0001) ctrl-wet 15b: global obcsS T,S,U,V k= 3 64 64 64 64
1150     (PID.TID 0000.0001) ctrl-wet 15c: global obcsW T,S,U,V k= 3 64 64 64 64
1151     (PID.TID 0000.0001) ctrl-wet 15d: global obcsE T,S,U,V k= 3 64 64 64 64
1152     (PID.TID 0000.0001) ctrl-wet 15a: global obcsN T,S,U,V k= 4 64 64 64 64
1153     (PID.TID 0000.0001) ctrl-wet 15b: global obcsS T,S,U,V k= 4 64 64 64 64
1154     (PID.TID 0000.0001) ctrl-wet 15c: global obcsW T,S,U,V k= 4 64 64 64 64
1155     (PID.TID 0000.0001) ctrl-wet 15d: global obcsE T,S,U,V k= 4 64 64 64 64
1156     (PID.TID 0000.0001) ctrl-wet 15a: global obcsN T,S,U,V k= 5 64 64 64 64
1157     (PID.TID 0000.0001) ctrl-wet 15b: global obcsS T,S,U,V k= 5 64 64 64 64
1158     (PID.TID 0000.0001) ctrl-wet 15c: global obcsW T,S,U,V k= 5 64 64 64 64
1159     (PID.TID 0000.0001) ctrl-wet 15d: global obcsE T,S,U,V k= 5 64 64 64 64
1160     (PID.TID 0000.0001) ctrl-wet 15a: global obcsN T,S,U,V k= 6 64 64 64 64
1161     (PID.TID 0000.0001) ctrl-wet 15b: global obcsS T,S,U,V k= 6 64 64 64 64
1162     (PID.TID 0000.0001) ctrl-wet 15c: global obcsW T,S,U,V k= 6 64 64 64 64
1163     (PID.TID 0000.0001) ctrl-wet 15d: global obcsE T,S,U,V k= 6 64 64 64 64
1164     (PID.TID 0000.0001) ctrl-wet 15a: global obcsN T,S,U,V k= 7 64 64 64 64
1165     (PID.TID 0000.0001) ctrl-wet 15b: global obcsS T,S,U,V k= 7 64 64 64 64
1166     (PID.TID 0000.0001) ctrl-wet 15c: global obcsW T,S,U,V k= 7 64 64 64 64
1167     (PID.TID 0000.0001) ctrl-wet 15d: global obcsE T,S,U,V k= 7 64 64 64 64
1168     (PID.TID 0000.0001) ctrl-wet 15a: global obcsN T,S,U,V k= 8 64 64 64 64
1169     (PID.TID 0000.0001) ctrl-wet 15b: global obcsS T,S,U,V k= 8 64 64 64 64
1170     (PID.TID 0000.0001) ctrl-wet 15c: global obcsW T,S,U,V k= 8 64 64 64 64
1171     (PID.TID 0000.0001) ctrl-wet 15d: global obcsE T,S,U,V k= 8 64 64 64 64
1172     (PID.TID 0000.0001) ctrl-wet -------------------------------------------------
1173     (PID.TID 0000.0001) ctrl-wet 16a: global SUM(K) obcsN T,S,U,V 512 512 512 512
1174     (PID.TID 0000.0001) ctrl-wet 16b: global SUM(K) obcsS T,S,U,V 512 512 512 512
1175     (PID.TID 0000.0001) ctrl-wet 16c: global SUM(K) obcsW T,S,U,V 512 512 512 512
1176     (PID.TID 0000.0001) ctrl-wet 16d: global SUM(K) obcsE T,S,U,V 512 512 512 512
1177     (PID.TID 0000.0001) ctrl-wet -------------------------------------------------
1178     (PID.TID 0000.0001) ctrl_init: no. of control variables: 5
1179     (PID.TID 0000.0001) ctrl_init: control vector length: 40960
1180     (PID.TID 0000.0001) ------------------------------------------------------------
1181     (PID.TID 0000.0001) DIAGNOSTICS_SET_LEVELS: done
1182 jmc 1.7 (PID.TID 0000.0001) Total Nb of available Diagnostics: ndiagt= 192
1183 jmc 1.3 (PID.TID 0000.0001) write list of available Diagnostics to file: available_diagnostics.log
1184 jmc 1.1 (PID.TID 0000.0001) space allocated for all diagnostics: 0 levels
1185     (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: done
1186     (PID.TID 0000.0001) ------------------------------------------------------------
1187     (PID.TID 0000.0001) DIAGSTATS_SET_REGIONS: define no region
1188     (PID.TID 0000.0001) ------------------------------------------------------------
1189     (PID.TID 0000.0001) space allocated for all stats-diags: 0 levels
1190     (PID.TID 0000.0001) DIAGSTATS_SET_POINTERS: done
1191     (PID.TID 0000.0001) ------------------------------------------------------------
1192     (PID.TID 0000.0001) %MON fCori_max = 9.5180214213275E-05
1193     (PID.TID 0000.0001) %MON fCori_min = 6.1754768397872E-05
1194 heimbach 1.4 (PID.TID 0000.0001) %MON fCori_mean = 7.8957462017157E-05
1195 jmc 1.1 (PID.TID 0000.0001) %MON fCori_sd = 9.8155346684319E-06
1196     (PID.TID 0000.0001) %MON fCoriG_max = 9.4940057541481E-05
1197     (PID.TID 0000.0001) %MON fCoriG_min = 6.1467334553587E-05
1198 heimbach 1.4 (PID.TID 0000.0001) %MON fCoriG_mean = 7.8692019555311E-05
1199 jmc 1.1 (PID.TID 0000.0001) %MON fCoriG_sd = 9.8293922008013E-06
1200     (PID.TID 0000.0001) %MON fCoriCos_max = 1.3168270981915E-04
1201     (PID.TID 0000.0001) %MON fCoriCos_min = 1.0997597150061E-04
1202     (PID.TID 0000.0001) %MON fCoriCos_mean = 1.2158382939194E-04
1203     (PID.TID 0000.0001) %MON fCoriCos_sd = 6.3823496113618E-06
1204 jmc 1.2 (PID.TID 0000.0001) INI_CG2D: CG2D normalisation factor = 1.8974682031179044E-04
1205 jmc 1.1 (PID.TID 0000.0001)
1206     (PID.TID 0000.0001) // =======================================================
1207     (PID.TID 0000.0001) // Model configuration
1208     (PID.TID 0000.0001) // =======================================================
1209     (PID.TID 0000.0001) //
1210     (PID.TID 0000.0001) // "Physical" paramters ( PARM01 in namelist )
1211     (PID.TID 0000.0001) //
1212     (PID.TID 0000.0001) buoyancyRelation = /* Type of relation to get Buoyancy */
1213     (PID.TID 0000.0001) 'OCEANIC'
1214     (PID.TID 0000.0001) ;
1215     (PID.TID 0000.0001) fluidIsAir = /* fluid major constituent is Air */
1216     (PID.TID 0000.0001) F
1217     (PID.TID 0000.0001) ;
1218     (PID.TID 0000.0001) fluidIsWater = /* fluid major constituent is Water */
1219     (PID.TID 0000.0001) T
1220     (PID.TID 0000.0001) ;
1221     (PID.TID 0000.0001) usingPCoords = /* use p (or p*) vertical coordinate */
1222     (PID.TID 0000.0001) F
1223     (PID.TID 0000.0001) ;
1224     (PID.TID 0000.0001) usingZCoords = /* use z (or z*) vertical coordinate */
1225     (PID.TID 0000.0001) T
1226     (PID.TID 0000.0001) ;
1227     (PID.TID 0000.0001) tRef = /* Reference temperature profile ( oC or K ) */
1228     (PID.TID 0000.0001) 2.000000000000000E+01, /* K = 1 */
1229     (PID.TID 0000.0001) 1.600000000000000E+01, /* K = 2 */
1230     (PID.TID 0000.0001) 1.200000000000000E+01, /* K = 3 */
1231     (PID.TID 0000.0001) 1.000000000000000E+01, /* K = 4 */
1232     (PID.TID 0000.0001) 9.000000000000000E+00, /* K = 5 */
1233     (PID.TID 0000.0001) 8.000000000000000E+00, /* K = 6 */
1234     (PID.TID 0000.0001) 7.000000000000000E+00, /* K = 7 */
1235     (PID.TID 0000.0001) 6.000000000000000E+00 /* K = 8 */
1236     (PID.TID 0000.0001) ;
1237     (PID.TID 0000.0001) sRef = /* Reference salinity profile ( psu ) */
1238     (PID.TID 0000.0001) 8 @ 3.500000000000000E+01 /* K = 1: 8 */
1239     (PID.TID 0000.0001) ;
1240 jmc 1.7 (PID.TID 0000.0001) useStrainTensionVisc= /* Use StrainTension Form of Viscous Operator */
1241     (PID.TID 0000.0001) F
1242 jmc 1.1 (PID.TID 0000.0001) ;
1243 jmc 1.7 (PID.TID 0000.0001) useVariableVisc = /* Use variable horizontal viscosity */
1244     (PID.TID 0000.0001) F
1245 jmc 1.1 (PID.TID 0000.0001) ;
1246 jmc 1.7 (PID.TID 0000.0001) useHarmonicVisc = /* Use harmonic horizontal viscosity */
1247     (PID.TID 0000.0001) T
1248 jmc 1.1 (PID.TID 0000.0001) ;
1249 jmc 1.7 (PID.TID 0000.0001) useBiharmonicVisc= /* Use biharmonic horiz. viscosity */
1250 jmc 1.1 (PID.TID 0000.0001) F
1251     (PID.TID 0000.0001) ;
1252 jmc 1.7 (PID.TID 0000.0001) useSmag3D = /* Use isotropic 3-D Smagorinsky viscosity */
1253 jmc 1.1 (PID.TID 0000.0001) F
1254     (PID.TID 0000.0001) ;
1255 jmc 1.7 (PID.TID 0000.0001) viscAh = /* Lateral harmonic viscosity ( m^2/s ) */
1256     (PID.TID 0000.0001) 1.000000000000000E+01
1257 jmc 1.1 (PID.TID 0000.0001) ;
1258     (PID.TID 0000.0001) viscA4 = /* Lateral biharmonic viscosity ( m^4/s ) */
1259     (PID.TID 0000.0001) 0.000000000000000E+00
1260     (PID.TID 0000.0001) ;
1261     (PID.TID 0000.0001) no_slip_sides = /* Viscous BCs: No-slip sides */
1262     (PID.TID 0000.0001) F
1263     (PID.TID 0000.0001) ;
1264     (PID.TID 0000.0001) sideDragFactor = /* side-drag scaling factor (non-dim) */
1265     (PID.TID 0000.0001) 2.000000000000000E+00
1266     (PID.TID 0000.0001) ;
1267     (PID.TID 0000.0001) viscArNr = /* vertical profile of vertical viscosity ( m^2/s )*/
1268     (PID.TID 0000.0001) 8 @ 1.000000000000000E-04 /* K = 1: 8 */
1269     (PID.TID 0000.0001) ;
1270     (PID.TID 0000.0001) no_slip_bottom = /* Viscous BCs: No-slip bottom */
1271     (PID.TID 0000.0001) T
1272     (PID.TID 0000.0001) ;
1273     (PID.TID 0000.0001) bottomDragLinear = /* linear bottom-drag coefficient ( m/s ) */
1274     (PID.TID 0000.0001) 0.000000000000000E+00
1275     (PID.TID 0000.0001) ;
1276     (PID.TID 0000.0001) bottomDragQuadratic = /* quadratic bottom-drag coefficient (-) */
1277     (PID.TID 0000.0001) 0.000000000000000E+00
1278     (PID.TID 0000.0001) ;
1279     (PID.TID 0000.0001) diffKhT = /* Laplacian diffusion of heat laterally ( m^2/s ) */
1280     (PID.TID 0000.0001) 0.000000000000000E+00
1281     (PID.TID 0000.0001) ;
1282     (PID.TID 0000.0001) diffK4T = /* Biharmonic diffusion of heat laterally ( m^4/s ) */
1283     (PID.TID 0000.0001) 0.000000000000000E+00
1284     (PID.TID 0000.0001) ;
1285     (PID.TID 0000.0001) diffKhS = /* Laplacian diffusion of salt laterally ( m^2/s ) */
1286     (PID.TID 0000.0001) 0.000000000000000E+00
1287     (PID.TID 0000.0001) ;
1288     (PID.TID 0000.0001) diffK4S = /* Biharmonic diffusion of salt laterally ( m^4/s ) */
1289     (PID.TID 0000.0001) 0.000000000000000E+00
1290     (PID.TID 0000.0001) ;
1291     (PID.TID 0000.0001) diffKrNrT = /* vertical profile of vertical diffusion of Temp ( m^2/s )*/
1292     (PID.TID 0000.0001) 8 @ 0.000000000000000E+00 /* K = 1: 8 */
1293     (PID.TID 0000.0001) ;
1294     (PID.TID 0000.0001) diffKrNrS = /* vertical profile of vertical diffusion of Salt ( m^2/s )*/
1295     (PID.TID 0000.0001) 8 @ 0.000000000000000E+00 /* K = 1: 8 */
1296     (PID.TID 0000.0001) ;
1297     (PID.TID 0000.0001) diffKrBL79surf = /* Surface diffusion for Bryan and Lewis 79 ( m^2/s ) */
1298     (PID.TID 0000.0001) 0.000000000000000E+00
1299     (PID.TID 0000.0001) ;
1300     (PID.TID 0000.0001) diffKrBL79deep = /* Deep diffusion for Bryan and Lewis 1979 ( m^2/s ) */
1301     (PID.TID 0000.0001) 0.000000000000000E+00
1302     (PID.TID 0000.0001) ;
1303     (PID.TID 0000.0001) diffKrBL79scl = /* Depth scale for Bryan and Lewis 1979 ( m ) */
1304     (PID.TID 0000.0001) 2.000000000000000E+02
1305     (PID.TID 0000.0001) ;
1306     (PID.TID 0000.0001) diffKrBL79Ho = /* Turning depth for Bryan and Lewis 1979 ( m ) */
1307     (PID.TID 0000.0001) -2.000000000000000E+03
1308     (PID.TID 0000.0001) ;
1309     (PID.TID 0000.0001) ivdc_kappa = /* Implicit Vertical Diffusivity for Convection ( m^2/s) */
1310     (PID.TID 0000.0001) 0.000000000000000E+00
1311     (PID.TID 0000.0001) ;
1312     (PID.TID 0000.0001) hMixCriteria= /* Criteria for mixed-layer diagnostic */
1313     (PID.TID 0000.0001) -8.000000000000000E-01
1314     (PID.TID 0000.0001) ;
1315     (PID.TID 0000.0001) dRhoSmall = /* Parameter for mixed-layer diagnostic */
1316     (PID.TID 0000.0001) 1.000000000000000E-06
1317     (PID.TID 0000.0001) ;
1318     (PID.TID 0000.0001) hMixSmooth= /* Smoothing parameter for mixed-layer diagnostic */
1319     (PID.TID 0000.0001) 0.000000000000000E+00
1320     (PID.TID 0000.0001) ;
1321     (PID.TID 0000.0001) eosType = /* Type of Equation of State */
1322     (PID.TID 0000.0001) 'LINEAR'
1323     (PID.TID 0000.0001) ;
1324 jmc 1.7 (PID.TID 0000.0001) tAlpha = /* Linear EOS thermal expansion coefficient ( 1/oC ) */
1325 jmc 1.1 (PID.TID 0000.0001) 2.000000000000000E-04
1326     (PID.TID 0000.0001) ;
1327 jmc 1.7 (PID.TID 0000.0001) sBeta = /* Linear EOS haline contraction coefficient ( 1/psu ) */
1328 jmc 1.1 (PID.TID 0000.0001) 0.000000000000000E+00
1329     (PID.TID 0000.0001) ;
1330 jmc 1.7 (PID.TID 0000.0001) rhoNil = /* Reference density for Linear EOS ( kg/m^3 ) */
1331 jmc 1.1 (PID.TID 0000.0001) 9.998000000000000E+02
1332     (PID.TID 0000.0001) ;
1333 jmc 1.7 (PID.TID 0000.0001) celsius2K = /* 0 degree Celsius converted to Kelvin ( K ) */
1334     (PID.TID 0000.0001) 2.731500000000000E+02
1335     (PID.TID 0000.0001) ;
1336     (PID.TID 0000.0001) rhoConst = /* Reference density (Boussinesq) ( kg/m^3 ) */
1337 jmc 1.1 (PID.TID 0000.0001) 9.998000000000000E+02
1338     (PID.TID 0000.0001) ;
1339     (PID.TID 0000.0001) rhoFacC = /* normalized Reference density @ cell-Center (-) */
1340     (PID.TID 0000.0001) 8 @ 1.000000000000000E+00 /* K = 1: 8 */
1341     (PID.TID 0000.0001) ;
1342     (PID.TID 0000.0001) rhoFacF = /* normalized Reference density @ W-Interface (-) */
1343     (PID.TID 0000.0001) 9 @ 1.000000000000000E+00 /* K = 1: 9 */
1344     (PID.TID 0000.0001) ;
1345 jmc 1.7 (PID.TID 0000.0001) rhoConstFresh = /* Fresh-water reference density ( kg/m^3 ) */
1346 jmc 1.1 (PID.TID 0000.0001) 9.998000000000000E+02
1347     (PID.TID 0000.0001) ;
1348     (PID.TID 0000.0001) gravity = /* Gravitational acceleration ( m/s^2 ) */
1349     (PID.TID 0000.0001) 9.810000000000000E+00
1350     (PID.TID 0000.0001) ;
1351     (PID.TID 0000.0001) gBaro = /* Barotropic gravity ( m/s^2 ) */
1352     (PID.TID 0000.0001) 9.810000000000000E+00
1353     (PID.TID 0000.0001) ;
1354     (PID.TID 0000.0001) rotationPeriod = /* Rotation Period ( s ) */
1355     (PID.TID 0000.0001) 8.640000000000000E+04
1356     (PID.TID 0000.0001) ;
1357     (PID.TID 0000.0001) omega = /* Angular velocity ( rad/s ) */
1358     (PID.TID 0000.0001) 7.272205216643040E-05
1359     (PID.TID 0000.0001) ;
1360     (PID.TID 0000.0001) f0 = /* Reference coriolis parameter ( 1/s ) */
1361     (PID.TID 0000.0001) 1.000000000000000E-04
1362     (PID.TID 0000.0001) ;
1363     (PID.TID 0000.0001) beta = /* Beta ( 1/(m.s) ) */
1364     (PID.TID 0000.0001) 9.999999999999999E-12
1365     (PID.TID 0000.0001) ;
1366     (PID.TID 0000.0001) fPrime = /* Second coriolis parameter ( 1/s ) */
1367     (PID.TID 0000.0001) 0.000000000000000E+00
1368     (PID.TID 0000.0001) ;
1369     (PID.TID 0000.0001) rigidLid = /* Rigid lid on/off flag */
1370     (PID.TID 0000.0001) F
1371     (PID.TID 0000.0001) ;
1372     (PID.TID 0000.0001) implicitFreeSurface = /* Implicit free surface on/off flag */
1373     (PID.TID 0000.0001) T
1374     (PID.TID 0000.0001) ;
1375     (PID.TID 0000.0001) freeSurfFac = /* Implicit free surface factor */
1376     (PID.TID 0000.0001) 1.000000000000000E+00
1377     (PID.TID 0000.0001) ;
1378     (PID.TID 0000.0001) implicSurfPress = /* Surface Pressure implicit factor (0-1)*/
1379     (PID.TID 0000.0001) 1.000000000000000E+00
1380     (PID.TID 0000.0001) ;
1381     (PID.TID 0000.0001) implicDiv2Dflow = /* Barot. Flow Div. implicit factor (0-1)*/
1382     (PID.TID 0000.0001) 1.000000000000000E+00
1383     (PID.TID 0000.0001) ;
1384 jmc 1.7 (PID.TID 0000.0001) uniformLin_PhiSurf = /* use uniform Bo_surf on/off flag*/
1385     (PID.TID 0000.0001) T
1386 jmc 1.1 (PID.TID 0000.0001) ;
1387 jmc 1.7 (PID.TID 0000.0001) uniformFreeSurfLev = /* free-surface level-index is uniform */
1388 jmc 1.1 (PID.TID 0000.0001) T
1389     (PID.TID 0000.0001) ;
1390     (PID.TID 0000.0001) hFacMin = /* minimum partial cell factor (hFac) */
1391     (PID.TID 0000.0001) 1.000000000000000E+00
1392     (PID.TID 0000.0001) ;
1393     (PID.TID 0000.0001) hFacMinDr = /* minimum partial cell thickness ( m) */
1394     (PID.TID 0000.0001) 1.000000000000000E+00
1395     (PID.TID 0000.0001) ;
1396 jmc 1.7 (PID.TID 0000.0001) exactConserv = /* Exact Volume Conservation on/off flag*/
1397     (PID.TID 0000.0001) F
1398     (PID.TID 0000.0001) ;
1399     (PID.TID 0000.0001) linFSConserveTr = /* Tracer correction for Lin Free Surface on/off flag*/
1400     (PID.TID 0000.0001) F
1401     (PID.TID 0000.0001) ;
1402 jmc 1.1 (PID.TID 0000.0001) nonlinFreeSurf = /* Non-linear Free Surf. options (-1,0,1,2,3)*/
1403     (PID.TID 0000.0001) 0
1404     (PID.TID 0000.0001) -1,0= Off ; 1,2,3= On, 2=+rescale gU,gV, 3=+update cg2d solv.
1405     (PID.TID 0000.0001) ;
1406     (PID.TID 0000.0001) hFacInf = /* lower threshold for hFac (nonlinFreeSurf only)*/
1407     (PID.TID 0000.0001) 2.000000000000000E-01
1408     (PID.TID 0000.0001) ;
1409     (PID.TID 0000.0001) hFacSup = /* upper threshold for hFac (nonlinFreeSurf only)*/
1410     (PID.TID 0000.0001) 2.000000000000000E+00
1411     (PID.TID 0000.0001) ;
1412     (PID.TID 0000.0001) select_rStar = /* r* Vertical coord. options (=0 r coord.; >0 uses r*)*/
1413     (PID.TID 0000.0001) 0
1414     (PID.TID 0000.0001) ;
1415     (PID.TID 0000.0001) useRealFreshWaterFlux = /* Real Fresh Water Flux on/off flag*/
1416     (PID.TID 0000.0001) F
1417     (PID.TID 0000.0001) ;
1418     (PID.TID 0000.0001) temp_EvPrRn = /* Temp. of Evap/Prec/R (UNSET=use local T)(oC)*/
1419     (PID.TID 0000.0001) 1.234567000000000E+05
1420     (PID.TID 0000.0001) ;
1421     (PID.TID 0000.0001) salt_EvPrRn = /* Salin. of Evap/Prec/R (UNSET=use local S)(psu)*/
1422     (PID.TID 0000.0001) 0.000000000000000E+00
1423     (PID.TID 0000.0001) ;
1424 jmc 1.7 (PID.TID 0000.0001) selectAddFluid = /* option for mass source/sink of fluid (=0: off) */
1425     (PID.TID 0000.0001) 0
1426     (PID.TID 0000.0001) ;
1427 jmc 1.1 (PID.TID 0000.0001) temp_addMass = /* Temp. of addMass array (UNSET=use local T)(oC)*/
1428     (PID.TID 0000.0001) 1.234567000000000E+05
1429     (PID.TID 0000.0001) ;
1430     (PID.TID 0000.0001) salt_addMass = /* Salin. of addMass array (UNSET=use local S)(psu)*/
1431     (PID.TID 0000.0001) 0.000000000000000E+00
1432     (PID.TID 0000.0001) ;
1433     (PID.TID 0000.0001) convertFW2Salt = /* convert F.W. Flux to Salt Flux (-1=use local S)(psu)*/
1434     (PID.TID 0000.0001) 3.500000000000000E+01
1435     (PID.TID 0000.0001) ;
1436     (PID.TID 0000.0001) use3Dsolver = /* use 3-D pressure solver on/off flag */
1437     (PID.TID 0000.0001) F
1438     (PID.TID 0000.0001) ;
1439     (PID.TID 0000.0001) nonHydrostatic = /* Non-Hydrostatic on/off flag */
1440     (PID.TID 0000.0001) F
1441     (PID.TID 0000.0001) ;
1442     (PID.TID 0000.0001) nh_Am2 = /* Non-Hydrostatic terms scaling factor */
1443     (PID.TID 0000.0001) 1.000000000000000E+00
1444     (PID.TID 0000.0001) ;
1445     (PID.TID 0000.0001) implicitNHPress = /* Non-Hyd Pressure implicit factor (0-1)*/
1446     (PID.TID 0000.0001) 1.000000000000000E+00
1447     (PID.TID 0000.0001) ;
1448     (PID.TID 0000.0001) selectNHfreeSurf = /* Non-Hyd (free-)Surface option */
1449     (PID.TID 0000.0001) 0
1450     (PID.TID 0000.0001) ;
1451     (PID.TID 0000.0001) quasiHydrostatic = /* Quasi-Hydrostatic on/off flag */
1452     (PID.TID 0000.0001) F
1453     (PID.TID 0000.0001) ;
1454 jmc 1.7 (PID.TID 0000.0001) calc_wVelocity = /* vertical velocity calculation on/off flag */
1455     (PID.TID 0000.0001) T
1456     (PID.TID 0000.0001) ;
1457 jmc 1.1 (PID.TID 0000.0001) momStepping = /* Momentum equation on/off flag */
1458     (PID.TID 0000.0001) T
1459     (PID.TID 0000.0001) ;
1460     (PID.TID 0000.0001) vectorInvariantMomentum= /* Vector-Invariant Momentum on/off */
1461     (PID.TID 0000.0001) T
1462     (PID.TID 0000.0001) ;
1463     (PID.TID 0000.0001) momAdvection = /* Momentum advection on/off flag */
1464     (PID.TID 0000.0001) T
1465     (PID.TID 0000.0001) ;
1466     (PID.TID 0000.0001) momViscosity = /* Momentum viscosity on/off flag */
1467     (PID.TID 0000.0001) T
1468     (PID.TID 0000.0001) ;
1469     (PID.TID 0000.0001) momImplVertAdv= /* Momentum implicit vert. advection on/off*/
1470     (PID.TID 0000.0001) F
1471     (PID.TID 0000.0001) ;
1472     (PID.TID 0000.0001) implicitViscosity = /* Implicit viscosity on/off flag */
1473     (PID.TID 0000.0001) T
1474     (PID.TID 0000.0001) ;
1475     (PID.TID 0000.0001) metricTerms = /* metric-Terms on/off flag */
1476     (PID.TID 0000.0001) T
1477     (PID.TID 0000.0001) ;
1478     (PID.TID 0000.0001) useNHMTerms = /* Non-Hydrostatic Metric-Terms on/off */
1479     (PID.TID 0000.0001) F
1480     (PID.TID 0000.0001) ;
1481     (PID.TID 0000.0001) selectCoriMap = /* Coriolis Map options (0,1,2,3)*/
1482     (PID.TID 0000.0001) 2
1483     (PID.TID 0000.0001) 0= f-Plane ; 1= Beta-Plane ; 2= Spherical ; 3= read from file
1484     (PID.TID 0000.0001) ;
1485     (PID.TID 0000.0001) use3dCoriolis = /* 3-D Coriolis on/off flag */
1486     (PID.TID 0000.0001) F
1487     (PID.TID 0000.0001) ;
1488     (PID.TID 0000.0001) useCoriolis = /* Coriolis on/off flag */
1489     (PID.TID 0000.0001) T
1490     (PID.TID 0000.0001) ;
1491     (PID.TID 0000.0001) useCDscheme = /* CD scheme on/off flag */
1492     (PID.TID 0000.0001) F
1493     (PID.TID 0000.0001) ;
1494 jmc 1.2 (PID.TID 0000.0001) useEnergyConservingCoriolis= /* Flx-Form Coriolis scheme flag */
1495     (PID.TID 0000.0001) F
1496     (PID.TID 0000.0001) ;
1497 jmc 1.1 (PID.TID 0000.0001) useJamartWetPoints= /* Coriolis WetPoints method flag */
1498     (PID.TID 0000.0001) F
1499     (PID.TID 0000.0001) ;
1500 jmc 1.2 (PID.TID 0000.0001) useJamartMomAdv= /* V.I Non-linear terms Jamart flag */
1501 jmc 1.1 (PID.TID 0000.0001) F
1502     (PID.TID 0000.0001) ;
1503 jmc 1.2 (PID.TID 0000.0001) useAbsVorticity= /* V.I Works with f+zeta in Coriolis */
1504 jmc 1.1 (PID.TID 0000.0001) F
1505     (PID.TID 0000.0001) ;
1506 jmc 1.2 (PID.TID 0000.0001) selectVortScheme= /* V.I Scheme selector for Vorticity-Term */
1507 jmc 1.1 (PID.TID 0000.0001) 1
1508     (PID.TID 0000.0001) = 0 : enstrophy (Shallow-Water Eq.) conserving scheme by Sadourny, JAS 75
1509     (PID.TID 0000.0001) = 1 : same as 0 with modified hFac
1510     (PID.TID 0000.0001) = 2 : energy conserving scheme (used by Sadourny in JAS 75 paper)
1511     (PID.TID 0000.0001) = 3 : energy (general) and enstrophy (2D, nonDiv.) conserving scheme
1512     (PID.TID 0000.0001) from Sadourny (Burridge & Haseler, ECMWF Rep.4, 1977)
1513     (PID.TID 0000.0001) ;
1514 jmc 1.2 (PID.TID 0000.0001) upwindVorticity= /* V.I Upwind bias vorticity flag */
1515 jmc 1.1 (PID.TID 0000.0001) F
1516     (PID.TID 0000.0001) ;
1517 jmc 1.2 (PID.TID 0000.0001) highOrderVorticity= /* V.I High order vort. advect. flag */
1518 jmc 1.1 (PID.TID 0000.0001) F
1519     (PID.TID 0000.0001) ;
1520 jmc 1.2 (PID.TID 0000.0001) upwindShear= /* V.I Upwind vertical Shear advection flag */
1521 jmc 1.1 (PID.TID 0000.0001) F
1522     (PID.TID 0000.0001) ;
1523 jmc 1.2 (PID.TID 0000.0001) selectKEscheme= /* V.I Kinetic Energy scheme selector */
1524 jmc 1.1 (PID.TID 0000.0001) 0
1525     (PID.TID 0000.0001) ;
1526     (PID.TID 0000.0001) momForcing = /* Momentum forcing on/off flag */
1527     (PID.TID 0000.0001) T
1528     (PID.TID 0000.0001) ;
1529     (PID.TID 0000.0001) momPressureForcing = /* Momentum pressure term on/off flag */
1530     (PID.TID 0000.0001) T
1531     (PID.TID 0000.0001) ;
1532     (PID.TID 0000.0001) implicitIntGravWave= /* Implicit Internal Gravity Wave flag */
1533     (PID.TID 0000.0001) F
1534     (PID.TID 0000.0001) ;
1535 jmc 1.7 (PID.TID 0000.0001) staggerTimeStep = /* Stagger time stepping on/off flag */
1536 jmc 1.1 (PID.TID 0000.0001) T
1537     (PID.TID 0000.0001) ;
1538 jmc 1.7 (PID.TID 0000.0001) doResetHFactors = /* reset thickness factors @ each time-step */
1539     (PID.TID 0000.0001) F
1540     (PID.TID 0000.0001) ;
1541     (PID.TID 0000.0001) multiDimAdvection = /* enable/disable Multi-Dim Advection */
1542 jmc 1.1 (PID.TID 0000.0001) F
1543     (PID.TID 0000.0001) ;
1544     (PID.TID 0000.0001) useMultiDimAdvec = /* Multi-Dim Advection is/is-not used */
1545     (PID.TID 0000.0001) F
1546     (PID.TID 0000.0001) ;
1547     (PID.TID 0000.0001) implicitDiffusion = /* Implicit Diffusion on/off flag */
1548     (PID.TID 0000.0001) T
1549     (PID.TID 0000.0001) ;
1550     (PID.TID 0000.0001) tempStepping = /* Temperature equation on/off flag */
1551     (PID.TID 0000.0001) T
1552     (PID.TID 0000.0001) ;
1553 jmc 1.7 (PID.TID 0000.0001) tempAdvection = /* Temperature advection on/off flag */
1554 jmc 1.1 (PID.TID 0000.0001) T
1555     (PID.TID 0000.0001) ;
1556     (PID.TID 0000.0001) tempImplVertAdv = /* Temp. implicit vert. advection on/off */
1557     (PID.TID 0000.0001) F
1558     (PID.TID 0000.0001) ;
1559     (PID.TID 0000.0001) tempForcing = /* Temperature forcing on/off flag */
1560     (PID.TID 0000.0001) T
1561     (PID.TID 0000.0001) ;
1562 jmc 1.7 (PID.TID 0000.0001) doThetaClimRelax = /* apply SST relaxation on/off flag */
1563     (PID.TID 0000.0001) F
1564     (PID.TID 0000.0001) ;
1565 jmc 1.1 (PID.TID 0000.0001) tempIsActiveTr = /* Temp. is a dynamically Active Tracer */
1566     (PID.TID 0000.0001) T
1567     (PID.TID 0000.0001) ;
1568     (PID.TID 0000.0001) saltStepping = /* Salinity equation on/off flag */
1569     (PID.TID 0000.0001) T
1570     (PID.TID 0000.0001) ;
1571 jmc 1.7 (PID.TID 0000.0001) saltAdvection = /* Salinity advection on/off flag */
1572 jmc 1.1 (PID.TID 0000.0001) T
1573     (PID.TID 0000.0001) ;
1574     (PID.TID 0000.0001) saltImplVertAdv = /* Sali. implicit vert. advection on/off */
1575     (PID.TID 0000.0001) F
1576     (PID.TID 0000.0001) ;
1577     (PID.TID 0000.0001) saltForcing = /* Salinity forcing on/off flag */
1578     (PID.TID 0000.0001) T
1579     (PID.TID 0000.0001) ;
1580 jmc 1.7 (PID.TID 0000.0001) doSaltClimRelax = /* apply SSS relaxation on/off flag */
1581     (PID.TID 0000.0001) F
1582     (PID.TID 0000.0001) ;
1583 jmc 1.1 (PID.TID 0000.0001) saltIsActiveTr = /* Salt is a dynamically Active Tracer */
1584     (PID.TID 0000.0001) F
1585     (PID.TID 0000.0001) ;
1586     (PID.TID 0000.0001) readBinaryPrec = /* Precision used for reading binary files */
1587     (PID.TID 0000.0001) 32
1588     (PID.TID 0000.0001) ;
1589     (PID.TID 0000.0001) writeBinaryPrec = /* Precision used for writing binary files */
1590     (PID.TID 0000.0001) 32
1591     (PID.TID 0000.0001) ;
1592     (PID.TID 0000.0001) globalFiles = /* write "global" (=not per tile) files */
1593     (PID.TID 0000.0001) F
1594     (PID.TID 0000.0001) ;
1595     (PID.TID 0000.0001) useSingleCpuIO = /* only master MPI process does I/O */
1596     (PID.TID 0000.0001) F
1597     (PID.TID 0000.0001) ;
1598 jmc 1.3 (PID.TID 0000.0001) /* debLev[*] : level of debug & auxiliary message printing */
1599     (PID.TID 0000.0001) debLevZero = 0 ; /* level of disabled aux. msg printing */
1600     (PID.TID 0000.0001) debLevA = 1 ; /* level of minimum aux. msg printing */
1601     (PID.TID 0000.0001) debLevB = 2 ; /* level of low aux. print (report read-file opening)*/
1602     (PID.TID 0000.0001) debLevC = 3 ; /* level of moderate debug prt (most pkgs debug msg) */
1603     (PID.TID 0000.0001) debLevD = 4 ; /* level of enhanced debug prt (add DEBUG_STATS prt) */
1604     (PID.TID 0000.0001) debLevE = 5 ; /* level of extensive debug printing */
1605     (PID.TID 0000.0001) debugLevel = /* select debug printing level */
1606 jmc 1.1 (PID.TID 0000.0001) 1
1607     (PID.TID 0000.0001) ;
1608     (PID.TID 0000.0001) //
1609     (PID.TID 0000.0001) // Elliptic solver(s) paramters ( PARM02 in namelist )
1610     (PID.TID 0000.0001) //
1611     (PID.TID 0000.0001) cg2dMaxIters = /* Upper limit on 2d con. grad iterations */
1612     (PID.TID 0000.0001) 500
1613     (PID.TID 0000.0001) ;
1614     (PID.TID 0000.0001) cg2dChkResFreq = /* 2d con. grad convergence test frequency */
1615     (PID.TID 0000.0001) 1
1616     (PID.TID 0000.0001) ;
1617 jmc 1.7 (PID.TID 0000.0001) cg2dUseMinResSol= /* use cg2d last-iter(=0) / min-resid.(=1) solution */
1618     (PID.TID 0000.0001) 0
1619     (PID.TID 0000.0001) ;
1620 jmc 1.1 (PID.TID 0000.0001) cg2dTargetResidual = /* 2d con. grad target residual */
1621     (PID.TID 0000.0001) 1.000000000000000E-08
1622     (PID.TID 0000.0001) ;
1623     (PID.TID 0000.0001) cg2dTargetResWunit = /* CG2d target residual [W units] */
1624     (PID.TID 0000.0001) -1.000000000000000E+00
1625     (PID.TID 0000.0001) ;
1626     (PID.TID 0000.0001) cg2dPreCondFreq = /* Freq. for updating cg2d preconditioner */
1627     (PID.TID 0000.0001) 1
1628     (PID.TID 0000.0001) ;
1629     (PID.TID 0000.0001) useSRCGSolver = /* use single reduction CG solver(s) */
1630     (PID.TID 0000.0001) F
1631     (PID.TID 0000.0001) ;
1632 jmc 1.3 (PID.TID 0000.0001) printResidualFreq = /* Freq. for printing CG residual */
1633     (PID.TID 0000.0001) 0
1634     (PID.TID 0000.0001) ;
1635 jmc 1.1 (PID.TID 0000.0001) //
1636     (PID.TID 0000.0001) // Time stepping paramters ( PARM03 in namelist )
1637     (PID.TID 0000.0001) //
1638 jmc 1.7 (PID.TID 0000.0001) deltaTMom = /* Momentum equation timestep ( s ) */
1639 jmc 1.1 (PID.TID 0000.0001) 1.200000000000000E+03
1640     (PID.TID 0000.0001) ;
1641 jmc 1.7 (PID.TID 0000.0001) deltaTFreeSurf = /* FreeSurface equation timestep ( s ) */
1642 jmc 1.1 (PID.TID 0000.0001) 1.200000000000000E+03
1643     (PID.TID 0000.0001) ;
1644     (PID.TID 0000.0001) dTtracerLev = /* Tracer equation timestep ( s ) */
1645     (PID.TID 0000.0001) 8 @ 1.200000000000000E+03 /* K = 1: 8 */
1646     (PID.TID 0000.0001) ;
1647     (PID.TID 0000.0001) deltaTClock = /* Model clock timestep ( s ) */
1648     (PID.TID 0000.0001) 1.200000000000000E+03
1649     (PID.TID 0000.0001) ;
1650     (PID.TID 0000.0001) cAdjFreq = /* Convective adjustment interval ( s ) */
1651     (PID.TID 0000.0001) 0.000000000000000E+00
1652     (PID.TID 0000.0001) ;
1653     (PID.TID 0000.0001) momForcingOutAB = /* =1: take Momentum Forcing out of Adams-Bash. stepping */
1654     (PID.TID 0000.0001) 0
1655     (PID.TID 0000.0001) ;
1656     (PID.TID 0000.0001) tracForcingOutAB = /* =1: take T,S,pTr Forcing out of Adams-Bash. stepping */
1657     (PID.TID 0000.0001) 0
1658     (PID.TID 0000.0001) ;
1659     (PID.TID 0000.0001) momDissip_In_AB = /* put Dissipation Tendency in Adams-Bash. stepping */
1660     (PID.TID 0000.0001) T
1661     (PID.TID 0000.0001) ;
1662     (PID.TID 0000.0001) doAB_onGtGs = /* apply AB on Tendencies (rather than on T,S)*/
1663     (PID.TID 0000.0001) T
1664     (PID.TID 0000.0001) ;
1665     (PID.TID 0000.0001) abEps = /* Adams-Bashforth-2 stabilizing weight */
1666     (PID.TID 0000.0001) 1.000000000000000E-01
1667     (PID.TID 0000.0001) ;
1668     (PID.TID 0000.0001) pickupStrictlyMatch= /* stop if pickup do not strictly match */
1669     (PID.TID 0000.0001) T
1670     (PID.TID 0000.0001) ;
1671     (PID.TID 0000.0001) nIter0 = /* Run starting timestep number */
1672     (PID.TID 0000.0001) 0
1673     (PID.TID 0000.0001) ;
1674     (PID.TID 0000.0001) nTimeSteps = /* Number of timesteps */
1675 heimbach 1.4 (PID.TID 0000.0001) 4
1676 jmc 1.1 (PID.TID 0000.0001) ;
1677     (PID.TID 0000.0001) nEndIter = /* Run ending timestep number */
1678 heimbach 1.4 (PID.TID 0000.0001) 4
1679 jmc 1.1 (PID.TID 0000.0001) ;
1680     (PID.TID 0000.0001) baseTime = /* Model base time ( s ) */
1681     (PID.TID 0000.0001) 0.000000000000000E+00
1682     (PID.TID 0000.0001) ;
1683     (PID.TID 0000.0001) startTime = /* Run start time ( s ) */
1684     (PID.TID 0000.0001) 0.000000000000000E+00
1685     (PID.TID 0000.0001) ;
1686     (PID.TID 0000.0001) endTime = /* Integration ending time ( s ) */
1687 heimbach 1.4 (PID.TID 0000.0001) 4.800000000000000E+03
1688 jmc 1.1 (PID.TID 0000.0001) ;
1689     (PID.TID 0000.0001) pChkPtFreq = /* Permanent restart/pickup file interval ( s ) */
1690     (PID.TID 0000.0001) 0.000000000000000E+00
1691     (PID.TID 0000.0001) ;
1692     (PID.TID 0000.0001) chkPtFreq = /* Rolling restart/pickup file interval ( s ) */
1693     (PID.TID 0000.0001) 0.000000000000000E+00
1694     (PID.TID 0000.0001) ;
1695     (PID.TID 0000.0001) pickup_write_mdsio = /* Model IO flag. */
1696     (PID.TID 0000.0001) T
1697     (PID.TID 0000.0001) ;
1698     (PID.TID 0000.0001) pickup_read_mdsio = /* Model IO flag. */
1699     (PID.TID 0000.0001) T
1700     (PID.TID 0000.0001) ;
1701     (PID.TID 0000.0001) pickup_write_immed = /* Model IO flag. */
1702     (PID.TID 0000.0001) F
1703     (PID.TID 0000.0001) ;
1704     (PID.TID 0000.0001) writePickupAtEnd = /* Model IO flag. */
1705     (PID.TID 0000.0001) T
1706     (PID.TID 0000.0001) ;
1707     (PID.TID 0000.0001) dumpFreq = /* Model state write out interval ( s ). */
1708     (PID.TID 0000.0001) 2.628000000000000E+06
1709     (PID.TID 0000.0001) ;
1710     (PID.TID 0000.0001) dumpInitAndLast= /* write out Initial & Last iter. model state */
1711     (PID.TID 0000.0001) T
1712     (PID.TID 0000.0001) ;
1713     (PID.TID 0000.0001) snapshot_mdsio = /* Model IO flag. */
1714     (PID.TID 0000.0001) T
1715     (PID.TID 0000.0001) ;
1716     (PID.TID 0000.0001) monitorFreq = /* Monitor output interval ( s ). */
1717 jmc 1.2 (PID.TID 0000.0001) 3.600000000000000E+03
1718 jmc 1.1 (PID.TID 0000.0001) ;
1719     (PID.TID 0000.0001) monitorSelect = /* select group of variables to monitor */
1720 jmc 1.2 (PID.TID 0000.0001) 1
1721 jmc 1.1 (PID.TID 0000.0001) ;
1722     (PID.TID 0000.0001) monitor_stdio = /* Model IO flag. */
1723     (PID.TID 0000.0001) T
1724     (PID.TID 0000.0001) ;
1725     (PID.TID 0000.0001) externForcingPeriod = /* forcing period (s) */
1726     (PID.TID 0000.0001) 0.000000000000000E+00
1727     (PID.TID 0000.0001) ;
1728     (PID.TID 0000.0001) externForcingCycle = /* period of the cyle (s). */
1729     (PID.TID 0000.0001) 0.000000000000000E+00
1730     (PID.TID 0000.0001) ;
1731     (PID.TID 0000.0001) tauThetaClimRelax = /* relaxation time scale (s) */
1732     (PID.TID 0000.0001) 0.000000000000000E+00
1733     (PID.TID 0000.0001) ;
1734     (PID.TID 0000.0001) tauSaltClimRelax = /* relaxation time scale (s) */
1735     (PID.TID 0000.0001) 0.000000000000000E+00
1736     (PID.TID 0000.0001) ;
1737     (PID.TID 0000.0001) latBandClimRelax = /* max. Lat. where relaxation */
1738     (PID.TID 0000.0001) 1.800000000000000E+02
1739     (PID.TID 0000.0001) ;
1740     (PID.TID 0000.0001) //
1741     (PID.TID 0000.0001) // Gridding paramters ( PARM04 in namelist )
1742     (PID.TID 0000.0001) //
1743     (PID.TID 0000.0001) usingCartesianGrid = /* Cartesian coordinates flag ( True/False ) */
1744     (PID.TID 0000.0001) F
1745     (PID.TID 0000.0001) ;
1746     (PID.TID 0000.0001) usingCylindricalGrid = /* Cylindrical coordinates flag ( True/False ) */
1747     (PID.TID 0000.0001) F
1748     (PID.TID 0000.0001) ;
1749     (PID.TID 0000.0001) usingSphericalPolarGrid = /* Spherical coordinates flag ( True/False ) */
1750     (PID.TID 0000.0001) T
1751     (PID.TID 0000.0001) ;
1752     (PID.TID 0000.0001) usingCurvilinearGrid = /* Curvilinear coordinates flag ( True/False ) */
1753     (PID.TID 0000.0001) F
1754     (PID.TID 0000.0001) ;
1755     (PID.TID 0000.0001) selectSigmaCoord = /* Hybrid-Sigma Vert. Coordinate option */
1756     (PID.TID 0000.0001) 0
1757     (PID.TID 0000.0001) ;
1758     (PID.TID 0000.0001) Ro_SeaLevel = /* r(1) ( units of r == m ) */
1759     (PID.TID 0000.0001) 0.000000000000000E+00
1760     (PID.TID 0000.0001) ;
1761     (PID.TID 0000.0001) rSigmaBnd = /* r/sigma transition ( units of r == m ) */
1762     (PID.TID 0000.0001) 1.234567000000000E+05
1763     (PID.TID 0000.0001) ;
1764     (PID.TID 0000.0001) rkSign = /* index orientation relative to vertical coordinate */
1765     (PID.TID 0000.0001) -1.000000000000000E+00
1766     (PID.TID 0000.0001) ;
1767     (PID.TID 0000.0001) gravitySign = /* gravity orientation relative to vertical coordinate */
1768     (PID.TID 0000.0001) -1.000000000000000E+00
1769     (PID.TID 0000.0001) ;
1770     (PID.TID 0000.0001) mass2rUnit = /* convert mass per unit area [kg/m2] to r-units [m] */
1771     (PID.TID 0000.0001) 1.000200040008002E-03
1772     (PID.TID 0000.0001) ;
1773     (PID.TID 0000.0001) rUnit2mass = /* convert r-units [m] to mass per unit area [kg/m2] */
1774     (PID.TID 0000.0001) 9.998000000000000E+02
1775     (PID.TID 0000.0001) ;
1776     (PID.TID 0000.0001) drC = /* C spacing ( units of r ) */
1777     (PID.TID 0000.0001) 2.500000000000000E+02, /* K = 1 */
1778 jmc 1.7 (PID.TID 0000.0001) 7 @ 5.000000000000000E+02, /* K = 2: 8 */
1779     (PID.TID 0000.0001) 2.500000000000000E+02 /* K = 9 */
1780 jmc 1.1 (PID.TID 0000.0001) ;
1781     (PID.TID 0000.0001) drF = /* W spacing ( units of r ) */
1782     (PID.TID 0000.0001) 8 @ 5.000000000000000E+02 /* K = 1: 8 */
1783     (PID.TID 0000.0001) ;
1784     (PID.TID 0000.0001) delX = /* U spacing ( m - cartesian, degrees - spherical ) */
1785     (PID.TID 0000.0001) 64 @ 2.500000000000000E-01 /* I = 1: 64 */
1786     (PID.TID 0000.0001) ;
1787     (PID.TID 0000.0001) delY = /* V spacing ( m - cartesian, degrees - spherical ) */
1788     (PID.TID 0000.0001) 64 @ 2.500000000000000E-01 /* J = 1: 64 */
1789     (PID.TID 0000.0001) ;
1790 jmc 1.7 (PID.TID 0000.0001) xgOrigin = /* X-axis origin of West edge (cartesian: m, lat-lon: deg) */
1791 jmc 1.1 (PID.TID 0000.0001) 0.000000000000000E+00
1792     (PID.TID 0000.0001) ;
1793 jmc 1.7 (PID.TID 0000.0001) ygOrigin = /* Y-axis origin of South edge (cartesian: m, lat-lon: deg) */
1794 jmc 1.1 (PID.TID 0000.0001) 2.500000000000000E+01
1795     (PID.TID 0000.0001) ;
1796     (PID.TID 0000.0001) rSphere = /* Radius ( ignored - cartesian, m - spherical ) */
1797     (PID.TID 0000.0001) 6.370000000000000E+06
1798     (PID.TID 0000.0001) ;
1799     (PID.TID 0000.0001) deepAtmosphere = /* Deep/Shallow Atmosphere flag (True/False) */
1800     (PID.TID 0000.0001) F
1801     (PID.TID 0000.0001) ;
1802     (PID.TID 0000.0001) xC = /* xC(:,1,:,1) : P-point X coord ( deg. or m if cartesian) */
1803     (PID.TID 0000.0001) 1.250000000000000E-01, /* I = 1 */
1804     (PID.TID 0000.0001) 3.750000000000000E-01, /* I = 2 */
1805     (PID.TID 0000.0001) 6.250000000000000E-01, /* I = 3 */
1806     (PID.TID 0000.0001) 8.750000000000000E-01, /* I = 4 */
1807     (PID.TID 0000.0001) 1.125000000000000E+00, /* I = 5 */
1808     (PID.TID 0000.0001) 1.375000000000000E+00, /* I = 6 */
1809     (PID.TID 0000.0001) 1.625000000000000E+00, /* I = 7 */
1810     (PID.TID 0000.0001) 1.875000000000000E+00, /* I = 8 */
1811     (PID.TID 0000.0001) 2.125000000000000E+00, /* I = 9 */
1812     (PID.TID 0000.0001) 2.375000000000000E+00, /* I = 10 */
1813     (PID.TID 0000.0001) 2.625000000000000E+00, /* I = 11 */
1814     (PID.TID 0000.0001) 2.875000000000000E+00, /* I = 12 */
1815     (PID.TID 0000.0001) 3.125000000000000E+00, /* I = 13 */
1816     (PID.TID 0000.0001) 3.375000000000000E+00, /* I = 14 */
1817     (PID.TID 0000.0001) 3.625000000000000E+00, /* I = 15 */
1818     (PID.TID 0000.0001) 3.875000000000000E+00, /* I = 16 */
1819     (PID.TID 0000.0001) 4.125000000000000E+00, /* I = 17 */
1820     (PID.TID 0000.0001) 4.375000000000000E+00, /* I = 18 */
1821     (PID.TID 0000.0001) 4.625000000000000E+00, /* I = 19 */
1822     (PID.TID 0000.0001) 4.875000000000000E+00, /* I = 20 */
1823     (PID.TID 0000.0001) 5.125000000000000E+00, /* I = 21 */
1824     (PID.TID 0000.0001) 5.375000000000000E+00, /* I = 22 */
1825     (PID.TID 0000.0001) 5.625000000000000E+00, /* I = 23 */
1826     (PID.TID 0000.0001) 5.875000000000000E+00, /* I = 24 */
1827     (PID.TID 0000.0001) 6.125000000000000E+00, /* I = 25 */
1828     (PID.TID 0000.0001) 6.375000000000000E+00, /* I = 26 */
1829     (PID.TID 0000.0001) 6.625000000000000E+00, /* I = 27 */
1830     (PID.TID 0000.0001) 6.875000000000000E+00, /* I = 28 */
1831     (PID.TID 0000.0001) 7.125000000000000E+00, /* I = 29 */
1832     (PID.TID 0000.0001) 7.375000000000000E+00, /* I = 30 */
1833     (PID.TID 0000.0001) 7.625000000000000E+00, /* I = 31 */
1834     (PID.TID 0000.0001) 7.875000000000000E+00, /* I = 32 */
1835     (PID.TID 0000.0001) 8.125000000000000E+00, /* I = 33 */
1836     (PID.TID 0000.0001) 8.375000000000000E+00, /* I = 34 */
1837     (PID.TID 0000.0001) 8.625000000000000E+00, /* I = 35 */
1838     (PID.TID 0000.0001) 8.875000000000000E+00, /* I = 36 */
1839     (PID.TID 0000.0001) 9.125000000000000E+00, /* I = 37 */
1840     (PID.TID 0000.0001) 9.375000000000000E+00, /* I = 38 */
1841     (PID.TID 0000.0001) 9.625000000000000E+00, /* I = 39 */
1842     (PID.TID 0000.0001) 9.875000000000000E+00, /* I = 40 */
1843     (PID.TID 0000.0001) 1.012500000000000E+01, /* I = 41 */
1844     (PID.TID 0000.0001) 1.037500000000000E+01, /* I = 42 */
1845     (PID.TID 0000.0001) 1.062500000000000E+01, /* I = 43 */
1846     (PID.TID 0000.0001) 1.087500000000000E+01, /* I = 44 */
1847     (PID.TID 0000.0001) 1.112500000000000E+01, /* I = 45 */
1848     (PID.TID 0000.0001) 1.137500000000000E+01, /* I = 46 */
1849     (PID.TID 0000.0001) 1.162500000000000E+01, /* I = 47 */
1850     (PID.TID 0000.0001) 1.187500000000000E+01, /* I = 48 */
1851     (PID.TID 0000.0001) 1.212500000000000E+01, /* I = 49 */
1852     (PID.TID 0000.0001) 1.237500000000000E+01, /* I = 50 */
1853     (PID.TID 0000.0001) 1.262500000000000E+01, /* I = 51 */
1854     (PID.TID 0000.0001) 1.287500000000000E+01, /* I = 52 */
1855     (PID.TID 0000.0001) 1.312500000000000E+01, /* I = 53 */
1856     (PID.TID 0000.0001) 1.337500000000000E+01, /* I = 54 */
1857     (PID.TID 0000.0001) 1.362500000000000E+01, /* I = 55 */
1858     (PID.TID 0000.0001) 1.387500000000000E+01, /* I = 56 */
1859     (PID.TID 0000.0001) 1.412500000000000E+01, /* I = 57 */
1860     (PID.TID 0000.0001) 1.437500000000000E+01, /* I = 58 */
1861     (PID.TID 0000.0001) 1.462500000000000E+01, /* I = 59 */
1862     (PID.TID 0000.0001) 1.487500000000000E+01, /* I = 60 */
1863     (PID.TID 0000.0001) 1.512500000000000E+01, /* I = 61 */
1864     (PID.TID 0000.0001) 1.537500000000000E+01, /* I = 62 */
1865     (PID.TID 0000.0001) 1.562500000000000E+01, /* I = 63 */
1866     (PID.TID 0000.0001) 1.587500000000000E+01 /* I = 64 */
1867     (PID.TID 0000.0001) ;
1868     (PID.TID 0000.0001) yC = /* yC(1,:,1,:) : P-point Y coord ( deg. or m if cartesian) */
1869     (PID.TID 0000.0001) 2.512500000000000E+01, /* J = 1 */
1870     (PID.TID 0000.0001) 2.537500000000000E+01, /* J = 2 */
1871     (PID.TID 0000.0001) 2.562500000000000E+01, /* J = 3 */
1872     (PID.TID 0000.0001) 2.587500000000000E+01, /* J = 4 */
1873     (PID.TID 0000.0001) 2.612500000000000E+01, /* J = 5 */
1874     (PID.TID 0000.0001) 2.637500000000000E+01, /* J = 6 */
1875     (PID.TID 0000.0001) 2.662500000000000E+01, /* J = 7 */
1876     (PID.TID 0000.0001) 2.687500000000000E+01, /* J = 8 */
1877     (PID.TID 0000.0001) 2.712500000000000E+01, /* J = 9 */
1878     (PID.TID 0000.0001) 2.737500000000000E+01, /* J = 10 */
1879     (PID.TID 0000.0001) 2.762500000000000E+01, /* J = 11 */
1880     (PID.TID 0000.0001) 2.787500000000000E+01, /* J = 12 */
1881     (PID.TID 0000.0001) 2.812500000000000E+01, /* J = 13 */
1882     (PID.TID 0000.0001) 2.837500000000000E+01, /* J = 14 */
1883     (PID.TID 0000.0001) 2.862500000000000E+01, /* J = 15 */
1884     (PID.TID 0000.0001) 2.887500000000000E+01, /* J = 16 */
1885     (PID.TID 0000.0001) 2.912500000000000E+01, /* J = 17 */
1886     (PID.TID 0000.0001) 2.937500000000000E+01, /* J = 18 */
1887     (PID.TID 0000.0001) 2.962500000000000E+01, /* J = 19 */
1888     (PID.TID 0000.0001) 2.987500000000000E+01, /* J = 20 */
1889     (PID.TID 0000.0001) 3.012500000000000E+01, /* J = 21 */
1890     (PID.TID 0000.0001) 3.037500000000000E+01, /* J = 22 */
1891     (PID.TID 0000.0001) 3.062500000000000E+01, /* J = 23 */
1892     (PID.TID 0000.0001) 3.087500000000000E+01, /* J = 24 */
1893     (PID.TID 0000.0001) 3.112500000000000E+01, /* J = 25 */
1894     (PID.TID 0000.0001) 3.137500000000000E+01, /* J = 26 */
1895     (PID.TID 0000.0001) 3.162500000000000E+01, /* J = 27 */
1896     (PID.TID 0000.0001) 3.187500000000000E+01, /* J = 28 */
1897     (PID.TID 0000.0001) 3.212500000000000E+01, /* J = 29 */
1898     (PID.TID 0000.0001) 3.237500000000000E+01, /* J = 30 */
1899     (PID.TID 0000.0001) 3.262500000000000E+01, /* J = 31 */
1900     (PID.TID 0000.0001) 3.287500000000000E+01, /* J = 32 */
1901     (PID.TID 0000.0001) 3.312500000000000E+01, /* J = 33 */
1902     (PID.TID 0000.0001) 3.337500000000000E+01, /* J = 34 */
1903     (PID.TID 0000.0001) 3.362500000000000E+01, /* J = 35 */
1904     (PID.TID 0000.0001) 3.387500000000000E+01, /* J = 36 */
1905     (PID.TID 0000.0001) 3.412500000000000E+01, /* J = 37 */
1906     (PID.TID 0000.0001) 3.437500000000000E+01, /* J = 38 */
1907     (PID.TID 0000.0001) 3.462500000000000E+01, /* J = 39 */
1908     (PID.TID 0000.0001) 3.487500000000000E+01, /* J = 40 */
1909     (PID.TID 0000.0001) 3.512500000000000E+01, /* J = 41 */
1910     (PID.TID 0000.0001) 3.537500000000000E+01, /* J = 42 */
1911     (PID.TID 0000.0001) 3.562500000000000E+01, /* J = 43 */
1912     (PID.TID 0000.0001) 3.587500000000000E+01, /* J = 44 */
1913     (PID.TID 0000.0001) 3.612500000000000E+01, /* J = 45 */
1914     (PID.TID 0000.0001) 3.637500000000000E+01, /* J = 46 */
1915     (PID.TID 0000.0001) 3.662500000000000E+01, /* J = 47 */
1916     (PID.TID 0000.0001) 3.687500000000000E+01, /* J = 48 */
1917     (PID.TID 0000.0001) 3.712500000000000E+01, /* J = 49 */
1918     (PID.TID 0000.0001) 3.737500000000000E+01, /* J = 50 */
1919     (PID.TID 0000.0001) 3.762500000000000E+01, /* J = 51 */
1920     (PID.TID 0000.0001) 3.787500000000000E+01, /* J = 52 */
1921     (PID.TID 0000.0001) 3.812500000000000E+01, /* J = 53 */
1922     (PID.TID 0000.0001) 3.837500000000000E+01, /* J = 54 */
1923     (PID.TID 0000.0001) 3.862500000000000E+01, /* J = 55 */
1924     (PID.TID 0000.0001) 3.887500000000000E+01, /* J = 56 */
1925     (PID.TID 0000.0001) 3.912500000000000E+01, /* J = 57 */
1926     (PID.TID 0000.0001) 3.937500000000000E+01, /* J = 58 */
1927     (PID.TID 0000.0001) 3.962500000000000E+01, /* J = 59 */
1928     (PID.TID 0000.0001) 3.987500000000000E+01, /* J = 60 */
1929     (PID.TID 0000.0001) 4.012500000000000E+01, /* J = 61 */
1930     (PID.TID 0000.0001) 4.037500000000000E+01, /* J = 62 */
1931     (PID.TID 0000.0001) 4.062500000000000E+01, /* J = 63 */
1932     (PID.TID 0000.0001) 4.087500000000000E+01 /* J = 64 */
1933     (PID.TID 0000.0001) ;
1934     (PID.TID 0000.0001) rcoord = /* P-point R coordinate ( units of r ) */
1935     (PID.TID 0000.0001) -2.500000000000000E+02, /* K = 1 */
1936     (PID.TID 0000.0001) -7.500000000000000E+02, /* K = 2 */
1937     (PID.TID 0000.0001) -1.250000000000000E+03, /* K = 3 */
1938     (PID.TID 0000.0001) -1.750000000000000E+03, /* K = 4 */
1939     (PID.TID 0000.0001) -2.250000000000000E+03, /* K = 5 */
1940     (PID.TID 0000.0001) -2.750000000000000E+03, /* K = 6 */
1941     (PID.TID 0000.0001) -3.250000000000000E+03, /* K = 7 */
1942     (PID.TID 0000.0001) -3.750000000000000E+03 /* K = 8 */
1943     (PID.TID 0000.0001) ;
1944     (PID.TID 0000.0001) rF = /* W-Interf. R coordinate ( units of r ) */
1945     (PID.TID 0000.0001) 0.000000000000000E+00, /* K = 1 */
1946     (PID.TID 0000.0001) -5.000000000000000E+02, /* K = 2 */
1947     (PID.TID 0000.0001) -1.000000000000000E+03, /* K = 3 */
1948     (PID.TID 0000.0001) -1.500000000000000E+03, /* K = 4 */
1949     (PID.TID 0000.0001) -2.000000000000000E+03, /* K = 5 */
1950     (PID.TID 0000.0001) -2.500000000000000E+03, /* K = 6 */
1951     (PID.TID 0000.0001) -3.000000000000000E+03, /* K = 7 */
1952     (PID.TID 0000.0001) -3.500000000000000E+03, /* K = 8 */
1953     (PID.TID 0000.0001) -4.000000000000000E+03 /* K = 9 */
1954     (PID.TID 0000.0001) ;
1955     (PID.TID 0000.0001) deepFacC = /* deep-model grid factor @ cell-Center (-) */
1956     (PID.TID 0000.0001) 8 @ 1.000000000000000E+00 /* K = 1: 8 */
1957     (PID.TID 0000.0001) ;
1958     (PID.TID 0000.0001) deepFacF = /* deep-model grid factor @ W-Interface (-) */
1959     (PID.TID 0000.0001) 9 @ 1.000000000000000E+00 /* K = 1: 9 */
1960     (PID.TID 0000.0001) ;
1961     (PID.TID 0000.0001) rVel2wUnit = /* convert units: rVel -> wSpeed (=1 if z-coord)*/
1962     (PID.TID 0000.0001) 9 @ 1.000000000000000E+00 /* K = 1: 9 */
1963     (PID.TID 0000.0001) ;
1964     (PID.TID 0000.0001) wUnit2rVel = /* convert units: wSpeed -> rVel (=1 if z-coord)*/
1965     (PID.TID 0000.0001) 9 @ 1.000000000000000E+00 /* K = 1: 9 */
1966     (PID.TID 0000.0001) ;
1967     (PID.TID 0000.0001) dBdrRef = /* Vertical grad. of reference buoyancy [(m/s/r)^2] */
1968     (PID.TID 0000.0001) 0.000000000000000E+00, /* K = 1 */
1969     (PID.TID 0000.0001) 2 @ 1.569600000000000E-05, /* K = 2: 3 */
1970     (PID.TID 0000.0001) 7.848000000000000E-06, /* K = 4 */
1971     (PID.TID 0000.0001) 4 @ 3.924000000000000E-06 /* K = 5: 8 */
1972     (PID.TID 0000.0001) ;
1973     (PID.TID 0000.0001) rotateGrid = /* use rotated grid ( True/False ) */
1974     (PID.TID 0000.0001) F
1975     (PID.TID 0000.0001) ;
1976     (PID.TID 0000.0001) phiEuler = /* Euler angle, rotation about original z-coordinate [rad] */
1977     (PID.TID 0000.0001) 0.000000000000000E+00
1978     (PID.TID 0000.0001) ;
1979     (PID.TID 0000.0001) thetaEuler = /* Euler angle, rotation about new x-coordinate [rad] */
1980     (PID.TID 0000.0001) 0.000000000000000E+00
1981     (PID.TID 0000.0001) ;
1982     (PID.TID 0000.0001) psiEuler = /* Euler angle, rotation about new z-coordinate [rad] */
1983     (PID.TID 0000.0001) 0.000000000000000E+00
1984     (PID.TID 0000.0001) ;
1985     (PID.TID 0000.0001) dxF = /* dxF(:,1,:,1) ( units: m ) */
1986     (PID.TID 0000.0001) 64 @ 2.516456584643870E+04 /* I = 1: 64 */
1987     (PID.TID 0000.0001) ;
1988     (PID.TID 0000.0001) dxF = /* dxF(1,:,1,:) ( units: m ) */
1989     (PID.TID 0000.0001) 2.516456584643870E+04, /* J = 1 */
1990     (PID.TID 0000.0001) 2.511283341791677E+04, /* J = 2 */
1991     (PID.TID 0000.0001) 2.506062287724593E+04, /* J = 3 */
1992     (PID.TID 0000.0001) 2.500793521843962E+04, /* J = 4 */
1993     (PID.TID 0000.0001) 2.495477144459491E+04, /* J = 5 */
1994     (PID.TID 0000.0001) 2.490113256787343E+04, /* J = 6 */
1995     (PID.TID 0000.0001) 2.484701960948206E+04, /* J = 7 */
1996     (PID.TID 0000.0001) 2.479243359965354E+04, /* J = 8 */
1997     (PID.TID 0000.0001) 2.473737557762680E+04, /* J = 9 */
1998     (PID.TID 0000.0001) 2.468184659162722E+04, /* J = 10 */
1999     (PID.TID 0000.0001) 2.462584769884665E+04, /* J = 11 */
2000     (PID.TID 0000.0001) 2.456937996542330E+04, /* J = 12 */
2001     (PID.TID 0000.0001) 2.451244446642140E+04, /* J = 13 */
2002     (PID.TID 0000.0001) 2.445504228581079E+04, /* J = 14 */
2003     (PID.TID 0000.0001) 2.439717451644624E+04, /* J = 15 */
2004     (PID.TID 0000.0001) 2.433884226004667E+04, /* J = 16 */
2005     (PID.TID 0000.0001) 2.428004662717415E+04, /* J = 17 */
2006     (PID.TID 0000.0001) 2.422078873721278E+04, /* J = 18 */
2007     (PID.TID 0000.0001) 2.416106971834737E+04, /* J = 19 */
2008     (PID.TID 0000.0001) 2.410089070754197E+04, /* J = 20 */
2009     (PID.TID 0000.0001) 2.404025285051817E+04, /* J = 21 */
2010     (PID.TID 0000.0001) 2.397915730173338E+04, /* J = 22 */
2011     (PID.TID 0000.0001) 2.391760522435877E+04, /* J = 23 */
2012     (PID.TID 0000.0001) 2.385559779025718E+04, /* J = 24 */
2013     (PID.TID 0000.0001) 2.379313617996076E+04, /* J = 25 */
2014     (PID.TID 0000.0001) 2.373022158264854E+04, /* J = 26 */
2015     (PID.TID 0000.0001) 2.366685519612378E+04, /* J = 27 */
2016     (PID.TID 0000.0001) 2.360303822679111E+04, /* J = 28 */
2017     (PID.TID 0000.0001) 2.353877188963365E+04, /* J = 29 */
2018     (PID.TID 0000.0001) 2.347405740818982E+04, /* J = 30 */
2019     (PID.TID 0000.0001) 2.340889601453007E+04, /* J = 31 */
2020     (PID.TID 0000.0001) 2.334328894923340E+04, /* J = 32 */
2021     (PID.TID 0000.0001) 2.327723746136375E+04, /* J = 33 */
2022     (PID.TID 0000.0001) 2.321074280844627E+04, /* J = 34 */
2023     (PID.TID 0000.0001) 2.314380625644327E+04, /* J = 35 */
2024     (PID.TID 0000.0001) 2.307642907973023E+04, /* J = 36 */
2025     (PID.TID 0000.0001) 2.300861256107146E+04, /* J = 37 */
2026     (PID.TID 0000.0001) 2.294035799159574E+04, /* J = 38 */
2027     (PID.TID 0000.0001) 2.287166667077167E+04, /* J = 39 */
2028     (PID.TID 0000.0001) 2.280253990638299E+04, /* J = 40 */
2029     (PID.TID 0000.0001) 2.273297901450364E+04, /* J = 41 */
2030     (PID.TID 0000.0001) 2.266298531947274E+04, /* J = 42 */
2031     (PID.TID 0000.0001) 2.259256015386935E+04, /* J = 43 */
2032     (PID.TID 0000.0001) 2.252170485848710E+04, /* J = 44 */
2033     (PID.TID 0000.0001) 2.245042078230868E+04, /* J = 45 */
2034     (PID.TID 0000.0001) 2.237870928248015E+04, /* J = 46 */
2035     (PID.TID 0000.0001) 2.230657172428511E+04, /* J = 47 */
2036     (PID.TID 0000.0001) 2.223400948111865E+04, /* J = 48 */
2037     (PID.TID 0000.0001) 2.216102393446132E+04, /* J = 49 */
2038     (PID.TID 0000.0001) 2.208761647385271E+04, /* J = 50 */
2039     (PID.TID 0000.0001) 2.201378849686504E+04, /* J = 51 */
2040     (PID.TID 0000.0001) 2.193954140907658E+04, /* J = 52 */
2041     (PID.TID 0000.0001) 2.186487662404487E+04, /* J = 53 */
2042     (PID.TID 0000.0001) 2.178979556327977E+04, /* J = 54 */
2043     (PID.TID 0000.0001) 2.171429965621647E+04, /* J = 55 */
2044     (PID.TID 0000.0001) 2.163839034018820E+04, /* J = 56 */
2045     (PID.TID 0000.0001) 2.156206906039891E+04, /* J = 57 */
2046     (PID.TID 0000.0001) 2.148533726989578E+04, /* J = 58 */
2047     (PID.TID 0000.0001) 2.140819642954147E+04, /* J = 59 */
2048     (PID.TID 0000.0001) 2.133064800798639E+04, /* J = 60 */
2049     (PID.TID 0000.0001) 2.125269348164072E+04, /* J = 61 */
2050     (PID.TID 0000.0001) 2.117433433464624E+04, /* J = 62 */
2051     (PID.TID 0000.0001) 2.109557205884818E+04, /* J = 63 */
2052     (PID.TID 0000.0001) 2.101640815376673E+04 /* J = 64 */
2053     (PID.TID 0000.0001) ;
2054     (PID.TID 0000.0001) dyF = /* dyF(:,1,:,1) ( units: m ) */
2055     (PID.TID 0000.0001) 64 @ 2.779436833800970E+04 /* I = 1: 64 */
2056     (PID.TID 0000.0001) ;
2057     (PID.TID 0000.0001) dyF = /* dyF(1,:,1,:) ( units: m ) */
2058     (PID.TID 0000.0001) 64 @ 2.779436833800970E+04 /* J = 1: 64 */
2059     (PID.TID 0000.0001) ;
2060     (PID.TID 0000.0001) dxG = /* dxG(:,1,:,1) ( units: m ) */
2061     (PID.TID 0000.0001) 64 @ 2.519025246050310E+04 /* I = 1: 64 */
2062     (PID.TID 0000.0001) ;
2063     (PID.TID 0000.0001) dxG = /* dxG(1,:,1,:) ( units: m ) */
2064     (PID.TID 0000.0001) 2.519025246050310E+04, /* J = 1 */
2065     (PID.TID 0000.0001) 2.513875945796684E+04, /* J = 2 */
2066     (PID.TID 0000.0001) 2.508678784968725E+04, /* J = 3 */
2067     (PID.TID 0000.0001) 2.503433862512882E+04, /* J = 4 */
2068     (PID.TID 0000.0001) 2.498141278284919E+04, /* J = 5 */
2069     (PID.TID 0000.0001) 2.492801133048011E+04, /* J = 6 */
2070     (PID.TID 0000.0001) 2.487413528470825E+04, /* J = 7 */
2071     (PID.TID 0000.0001) 2.481978567125586E+04, /* J = 8 */
2072     (PID.TID 0000.0001) 2.476496352486124E+04, /* J = 9 */
2073     (PID.TID 0000.0001) 2.470966988925904E+04, /* J = 10 */
2074     (PID.TID 0000.0001) 2.465390581716037E+04, /* J = 11 */
2075     (PID.TID 0000.0001) 2.459767237023278E+04, /* J = 12 */
2076     (PID.TID 0000.0001) 2.454097061908004E+04, /* J = 13 */
2077     (PID.TID 0000.0001) 2.448380164322176E+04, /* J = 14 */
2078     (PID.TID 0000.0001) 2.442616653107283E+04, /* J = 15 */
2079     (PID.TID 0000.0001) 2.436806637992272E+04, /* J = 16 */
2080     (PID.TID 0000.0001) 2.430950229591454E+04, /* J = 17 */
2081     (PID.TID 0000.0001) 2.425047539402404E+04, /* J = 18 */
2082     (PID.TID 0000.0001) 2.419098679803835E+04, /* J = 19 */
2083     (PID.TID 0000.0001) 2.413103764053457E+04, /* J = 20 */
2084     (PID.TID 0000.0001) 2.407062906285827E+04, /* J = 21 */
2085     (PID.TID 0000.0001) 2.400976221510167E+04, /* J = 22 */
2086     (PID.TID 0000.0001) 2.394843825608182E+04, /* J = 23 */
2087     (PID.TID 0000.0001) 2.388665835331851E+04, /* J = 24 */
2088     (PID.TID 0000.0001) 2.382442368301203E+04, /* J = 25 */
2089     (PID.TID 0000.0001) 2.376173543002079E+04, /* J = 26 */
2090     (PID.TID 0000.0001) 2.369859478783877E+04, /* J = 27 */
2091     (PID.TID 0000.0001) 2.363500295857277E+04, /* J = 28 */
2092     (PID.TID 0000.0001) 2.357096115291957E+04, /* J = 29 */
2093     (PID.TID 0000.0001) 2.350647059014283E+04, /* J = 30 */
2094     (PID.TID 0000.0001) 2.344153249804990E+04, /* J = 31 */
2095     (PID.TID 0000.0001) 2.337614811296844E+04, /* J = 32 */
2096     (PID.TID 0000.0001) 2.331031867972290E+04, /* J = 33 */
2097     (PID.TID 0000.0001) 2.324404545161081E+04, /* J = 34 */
2098     (PID.TID 0000.0001) 2.317732969037889E+04, /* J = 35 */
2099     (PID.TID 0000.0001) 2.311017266619906E+04, /* J = 36 */
2100     (PID.TID 0000.0001) 2.304257565764427E+04, /* J = 37 */
2101     (PID.TID 0000.0001) 2.297453995166411E+04, /* J = 38 */
2102     (PID.TID 0000.0001) 2.290606684356036E+04, /* J = 39 */
2103     (PID.TID 0000.0001) 2.283715763696229E+04, /* J = 40 */
2104     (PID.TID 0000.0001) 2.276781364380187E+04, /* J = 41 */
2105     (PID.TID 0000.0001) 2.269803618428877E+04, /* J = 42 */
2106     (PID.TID 0000.0001) 2.262782658688523E+04, /* J = 43 */
2107     (PID.TID 0000.0001) 2.255718618828079E+04, /* J = 44 */
2108     (PID.TID 0000.0001) 2.248611633336681E+04, /* J = 45 */
2109     (PID.TID 0000.0001) 2.241461837521088E+04, /* J = 46 */
2110     (PID.TID 0000.0001) 2.234269367503106E+04, /* J = 47 */
2111     (PID.TID 0000.0001) 2.227034360216997E+04, /* J = 48 */
2112     (PID.TID 0000.0001) 2.219756953406870E+04, /* J = 49 */
2113     (PID.TID 0000.0001) 2.212437285624061E+04, /* J = 50 */
2114     (PID.TID 0000.0001) 2.205075496224494E+04, /* J = 51 */
2115     (PID.TID 0000.0001) 2.197671725366026E+04, /* J = 52 */
2116     (PID.TID 0000.0001) 2.190226114005784E+04, /* J = 53 */
2117     (PID.TID 0000.0001) 2.182738803897473E+04, /* J = 54 */
2118     (PID.TID 0000.0001) 2.175209937588686E+04, /* J = 55 */
2119     (PID.TID 0000.0001) 2.167639658418185E+04, /* J = 56 */
2120     (PID.TID 0000.0001) 2.160028110513174E+04, /* J = 57 */
2121     (PID.TID 0000.0001) 2.152375438786551E+04, /* J = 58 */
2122     (PID.TID 0000.0001) 2.144681788934157E+04, /* J = 59 */
2123     (PID.TID 0000.0001) 2.136947307431993E+04, /* J = 60 */
2124     (PID.TID 0000.0001) 2.129172141533439E+04, /* J = 61 */
2125     (PID.TID 0000.0001) 2.121356439266446E+04, /* J = 62 */
2126     (PID.TID 0000.0001) 2.113500349430719E+04, /* J = 63 */
2127     (PID.TID 0000.0001) 2.105604021594884E+04 /* J = 64 */
2128     (PID.TID 0000.0001) ;
2129     (PID.TID 0000.0001) dyG = /* dyG(:,1,:,1) ( units: m ) */
2130     (PID.TID 0000.0001) 64 @ 2.779436833800970E+04 /* I = 1: 64 */
2131     (PID.TID 0000.0001) ;
2132     (PID.TID 0000.0001) dyG = /* dyG(1,:,1,:) ( units: m ) */
2133     (PID.TID 0000.0001) 64 @ 2.779436833800970E+04 /* J = 1: 64 */
2134     (PID.TID 0000.0001) ;
2135     (PID.TID 0000.0001) dxC = /* dxC(:,1,:,1) ( units: m ) */
2136     (PID.TID 0000.0001) 64 @ 2.516456584643870E+04 /* I = 1: 64 */
2137     (PID.TID 0000.0001) ;
2138     (PID.TID 0000.0001) dxC = /* dxC(1,:,1,:) ( units: m ) */
2139     (PID.TID 0000.0001) 2.516456584643870E+04, /* J = 1 */
2140     (PID.TID 0000.0001) 2.511283341791677E+04, /* J = 2 */
2141     (PID.TID 0000.0001) 2.506062287724593E+04, /* J = 3 */
2142     (PID.TID 0000.0001) 2.500793521843962E+04, /* J = 4 */
2143     (PID.TID 0000.0001) 2.495477144459491E+04, /* J = 5 */
2144     (PID.TID 0000.0001) 2.490113256787343E+04, /* J = 6 */
2145     (PID.TID 0000.0001) 2.484701960948206E+04, /* J = 7 */
2146     (PID.TID 0000.0001) 2.479243359965354E+04, /* J = 8 */
2147     (PID.TID 0000.0001) 2.473737557762680E+04, /* J = 9 */
2148     (PID.TID 0000.0001) 2.468184659162722E+04, /* J = 10 */
2149     (PID.TID 0000.0001) 2.462584769884665E+04, /* J = 11 */
2150     (PID.TID 0000.0001) 2.456937996542330E+04, /* J = 12 */
2151     (PID.TID 0000.0001) 2.451244446642140E+04, /* J = 13 */
2152     (PID.TID 0000.0001) 2.445504228581079E+04, /* J = 14 */
2153     (PID.TID 0000.0001) 2.439717451644624E+04, /* J = 15 */
2154     (PID.TID 0000.0001) 2.433884226004667E+04, /* J = 16 */
2155     (PID.TID 0000.0001) 2.428004662717415E+04, /* J = 17 */
2156     (PID.TID 0000.0001) 2.422078873721278E+04, /* J = 18 */
2157     (PID.TID 0000.0001) 2.416106971834737E+04, /* J = 19 */
2158     (PID.TID 0000.0001) 2.410089070754197E+04, /* J = 20 */
2159     (PID.TID 0000.0001) 2.404025285051817E+04, /* J = 21 */
2160     (PID.TID 0000.0001) 2.397915730173338E+04, /* J = 22 */
2161     (PID.TID 0000.0001) 2.391760522435877E+04, /* J = 23 */
2162     (PID.TID 0000.0001) 2.385559779025718E+04, /* J = 24 */
2163     (PID.TID 0000.0001) 2.379313617996076E+04, /* J = 25 */
2164     (PID.TID 0000.0001) 2.373022158264854E+04, /* J = 26 */
2165     (PID.TID 0000.0001) 2.366685519612378E+04, /* J = 27 */
2166     (PID.TID 0000.0001) 2.360303822679111E+04, /* J = 28 */
2167     (PID.TID 0000.0001) 2.353877188963365E+04, /* J = 29 */
2168     (PID.TID 0000.0001) 2.347405740818982E+04, /* J = 30 */
2169     (PID.TID 0000.0001) 2.340889601453007E+04, /* J = 31 */
2170     (PID.TID 0000.0001) 2.334328894923340E+04, /* J = 32 */
2171     (PID.TID 0000.0001) 2.327723746136375E+04, /* J = 33 */
2172     (PID.TID 0000.0001) 2.321074280844627E+04, /* J = 34 */
2173     (PID.TID 0000.0001) 2.314380625644327E+04, /* J = 35 */
2174     (PID.TID 0000.0001) 2.307642907973023E+04, /* J = 36 */
2175     (PID.TID 0000.0001) 2.300861256107146E+04, /* J = 37 */
2176     (PID.TID 0000.0001) 2.294035799159574E+04, /* J = 38 */
2177     (PID.TID 0000.0001) 2.287166667077167E+04, /* J = 39 */
2178     (PID.TID 0000.0001) 2.280253990638299E+04, /* J = 40 */
2179     (PID.TID 0000.0001) 2.273297901450364E+04, /* J = 41 */
2180     (PID.TID 0000.0001) 2.266298531947274E+04, /* J = 42 */
2181     (PID.TID 0000.0001) 2.259256015386935E+04, /* J = 43 */
2182     (PID.TID 0000.0001) 2.252170485848710E+04, /* J = 44 */
2183     (PID.TID 0000.0001) 2.245042078230868E+04, /* J = 45 */
2184     (PID.TID 0000.0001) 2.237870928248015E+04, /* J = 46 */
2185     (PID.TID 0000.0001) 2.230657172428511E+04, /* J = 47 */
2186     (PID.TID 0000.0001) 2.223400948111865E+04, /* J = 48 */
2187     (PID.TID 0000.0001) 2.216102393446132E+04, /* J = 49 */
2188     (PID.TID 0000.0001) 2.208761647385271E+04, /* J = 50 */
2189     (PID.TID 0000.0001) 2.201378849686504E+04, /* J = 51 */
2190     (PID.TID 0000.0001) 2.193954140907658E+04, /* J = 52 */
2191     (PID.TID 0000.0001) 2.186487662404487E+04, /* J = 53 */
2192     (PID.TID 0000.0001) 2.178979556327977E+04, /* J = 54 */
2193     (PID.TID 0000.0001) 2.171429965621647E+04, /* J = 55 */
2194     (PID.TID 0000.0001) 2.163839034018820E+04, /* J = 56 */
2195     (PID.TID 0000.0001) 2.156206906039891E+04, /* J = 57 */
2196     (PID.TID 0000.0001) 2.148533726989578E+04, /* J = 58 */
2197     (PID.TID 0000.0001) 2.140819642954147E+04, /* J = 59 */
2198     (PID.TID 0000.0001) 2.133064800798639E+04, /* J = 60 */
2199     (PID.TID 0000.0001) 2.125269348164072E+04, /* J = 61 */
2200     (PID.TID 0000.0001) 2.117433433464624E+04, /* J = 62 */
2201     (PID.TID 0000.0001) 2.109557205884818E+04, /* J = 63 */
2202     (PID.TID 0000.0001) 2.101640815376673E+04 /* J = 64 */
2203     (PID.TID 0000.0001) ;
2204     (PID.TID 0000.0001) dyC = /* dyC(:,1,:,1) ( units: m ) */
2205     (PID.TID 0000.0001) 64 @ 2.779436833800970E+04 /* I = 1: 64 */
2206     (PID.TID 0000.0001) ;
2207     (PID.TID 0000.0001) dyC = /* dyC(1,:,1,:) ( units: m ) */
2208     (PID.TID 0000.0001) 64 @ 2.779436833800970E+04 /* J = 1: 64 */
2209     (PID.TID 0000.0001) ;
2210     (PID.TID 0000.0001) dxV = /* dxV(:,1,:,1) ( units: m ) */
2211     (PID.TID 0000.0001) 64 @ 2.519025246050310E+04 /* I = 1: 64 */
2212     (PID.TID 0000.0001) ;
2213     (PID.TID 0000.0001) dxV = /* dxV(1,:,1,:) ( units: m ) */
2214     (PID.TID 0000.0001) 2.519025246050310E+04, /* J = 1 */
2215     (PID.TID 0000.0001) 2.513875945796684E+04, /* J = 2 */
2216     (PID.TID 0000.0001) 2.508678784968725E+04, /* J = 3 */
2217     (PID.TID 0000.0001) 2.503433862512882E+04, /* J = 4 */
2218     (PID.TID 0000.0001) 2.498141278284919E+04, /* J = 5 */
2219     (PID.TID 0000.0001) 2.492801133048011E+04, /* J = 6 */
2220     (PID.TID 0000.0001) 2.487413528470825E+04, /* J = 7 */
2221     (PID.TID 0000.0001) 2.481978567125586E+04, /* J = 8 */
2222     (PID.TID 0000.0001) 2.476496352486124E+04, /* J = 9 */
2223     (PID.TID 0000.0001) 2.470966988925904E+04, /* J = 10 */
2224     (PID.TID 0000.0001) 2.465390581716037E+04, /* J = 11 */
2225     (PID.TID 0000.0001) 2.459767237023278E+04, /* J = 12 */
2226     (PID.TID 0000.0001) 2.454097061908004E+04, /* J = 13 */
2227     (PID.TID 0000.0001) 2.448380164322176E+04, /* J = 14 */
2228     (PID.TID 0000.0001) 2.442616653107283E+04, /* J = 15 */
2229     (PID.TID 0000.0001) 2.436806637992272E+04, /* J = 16 */
2230     (PID.TID 0000.0001) 2.430950229591454E+04, /* J = 17 */
2231     (PID.TID 0000.0001) 2.425047539402404E+04, /* J = 18 */
2232     (PID.TID 0000.0001) 2.419098679803835E+04, /* J = 19 */
2233     (PID.TID 0000.0001) 2.413103764053457E+04, /* J = 20 */
2234     (PID.TID 0000.0001) 2.407062906285827E+04, /* J = 21 */
2235     (PID.TID 0000.0001) 2.400976221510167E+04, /* J = 22 */
2236     (PID.TID 0000.0001) 2.394843825608182E+04, /* J = 23 */
2237     (PID.TID 0000.0001) 2.388665835331851E+04, /* J = 24 */
2238     (PID.TID 0000.0001) 2.382442368301203E+04, /* J = 25 */
2239     (PID.TID 0000.0001) 2.376173543002079E+04, /* J = 26 */
2240     (PID.TID 0000.0001) 2.369859478783877E+04, /* J = 27 */
2241     (PID.TID 0000.0001) 2.363500295857277E+04, /* J = 28 */
2242     (PID.TID 0000.0001) 2.357096115291957E+04, /* J = 29 */
2243     (PID.TID 0000.0001) 2.350647059014283E+04, /* J = 30 */
2244     (PID.TID 0000.0001) 2.344153249804990E+04, /* J = 31 */
2245     (PID.TID 0000.0001) 2.337614811296844E+04, /* J = 32 */
2246     (PID.TID 0000.0001) 2.331031867972290E+04, /* J = 33 */
2247     (PID.TID 0000.0001) 2.324404545161081E+04, /* J = 34 */
2248     (PID.TID 0000.0001) 2.317732969037889E+04, /* J = 35 */
2249     (PID.TID 0000.0001) 2.311017266619906E+04, /* J = 36 */
2250     (PID.TID 0000.0001) 2.304257565764427E+04, /* J = 37 */
2251     (PID.TID 0000.0001) 2.297453995166411E+04, /* J = 38 */
2252     (PID.TID 0000.0001) 2.290606684356036E+04, /* J = 39 */
2253     (PID.TID 0000.0001) 2.283715763696229E+04, /* J = 40 */
2254     (PID.TID 0000.0001) 2.276781364380187E+04, /* J = 41 */
2255     (PID.TID 0000.0001) 2.269803618428877E+04, /* J = 42 */
2256     (PID.TID 0000.0001) 2.262782658688523E+04, /* J = 43 */
2257     (PID.TID 0000.0001) 2.255718618828079E+04, /* J = 44 */
2258     (PID.TID 0000.0001) 2.248611633336681E+04, /* J = 45 */
2259     (PID.TID 0000.0001) 2.241461837521088E+04, /* J = 46 */
2260     (PID.TID 0000.0001) 2.234269367503106E+04, /* J = 47 */
2261     (PID.TID 0000.0001) 2.227034360216997E+04, /* J = 48 */
2262     (PID.TID 0000.0001) 2.219756953406870E+04, /* J = 49 */
2263     (PID.TID 0000.0001) 2.212437285624061E+04, /* J = 50 */
2264     (PID.TID 0000.0001) 2.205075496224494E+04, /* J = 51 */
2265     (PID.TID 0000.0001) 2.197671725366026E+04, /* J = 52 */
2266     (PID.TID 0000.0001) 2.190226114005784E+04, /* J = 53 */
2267     (PID.TID 0000.0001) 2.182738803897473E+04, /* J = 54 */
2268     (PID.TID 0000.0001) 2.175209937588686E+04, /* J = 55 */
2269     (PID.TID 0000.0001) 2.167639658418185E+04, /* J = 56 */
2270     (PID.TID 0000.0001) 2.160028110513174E+04, /* J = 57 */
2271     (PID.TID 0000.0001) 2.152375438786551E+04, /* J = 58 */
2272     (PID.TID 0000.0001) 2.144681788934157E+04, /* J = 59 */
2273     (PID.TID 0000.0001) 2.136947307431993E+04, /* J = 60 */
2274     (PID.TID 0000.0001) 2.129172141533439E+04, /* J = 61 */
2275     (PID.TID 0000.0001) 2.121356439266446E+04, /* J = 62 */
2276     (PID.TID 0000.0001) 2.113500349430719E+04, /* J = 63 */
2277     (PID.TID 0000.0001) 2.105604021594884E+04 /* J = 64 */
2278     (PID.TID 0000.0001) ;
2279     (PID.TID 0000.0001) dyU = /* dyU(:,1,:,1) ( units: m ) */
2280     (PID.TID 0000.0001) 64 @ 2.779436833800970E+04 /* I = 1: 64 */
2281     (PID.TID 0000.0001) ;
2282     (PID.TID 0000.0001) dyU = /* dyU(1,:,1,:) ( units: m ) */
2283     (PID.TID 0000.0001) 64 @ 2.779436833800970E+04 /* J = 1: 64 */
2284     (PID.TID 0000.0001) ;
2285     (PID.TID 0000.0001) rA = /* rA (:,1,:,1) ( units: m^2 ) */
2286     (PID.TID 0000.0001) 64 @ 6.994326573595897E+08 /* I = 1: 64 */
2287     (PID.TID 0000.0001) ;
2288     (PID.TID 0000.0001) rA = /* rA (1,:,1,:) ( units: m^2 ) */
2289     (PID.TID 0000.0001) 6.994326573595897E+08, /* J = 1 */
2290     (PID.TID 0000.0001) 6.979947883268648E+08, /* J = 2 */
2291     (PID.TID 0000.0001) 6.965436304794976E+08, /* J = 3 */
2292     (PID.TID 0000.0001) 6.950792114454534E+08, /* J = 4 */
2293     (PID.TID 0000.0001) 6.936015591051663E+08, /* J = 5 */
2294     (PID.TID 0000.0001) 6.921107015909784E+08, /* J = 6 */
2295     (PID.TID 0000.0001) 6.906066672867069E+08, /* J = 7 */
2296     (PID.TID 0000.0001) 6.890894848269770E+08, /* J = 8 */
2297     (PID.TID 0000.0001) 6.875591830967587E+08, /* J = 9 */
2298     (PID.TID 0000.0001) 6.860157912307780E+08, /* J = 10 */
2299     (PID.TID 0000.0001) 6.844593386130148E+08, /* J = 11 */
2300     (PID.TID 0000.0001) 6.828898548760654E+08, /* J = 12 */
2301     (PID.TID 0000.0001) 6.813073699006394E+08, /* J = 13 */
2302     (PID.TID 0000.0001) 6.797119138149720E+08, /* J = 14 */
2303     (PID.TID 0000.0001) 6.781035169942623E+08, /* J = 15 */
2304     (PID.TID 0000.0001) 6.764822100600548E+08, /* J = 16 */
2305     (PID.TID 0000.0001) 6.748480238796690E+08, /* J = 17 */
2306     (PID.TID 0000.0001) 6.732009895657281E+08, /* J = 18 */
2307     (PID.TID 0000.0001) 6.715411384752938E+08, /* J = 19 */
2308     (PID.TID 0000.0001) 6.698685022096107E+08, /* J = 20 */
2309     (PID.TID 0000.0001) 6.681831126132613E+08, /* J = 21 */
2310     (PID.TID 0000.0001) 6.664850017735666E+08, /* J = 22 */
2311     (PID.TID 0000.0001) 6.647742020202218E+08, /* J = 23 */
2312     (PID.TID 0000.0001) 6.630507459242355E+08, /* J = 24 */
2313     (PID.TID 0000.0001) 6.613146662978902E+08, /* J = 25 */
2314     (PID.TID 0000.0001) 6.595659961935136E+08, /* J = 26 */
2315     (PID.TID 0000.0001) 6.578047689033611E+08, /* J = 27 */
2316     (PID.TID 0000.0001) 6.560310179585534E+08, /* J = 28 */
2317     (PID.TID 0000.0001) 6.542447771288618E+08, /* J = 29 */
2318     (PID.TID 0000.0001) 6.524460804216844E+08, /* J = 30 */
2319     (PID.TID 0000.0001) 6.506349620815755E+08, /* J = 31 */
2320     (PID.TID 0000.0001) 6.488114565896950E+08, /* J = 32 */
2321     (PID.TID 0000.0001) 6.469755986629034E+08, /* J = 33 */
2322     (PID.TID 0000.0001) 6.451274232533309E+08, /* J = 34 */
2323     (PID.TID 0000.0001) 6.432669655475305E+08, /* J = 35 */
2324     (PID.TID 0000.0001) 6.413942609659878E+08, /* J = 36 */
2325     (PID.TID 0000.0001) 6.395093451621964E+08, /* J = 37 */
2326     (PID.TID 0000.0001) 6.376122540223833E+08, /* J = 38 */
2327     (PID.TID 0000.0001) 6.357030236643095E+08, /* J = 39 */
2328     (PID.TID 0000.0001) 6.337816904370142E+08, /* J = 40 */
2329     (PID.TID 0000.0001) 6.318482909199312E+08, /* J = 41 */
2330     (PID.TID 0000.0001) 6.299028619221603E+08, /* J = 42 */
2331     (PID.TID 0000.0001) 6.279454404818789E+08, /* J = 43 */
2332     (PID.TID 0000.0001) 6.259760638655939E+08, /* J = 44 */
2333     (PID.TID 0000.0001) 6.239947695673566E+08, /* J = 45 */
2334     (PID.TID 0000.0001) 6.220015953081915E+08, /* J = 46 */
2335     (PID.TID 0000.0001) 6.199965790352323E+08, /* J = 47 */
2336     (PID.TID 0000.0001) 6.179797589211514E+08, /* J = 48 */
2337     (PID.TID 0000.0001) 6.159511733632165E+08, /* J = 49 */
2338     (PID.TID 0000.0001) 6.139108609828386E+08, /* J = 50 */
2339     (PID.TID 0000.0001) 6.118588606245891E+08, /* J = 51 */
2340     (PID.TID 0000.0001) 6.097952113556099E+08, /* J = 52 */
2341     (PID.TID 0000.0001) 6.077199524648079E+08, /* J = 53 */
2342     (PID.TID 0000.0001) 6.056331234621273E+08, /* J = 54 */
2343     (PID.TID 0000.0001) 6.035347640777835E+08, /* J = 55 */
2344     (PID.TID 0000.0001) 6.014249142614759E+08, /* J = 56 */
2345     (PID.TID 0000.0001) 5.993036141817799E+08, /* J = 57 */
2346     (PID.TID 0000.0001) 5.971709042251236E+08, /* J = 58 */
2347     (PID.TID 0000.0001) 5.950268249952575E+08, /* J = 59 */
2348     (PID.TID 0000.0001) 5.928714173123310E+08, /* J = 60 */
2349     (PID.TID 0000.0001) 5.907047222122821E+08, /* J = 61 */
2350     (PID.TID 0000.0001) 5.885267809457574E+08, /* J = 62 */
2351     (PID.TID 0000.0001) 5.863376349776791E+08, /* J = 63 */
2352     (PID.TID 0000.0001) 5.841373259862225E+08 /* J = 64 */
2353     (PID.TID 0000.0001) ;
2354     (PID.TID 0000.0001) rAw = /* rAw(:,1,:,1) ( units: m^2 ) */
2355     (PID.TID 0000.0001) 64 @ 6.994326573595897E+08 /* I = 1: 64 */
2356     (PID.TID 0000.0001) ;
2357     (PID.TID 0000.0001) rAw = /* rAw(1,:,1,:) ( units: m^2 ) */
2358     (PID.TID 0000.0001) 6.994326573595897E+08, /* J = 1 */
2359     (PID.TID 0000.0001) 6.979947883268648E+08, /* J = 2 */
2360     (PID.TID 0000.0001) 6.965436304794976E+08, /* J = 3 */
2361     (PID.TID 0000.0001) 6.950792114454534E+08, /* J = 4 */
2362     (PID.TID 0000.0001) 6.936015591051663E+08, /* J = 5 */
2363     (PID.TID 0000.0001) 6.921107015909784E+08, /* J = 6 */
2364     (PID.TID 0000.0001) 6.906066672867069E+08, /* J = 7 */
2365     (PID.TID 0000.0001) 6.890894848269770E+08, /* J = 8 */
2366     (PID.TID 0000.0001) 6.875591830967587E+08, /* J = 9 */
2367     (PID.TID 0000.0001) 6.860157912307780E+08, /* J = 10 */
2368     (PID.TID 0000.0001) 6.844593386130148E+08, /* J = 11 */
2369     (PID.TID 0000.0001) 6.828898548760654E+08, /* J = 12 */
2370     (PID.TID 0000.0001) 6.813073699006394E+08, /* J = 13 */
2371     (PID.TID 0000.0001) 6.797119138149720E+08, /* J = 14 */
2372     (PID.TID 0000.0001) 6.781035169942623E+08, /* J = 15 */
2373     (PID.TID 0000.0001) 6.764822100600548E+08, /* J = 16 */
2374     (PID.TID 0000.0001) 6.748480238796690E+08, /* J = 17 */
2375     (PID.TID 0000.0001) 6.732009895657281E+08, /* J = 18 */
2376     (PID.TID 0000.0001) 6.715411384752938E+08, /* J = 19 */
2377     (PID.TID 0000.0001) 6.698685022096107E+08, /* J = 20 */
2378     (PID.TID 0000.0001) 6.681831126132613E+08, /* J = 21 */
2379     (PID.TID 0000.0001) 6.664850017735666E+08, /* J = 22 */
2380     (PID.TID 0000.0001) 6.647742020202218E+08, /* J = 23 */
2381     (PID.TID 0000.0001) 6.630507459242355E+08, /* J = 24 */
2382     (PID.TID 0000.0001) 6.613146662978902E+08, /* J = 25 */
2383     (PID.TID 0000.0001) 6.595659961935136E+08, /* J = 26 */
2384     (PID.TID 0000.0001) 6.578047689033611E+08, /* J = 27 */
2385     (PID.TID 0000.0001) 6.560310179585534E+08, /* J = 28 */
2386     (PID.TID 0000.0001) 6.542447771288618E+08, /* J = 29 */
2387     (PID.TID 0000.0001) 6.524460804216844E+08, /* J = 30 */
2388     (PID.TID 0000.0001) 6.506349620815755E+08, /* J = 31 */
2389     (PID.TID 0000.0001) 6.488114565896950E+08, /* J = 32 */
2390     (PID.TID 0000.0001) 6.469755986629034E+08, /* J = 33 */
2391     (PID.TID 0000.0001) 6.451274232533309E+08, /* J = 34 */
2392     (PID.TID 0000.0001) 6.432669655475305E+08, /* J = 35 */
2393     (PID.TID 0000.0001) 6.413942609659878E+08, /* J = 36 */
2394     (PID.TID 0000.0001) 6.395093451621964E+08, /* J = 37 */
2395     (PID.TID 0000.0001) 6.376122540223833E+08, /* J = 38 */
2396     (PID.TID 0000.0001) 6.357030236643095E+08, /* J = 39 */
2397     (PID.TID 0000.0001) 6.337816904370142E+08, /* J = 40 */
2398     (PID.TID 0000.0001) 6.318482909199312E+08, /* J = 41 */
2399     (PID.TID 0000.0001) 6.299028619221603E+08, /* J = 42 */
2400     (PID.TID 0000.0001) 6.279454404818789E+08, /* J = 43 */
2401     (PID.TID 0000.0001) 6.259760638655939E+08, /* J = 44 */
2402     (PID.TID 0000.0001) 6.239947695673566E+08, /* J = 45 */
2403     (PID.TID 0000.0001) 6.220015953081915E+08, /* J = 46 */
2404     (PID.TID 0000.0001) 6.199965790352323E+08, /* J = 47 */
2405     (PID.TID 0000.0001) 6.179797589211514E+08, /* J = 48 */
2406     (PID.TID 0000.0001) 6.159511733632165E+08, /* J = 49 */
2407     (PID.TID 0000.0001) 6.139108609828386E+08, /* J = 50 */
2408     (PID.TID 0000.0001) 6.118588606245891E+08, /* J = 51 */
2409     (PID.TID 0000.0001) 6.097952113556099E+08, /* J = 52 */
2410     (PID.TID 0000.0001) 6.077199524648079E+08, /* J = 53 */
2411     (PID.TID 0000.0001) 6.056331234621273E+08, /* J = 54 */
2412     (PID.TID 0000.0001) 6.035347640777835E+08, /* J = 55 */
2413     (PID.TID 0000.0001) 6.014249142614759E+08, /* J = 56 */
2414     (PID.TID 0000.0001) 5.993036141817799E+08, /* J = 57 */
2415     (PID.TID 0000.0001) 5.971709042251236E+08, /* J = 58 */
2416     (PID.TID 0000.0001) 5.950268249952575E+08, /* J = 59 */
2417     (PID.TID 0000.0001) 5.928714173123310E+08, /* J = 60 */
2418     (PID.TID 0000.0001) 5.907047222122821E+08, /* J = 61 */
2419     (PID.TID 0000.0001) 5.885267809457574E+08, /* J = 62 */
2420     (PID.TID 0000.0001) 5.863376349776791E+08, /* J = 63 */
2421     (PID.TID 0000.0001) 5.841373259862225E+08 /* J = 64 */
2422     (PID.TID 0000.0001) ;
2423     (PID.TID 0000.0001) rAs = /* rAs(:,1,:,1) ( units: m^2 ) */
2424     (PID.TID 0000.0001) 64 @ 7.001466000059072E+08 /* I = 1: 64 */
2425     (PID.TID 0000.0001) ;
2426     (PID.TID 0000.0001) rAs = /* rAs(1,:,1,:) ( units: m^2 ) */
2427     (PID.TID 0000.0001) 7.001466000059072E+08, /* J = 1 */
2428     (PID.TID 0000.0001) 6.987153856619213E+08, /* J = 2 */
2429     (PID.TID 0000.0001) 6.972708687841871E+08, /* J = 3 */
2430     (PID.TID 0000.0001) 6.958130768742002E+08, /* J = 4 */
2431     (PID.TID 0000.0001) 6.943420376862097E+08, /* J = 5 */
2432     (PID.TID 0000.0001) 6.928577792267066E+08, /* J = 6 */
2433     (PID.TID 0000.0001) 6.913603297538249E+08, /* J = 7 */
2434     (PID.TID 0000.0001) 6.898497177768300E+08, /* J = 8 */
2435     (PID.TID 0000.0001) 6.883259720555978E+08, /* J = 9 */
2436     (PID.TID 0000.0001) 6.867891216000748E+08, /* J = 10 */
2437     (PID.TID 0000.0001) 6.852391956696484E+08, /* J = 11 */
2438     (PID.TID 0000.0001) 6.836762237726952E+08, /* J = 12 */
2439     (PID.TID 0000.0001) 6.821002356659416E+08, /* J = 13 */
2440     (PID.TID 0000.0001) 6.805112613539243E+08, /* J = 14 */
2441     (PID.TID 0000.0001) 6.789093310884190E+08, /* J = 15 */
2442     (PID.TID 0000.0001) 6.772944753678811E+08, /* J = 16 */
2443     (PID.TID 0000.0001) 6.756667249368460E+08, /* J = 17 */
2444     (PID.TID 0000.0001) 6.740261107852997E+08, /* J = 18 */
2445     (PID.TID 0000.0001) 6.723726641482074E+08, /* J = 19 */
2446     (PID.TID 0000.0001) 6.707064165047766E+08, /* J = 20 */
2447     (PID.TID 0000.0001) 6.690273995779943E+08, /* J = 21 */
2448     (PID.TID 0000.0001) 6.673356453338909E+08, /* J = 22 */
2449     (PID.TID 0000.0001) 6.656311859810680E+08, /* J = 23 */
2450     (PID.TID 0000.0001) 6.639140539699314E+08, /* J = 24 */
2451     (PID.TID 0000.0001) 6.621842819922103E+08, /* J = 25 */
2452     (PID.TID 0000.0001) 6.604419029803079E+08, /* J = 26 */
2453     (PID.TID 0000.0001) 6.586869501065553E+08, /* J = 27 */
2454     (PID.TID 0000.0001) 6.569194567827585E+08, /* J = 28 */
2455     (PID.TID 0000.0001) 6.551394566594321E+08, /* J = 29 */
2456     (PID.TID 0000.0001) 6.533469836252099E+08, /* J = 30 */
2457     (PID.TID 0000.0001) 6.515420718061962E+08, /* J = 31 */
2458     (PID.TID 0000.0001) 6.497247555653362E+08, /* J = 32 */
2459     (PID.TID 0000.0001) 6.478950695016699E+08, /* J = 33 */
2460     (PID.TID 0000.0001) 6.460530484497808E+08, /* J = 34 */
2461     (PID.TID 0000.0001) 6.441987274791679E+08, /* J = 35 */
2462     (PID.TID 0000.0001) 6.423321418933210E+08, /* J = 36 */
2463     (PID.TID 0000.0001) 6.404533272294264E+08, /* J = 37 */
2464     (PID.TID 0000.0001) 6.385623192573639E+08, /* J = 38 */
2465     (PID.TID 0000.0001) 6.366591539792355E+08, /* J = 39 */
2466     (PID.TID 0000.0001) 6.347438676284809E+08, /* J = 40 */
2467     (PID.TID 0000.0001) 6.328164966695231E+08, /* J = 41 */
2468     (PID.TID 0000.0001) 6.308770777965897E+08, /* J = 42 */
2469     (PID.TID 0000.0001) 6.289256479335159E+08, /* J = 43 */
2470     (PID.TID 0000.0001) 6.269622442326831E+08, /* J = 44 */
2471     (PID.TID 0000.0001) 6.249869040744686E+08, /* J = 45 */
2472     (PID.TID 0000.0001) 6.229996650664990E+08, /* J = 46 */
2473     (PID.TID 0000.0001) 6.210005650429022E+08, /* J = 47 */
2474     (PID.TID 0000.0001) 6.189896420637782E+08, /* J = 48 */
2475     (PID.TID 0000.0001) 6.169669344140574E+08, /* J = 49 */
2476     (PID.TID 0000.0001) 6.149324806032661E+08, /* J = 50 */
2477     (PID.TID 0000.0001) 6.128863193644445E+08, /* J = 51 */
2478     (PID.TID 0000.0001) 6.108284896535771E+08, /* J = 52 */
2479     (PID.TID 0000.0001) 6.087590306487472E+08, /* J = 53 */
2480     (PID.TID 0000.0001) 6.066779817494689E+08, /* J = 54 */
2481     (PID.TID 0000.0001) 6.045853825759399E+08, /* J = 55 */
2482     (PID.TID 0000.0001) 6.024812729682158E+08, /* J = 56 */
2483     (PID.TID 0000.0001) 6.003656929855031E+08, /* J = 57 */
2484     (PID.TID 0000.0001) 5.982386829054112E+08, /* J = 58 */
2485     (PID.TID 0000.0001) 5.961002832231477E+08, /* J = 59 */
2486     (PID.TID 0000.0001) 5.939505346507312E+08, /* J = 60 */
2487     (PID.TID 0000.0001) 5.917894781163037E+08, /* J = 61 */
2488     (PID.TID 0000.0001) 5.896171547632853E+08, /* J = 62 */
2489     (PID.TID 0000.0001) 5.874336059495094E+08, /* J = 63 */
2490     (PID.TID 0000.0001) 5.852388732466724E+08 /* J = 64 */
2491     (PID.TID 0000.0001) ;
2492     (PID.TID 0000.0001) globalArea = /* Integrated horizontal Area (m^2) */
2493 heimbach 1.4 (PID.TID 0000.0001) 2.482923135381599E+12
2494 jmc 1.1 (PID.TID 0000.0001) ;
2495     (PID.TID 0000.0001) // =======================================================
2496     (PID.TID 0000.0001) // End of Model config. summary
2497     (PID.TID 0000.0001) // =======================================================
2498     (PID.TID 0000.0001)
2499     (PID.TID 0000.0001) == Packages configuration : Check & print summary ==
2500     (PID.TID 0000.0001)
2501     (PID.TID 0000.0001) OBCS_CHECK: #define ALLOW_OBCS
2502     (PID.TID 0000.0001) OBCS_CHECK: start summary:
2503 jmc 1.7 (PID.TID 0000.0001) useOBCSprescribe = /* prescribe OB values */
2504     (PID.TID 0000.0001) T
2505     (PID.TID 0000.0001) ;
2506 jmc 1.1 (PID.TID 0000.0001) useOBCSbalance = /* balance the flow through OB */
2507     (PID.TID 0000.0001) F
2508     (PID.TID 0000.0001) ;
2509 jmc 1.2 (PID.TID 0000.0001) OBCS_uvApplyFac = /* Factor to apply to U,V 2nd column/row */
2510     (PID.TID 0000.0001) 1.000000000000000E+00
2511     (PID.TID 0000.0001) ;
2512 jmc 1.7 (PID.TID 0000.0001) OBCS_u1_adv_T = /* Temp uses upwind adv-scheme @ OB */
2513     (PID.TID 0000.0001) 0
2514     (PID.TID 0000.0001) ;
2515     (PID.TID 0000.0001) OBCS_u1_adv_S = /* Salt uses upwind adv-scheme @ OB */
2516     (PID.TID 0000.0001) 0
2517     (PID.TID 0000.0001) ;
2518 jmc 1.1 (PID.TID 0000.0001) OBCS_monitorFreq = /* monitor output frequency [s] */
2519 jmc 1.2 (PID.TID 0000.0001) 3.600000000000000E+03
2520 jmc 1.1 (PID.TID 0000.0001) ;
2521     (PID.TID 0000.0001) OBCS_monSelect = /* select group of variables to monitor */
2522     (PID.TID 0000.0001) 0
2523     (PID.TID 0000.0001) ;
2524 jmc 1.7 (PID.TID 0000.0001) useOBCStides = /* apply tidal forcing through OB */
2525     (PID.TID 0000.0001) F
2526     (PID.TID 0000.0001) ;
2527     (PID.TID 0000.0001) tidalPeriod = /* (s) */
2528     (PID.TID 0000.0001) 10 @ 0.000000000000000E+00 /* I = 1: 10 */
2529     (PID.TID 0000.0001) ;
2530     (PID.TID 0000.0001) OB_indexNone = /* null value for OB index (i.e. no OB) */
2531     (PID.TID 0000.0001) -99
2532     (PID.TID 0000.0001) ;
2533 jmc 1.3 (PID.TID 0000.0001) ======== Tile bi= 1 , bj= 1 ========
2534     (PID.TID 0000.0001) OB_Jn = /* Northern OB local indices */
2535 jmc 1.7 (PID.TID 0000.0001) 36 @ -99 /* I = -1: 34 */
2536 heimbach 1.4 (PID.TID 0000.0001) OB_Js = /* Southern OB local indices */
2537     (PID.TID 0000.0001) 36 @ 1 /* I = -1: 34 */
2538     (PID.TID 0000.0001) OB_Ie = /* Eastern OB local indices */
2539 jmc 1.7 (PID.TID 0000.0001) 36 @ -99 /* J = -1: 34 */
2540 heimbach 1.4 (PID.TID 0000.0001) OB_Iw = /* Western OB local indices */
2541     (PID.TID 0000.0001) 36 @ 1 /* J = -1: 34 */
2542     (PID.TID 0000.0001) ======== Tile bi= 2 , bj= 1 ========
2543     (PID.TID 0000.0001) OB_Jn = /* Northern OB local indices */
2544 jmc 1.7 (PID.TID 0000.0001) 36 @ -99 /* I = -1: 34 */
2545 jmc 1.3 (PID.TID 0000.0001) OB_Js = /* Southern OB local indices */
2546 heimbach 1.4 (PID.TID 0000.0001) 36 @ 1 /* I = -1: 34 */
2547 jmc 1.3 (PID.TID 0000.0001) OB_Ie = /* Eastern OB local indices */
2548 heimbach 1.4 (PID.TID 0000.0001) 36 @ 32 /* J = -1: 34 */
2549 jmc 1.3 (PID.TID 0000.0001) OB_Iw = /* Western OB local indices */
2550 jmc 1.7 (PID.TID 0000.0001) 36 @ -99 /* J = -1: 34 */
2551 heimbach 1.4 (PID.TID 0000.0001) ======== Tile bi= 1 , bj= 2 ========
2552     (PID.TID 0000.0001) OB_Jn = /* Northern OB local indices */
2553     (PID.TID 0000.0001) 36 @ 32 /* I = -1: 34 */
2554     (PID.TID 0000.0001) OB_Js = /* Southern OB local indices */
2555 jmc 1.7 (PID.TID 0000.0001) 36 @ -99 /* I = -1: 34 */
2556 heimbach 1.4 (PID.TID 0000.0001) OB_Ie = /* Eastern OB local indices */
2557 jmc 1.7 (PID.TID 0000.0001) 36 @ -99 /* J = -1: 34 */
2558 heimbach 1.4 (PID.TID 0000.0001) OB_Iw = /* Western OB local indices */
2559     (PID.TID 0000.0001) 36 @ 1 /* J = -1: 34 */
2560     (PID.TID 0000.0001) ======== Tile bi= 2 , bj= 2 ========
2561     (PID.TID 0000.0001) OB_Jn = /* Northern OB local indices */
2562     (PID.TID 0000.0001) 36 @ 32 /* I = -1: 34 */
2563     (PID.TID 0000.0001) OB_Js = /* Southern OB local indices */
2564 jmc 1.7 (PID.TID 0000.0001) 36 @ -99 /* I = -1: 34 */
2565 heimbach 1.4 (PID.TID 0000.0001) OB_Ie = /* Eastern OB local indices */
2566     (PID.TID 0000.0001) 36 @ 32 /* J = -1: 34 */
2567     (PID.TID 0000.0001) OB_Iw = /* Western OB local indices */
2568 jmc 1.7 (PID.TID 0000.0001) 36 @ -99 /* J = -1: 34 */
2569 jmc 1.1 (PID.TID 0000.0001) OBCS_CHECK: end summary.
2570     (PID.TID 0000.0001) OBCS_CHECK: set-up OK
2571     (PID.TID 0000.0001) OBCS_CHECK: check Inside Mask and OB locations: OK
2572     (PID.TID 0000.0001) CTRL_CHECK: ctrl package
2573     (PID.TID 0000.0001) COST_CHECK: cost package
2574     (PID.TID 0000.0001) GRDCHK_CHECK: grdchk package
2575     (PID.TID 0000.0001) GAD_CHECK: #define ALLOW_GENERIC_ADVDIFF
2576     (PID.TID 0000.0001) // =======================================================
2577 jmc 1.7 (PID.TID 0000.0001) // Check Model config. (CONFIG_CHECK):
2578 jmc 1.1 (PID.TID 0000.0001) // CONFIG_CHECK : Normal End
2579     (PID.TID 0000.0001) // =======================================================
2580     (PID.TID 0000.0001)
2581     (PID.TID 0000.0001) Start initial hydrostatic pressure computation
2582     (PID.TID 0000.0001) Pressure is predetermined for buoyancyRelation OCEANIC
2583     (PID.TID 0000.0001)
2584     (PID.TID 0000.0001) // =======================================================
2585     (PID.TID 0000.0001) // Begin MONITOR dynamic field statistics
2586     (PID.TID 0000.0001) // =======================================================
2587     (PID.TID 0000.0001) %MON time_tsnumber = 0
2588     (PID.TID 0000.0001) %MON time_secondsf = 0.0000000000000E+00
2589     (PID.TID 0000.0001) %MON dynstat_eta_max = 0.0000000000000E+00
2590     (PID.TID 0000.0001) %MON dynstat_eta_min = 0.0000000000000E+00
2591     (PID.TID 0000.0001) %MON dynstat_eta_mean = 0.0000000000000E+00
2592     (PID.TID 0000.0001) %MON dynstat_eta_sd = 0.0000000000000E+00
2593     (PID.TID 0000.0001) %MON dynstat_eta_del2 = 0.0000000000000E+00
2594     (PID.TID 0000.0001) %MON dynstat_uvel_max = 0.0000000000000E+00
2595     (PID.TID 0000.0001) %MON dynstat_uvel_min = 0.0000000000000E+00
2596     (PID.TID 0000.0001) %MON dynstat_uvel_mean = 0.0000000000000E+00
2597     (PID.TID 0000.0001) %MON dynstat_uvel_sd = 0.0000000000000E+00
2598     (PID.TID 0000.0001) %MON dynstat_uvel_del2 = 0.0000000000000E+00
2599     (PID.TID 0000.0001) %MON dynstat_vvel_max = 9.9974803626537E-02
2600     (PID.TID 0000.0001) %MON dynstat_vvel_min = 6.2484252266586E-03
2601     (PID.TID 0000.0001) %MON dynstat_vvel_mean = 6.8858203200624E-02
2602 heimbach 1.4 (PID.TID 0000.0001) %MON dynstat_vvel_sd = 2.7917489862877E-02
2603 jmc 1.1 (PID.TID 0000.0001) %MON dynstat_vvel_del2 = 1.2207391318385E-04
2604     (PID.TID 0000.0001) %MON dynstat_wvel_max = 1.2635012589087E-02
2605     (PID.TID 0000.0001) %MON dynstat_wvel_min = -1.3459910324997E-02
2606 heimbach 1.4 (PID.TID 0000.0001) %MON dynstat_wvel_mean = 1.4729391862361E-05
2607     (PID.TID 0000.0001) %MON dynstat_wvel_sd = 1.0457343145220E-03
2608     (PID.TID 0000.0001) %MON dynstat_wvel_del2 = 1.4252956499427E-05
2609 jmc 1.1 (PID.TID 0000.0001) %MON dynstat_theta_max = 2.0000000000000E+01
2610     (PID.TID 0000.0001) %MON dynstat_theta_min = 6.0000000000000E+00
2611 heimbach 1.4 (PID.TID 0000.0001) %MON dynstat_theta_mean = 1.1000000000000E+01
2612     (PID.TID 0000.0001) %MON dynstat_theta_sd = 4.5000000000000E+00
2613 jmc 1.1 (PID.TID 0000.0001) %MON dynstat_theta_del2 = 0.0000000000000E+00
2614     (PID.TID 0000.0001) %MON dynstat_salt_max = 3.5000000000000E+01
2615     (PID.TID 0000.0001) %MON dynstat_salt_min = 3.5000000000000E+01
2616 heimbach 1.4 (PID.TID 0000.0001) %MON dynstat_salt_mean = 3.4999999999999E+01
2617     (PID.TID 0000.0001) %MON dynstat_salt_sd = 5.4711790653528E-13
2618 jmc 1.1 (PID.TID 0000.0001) %MON dynstat_salt_del2 = 0.0000000000000E+00
2619     (PID.TID 0000.0001) %MON advcfl_uvel_max = 0.0000000000000E+00
2620     (PID.TID 0000.0001) %MON advcfl_vvel_max = 4.3163335425681E-03
2621     (PID.TID 0000.0001) %MON advcfl_wvel_max = 6.4607569559986E-02
2622     (PID.TID 0000.0001) %MON advcfl_W_hf_max = 2.8265811682494E-02
2623     (PID.TID 0000.0001) %MON pe_b_mean = 0.0000000000000E+00
2624     (PID.TID 0000.0001) %MON ke_max = 4.9974727513316E-03
2625 heimbach 1.4 (PID.TID 0000.0001) %MON ke_mean = 2.7612282353511E-03
2626     (PID.TID 0000.0001) %MON ke_vol = 9.9316925415266E+15
2627 jmc 1.2 (PID.TID 0000.0001) // =======================================================
2628     (PID.TID 0000.0001) // End MONITOR dynamic field statistics
2629     (PID.TID 0000.0001) // =======================================================
2630     (PID.TID 0000.0001) // =======================================================
2631     (PID.TID 0000.0001) // Begin OBCS MONITOR field statistics
2632     (PID.TID 0000.0001) // =======================================================
2633     (PID.TID 0000.0001) %MON obc_E_uVel_max = 0.0000000000000E+00
2634     (PID.TID 0000.0001) %MON obc_E_uVel_min = 0.0000000000000E+00
2635     (PID.TID 0000.0001) %MON obc_E_uVel_mean = 0.0000000000000E+00
2636     (PID.TID 0000.0001) %MON obc_E_uVel_sd = 0.0000000000000E+00
2637     (PID.TID 0000.0001) %MON obc_E_uVel_Int = 0.0000000000000E+00
2638     (PID.TID 0000.0001) %MON obc_W_uVel_max = 0.0000000000000E+00
2639     (PID.TID 0000.0001) %MON obc_W_uVel_min = 0.0000000000000E+00
2640     (PID.TID 0000.0001) %MON obc_W_uVel_mean = 0.0000000000000E+00
2641     (PID.TID 0000.0001) %MON obc_W_uVel_sd = 0.0000000000000E+00
2642     (PID.TID 0000.0001) %MON obc_W_uVel_Int = 0.0000000000000E+00
2643     (PID.TID 0000.0001) %MON obc_N_vVel_max = 9.9974803626537E-02
2644     (PID.TID 0000.0001) %MON obc_N_vVel_min = 6.2484252266586E-03
2645 heimbach 1.4 (PID.TID 0000.0001) %MON obc_N_vVel_mean = 6.7724867979244E-02
2646 jmc 1.2 (PID.TID 0000.0001) %MON obc_N_vVel_sd = 2.8856486199012E-02
2647     (PID.TID 0000.0001) %MON obc_N_vVel_Int = 3.5365235086012E+08
2648     (PID.TID 0000.0001) %MON obc_S_vVel_max = 9.9974803626537E-02
2649     (PID.TID 0000.0001) %MON obc_S_vVel_min = 6.2484252266586E-03
2650 heimbach 1.4 (PID.TID 0000.0001) %MON obc_S_vVel_mean = 6.7724867979245E-02
2651     (PID.TID 0000.0001) %MON obc_S_vVel_sd = 2.8856486199011E-02
2652 jmc 1.2 (PID.TID 0000.0001) %MON obc_S_vVel_Int = 4.2222475303229E+08
2653     (PID.TID 0000.0001) // =======================================================
2654     (PID.TID 0000.0001) // End OBCS MONITOR field statistics
2655     (PID.TID 0000.0001) // =======================================================
2656 jmc 1.3 (PID.TID 0000.0001) SOLVE_FOR_PRESSURE: putPmEinXvector = F
2657 heimbach 1.4 cg2d: Sum(rhs),rhsMax = -7.87435592178018E+00 1.37697984471785E+00
2658     cg2d: Sum(rhs),rhsMax = -1.01791081157114E+02 2.13040853307025E-01
2659 jmc 1.6 cg2d: Sum(rhs),rhsMax = -1.59112718349035E+02 2.04436757292308E-01
2660 jmc 1.7 (PID.TID 0000.0001) cg2d_init_res = 1.07341835251466E+01
2661     (PID.TID 0000.0001) cg2d_iters(min,last) = -1 125
2662     (PID.TID 0000.0001) cg2d_last_res = 8.69273657547428E-09
2663 jmc 1.2 (PID.TID 0000.0001) // =======================================================
2664     (PID.TID 0000.0001) // Begin MONITOR dynamic field statistics
2665     (PID.TID 0000.0001) // =======================================================
2666     (PID.TID 0000.0001) %MON time_tsnumber = 3
2667     (PID.TID 0000.0001) %MON time_secondsf = 3.6000000000000E+03
2668     (PID.TID 0000.0001) %MON dynstat_eta_max = 7.8092398553590E-01
2669     (PID.TID 0000.0001) %MON dynstat_eta_min = -5.4968965087768E-01
2670 heimbach 1.4 (PID.TID 0000.0001) %MON dynstat_eta_mean = 9.9423395070582E-02
2671 jmc 1.2 (PID.TID 0000.0001) %MON dynstat_eta_sd = 2.9439735896680E-01
2672     (PID.TID 0000.0001) %MON dynstat_eta_del2 = 1.8190879495240E-05
2673     (PID.TID 0000.0001) %MON dynstat_uvel_max = 4.8537995003132E-02
2674     (PID.TID 0000.0001) %MON dynstat_uvel_min = -3.8997873814471E-02
2675 heimbach 1.4 (PID.TID 0000.0001) %MON dynstat_uvel_mean = 7.8610415895868E-03
2676 jmc 1.2 (PID.TID 0000.0001) %MON dynstat_uvel_sd = 1.2961485949301E-02
2677     (PID.TID 0000.0001) %MON dynstat_uvel_del2 = 3.5150503690454E-05
2678     (PID.TID 0000.0001) %MON dynstat_vvel_max = 9.9974803626537E-02
2679     (PID.TID 0000.0001) %MON dynstat_vvel_min = 6.2484252266586E-03
2680 heimbach 1.4 (PID.TID 0000.0001) %MON dynstat_vvel_mean = 7.0253520401631E-02
2681 jmc 1.2 (PID.TID 0000.0001) %MON dynstat_vvel_sd = 1.2000187955839E-02
2682 heimbach 1.4 (PID.TID 0000.0001) %MON dynstat_vvel_del2 = 5.6726128973313E-05
2683 jmc 1.6 (PID.TID 0000.0001) %MON dynstat_wvel_max = 4.0011921563871E-04
2684     (PID.TID 0000.0001) %MON dynstat_wvel_min = -3.2885885525852E-04
2685 heimbach 1.4 (PID.TID 0000.0001) %MON dynstat_wvel_mean = 1.4729391862362E-05
2686     (PID.TID 0000.0001) %MON dynstat_wvel_sd = 7.4772613147768E-05
2687 jmc 1.2 (PID.TID 0000.0001) %MON dynstat_wvel_del2 = 1.8938666481104E-07
2688     (PID.TID 0000.0001) %MON dynstat_theta_max = 2.0001248819492E+01
2689     (PID.TID 0000.0001) %MON dynstat_theta_min = 5.9999361694632E+00
2690     (PID.TID 0000.0001) %MON dynstat_theta_mean = 1.0999776469027E+01
2691 heimbach 1.4 (PID.TID 0000.0001) %MON dynstat_theta_sd = 4.4997965691583E+00
2692 jmc 1.6 (PID.TID 0000.0001) %MON dynstat_theta_del2 = 1.9685540248355E-06
2693 jmc 1.2 (PID.TID 0000.0001) %MON dynstat_salt_max = 3.5000000000000E+01
2694     (PID.TID 0000.0001) %MON dynstat_salt_min = 3.5000000000000E+01
2695 heimbach 1.4 (PID.TID 0000.0001) %MON dynstat_salt_mean = 3.4999999999999E+01
2696     (PID.TID 0000.0001) %MON dynstat_salt_sd = 5.4711790653528E-13
2697 jmc 1.2 (PID.TID 0000.0001) %MON dynstat_salt_del2 = 0.0000000000000E+00
2698     (PID.TID 0000.0001) %MON advcfl_uvel_max = 2.7610341090195E-03
2699     (PID.TID 0000.0001) %MON advcfl_vvel_max = 4.3163335425681E-03
2700 jmc 1.6 (PID.TID 0000.0001) %MON advcfl_wvel_max = 1.9205722350658E-03
2701     (PID.TID 0000.0001) %MON advcfl_W_hf_max = 8.4492544279730E-04
2702 heimbach 1.4 (PID.TID 0000.0001) %MON pe_b_mean = 1.1840034367670E-04
2703 jmc 1.2 (PID.TID 0000.0001) %MON ke_max = 5.0892057267744E-03
2704 heimbach 1.4 (PID.TID 0000.0001) %MON ke_mean = 2.6538045909161E-03
2705     (PID.TID 0000.0001) %MON ke_vol = 9.9316925415266E+15
2706 jmc 1.2 (PID.TID 0000.0001) // =======================================================
2707     (PID.TID 0000.0001) // End MONITOR dynamic field statistics
2708     (PID.TID 0000.0001) // =======================================================
2709     (PID.TID 0000.0001) // =======================================================
2710     (PID.TID 0000.0001) // Begin OBCS MONITOR field statistics
2711     (PID.TID 0000.0001) // =======================================================
2712     (PID.TID 0000.0001) %MON obc_E_uVel_max = 0.0000000000000E+00
2713     (PID.TID 0000.0001) %MON obc_E_uVel_min = 0.0000000000000E+00
2714     (PID.TID 0000.0001) %MON obc_E_uVel_mean = 0.0000000000000E+00
2715     (PID.TID 0000.0001) %MON obc_E_uVel_sd = 0.0000000000000E+00
2716     (PID.TID 0000.0001) %MON obc_E_uVel_Int = 0.0000000000000E+00
2717     (PID.TID 0000.0001) %MON obc_W_uVel_max = 0.0000000000000E+00
2718     (PID.TID 0000.0001) %MON obc_W_uVel_min = 0.0000000000000E+00
2719     (PID.TID 0000.0001) %MON obc_W_uVel_mean = 0.0000000000000E+00
2720     (PID.TID 0000.0001) %MON obc_W_uVel_sd = 0.0000000000000E+00
2721     (PID.TID 0000.0001) %MON obc_W_uVel_Int = 0.0000000000000E+00
2722     (PID.TID 0000.0001) %MON obc_N_vVel_max = 9.9974803626537E-02
2723     (PID.TID 0000.0001) %MON obc_N_vVel_min = 6.2484252266586E-03
2724 heimbach 1.4 (PID.TID 0000.0001) %MON obc_N_vVel_mean = 6.7724867979244E-02
2725 jmc 1.2 (PID.TID 0000.0001) %MON obc_N_vVel_sd = 2.8856486199012E-02
2726     (PID.TID 0000.0001) %MON obc_N_vVel_Int = 3.5365235086012E+08
2727     (PID.TID 0000.0001) %MON obc_S_vVel_max = 9.9974803626537E-02
2728     (PID.TID 0000.0001) %MON obc_S_vVel_min = 6.2484252266586E-03
2729 heimbach 1.4 (PID.TID 0000.0001) %MON obc_S_vVel_mean = 6.7724867979245E-02
2730     (PID.TID 0000.0001) %MON obc_S_vVel_sd = 2.8856486199011E-02
2731 jmc 1.2 (PID.TID 0000.0001) %MON obc_S_vVel_Int = 4.2222475303229E+08
2732     (PID.TID 0000.0001) // =======================================================
2733     (PID.TID 0000.0001) // End OBCS MONITOR field statistics
2734 jmc 1.1 (PID.TID 0000.0001) // =======================================================
2735 jmc 1.6 cg2d: Sum(rhs),rhsMax = -2.24736325184821E+02 1.92987571287904E-01
2736     (PID.TID 0000.0001) %CHECKPOINT 4 ckptA
2737 jmc 1.1 (PID.TID 0000.0001) ph-cost call cost_theta0
2738     (PID.TID 0000.0001) ph-cost call cost_theta
2739 jmc 1.6 --> f_temp = 0.147701073786183D+01
2740 jmc 1.1 --> f_salt = 0.000000000000000D+00
2741     --> f_temp0 = 0.000000000000000D+00
2742     --> f_salt0 = 0.000000000000000D+00
2743     --> f_temp0smoo = 0.000000000000000D+00
2744     --> f_salt0smoo = 0.000000000000000D+00
2745     --> f_etan0 = 0.000000000000000D+00
2746     --> f_uvel0 = 0.000000000000000D+00
2747     --> f_vvel0 = 0.000000000000000D+00
2748     --> f_sst = 0.000000000000000D+00
2749     --> f_tmi = 0.000000000000000D+00
2750     --> f_sss = 0.000000000000000D+00
2751     --> f_bp = 0.000000000000000D+00
2752 jmc 1.7 --> f_ies = 0.000000000000000D+00
2753 jmc 1.1 --> f_ssh = 0.000000000000000D+00
2754     --> f_tp = 0.000000000000000D+00
2755     --> f_ers = 0.000000000000000D+00
2756     --> f_gfo = 0.000000000000000D+00
2757     --> f_tauu = 0.000000000000000D+00
2758     --> f_tauum = 0.000000000000000D+00
2759     --> f_tauusmoo = 0.000000000000000D+00
2760     --> f_tauv = 0.000000000000000D+00
2761     --> f_tauvm = 0.000000000000000D+00
2762     --> f_tauvsmoo = 0.000000000000000D+00
2763     --> f_hflux = 0.000000000000000D+00
2764     --> f_hfluxmm = 0.000000000000000D+00
2765     --> f_hfluxsmoo = 0.000000000000000D+00
2766     --> f_sflux = 0.000000000000000D+00
2767     --> f_sfluxmm = 0.000000000000000D+00
2768     --> f_sfluxsmoo = 0.000000000000000D+00
2769     --> f_uwind = 0.000000000000000D+00
2770     --> f_vwind = 0.000000000000000D+00
2771     --> f_atemp = 0.000000000000000D+00
2772     --> f_aqh = 0.000000000000000D+00
2773     --> f_precip = 0.000000000000000D+00
2774     --> f_swflux = 0.000000000000000D+00
2775     --> f_swdown = 0.000000000000000D+00
2776     --> f_uwindm = 0.000000000000000D+00
2777     --> f_vwindm = 0.000000000000000D+00
2778     --> f_atempm = 0.000000000000000D+00
2779     --> f_aqhm = 0.000000000000000D+00
2780     --> f_precipm = 0.000000000000000D+00
2781     --> f_swfluxm = 0.000000000000000D+00
2782     --> f_swdownm = 0.000000000000000D+00
2783     --> f_uwindsmoo = 0.000000000000000D+00
2784     --> f_vwindsmoo = 0.000000000000000D+00
2785     --> f_atempsmoo = 0.000000000000000D+00
2786     --> f_aqhsmoo = 0.000000000000000D+00
2787     --> f_precipsmoo = 0.000000000000000D+00
2788     --> f_swfluxsmoo = 0.000000000000000D+00
2789     --> f_swdownsmoo = 0.000000000000000D+00
2790     --> f_atl = 0.000000000000000D+00
2791     --> f_ctdt = 0.000000000000000D+00
2792     --> f_ctds = 0.000000000000000D+00
2793     --> f_ctdtclim= 0.000000000000000D+00
2794     --> f_ctdsclim= 0.000000000000000D+00
2795     --> f_xbt = 0.000000000000000D+00
2796     --> f_argot = 0.000000000000000D+00
2797     --> f_argos = 0.000000000000000D+00
2798     --> f_drifter = 0.000000000000000D+00
2799     --> f_tdrift = 0.000000000000000D+00
2800     --> f_sdrift = 0.000000000000000D+00
2801     --> f_wdrift = 0.000000000000000D+00
2802     --> f_scatx = 0.000000000000000D+00
2803     --> f_scaty = 0.000000000000000D+00
2804     --> f_scatxm = 0.000000000000000D+00
2805     --> f_scatym = 0.000000000000000D+00
2806     --> f_obcsn = 0.000000000000000D+00
2807     --> f_obcss = 0.000000000000000D+00
2808     --> f_obcsw = 0.000000000000000D+00
2809     --> f_obcse = 0.000000000000000D+00
2810     --> f_ageos = 0.000000000000000D+00
2811     --> f_curmtr = 0.000000000000000D+00
2812     --> f_kapgm = 0.000000000000000D+00
2813     --> f_kapredi = 0.000000000000000D+00
2814     --> f_diffkr = 0.000000000000000D+00
2815     --> f_eddytau = 0.000000000000000D+00
2816     --> f_bottomdrag = 0.000000000000000D+00
2817     --> f_hfluxmm2 = 0.000000000000000D+00
2818     --> f_sfluxmm2 = 0.000000000000000D+00
2819     --> f_transp = 0.000000000000000D+00
2820     --> objf_hmean = 0.000000000000000D+00
2821 jmc 1.7 --> fc = 0.000000000000000D+00
2822     early fc = 0.000000000000000D+00
2823     --> objf_test(bi,bj) = 0.000000000000000D+00
2824     --> objf_tracer(bi,bj) = 0.000000000000000D+00
2825     --> objf_atl(bi,bj) = 0.000000000000000D+00
2826     --> objf_test(bi,bj) = 0.000000000000000D+00
2827     --> objf_tracer(bi,bj) = 0.000000000000000D+00
2828     --> objf_atl(bi,bj) = 0.000000000000000D+00
2829     --> objf_test(bi,bj) = 0.000000000000000D+00
2830     --> objf_tracer(bi,bj) = 0.000000000000000D+00
2831     --> objf_atl(bi,bj) = 0.000000000000000D+00
2832     --> objf_test(bi,bj) = 0.000000000000000D+00
2833     --> objf_tracer(bi,bj) = 0.000000000000000D+00
2834     --> objf_atl(bi,bj) = 0.000000000000000D+00
2835     local fc = 0.147701073786183D+01
2836     global fc = 0.147701073786183D+01
2837 jmc 1.3 (PID.TID 0000.0001) SOLVE_FOR_PRESSURE: putPmEinXvector = F
2838 heimbach 1.4 cg2d: Sum(rhs),rhsMax = -7.87435592178018E+00 1.37697984471785E+00
2839     cg2d: Sum(rhs),rhsMax = -1.01791081157114E+02 2.13040853307025E-01
2840 jmc 1.6 cg2d: Sum(rhs),rhsMax = -1.59112718349035E+02 2.04436757292308E-01
2841     cg2d: Sum(rhs),rhsMax = -2.24736325184821E+02 1.92987571287904E-01
2842     (PID.TID 0000.0001) Did not write pickup because writePickupAtEnd = FALSE
2843 jmc 1.3 (PID.TID 0000.0001) SOLVE_FOR_PRESSURE: putPmEinXvector = F
2844 heimbach 1.4 cg2d: Sum(rhs),rhsMax = -7.87435592178018E+00 1.37697984471785E+00
2845     cg2d: Sum(rhs),rhsMax = -1.01791081157114E+02 2.13040853307025E-01
2846 jmc 1.6 cg2d: Sum(rhs),rhsMax = -1.59112718349035E+02 2.04436757292308E-01
2847     cg2d: Sum(rhs),rhsMax = -2.24736325184821E+02 1.92987571287904E-01
2848     (PID.TID 0000.0001) Did not write pickup because writePickupAtEnd = FALSE
2849 jmc 1.7 (PID.TID 0000.0001) Did not write pickup because writePickupAtEnd = FALSE
2850     cg2d: Sum(rhs),rhsMax = -1.06581410364015E-14 3.51056614475562E-07
2851     cg2d: Sum(rhs),rhsMax = 1.31926469748578E-10 5.59388870073225E-07
2852     cg2d: Sum(rhs),rhsMax = 1.14489751013025E-10 6.28064934603453E-07
2853     cg2d: Sum(rhs),rhsMax = -9.37916411203332E-13 9.25487177941723E-07
2854 jmc 1.1 (PID.TID 0000.0001) Start initial hydrostatic pressure computation
2855     (PID.TID 0000.0001) Pressure is predetermined for buoyancyRelation OCEANIC
2856     (PID.TID 0000.0001)
2857     ph-pack: packing ecco_cost
2858     ph-pack: packing ecco_ctrl
2859 jmc 1.7 (PID.TID 0000.0001) // =======================================================
2860     (PID.TID 0000.0001) // Gradient-check starts (grdchk_main)
2861     (PID.TID 0000.0001) // =======================================================
2862     (PID.TID 0000.0001) grdchk reference fc: fcref = 1.47701073786183E+00
2863 jmc 1.1 grad-res -------------------------------
2864 jmc 1.7 grad-res proc # i j k bi bj iobc fc ref fc + eps fc - eps
2865     grad-res proc # i j k bi bj iobc adj grad fd grad 1 - fd/adj
2866 jmc 1.1 grad-res exact position met:
2867 heimbach 1.4 grad-res 0 97 1 1 4 1 1
2868 jmc 1.7 (PID.TID 0000.0001) ====== Starts gradient-check number 1 (=ichknum) =======
2869 heimbach 1.4 ph-test icomp, ncvarcomp, ichknum 97 8192 1
2870     ph-grd _loc: bi, bj, icomptest, ichknum 1 1 0 1
2871     ph-grd _loc: bi, bj, icomptest, ichknum 1 1 32 1
2872     ph-grd _loc: bi, bj, icomptest, ichknum 1 1 64 1
2873     ph-grd _loc: bi, bj, icomptest, ichknum 1 1 96 1
2874     ph-grd -->hit<-- 1 1 4 1
2875 jmc 1.7 (PID.TID 0000.0001) grdchk pos: i,j,k= 1 1 4 ; bi,bj= 1 1 ; iobc= 1 ; rec= 1
2876 jmc 1.1 (PID.TID 0000.0001) Start initial hydrostatic pressure computation
2877     (PID.TID 0000.0001) Pressure is predetermined for buoyancyRelation OCEANIC
2878     (PID.TID 0000.0001)
2879     (PID.TID 0000.0001) // =======================================================
2880     (PID.TID 0000.0001) // Model current state
2881     (PID.TID 0000.0001) // =======================================================
2882     (PID.TID 0000.0001)
2883 jmc 1.3 (PID.TID 0000.0001) SOLVE_FOR_PRESSURE: putPmEinXvector = F
2884 heimbach 1.4 cg2d: Sum(rhs),rhsMax = -7.87435592178018E+00 1.37697984471785E+00
2885     cg2d: Sum(rhs),rhsMax = -1.01791081157114E+02 2.13040853307025E-01
2886 jmc 1.6 cg2d: Sum(rhs),rhsMax = -1.59112718349035E+02 2.04436757292308E-01
2887     cg2d: Sum(rhs),rhsMax = -2.24736325184821E+02 1.92987571287904E-01
2888     (PID.TID 0000.0001) Did not write pickup because writePickupAtEnd = FALSE
2889 jmc 1.2 (PID.TID 0000.0001) ph-cost call cost_theta0
2890     (PID.TID 0000.0001) ph-cost call cost_theta
2891 jmc 1.6 --> f_temp = 0.147701173786180D+01
2892 jmc 1.2 --> f_salt = 0.000000000000000D+00
2893     --> f_temp0 = 0.000000000000000D+00
2894     --> f_salt0 = 0.000000000000000D+00
2895     --> f_temp0smoo = 0.000000000000000D+00
2896     --> f_salt0smoo = 0.000000000000000D+00
2897     --> f_etan0 = 0.000000000000000D+00
2898     --> f_uvel0 = 0.000000000000000D+00
2899     --> f_vvel0 = 0.000000000000000D+00
2900 jmc 1.1 --> f_sst = 0.000000000000000D+00
2901     --> f_tmi = 0.000000000000000D+00
2902     --> f_sss = 0.000000000000000D+00
2903     --> f_bp = 0.000000000000000D+00
2904 jmc 1.7 --> f_ies = 0.000000000000000D+00
2905 jmc 1.1 --> f_ssh = 0.000000000000000D+00
2906     --> f_tp = 0.000000000000000D+00
2907     --> f_ers = 0.000000000000000D+00
2908     --> f_gfo = 0.000000000000000D+00
2909     --> f_tauu = 0.000000000000000D+00
2910     --> f_tauum = 0.000000000000000D+00
2911     --> f_tauusmoo = 0.000000000000000D+00
2912     --> f_tauv = 0.000000000000000D+00
2913     --> f_tauvm = 0.000000000000000D+00
2914     --> f_tauvsmoo = 0.000000000000000D+00
2915     --> f_hflux = 0.000000000000000D+00
2916     --> f_hfluxmm = 0.000000000000000D+00
2917     --> f_hfluxsmoo = 0.000000000000000D+00
2918     --> f_sflux = 0.000000000000000D+00
2919     --> f_sfluxmm = 0.000000000000000D+00
2920     --> f_sfluxsmoo = 0.000000000000000D+00
2921     --> f_uwind = 0.000000000000000D+00
2922     --> f_vwind = 0.000000000000000D+00
2923     --> f_atemp = 0.000000000000000D+00
2924     --> f_aqh = 0.000000000000000D+00
2925     --> f_precip = 0.000000000000000D+00
2926     --> f_swflux = 0.000000000000000D+00
2927     --> f_swdown = 0.000000000000000D+00
2928     --> f_uwindm = 0.000000000000000D+00
2929     --> f_vwindm = 0.000000000000000D+00
2930     --> f_atempm = 0.000000000000000D+00
2931     --> f_aqhm = 0.000000000000000D+00
2932     --> f_precipm = 0.000000000000000D+00
2933     --> f_swfluxm = 0.000000000000000D+00
2934     --> f_swdownm = 0.000000000000000D+00
2935     --> f_uwindsmoo = 0.000000000000000D+00
2936     --> f_vwindsmoo = 0.000000000000000D+00
2937     --> f_atempsmoo = 0.000000000000000D+00
2938     --> f_aqhsmoo = 0.000000000000000D+00
2939     --> f_precipsmoo = 0.000000000000000D+00
2940     --> f_swfluxsmoo = 0.000000000000000D+00
2941     --> f_swdownsmoo = 0.000000000000000D+00
2942     --> f_atl = 0.000000000000000D+00
2943     --> f_ctdt = 0.000000000000000D+00
2944     --> f_ctds = 0.000000000000000D+00
2945     --> f_ctdtclim= 0.000000000000000D+00
2946     --> f_ctdsclim= 0.000000000000000D+00
2947     --> f_xbt = 0.000000000000000D+00
2948     --> f_argot = 0.000000000000000D+00
2949     --> f_argos = 0.000000000000000D+00
2950     --> f_drifter = 0.000000000000000D+00
2951     --> f_tdrift = 0.000000000000000D+00
2952     --> f_sdrift = 0.000000000000000D+00
2953     --> f_wdrift = 0.000000000000000D+00
2954     --> f_scatx = 0.000000000000000D+00
2955     --> f_scaty = 0.000000000000000D+00
2956     --> f_scatxm = 0.000000000000000D+00
2957     --> f_scatym = 0.000000000000000D+00
2958     --> f_obcsn = 0.000000000000000D+00
2959     --> f_obcss = 0.000000000000000D+00
2960 heimbach 1.4 --> f_obcsw = 0.152587890625000D-12
2961 jmc 1.1 --> f_obcse = 0.000000000000000D+00
2962     --> f_ageos = 0.000000000000000D+00
2963     --> f_curmtr = 0.000000000000000D+00
2964     --> f_kapgm = 0.000000000000000D+00
2965     --> f_kapredi = 0.000000000000000D+00
2966     --> f_diffkr = 0.000000000000000D+00
2967     --> f_eddytau = 0.000000000000000D+00
2968     --> f_bottomdrag = 0.000000000000000D+00
2969     --> f_hfluxmm2 = 0.000000000000000D+00
2970     --> f_sfluxmm2 = 0.000000000000000D+00
2971     --> f_transp = 0.000000000000000D+00
2972     --> objf_hmean = 0.000000000000000D+00
2973 jmc 1.7 --> fc = 0.000000000000000D+00
2974     early fc = 0.000000000000000D+00
2975     --> objf_test(bi,bj) = 0.000000000000000D+00
2976     --> objf_tracer(bi,bj) = 0.000000000000000D+00
2977     --> objf_atl(bi,bj) = 0.000000000000000D+00
2978     --> objf_test(bi,bj) = 0.000000000000000D+00
2979     --> objf_tracer(bi,bj) = 0.000000000000000D+00
2980     --> objf_atl(bi,bj) = 0.000000000000000D+00
2981     --> objf_test(bi,bj) = 0.000000000000000D+00
2982     --> objf_tracer(bi,bj) = 0.000000000000000D+00
2983     --> objf_atl(bi,bj) = 0.000000000000000D+00
2984     --> objf_test(bi,bj) = 0.000000000000000D+00
2985     --> objf_tracer(bi,bj) = 0.000000000000000D+00
2986     --> objf_atl(bi,bj) = 0.000000000000000D+00
2987     local fc = 0.147701173786195D+01
2988     global fc = 0.147701173786195D+01
2989     (PID.TID 0000.0001) grdchk perturb(+)fc: fcpertplus = 1.47701173786195E+00
2990 jmc 1.1 (PID.TID 0000.0001) Start initial hydrostatic pressure computation
2991     (PID.TID 0000.0001) Pressure is predetermined for buoyancyRelation OCEANIC
2992     (PID.TID 0000.0001)
2993     (PID.TID 0000.0001) // =======================================================
2994     (PID.TID 0000.0001) // Model current state
2995     (PID.TID 0000.0001) // =======================================================
2996     (PID.TID 0000.0001)
2997 jmc 1.3 (PID.TID 0000.0001) SOLVE_FOR_PRESSURE: putPmEinXvector = F
2998 heimbach 1.4 cg2d: Sum(rhs),rhsMax = -7.87435592178018E+00 1.37697984471785E+00
2999     cg2d: Sum(rhs),rhsMax = -1.01791081157114E+02 2.13040853307025E-01
3000 jmc 1.6 cg2d: Sum(rhs),rhsMax = -1.59112718349035E+02 2.04436757292308E-01
3001     cg2d: Sum(rhs),rhsMax = -2.24736325184821E+02 1.92987571287904E-01
3002     (PID.TID 0000.0001) Did not write pickup because writePickupAtEnd = FALSE
3003 jmc 1.1 (PID.TID 0000.0001) ph-cost call cost_theta0
3004     (PID.TID 0000.0001) ph-cost call cost_theta
3005 jmc 1.6 --> f_temp = 0.147701173786180D+01
3006 jmc 1.1 --> f_salt = 0.000000000000000D+00
3007     --> f_temp0 = 0.000000000000000D+00
3008     --> f_salt0 = 0.000000000000000D+00
3009     --> f_temp0smoo = 0.000000000000000D+00
3010     --> f_salt0smoo = 0.000000000000000D+00
3011     --> f_etan0 = 0.000000000000000D+00
3012     --> f_uvel0 = 0.000000000000000D+00
3013     --> f_vvel0 = 0.000000000000000D+00
3014     --> f_sst = 0.000000000000000D+00
3015     --> f_tmi = 0.000000000000000D+00
3016     --> f_sss = 0.000000000000000D+00
3017     --> f_bp = 0.000000000000000D+00
3018 jmc 1.7 --> f_ies = 0.000000000000000D+00
3019 jmc 1.1 --> f_ssh = 0.000000000000000D+00
3020     --> f_tp = 0.000000000000000D+00
3021     --> f_ers = 0.000000000000000D+00
3022     --> f_gfo = 0.000000000000000D+00
3023     --> f_tauu = 0.000000000000000D+00
3024     --> f_tauum = 0.000000000000000D+00
3025     --> f_tauusmoo = 0.000000000000000D+00
3026     --> f_tauv = 0.000000000000000D+00
3027     --> f_tauvm = 0.000000000000000D+00
3028     --> f_tauvsmoo = 0.000000000000000D+00
3029     --> f_hflux = 0.000000000000000D+00
3030     --> f_hfluxmm = 0.000000000000000D+00
3031     --> f_hfluxsmoo = 0.000000000000000D+00
3032     --> f_sflux = 0.000000000000000D+00
3033     --> f_sfluxmm = 0.000000000000000D+00
3034     --> f_sfluxsmoo = 0.000000000000000D+00
3035     --> f_uwind = 0.000000000000000D+00
3036     --> f_vwind = 0.000000000000000D+00
3037     --> f_atemp = 0.000000000000000D+00
3038     --> f_aqh = 0.000000000000000D+00
3039     --> f_precip = 0.000000000000000D+00
3040     --> f_swflux = 0.000000000000000D+00
3041     --> f_swdown = 0.000000000000000D+00
3042     --> f_uwindm = 0.000000000000000D+00
3043     --> f_vwindm = 0.000000000000000D+00
3044     --> f_atempm = 0.000000000000000D+00
3045     --> f_aqhm = 0.000000000000000D+00
3046     --> f_precipm = 0.000000000000000D+00
3047     --> f_swfluxm = 0.000000000000000D+00
3048     --> f_swdownm = 0.000000000000000D+00
3049     --> f_uwindsmoo = 0.000000000000000D+00
3050     --> f_vwindsmoo = 0.000000000000000D+00
3051     --> f_atempsmoo = 0.000000000000000D+00
3052     --> f_aqhsmoo = 0.000000000000000D+00
3053     --> f_precipsmoo = 0.000000000000000D+00
3054     --> f_swfluxsmoo = 0.000000000000000D+00
3055     --> f_swdownsmoo = 0.000000000000000D+00
3056     --> f_atl = 0.000000000000000D+00
3057     --> f_ctdt = 0.000000000000000D+00
3058     --> f_ctds = 0.000000000000000D+00
3059     --> f_ctdtclim= 0.000000000000000D+00
3060     --> f_ctdsclim= 0.000000000000000D+00
3061     --> f_xbt = 0.000000000000000D+00
3062     --> f_argot = 0.000000000000000D+00
3063     --> f_argos = 0.000000000000000D+00
3064     --> f_drifter = 0.000000000000000D+00
3065     --> f_tdrift = 0.000000000000000D+00
3066     --> f_sdrift = 0.000000000000000D+00
3067     --> f_wdrift = 0.000000000000000D+00
3068     --> f_scatx = 0.000000000000000D+00
3069     --> f_scaty = 0.000000000000000D+00
3070     --> f_scatxm = 0.000000000000000D+00
3071     --> f_scatym = 0.000000000000000D+00
3072     --> f_obcsn = 0.000000000000000D+00
3073     --> f_obcss = 0.000000000000000D+00
3074 heimbach 1.4 --> f_obcsw = 0.152587890625000D-12
3075 jmc 1.1 --> f_obcse = 0.000000000000000D+00
3076     --> f_ageos = 0.000000000000000D+00
3077     --> f_curmtr = 0.000000000000000D+00
3078     --> f_kapgm = 0.000000000000000D+00
3079     --> f_kapredi = 0.000000000000000D+00
3080     --> f_diffkr = 0.000000000000000D+00
3081     --> f_eddytau = 0.000000000000000D+00
3082     --> f_bottomdrag = 0.000000000000000D+00
3083     --> f_hfluxmm2 = 0.000000000000000D+00
3084     --> f_sfluxmm2 = 0.000000000000000D+00
3085     --> f_transp = 0.000000000000000D+00
3086     --> objf_hmean = 0.000000000000000D+00
3087 jmc 1.7 --> fc = 0.000000000000000D+00
3088     early fc = 0.000000000000000D+00
3089     --> objf_test(bi,bj) = 0.000000000000000D+00
3090     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3091     --> objf_atl(bi,bj) = 0.000000000000000D+00
3092     --> objf_test(bi,bj) = 0.000000000000000D+00
3093     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3094     --> objf_atl(bi,bj) = 0.000000000000000D+00
3095     --> objf_test(bi,bj) = 0.000000000000000D+00
3096     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3097     --> objf_atl(bi,bj) = 0.000000000000000D+00
3098     --> objf_test(bi,bj) = 0.000000000000000D+00
3099     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3100     --> objf_atl(bi,bj) = 0.000000000000000D+00
3101     local fc = 0.147701173786195D+01
3102     global fc = 0.147701173786195D+01
3103     (PID.TID 0000.0001) grdchk perturb(-)fc: fcpertminus = 1.47701173786195E+00
3104 jmc 1.1 grad-res -------------------------------
3105 jmc 1.5 grad-res 0 1 1 1 4 1 1 1 1.47701073786E+00 1.47701173786E+00 1.47701173786E+00
3106     grad-res 0 1 1 97 0 1 1 1 0.00000000000E+00 0.00000000000E+00 0.00000000000E+00
3107 jmc 1.6 (PID.TID 0000.0001) ADM ref_cost_function = 1.47701073786183E+00
3108 jmc 1.5 (PID.TID 0000.0001) ADM adjoint_gradient = 0.00000000000000E+00
3109     (PID.TID 0000.0001) ADM finite-diff_grad = 0.00000000000000E+00
3110 jmc 1.7 (PID.TID 0000.0001) ====== End of gradient-check number 1 (ierr= 0) =======
3111     (PID.TID 0000.0001) ====== Starts gradient-check number 2 (=ichknum) =======
3112 heimbach 1.4 ph-test icomp, ncvarcomp, ichknum 98 8192 2
3113     ph-grd _loc: bi, bj, icomptest, ichknum 1 1 97 2
3114     ph-grd -->hit<-- 1 2 4 1
3115 jmc 1.7 (PID.TID 0000.0001) grdchk pos: i,j,k= 1 2 4 ; bi,bj= 1 1 ; iobc= 1 ; rec= 1
3116 jmc 1.1 (PID.TID 0000.0001) Start initial hydrostatic pressure computation
3117     (PID.TID 0000.0001) Pressure is predetermined for buoyancyRelation OCEANIC
3118     (PID.TID 0000.0001)
3119     (PID.TID 0000.0001) // =======================================================
3120     (PID.TID 0000.0001) // Model current state
3121     (PID.TID 0000.0001) // =======================================================
3122     (PID.TID 0000.0001)
3123 jmc 1.3 (PID.TID 0000.0001) SOLVE_FOR_PRESSURE: putPmEinXvector = F
3124 heimbach 1.4 cg2d: Sum(rhs),rhsMax = -7.87435592178018E+00 1.37697984471785E+00
3125     cg2d: Sum(rhs),rhsMax = -1.01791081157114E+02 2.13040853307025E-01
3126 jmc 1.6 cg2d: Sum(rhs),rhsMax = -1.59112718349081E+02 2.04436757292248E-01
3127     cg2d: Sum(rhs),rhsMax = -2.24736325185378E+02 1.92987571287424E-01
3128     (PID.TID 0000.0001) Did not write pickup because writePickupAtEnd = FALSE
3129 jmc 1.1 (PID.TID 0000.0001) ph-cost call cost_theta0
3130     (PID.TID 0000.0001) ph-cost call cost_theta
3131 jmc 1.6 --> f_temp = 0.147701229545062D+01
3132 jmc 1.1 --> f_salt = 0.000000000000000D+00
3133     --> f_temp0 = 0.000000000000000D+00
3134     --> f_salt0 = 0.000000000000000D+00
3135     --> f_temp0smoo = 0.000000000000000D+00
3136     --> f_salt0smoo = 0.000000000000000D+00
3137     --> f_etan0 = 0.000000000000000D+00
3138     --> f_uvel0 = 0.000000000000000D+00
3139     --> f_vvel0 = 0.000000000000000D+00
3140     --> f_sst = 0.000000000000000D+00
3141     --> f_tmi = 0.000000000000000D+00
3142     --> f_sss = 0.000000000000000D+00
3143     --> f_bp = 0.000000000000000D+00
3144 jmc 1.7 --> f_ies = 0.000000000000000D+00
3145 jmc 1.1 --> f_ssh = 0.000000000000000D+00
3146     --> f_tp = 0.000000000000000D+00
3147     --> f_ers = 0.000000000000000D+00
3148     --> f_gfo = 0.000000000000000D+00
3149     --> f_tauu = 0.000000000000000D+00
3150     --> f_tauum = 0.000000000000000D+00
3151     --> f_tauusmoo = 0.000000000000000D+00
3152     --> f_tauv = 0.000000000000000D+00
3153     --> f_tauvm = 0.000000000000000D+00
3154     --> f_tauvsmoo = 0.000000000000000D+00
3155     --> f_hflux = 0.000000000000000D+00
3156     --> f_hfluxmm = 0.000000000000000D+00
3157     --> f_hfluxsmoo = 0.000000000000000D+00
3158     --> f_sflux = 0.000000000000000D+00
3159     --> f_sfluxmm = 0.000000000000000D+00
3160     --> f_sfluxsmoo = 0.000000000000000D+00
3161     --> f_uwind = 0.000000000000000D+00
3162     --> f_vwind = 0.000000000000000D+00
3163     --> f_atemp = 0.000000000000000D+00
3164     --> f_aqh = 0.000000000000000D+00
3165     --> f_precip = 0.000000000000000D+00
3166     --> f_swflux = 0.000000000000000D+00
3167     --> f_swdown = 0.000000000000000D+00
3168     --> f_uwindm = 0.000000000000000D+00
3169     --> f_vwindm = 0.000000000000000D+00
3170     --> f_atempm = 0.000000000000000D+00
3171     --> f_aqhm = 0.000000000000000D+00
3172     --> f_precipm = 0.000000000000000D+00
3173     --> f_swfluxm = 0.000000000000000D+00
3174     --> f_swdownm = 0.000000000000000D+00
3175     --> f_uwindsmoo = 0.000000000000000D+00
3176     --> f_vwindsmoo = 0.000000000000000D+00
3177     --> f_atempsmoo = 0.000000000000000D+00
3178     --> f_aqhsmoo = 0.000000000000000D+00
3179     --> f_precipsmoo = 0.000000000000000D+00
3180     --> f_swfluxsmoo = 0.000000000000000D+00
3181     --> f_swdownsmoo = 0.000000000000000D+00
3182     --> f_atl = 0.000000000000000D+00
3183     --> f_ctdt = 0.000000000000000D+00
3184     --> f_ctds = 0.000000000000000D+00
3185     --> f_ctdtclim= 0.000000000000000D+00
3186     --> f_ctdsclim= 0.000000000000000D+00
3187     --> f_xbt = 0.000000000000000D+00
3188     --> f_argot = 0.000000000000000D+00
3189     --> f_argos = 0.000000000000000D+00
3190     --> f_drifter = 0.000000000000000D+00
3191     --> f_tdrift = 0.000000000000000D+00
3192     --> f_sdrift = 0.000000000000000D+00
3193     --> f_wdrift = 0.000000000000000D+00
3194     --> f_scatx = 0.000000000000000D+00
3195     --> f_scaty = 0.000000000000000D+00
3196     --> f_scatxm = 0.000000000000000D+00
3197     --> f_scatym = 0.000000000000000D+00
3198     --> f_obcsn = 0.000000000000000D+00
3199     --> f_obcss = 0.000000000000000D+00
3200 heimbach 1.4 --> f_obcsw = 0.152587890625000D-12
3201 jmc 1.1 --> f_obcse = 0.000000000000000D+00
3202     --> f_ageos = 0.000000000000000D+00
3203     --> f_curmtr = 0.000000000000000D+00
3204     --> f_kapgm = 0.000000000000000D+00
3205     --> f_kapredi = 0.000000000000000D+00
3206     --> f_diffkr = 0.000000000000000D+00
3207     --> f_eddytau = 0.000000000000000D+00
3208     --> f_bottomdrag = 0.000000000000000D+00
3209     --> f_hfluxmm2 = 0.000000000000000D+00
3210     --> f_sfluxmm2 = 0.000000000000000D+00
3211     --> f_transp = 0.000000000000000D+00
3212     --> objf_hmean = 0.000000000000000D+00
3213 jmc 1.7 --> fc = 0.000000000000000D+00
3214     early fc = 0.000000000000000D+00
3215     --> objf_test(bi,bj) = 0.000000000000000D+00
3216     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3217     --> objf_atl(bi,bj) = 0.000000000000000D+00
3218     --> objf_test(bi,bj) = 0.000000000000000D+00
3219     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3220     --> objf_atl(bi,bj) = 0.000000000000000D+00
3221     --> objf_test(bi,bj) = 0.000000000000000D+00
3222     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3223     --> objf_atl(bi,bj) = 0.000000000000000D+00
3224     --> objf_test(bi,bj) = 0.000000000000000D+00
3225     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3226     --> objf_atl(bi,bj) = 0.000000000000000D+00
3227     local fc = 0.147701229545077D+01
3228     global fc = 0.147701229545077D+01
3229     (PID.TID 0000.0001) grdchk perturb(+)fc: fcpertplus = 1.47701229545077E+00
3230 jmc 1.1 (PID.TID 0000.0001) Start initial hydrostatic pressure computation
3231     (PID.TID 0000.0001) Pressure is predetermined for buoyancyRelation OCEANIC
3232     (PID.TID 0000.0001)
3233     (PID.TID 0000.0001) // =======================================================
3234     (PID.TID 0000.0001) // Model current state
3235     (PID.TID 0000.0001) // =======================================================
3236     (PID.TID 0000.0001)
3237 jmc 1.3 (PID.TID 0000.0001) SOLVE_FOR_PRESSURE: putPmEinXvector = F
3238 heimbach 1.4 cg2d: Sum(rhs),rhsMax = -7.87435592178018E+00 1.37697984471785E+00
3239     cg2d: Sum(rhs),rhsMax = -1.01791081157114E+02 2.13040853307025E-01
3240 jmc 1.6 cg2d: Sum(rhs),rhsMax = -1.59112718348965E+02 2.04436757292397E-01
3241     cg2d: Sum(rhs),rhsMax = -2.24736325184252E+02 1.92987571288391E-01
3242     (PID.TID 0000.0001) Did not write pickup because writePickupAtEnd = FALSE
3243 jmc 1.1 (PID.TID 0000.0001) ph-cost call cost_theta0
3244     (PID.TID 0000.0001) ph-cost call cost_theta
3245 jmc 1.6 --> f_temp = 0.147701118176573D+01
3246 jmc 1.1 --> f_salt = 0.000000000000000D+00
3247     --> f_temp0 = 0.000000000000000D+00
3248     --> f_salt0 = 0.000000000000000D+00
3249     --> f_temp0smoo = 0.000000000000000D+00
3250     --> f_salt0smoo = 0.000000000000000D+00
3251     --> f_etan0 = 0.000000000000000D+00
3252     --> f_uvel0 = 0.000000000000000D+00
3253     --> f_vvel0 = 0.000000000000000D+00
3254     --> f_sst = 0.000000000000000D+00
3255     --> f_tmi = 0.000000000000000D+00
3256     --> f_sss = 0.000000000000000D+00
3257     --> f_bp = 0.000000000000000D+00
3258 jmc 1.7 --> f_ies = 0.000000000000000D+00
3259 jmc 1.1 --> f_ssh = 0.000000000000000D+00
3260     --> f_tp = 0.000000000000000D+00
3261     --> f_ers = 0.000000000000000D+00
3262     --> f_gfo = 0.000000000000000D+00
3263     --> f_tauu = 0.000000000000000D+00
3264     --> f_tauum = 0.000000000000000D+00
3265     --> f_tauusmoo = 0.000000000000000D+00
3266     --> f_tauv = 0.000000000000000D+00
3267     --> f_tauvm = 0.000000000000000D+00
3268     --> f_tauvsmoo = 0.000000000000000D+00
3269     --> f_hflux = 0.000000000000000D+00
3270     --> f_hfluxmm = 0.000000000000000D+00
3271     --> f_hfluxsmoo = 0.000000000000000D+00
3272     --> f_sflux = 0.000000000000000D+00
3273     --> f_sfluxmm = 0.000000000000000D+00
3274     --> f_sfluxsmoo = 0.000000000000000D+00
3275     --> f_uwind = 0.000000000000000D+00
3276     --> f_vwind = 0.000000000000000D+00
3277     --> f_atemp = 0.000000000000000D+00
3278     --> f_aqh = 0.000000000000000D+00
3279     --> f_precip = 0.000000000000000D+00
3280     --> f_swflux = 0.000000000000000D+00
3281     --> f_swdown = 0.000000000000000D+00
3282     --> f_uwindm = 0.000000000000000D+00
3283     --> f_vwindm = 0.000000000000000D+00
3284     --> f_atempm = 0.000000000000000D+00
3285     --> f_aqhm = 0.000000000000000D+00
3286     --> f_precipm = 0.000000000000000D+00
3287     --> f_swfluxm = 0.000000000000000D+00
3288     --> f_swdownm = 0.000000000000000D+00
3289     --> f_uwindsmoo = 0.000000000000000D+00
3290     --> f_vwindsmoo = 0.000000000000000D+00
3291     --> f_atempsmoo = 0.000000000000000D+00
3292     --> f_aqhsmoo = 0.000000000000000D+00
3293     --> f_precipsmoo = 0.000000000000000D+00
3294     --> f_swfluxsmoo = 0.000000000000000D+00
3295     --> f_swdownsmoo = 0.000000000000000D+00
3296     --> f_atl = 0.000000000000000D+00
3297     --> f_ctdt = 0.000000000000000D+00
3298     --> f_ctds = 0.000000000000000D+00
3299     --> f_ctdtclim= 0.000000000000000D+00
3300     --> f_ctdsclim= 0.000000000000000D+00
3301     --> f_xbt = 0.000000000000000D+00
3302     --> f_argot = 0.000000000000000D+00
3303     --> f_argos = 0.000000000000000D+00
3304     --> f_drifter = 0.000000000000000D+00
3305     --> f_tdrift = 0.000000000000000D+00
3306     --> f_sdrift = 0.000000000000000D+00
3307     --> f_wdrift = 0.000000000000000D+00
3308     --> f_scatx = 0.000000000000000D+00
3309     --> f_scaty = 0.000000000000000D+00
3310     --> f_scatxm = 0.000000000000000D+00
3311     --> f_scatym = 0.000000000000000D+00
3312     --> f_obcsn = 0.000000000000000D+00
3313     --> f_obcss = 0.000000000000000D+00
3314 heimbach 1.4 --> f_obcsw = 0.152587890625000D-12
3315 jmc 1.1 --> f_obcse = 0.000000000000000D+00
3316     --> f_ageos = 0.000000000000000D+00
3317     --> f_curmtr = 0.000000000000000D+00
3318     --> f_kapgm = 0.000000000000000D+00
3319     --> f_kapredi = 0.000000000000000D+00
3320     --> f_diffkr = 0.000000000000000D+00
3321     --> f_eddytau = 0.000000000000000D+00
3322     --> f_bottomdrag = 0.000000000000000D+00
3323     --> f_hfluxmm2 = 0.000000000000000D+00
3324     --> f_sfluxmm2 = 0.000000000000000D+00
3325     --> f_transp = 0.000000000000000D+00
3326     --> objf_hmean = 0.000000000000000D+00
3327 jmc 1.7 --> fc = 0.000000000000000D+00
3328     early fc = 0.000000000000000D+00
3329     --> objf_test(bi,bj) = 0.000000000000000D+00
3330     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3331     --> objf_atl(bi,bj) = 0.000000000000000D+00
3332     --> objf_test(bi,bj) = 0.000000000000000D+00
3333     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3334     --> objf_atl(bi,bj) = 0.000000000000000D+00
3335     --> objf_test(bi,bj) = 0.000000000000000D+00
3336     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3337     --> objf_atl(bi,bj) = 0.000000000000000D+00
3338     --> objf_test(bi,bj) = 0.000000000000000D+00
3339     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3340     --> objf_atl(bi,bj) = 0.000000000000000D+00
3341     local fc = 0.147701118176588D+01
3342     global fc = 0.147701118176588D+01
3343     (PID.TID 0000.0001) grdchk perturb(-)fc: fcpertminus = 1.47701118176588E+00
3344 jmc 1.1 grad-res -------------------------------
3345 jmc 1.5 grad-res 0 2 1 2 4 1 1 1 1.47701073786E+00 1.47701229545E+00 1.47701118177E+00
3346 jmc 1.7 grad-res 0 2 2 98 0 1 1 1 5.56842434465E-03 5.56842443711E-03 -1.66044933358E-08
3347 jmc 1.6 (PID.TID 0000.0001) ADM ref_cost_function = 1.47701073786183E+00
3348 jmc 1.7 (PID.TID 0000.0001) ADM adjoint_gradient = 5.56842434464706E-03
3349 jmc 1.6 (PID.TID 0000.0001) ADM finite-diff_grad = 5.56842443710792E-03
3350 jmc 1.7 (PID.TID 0000.0001) ====== End of gradient-check number 2 (ierr= 0) =======
3351     (PID.TID 0000.0001) ====== Starts gradient-check number 3 (=ichknum) =======
3352 heimbach 1.4 ph-test icomp, ncvarcomp, ichknum 99 8192 3
3353     ph-grd _loc: bi, bj, icomptest, ichknum 1 1 98 3
3354     ph-grd -->hit<-- 1 3 4 1
3355 jmc 1.7 (PID.TID 0000.0001) grdchk pos: i,j,k= 1 3 4 ; bi,bj= 1 1 ; iobc= 1 ; rec= 1
3356 jmc 1.1 (PID.TID 0000.0001) Start initial hydrostatic pressure computation
3357     (PID.TID 0000.0001) Pressure is predetermined for buoyancyRelation OCEANIC
3358     (PID.TID 0000.0001)
3359     (PID.TID 0000.0001) // =======================================================
3360     (PID.TID 0000.0001) // Model current state
3361     (PID.TID 0000.0001) // =======================================================
3362     (PID.TID 0000.0001)
3363 jmc 1.3 (PID.TID 0000.0001) SOLVE_FOR_PRESSURE: putPmEinXvector = F
3364 heimbach 1.4 cg2d: Sum(rhs),rhsMax = -7.87435592178018E+00 1.37697984471785E+00
3365     cg2d: Sum(rhs),rhsMax = -1.01791081157114E+02 2.13040853307025E-01
3366     cg2d: Sum(rhs),rhsMax = -1.59112718349077E+02 2.04436757292253E-01
3367 jmc 1.6 cg2d: Sum(rhs),rhsMax = -2.24736325185386E+02 1.92987571287418E-01
3368     (PID.TID 0000.0001) Did not write pickup because writePickupAtEnd = FALSE
3369 jmc 1.1 (PID.TID 0000.0001) ph-cost call cost_theta0
3370     (PID.TID 0000.0001) ph-cost call cost_theta
3371 heimbach 1.4 --> f_temp = 0.147701230547670D+01
3372 jmc 1.1 --> f_salt = 0.000000000000000D+00
3373     --> f_temp0 = 0.000000000000000D+00
3374     --> f_salt0 = 0.000000000000000D+00
3375     --> f_temp0smoo = 0.000000000000000D+00
3376     --> f_salt0smoo = 0.000000000000000D+00
3377     --> f_etan0 = 0.000000000000000D+00
3378     --> f_uvel0 = 0.000000000000000D+00
3379     --> f_vvel0 = 0.000000000000000D+00
3380     --> f_sst = 0.000000000000000D+00
3381     --> f_tmi = 0.000000000000000D+00
3382     --> f_sss = 0.000000000000000D+00
3383     --> f_bp = 0.000000000000000D+00
3384 jmc 1.7 --> f_ies = 0.000000000000000D+00
3385 jmc 1.1 --> f_ssh = 0.000000000000000D+00
3386     --> f_tp = 0.000000000000000D+00
3387     --> f_ers = 0.000000000000000D+00
3388     --> f_gfo = 0.000000000000000D+00
3389     --> f_tauu = 0.000000000000000D+00
3390     --> f_tauum = 0.000000000000000D+00
3391     --> f_tauusmoo = 0.000000000000000D+00
3392     --> f_tauv = 0.000000000000000D+00
3393     --> f_tauvm = 0.000000000000000D+00
3394     --> f_tauvsmoo = 0.000000000000000D+00
3395     --> f_hflux = 0.000000000000000D+00
3396     --> f_hfluxmm = 0.000000000000000D+00
3397     --> f_hfluxsmoo = 0.000000000000000D+00
3398     --> f_sflux = 0.000000000000000D+00
3399     --> f_sfluxmm = 0.000000000000000D+00
3400     --> f_sfluxsmoo = 0.000000000000000D+00
3401     --> f_uwind = 0.000000000000000D+00
3402     --> f_vwind = 0.000000000000000D+00
3403     --> f_atemp = 0.000000000000000D+00
3404     --> f_aqh = 0.000000000000000D+00
3405     --> f_precip = 0.000000000000000D+00
3406     --> f_swflux = 0.000000000000000D+00
3407     --> f_swdown = 0.000000000000000D+00
3408     --> f_uwindm = 0.000000000000000D+00
3409     --> f_vwindm = 0.000000000000000D+00
3410     --> f_atempm = 0.000000000000000D+00
3411     --> f_aqhm = 0.000000000000000D+00
3412     --> f_precipm = 0.000000000000000D+00
3413     --> f_swfluxm = 0.000000000000000D+00
3414     --> f_swdownm = 0.000000000000000D+00
3415     --> f_uwindsmoo = 0.000000000000000D+00
3416     --> f_vwindsmoo = 0.000000000000000D+00
3417     --> f_atempsmoo = 0.000000000000000D+00
3418     --> f_aqhsmoo = 0.000000000000000D+00
3419     --> f_precipsmoo = 0.000000000000000D+00
3420     --> f_swfluxsmoo = 0.000000000000000D+00
3421     --> f_swdownsmoo = 0.000000000000000D+00
3422     --> f_atl = 0.000000000000000D+00
3423     --> f_ctdt = 0.000000000000000D+00
3424     --> f_ctds = 0.000000000000000D+00
3425     --> f_ctdtclim= 0.000000000000000D+00
3426     --> f_ctdsclim= 0.000000000000000D+00
3427     --> f_xbt = 0.000000000000000D+00
3428     --> f_argot = 0.000000000000000D+00
3429     --> f_argos = 0.000000000000000D+00
3430     --> f_drifter = 0.000000000000000D+00
3431     --> f_tdrift = 0.000000000000000D+00
3432     --> f_sdrift = 0.000000000000000D+00
3433     --> f_wdrift = 0.000000000000000D+00
3434     --> f_scatx = 0.000000000000000D+00
3435     --> f_scaty = 0.000000000000000D+00
3436     --> f_scatxm = 0.000000000000000D+00
3437     --> f_scatym = 0.000000000000000D+00
3438     --> f_obcsn = 0.000000000000000D+00
3439     --> f_obcss = 0.000000000000000D+00
3440 heimbach 1.4 --> f_obcsw = 0.152587890625000D-12
3441 jmc 1.1 --> f_obcse = 0.000000000000000D+00
3442     --> f_ageos = 0.000000000000000D+00
3443     --> f_curmtr = 0.000000000000000D+00
3444     --> f_kapgm = 0.000000000000000D+00
3445     --> f_kapredi = 0.000000000000000D+00
3446     --> f_diffkr = 0.000000000000000D+00
3447     --> f_eddytau = 0.000000000000000D+00
3448     --> f_bottomdrag = 0.000000000000000D+00
3449     --> f_hfluxmm2 = 0.000000000000000D+00
3450     --> f_sfluxmm2 = 0.000000000000000D+00
3451     --> f_transp = 0.000000000000000D+00
3452     --> objf_hmean = 0.000000000000000D+00
3453 jmc 1.7 --> fc = 0.000000000000000D+00
3454     early fc = 0.000000000000000D+00
3455     --> objf_test(bi,bj) = 0.000000000000000D+00
3456     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3457     --> objf_atl(bi,bj) = 0.000000000000000D+00
3458     --> objf_test(bi,bj) = 0.000000000000000D+00
3459     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3460     --> objf_atl(bi,bj) = 0.000000000000000D+00
3461     --> objf_test(bi,bj) = 0.000000000000000D+00
3462     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3463     --> objf_atl(bi,bj) = 0.000000000000000D+00
3464     --> objf_test(bi,bj) = 0.000000000000000D+00
3465     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3466     --> objf_atl(bi,bj) = 0.000000000000000D+00
3467     local fc = 0.147701230547685D+01
3468     global fc = 0.147701230547685D+01
3469     (PID.TID 0000.0001) grdchk perturb(+)fc: fcpertplus = 1.47701230547685E+00
3470 jmc 1.1 (PID.TID 0000.0001) Start initial hydrostatic pressure computation
3471     (PID.TID 0000.0001) Pressure is predetermined for buoyancyRelation OCEANIC
3472     (PID.TID 0000.0001)
3473     (PID.TID 0000.0001) // =======================================================
3474     (PID.TID 0000.0001) // Model current state
3475     (PID.TID 0000.0001) // =======================================================
3476     (PID.TID 0000.0001)
3477 jmc 1.3 (PID.TID 0000.0001) SOLVE_FOR_PRESSURE: putPmEinXvector = F
3478 heimbach 1.4 cg2d: Sum(rhs),rhsMax = -7.87435592178018E+00 1.37697984471785E+00
3479     cg2d: Sum(rhs),rhsMax = -1.01791081157114E+02 2.13040853307025E-01
3480 jmc 1.6 cg2d: Sum(rhs),rhsMax = -1.59112718348960E+02 2.04436757292403E-01
3481     cg2d: Sum(rhs),rhsMax = -2.24736325184268E+02 1.92987571288377E-01
3482     (PID.TID 0000.0001) Did not write pickup because writePickupAtEnd = FALSE
3483 jmc 1.1 (PID.TID 0000.0001) ph-cost call cost_theta0
3484     (PID.TID 0000.0001) ph-cost call cost_theta
3485 heimbach 1.4 --> f_temp = 0.147701117173779D+01
3486 jmc 1.1 --> f_salt = 0.000000000000000D+00
3487     --> f_temp0 = 0.000000000000000D+00
3488     --> f_salt0 = 0.000000000000000D+00
3489     --> f_temp0smoo = 0.000000000000000D+00
3490     --> f_salt0smoo = 0.000000000000000D+00
3491     --> f_etan0 = 0.000000000000000D+00
3492     --> f_uvel0 = 0.000000000000000D+00
3493     --> f_vvel0 = 0.000000000000000D+00
3494     --> f_sst = 0.000000000000000D+00
3495     --> f_tmi = 0.000000000000000D+00
3496     --> f_sss = 0.000000000000000D+00
3497     --> f_bp = 0.000000000000000D+00
3498 jmc 1.7 --> f_ies = 0.000000000000000D+00
3499 jmc 1.1 --> f_ssh = 0.000000000000000D+00
3500     --> f_tp = 0.000000000000000D+00
3501     --> f_ers = 0.000000000000000D+00
3502     --> f_gfo = 0.000000000000000D+00
3503     --> f_tauu = 0.000000000000000D+00
3504     --> f_tauum = 0.000000000000000D+00
3505     --> f_tauusmoo = 0.000000000000000D+00
3506     --> f_tauv = 0.000000000000000D+00
3507     --> f_tauvm = 0.000000000000000D+00
3508     --> f_tauvsmoo = 0.000000000000000D+00
3509     --> f_hflux = 0.000000000000000D+00
3510     --> f_hfluxmm = 0.000000000000000D+00
3511     --> f_hfluxsmoo = 0.000000000000000D+00
3512     --> f_sflux = 0.000000000000000D+00
3513     --> f_sfluxmm = 0.000000000000000D+00
3514     --> f_sfluxsmoo = 0.000000000000000D+00
3515     --> f_uwind = 0.000000000000000D+00
3516     --> f_vwind = 0.000000000000000D+00
3517     --> f_atemp = 0.000000000000000D+00
3518     --> f_aqh = 0.000000000000000D+00
3519     --> f_precip = 0.000000000000000D+00
3520     --> f_swflux = 0.000000000000000D+00
3521     --> f_swdown = 0.000000000000000D+00
3522     --> f_uwindm = 0.000000000000000D+00
3523     --> f_vwindm = 0.000000000000000D+00
3524     --> f_atempm = 0.000000000000000D+00
3525     --> f_aqhm = 0.000000000000000D+00
3526     --> f_precipm = 0.000000000000000D+00
3527     --> f_swfluxm = 0.000000000000000D+00
3528     --> f_swdownm = 0.000000000000000D+00
3529     --> f_uwindsmoo = 0.000000000000000D+00
3530     --> f_vwindsmoo = 0.000000000000000D+00
3531     --> f_atempsmoo = 0.000000000000000D+00
3532     --> f_aqhsmoo = 0.000000000000000D+00
3533     --> f_precipsmoo = 0.000000000000000D+00
3534     --> f_swfluxsmoo = 0.000000000000000D+00
3535     --> f_swdownsmoo = 0.000000000000000D+00
3536     --> f_atl = 0.000000000000000D+00
3537     --> f_ctdt = 0.000000000000000D+00
3538     --> f_ctds = 0.000000000000000D+00
3539     --> f_ctdtclim= 0.000000000000000D+00
3540     --> f_ctdsclim= 0.000000000000000D+00
3541     --> f_xbt = 0.000000000000000D+00
3542     --> f_argot = 0.000000000000000D+00
3543     --> f_argos = 0.000000000000000D+00
3544     --> f_drifter = 0.000000000000000D+00
3545     --> f_tdrift = 0.000000000000000D+00
3546     --> f_sdrift = 0.000000000000000D+00
3547     --> f_wdrift = 0.000000000000000D+00
3548     --> f_scatx = 0.000000000000000D+00
3549     --> f_scaty = 0.000000000000000D+00
3550     --> f_scatxm = 0.000000000000000D+00
3551     --> f_scatym = 0.000000000000000D+00
3552     --> f_obcsn = 0.000000000000000D+00
3553     --> f_obcss = 0.000000000000000D+00
3554 heimbach 1.4 --> f_obcsw = 0.152587890625000D-12
3555 jmc 1.1 --> f_obcse = 0.000000000000000D+00
3556     --> f_ageos = 0.000000000000000D+00
3557     --> f_curmtr = 0.000000000000000D+00
3558     --> f_kapgm = 0.000000000000000D+00
3559     --> f_kapredi = 0.000000000000000D+00
3560     --> f_diffkr = 0.000000000000000D+00
3561     --> f_eddytau = 0.000000000000000D+00
3562     --> f_bottomdrag = 0.000000000000000D+00
3563     --> f_hfluxmm2 = 0.000000000000000D+00
3564     --> f_sfluxmm2 = 0.000000000000000D+00
3565     --> f_transp = 0.000000000000000D+00
3566     --> objf_hmean = 0.000000000000000D+00
3567 jmc 1.7 --> fc = 0.000000000000000D+00
3568     early fc = 0.000000000000000D+00
3569     --> objf_test(bi,bj) = 0.000000000000000D+00
3570     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3571     --> objf_atl(bi,bj) = 0.000000000000000D+00
3572     --> objf_test(bi,bj) = 0.000000000000000D+00
3573     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3574     --> objf_atl(bi,bj) = 0.000000000000000D+00
3575     --> objf_test(bi,bj) = 0.000000000000000D+00
3576     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3577     --> objf_atl(bi,bj) = 0.000000000000000D+00
3578     --> objf_test(bi,bj) = 0.000000000000000D+00
3579     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3580     --> objf_atl(bi,bj) = 0.000000000000000D+00
3581     local fc = 0.147701117173795D+01
3582     global fc = 0.147701117173795D+01
3583     (PID.TID 0000.0001) grdchk perturb(-)fc: fcpertminus = 1.47701117173795E+00
3584 jmc 1.1 grad-res -------------------------------
3585 jmc 1.5 grad-res 0 3 1 3 4 1 1 1 1.47701073786E+00 1.47701230548E+00 1.47701117174E+00
3586 jmc 1.7 grad-res 0 3 3 99 0 1 1 1 5.66869450426E-03 5.66869452823E-03 -4.22726098570E-09
3587 jmc 1.6 (PID.TID 0000.0001) ADM ref_cost_function = 1.47701073786183E+00
3588 jmc 1.7 (PID.TID 0000.0001) ADM adjoint_gradient = 5.66869450426389E-03
3589 jmc 1.6 (PID.TID 0000.0001) ADM finite-diff_grad = 5.66869452822694E-03
3590 jmc 1.7 (PID.TID 0000.0001) ====== End of gradient-check number 3 (ierr= 0) =======
3591     (PID.TID 0000.0001) ====== Starts gradient-check number 4 (=ichknum) =======
3592 heimbach 1.4 ph-test icomp, ncvarcomp, ichknum 100 8192 4
3593     ph-grd _loc: bi, bj, icomptest, ichknum 1 1 99 4
3594     ph-grd -->hit<-- 1 4 4 1
3595 jmc 1.7 (PID.TID 0000.0001) grdchk pos: i,j,k= 1 4 4 ; bi,bj= 1 1 ; iobc= 1 ; rec= 1
3596 jmc 1.1 (PID.TID 0000.0001) Start initial hydrostatic pressure computation
3597     (PID.TID 0000.0001) Pressure is predetermined for buoyancyRelation OCEANIC
3598     (PID.TID 0000.0001)
3599     (PID.TID 0000.0001) // =======================================================
3600     (PID.TID 0000.0001) // Model current state
3601     (PID.TID 0000.0001) // =======================================================
3602     (PID.TID 0000.0001)
3603 jmc 1.3 (PID.TID 0000.0001) SOLVE_FOR_PRESSURE: putPmEinXvector = F
3604 heimbach 1.4 cg2d: Sum(rhs),rhsMax = -7.87435592178018E+00 1.37697984471785E+00
3605     cg2d: Sum(rhs),rhsMax = -1.01791081157114E+02 2.13040853307025E-01
3606 jmc 1.6 cg2d: Sum(rhs),rhsMax = -1.59112718349081E+02 2.04436757292248E-01
3607     cg2d: Sum(rhs),rhsMax = -2.24736325185377E+02 1.92987571287425E-01
3608     (PID.TID 0000.0001) Did not write pickup because writePickupAtEnd = FALSE
3609 jmc 1.1 (PID.TID 0000.0001) ph-cost call cost_theta0
3610     (PID.TID 0000.0001) ph-cost call cost_theta
3611 jmc 1.6 --> f_temp = 0.147701231575997D+01
3612 jmc 1.1 --> f_salt = 0.000000000000000D+00
3613     --> f_temp0 = 0.000000000000000D+00
3614     --> f_salt0 = 0.000000000000000D+00
3615     --> f_temp0smoo = 0.000000000000000D+00
3616     --> f_salt0smoo = 0.000000000000000D+00
3617     --> f_etan0 = 0.000000000000000D+00
3618     --> f_uvel0 = 0.000000000000000D+00
3619     --> f_vvel0 = 0.000000000000000D+00
3620     --> f_sst = 0.000000000000000D+00
3621     --> f_tmi = 0.000000000000000D+00
3622     --> f_sss = 0.000000000000000D+00
3623     --> f_bp = 0.000000000000000D+00
3624 jmc 1.7 --> f_ies = 0.000000000000000D+00
3625 jmc 1.1 --> f_ssh = 0.000000000000000D+00
3626     --> f_tp = 0.000000000000000D+00
3627     --> f_ers = 0.000000000000000D+00
3628     --> f_gfo = 0.000000000000000D+00
3629     --> f_tauu = 0.000000000000000D+00
3630     --> f_tauum = 0.000000000000000D+00
3631     --> f_tauusmoo = 0.000000000000000D+00
3632     --> f_tauv = 0.000000000000000D+00
3633     --> f_tauvm = 0.000000000000000D+00
3634     --> f_tauvsmoo = 0.000000000000000D+00
3635     --> f_hflux = 0.000000000000000D+00
3636     --> f_hfluxmm = 0.000000000000000D+00
3637     --> f_hfluxsmoo = 0.000000000000000D+00
3638     --> f_sflux = 0.000000000000000D+00
3639     --> f_sfluxmm = 0.000000000000000D+00
3640     --> f_sfluxsmoo = 0.000000000000000D+00
3641     --> f_uwind = 0.000000000000000D+00
3642     --> f_vwind = 0.000000000000000D+00
3643     --> f_atemp = 0.000000000000000D+00
3644     --> f_aqh = 0.000000000000000D+00
3645     --> f_precip = 0.000000000000000D+00
3646     --> f_swflux = 0.000000000000000D+00
3647     --> f_swdown = 0.000000000000000D+00
3648     --> f_uwindm = 0.000000000000000D+00
3649     --> f_vwindm = 0.000000000000000D+00
3650     --> f_atempm = 0.000000000000000D+00
3651     --> f_aqhm = 0.000000000000000D+00
3652     --> f_precipm = 0.000000000000000D+00
3653     --> f_swfluxm = 0.000000000000000D+00
3654     --> f_swdownm = 0.000000000000000D+00
3655     --> f_uwindsmoo = 0.000000000000000D+00
3656     --> f_vwindsmoo = 0.000000000000000D+00
3657     --> f_atempsmoo = 0.000000000000000D+00
3658     --> f_aqhsmoo = 0.000000000000000D+00
3659     --> f_precipsmoo = 0.000000000000000D+00
3660     --> f_swfluxsmoo = 0.000000000000000D+00
3661     --> f_swdownsmoo = 0.000000000000000D+00
3662     --> f_atl = 0.000000000000000D+00
3663     --> f_ctdt = 0.000000000000000D+00
3664     --> f_ctds = 0.000000000000000D+00
3665     --> f_ctdtclim= 0.000000000000000D+00
3666     --> f_ctdsclim= 0.000000000000000D+00
3667     --> f_xbt = 0.000000000000000D+00
3668     --> f_argot = 0.000000000000000D+00
3669     --> f_argos = 0.000000000000000D+00
3670     --> f_drifter = 0.000000000000000D+00
3671     --> f_tdrift = 0.000000000000000D+00
3672     --> f_sdrift = 0.000000000000000D+00
3673     --> f_wdrift = 0.000000000000000D+00
3674     --> f_scatx = 0.000000000000000D+00
3675     --> f_scaty = 0.000000000000000D+00
3676     --> f_scatxm = 0.000000000000000D+00
3677     --> f_scatym = 0.000000000000000D+00
3678     --> f_obcsn = 0.000000000000000D+00
3679     --> f_obcss = 0.000000000000000D+00
3680 heimbach 1.4 --> f_obcsw = 0.152587890625000D-12
3681 jmc 1.1 --> f_obcse = 0.000000000000000D+00
3682     --> f_ageos = 0.000000000000000D+00
3683     --> f_curmtr = 0.000000000000000D+00
3684     --> f_kapgm = 0.000000000000000D+00
3685     --> f_kapredi = 0.000000000000000D+00
3686     --> f_diffkr = 0.000000000000000D+00
3687     --> f_eddytau = 0.000000000000000D+00
3688     --> f_bottomdrag = 0.000000000000000D+00
3689     --> f_hfluxmm2 = 0.000000000000000D+00
3690     --> f_sfluxmm2 = 0.000000000000000D+00
3691     --> f_transp = 0.000000000000000D+00
3692     --> objf_hmean = 0.000000000000000D+00
3693 jmc 1.7 --> fc = 0.000000000000000D+00
3694     early fc = 0.000000000000000D+00
3695     --> objf_test(bi,bj) = 0.000000000000000D+00
3696     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3697     --> objf_atl(bi,bj) = 0.000000000000000D+00
3698     --> objf_test(bi,bj) = 0.000000000000000D+00
3699     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3700     --> objf_atl(bi,bj) = 0.000000000000000D+00
3701     --> objf_test(bi,bj) = 0.000000000000000D+00
3702     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3703     --> objf_atl(bi,bj) = 0.000000000000000D+00
3704     --> objf_test(bi,bj) = 0.000000000000000D+00
3705     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3706     --> objf_atl(bi,bj) = 0.000000000000000D+00
3707     local fc = 0.147701231576012D+01
3708     global fc = 0.147701231576012D+01
3709     (PID.TID 0000.0001) grdchk perturb(+)fc: fcpertplus = 1.47701231576012E+00
3710 jmc 1.1 (PID.TID 0000.0001) Start initial hydrostatic pressure computation
3711     (PID.TID 0000.0001) Pressure is predetermined for buoyancyRelation OCEANIC
3712     (PID.TID 0000.0001)
3713     (PID.TID 0000.0001) // =======================================================
3714     (PID.TID 0000.0001) // Model current state
3715     (PID.TID 0000.0001) // =======================================================
3716     (PID.TID 0000.0001)
3717 jmc 1.3 (PID.TID 0000.0001) SOLVE_FOR_PRESSURE: putPmEinXvector = F
3718 heimbach 1.4 cg2d: Sum(rhs),rhsMax = -7.87435592178018E+00 1.37697984471785E+00
3719     cg2d: Sum(rhs),rhsMax = -1.01791081157114E+02 2.13040853307025E-01
3720 jmc 1.6 cg2d: Sum(rhs),rhsMax = -1.59112718348969E+02 2.04436757292392E-01
3721     cg2d: Sum(rhs),rhsMax = -2.24736325184241E+02 1.92987571288401E-01
3722     (PID.TID 0000.0001) Did not write pickup because writePickupAtEnd = FALSE
3723 jmc 1.1 (PID.TID 0000.0001) ph-cost call cost_theta0
3724     (PID.TID 0000.0001) ph-cost call cost_theta
3725 jmc 1.6 --> f_temp = 0.147701116146128D+01
3726 jmc 1.1 --> f_salt = 0.000000000000000D+00
3727     --> f_temp0 = 0.000000000000000D+00
3728     --> f_salt0 = 0.000000000000000D+00
3729     --> f_temp0smoo = 0.000000000000000D+00
3730     --> f_salt0smoo = 0.000000000000000D+00
3731     --> f_etan0 = 0.000000000000000D+00
3732     --> f_uvel0 = 0.000000000000000D+00
3733     --> f_vvel0 = 0.000000000000000D+00
3734     --> f_sst = 0.000000000000000D+00
3735     --> f_tmi = 0.000000000000000D+00
3736     --> f_sss = 0.000000000000000D+00
3737     --> f_bp = 0.000000000000000D+00
3738 jmc 1.7 --> f_ies = 0.000000000000000D+00
3739 jmc 1.1 --> f_ssh = 0.000000000000000D+00
3740     --> f_tp = 0.000000000000000D+00
3741     --> f_ers = 0.000000000000000D+00
3742     --> f_gfo = 0.000000000000000D+00
3743     --> f_tauu = 0.000000000000000D+00
3744     --> f_tauum = 0.000000000000000D+00
3745     --> f_tauusmoo = 0.000000000000000D+00
3746     --> f_tauv = 0.000000000000000D+00
3747     --> f_tauvm = 0.000000000000000D+00
3748     --> f_tauvsmoo = 0.000000000000000D+00
3749     --> f_hflux = 0.000000000000000D+00
3750     --> f_hfluxmm = 0.000000000000000D+00
3751     --> f_hfluxsmoo = 0.000000000000000D+00
3752     --> f_sflux = 0.000000000000000D+00
3753     --> f_sfluxmm = 0.000000000000000D+00
3754     --> f_sfluxsmoo = 0.000000000000000D+00
3755     --> f_uwind = 0.000000000000000D+00
3756     --> f_vwind = 0.000000000000000D+00
3757     --> f_atemp = 0.000000000000000D+00
3758     --> f_aqh = 0.000000000000000D+00
3759     --> f_precip = 0.000000000000000D+00
3760     --> f_swflux = 0.000000000000000D+00
3761     --> f_swdown = 0.000000000000000D+00
3762     --> f_uwindm = 0.000000000000000D+00
3763     --> f_vwindm = 0.000000000000000D+00
3764     --> f_atempm = 0.000000000000000D+00
3765     --> f_aqhm = 0.000000000000000D+00
3766     --> f_precipm = 0.000000000000000D+00
3767     --> f_swfluxm = 0.000000000000000D+00
3768     --> f_swdownm = 0.000000000000000D+00
3769     --> f_uwindsmoo = 0.000000000000000D+00
3770     --> f_vwindsmoo = 0.000000000000000D+00
3771     --> f_atempsmoo = 0.000000000000000D+00
3772     --> f_aqhsmoo = 0.000000000000000D+00
3773     --> f_precipsmoo = 0.000000000000000D+00
3774     --> f_swfluxsmoo = 0.000000000000000D+00
3775     --> f_swdownsmoo = 0.000000000000000D+00
3776     --> f_atl = 0.000000000000000D+00
3777     --> f_ctdt = 0.000000000000000D+00
3778     --> f_ctds = 0.000000000000000D+00
3779     --> f_ctdtclim= 0.000000000000000D+00
3780     --> f_ctdsclim= 0.000000000000000D+00
3781     --> f_xbt = 0.000000000000000D+00
3782     --> f_argot = 0.000000000000000D+00
3783     --> f_argos = 0.000000000000000D+00
3784     --> f_drifter = 0.000000000000000D+00
3785     --> f_tdrift = 0.000000000000000D+00
3786     --> f_sdrift = 0.000000000000000D+00
3787     --> f_wdrift = 0.000000000000000D+00
3788     --> f_scatx = 0.000000000000000D+00
3789     --> f_scaty = 0.000000000000000D+00
3790     --> f_scatxm = 0.000000000000000D+00
3791     --> f_scatym = 0.000000000000000D+00
3792     --> f_obcsn = 0.000000000000000D+00
3793     --> f_obcss = 0.000000000000000D+00
3794 heimbach 1.4 --> f_obcsw = 0.152587890625000D-12
3795 jmc 1.1 --> f_obcse = 0.000000000000000D+00
3796     --> f_ageos = 0.000000000000000D+00
3797     --> f_curmtr = 0.000000000000000D+00
3798     --> f_kapgm = 0.000000000000000D+00
3799     --> f_kapredi = 0.000000000000000D+00
3800     --> f_diffkr = 0.000000000000000D+00
3801     --> f_eddytau = 0.000000000000000D+00
3802     --> f_bottomdrag = 0.000000000000000D+00
3803     --> f_hfluxmm2 = 0.000000000000000D+00
3804     --> f_sfluxmm2 = 0.000000000000000D+00
3805     --> f_transp = 0.000000000000000D+00
3806     --> objf_hmean = 0.000000000000000D+00
3807 jmc 1.7 --> fc = 0.000000000000000D+00
3808     early fc = 0.000000000000000D+00
3809     --> objf_test(bi,bj) = 0.000000000000000D+00
3810     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3811     --> objf_atl(bi,bj) = 0.000000000000000D+00
3812     --> objf_test(bi,bj) = 0.000000000000000D+00
3813     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3814     --> objf_atl(bi,bj) = 0.000000000000000D+00
3815     --> objf_test(bi,bj) = 0.000000000000000D+00
3816     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3817     --> objf_atl(bi,bj) = 0.000000000000000D+00
3818     --> objf_test(bi,bj) = 0.000000000000000D+00
3819     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3820     --> objf_atl(bi,bj) = 0.000000000000000D+00
3821     local fc = 0.147701116146143D+01
3822     global fc = 0.147701116146143D+01
3823     (PID.TID 0000.0001) grdchk perturb(-)fc: fcpertminus = 1.47701116146143E+00
3824 jmc 1.1 grad-res -------------------------------
3825 jmc 1.5 grad-res 0 4 1 4 4 1 1 1 1.47701073786E+00 1.47701231576E+00 1.47701116146E+00
3826 jmc 1.7 grad-res 0 4 4 100 0 1 1 1 5.77149324922E-03 5.77149344316E-03 -3.36030230308E-08
3827 jmc 1.6 (PID.TID 0000.0001) ADM ref_cost_function = 1.47701073786183E+00
3828 jmc 1.7 (PID.TID 0000.0001) ADM adjoint_gradient = 5.77149324922335E-03
3829 jmc 1.6 (PID.TID 0000.0001) ADM finite-diff_grad = 5.77149344316297E-03
3830 jmc 1.7 (PID.TID 0000.0001) ====== End of gradient-check number 4 (ierr= 0) =======
3831     (PID.TID 0000.0001) ====== Starts gradient-check number 5 (=ichknum) =======
3832 heimbach 1.4 ph-test icomp, ncvarcomp, ichknum 101 8192 5
3833     ph-grd _loc: bi, bj, icomptest, ichknum 1 1 100 5
3834     ph-grd -->hit<-- 1 5 4 1
3835 jmc 1.7 (PID.TID 0000.0001) grdchk pos: i,j,k= 1 5 4 ; bi,bj= 1 1 ; iobc= 1 ; rec= 1
3836 jmc 1.1 (PID.TID 0000.0001) Start initial hydrostatic pressure computation
3837     (PID.TID 0000.0001) Pressure is predetermined for buoyancyRelation OCEANIC
3838     (PID.TID 0000.0001)
3839     (PID.TID 0000.0001) // =======================================================
3840     (PID.TID 0000.0001) // Model current state
3841     (PID.TID 0000.0001) // =======================================================
3842     (PID.TID 0000.0001)
3843 jmc 1.3 (PID.TID 0000.0001) SOLVE_FOR_PRESSURE: putPmEinXvector = F
3844 heimbach 1.4 cg2d: Sum(rhs),rhsMax = -7.87435592178018E+00 1.37697984471785E+00
3845     cg2d: Sum(rhs),rhsMax = -1.01791081157114E+02 2.13040853307025E-01
3846 jmc 1.6 cg2d: Sum(rhs),rhsMax = -1.59112718349079E+02 2.04436757292251E-01
3847     cg2d: Sum(rhs),rhsMax = -2.24736325185388E+02 1.92987571287415E-01
3848     (PID.TID 0000.0001) Did not write pickup because writePickupAtEnd = FALSE
3849 jmc 1.1 (PID.TID 0000.0001) ph-cost call cost_theta0
3850     (PID.TID 0000.0001) ph-cost call cost_theta
3851 jmc 1.6 --> f_temp = 0.147701232551276D+01
3852 jmc 1.1 --> f_salt = 0.000000000000000D+00
3853     --> f_temp0 = 0.000000000000000D+00
3854     --> f_salt0 = 0.000000000000000D+00
3855     --> f_temp0smoo = 0.000000000000000D+00
3856     --> f_salt0smoo = 0.000000000000000D+00
3857     --> f_etan0 = 0.000000000000000D+00
3858     --> f_uvel0 = 0.000000000000000D+00
3859     --> f_vvel0 = 0.000000000000000D+00
3860     --> f_sst = 0.000000000000000D+00
3861     --> f_tmi = 0.000000000000000D+00
3862     --> f_sss = 0.000000000000000D+00
3863     --> f_bp = 0.000000000000000D+00
3864 jmc 1.7 --> f_ies = 0.000000000000000D+00
3865 jmc 1.1 --> f_ssh = 0.000000000000000D+00
3866     --> f_tp = 0.000000000000000D+00
3867     --> f_ers = 0.000000000000000D+00
3868     --> f_gfo = 0.000000000000000D+00
3869     --> f_tauu = 0.000000000000000D+00
3870     --> f_tauum = 0.000000000000000D+00
3871     --> f_tauusmoo = 0.000000000000000D+00
3872     --> f_tauv = 0.000000000000000D+00
3873     --> f_tauvm = 0.000000000000000D+00
3874     --> f_tauvsmoo = 0.000000000000000D+00
3875     --> f_hflux = 0.000000000000000D+00
3876     --> f_hfluxmm = 0.000000000000000D+00
3877     --> f_hfluxsmoo = 0.000000000000000D+00
3878     --> f_sflux = 0.000000000000000D+00
3879     --> f_sfluxmm = 0.000000000000000D+00
3880     --> f_sfluxsmoo = 0.000000000000000D+00
3881     --> f_uwind = 0.000000000000000D+00
3882     --> f_vwind = 0.000000000000000D+00
3883     --> f_atemp = 0.000000000000000D+00
3884     --> f_aqh = 0.000000000000000D+00
3885     --> f_precip = 0.000000000000000D+00
3886     --> f_swflux = 0.000000000000000D+00
3887     --> f_swdown = 0.000000000000000D+00
3888     --> f_uwindm = 0.000000000000000D+00
3889     --> f_vwindm = 0.000000000000000D+00
3890     --> f_atempm = 0.000000000000000D+00
3891     --> f_aqhm = 0.000000000000000D+00
3892     --> f_precipm = 0.000000000000000D+00
3893     --> f_swfluxm = 0.000000000000000D+00
3894     --> f_swdownm = 0.000000000000000D+00
3895     --> f_uwindsmoo = 0.000000000000000D+00
3896     --> f_vwindsmoo = 0.000000000000000D+00
3897     --> f_atempsmoo = 0.000000000000000D+00
3898     --> f_aqhsmoo = 0.000000000000000D+00
3899     --> f_precipsmoo = 0.000000000000000D+00
3900     --> f_swfluxsmoo = 0.000000000000000D+00
3901     --> f_swdownsmoo = 0.000000000000000D+00
3902     --> f_atl = 0.000000000000000D+00
3903     --> f_ctdt = 0.000000000000000D+00
3904     --> f_ctds = 0.000000000000000D+00
3905     --> f_ctdtclim= 0.000000000000000D+00
3906     --> f_ctdsclim= 0.000000000000000D+00
3907     --> f_xbt = 0.000000000000000D+00
3908     --> f_argot = 0.000000000000000D+00
3909     --> f_argos = 0.000000000000000D+00
3910     --> f_drifter = 0.000000000000000D+00
3911     --> f_tdrift = 0.000000000000000D+00
3912     --> f_sdrift = 0.000000000000000D+00
3913     --> f_wdrift = 0.000000000000000D+00
3914     --> f_scatx = 0.000000000000000D+00
3915     --> f_scaty = 0.000000000000000D+00
3916     --> f_scatxm = 0.000000000000000D+00
3917     --> f_scatym = 0.000000000000000D+00
3918     --> f_obcsn = 0.000000000000000D+00
3919     --> f_obcss = 0.000000000000000D+00
3920 heimbach 1.4 --> f_obcsw = 0.152587890625000D-12
3921 jmc 1.1 --> f_obcse = 0.000000000000000D+00
3922     --> f_ageos = 0.000000000000000D+00
3923     --> f_curmtr = 0.000000000000000D+00
3924     --> f_kapgm = 0.000000000000000D+00
3925     --> f_kapredi = 0.000000000000000D+00
3926     --> f_diffkr = 0.000000000000000D+00
3927     --> f_eddytau = 0.000000000000000D+00
3928     --> f_bottomdrag = 0.000000000000000D+00
3929     --> f_hfluxmm2 = 0.000000000000000D+00
3930     --> f_sfluxmm2 = 0.000000000000000D+00
3931     --> f_transp = 0.000000000000000D+00
3932     --> objf_hmean = 0.000000000000000D+00
3933 jmc 1.7 --> fc = 0.000000000000000D+00
3934     early fc = 0.000000000000000D+00
3935     --> objf_test(bi,bj) = 0.000000000000000D+00
3936     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3937     --> objf_atl(bi,bj) = 0.000000000000000D+00
3938     --> objf_test(bi,bj) = 0.000000000000000D+00
3939     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3940     --> objf_atl(bi,bj) = 0.000000000000000D+00
3941     --> objf_test(bi,bj) = 0.000000000000000D+00
3942     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3943     --> objf_atl(bi,bj) = 0.000000000000000D+00
3944     --> objf_test(bi,bj) = 0.000000000000000D+00
3945     --> objf_tracer(bi,bj) = 0.000000000000000D+00
3946     --> objf_atl(bi,bj) = 0.000000000000000D+00
3947     local fc = 0.147701232551291D+01
3948     global fc = 0.147701232551291D+01
3949     (PID.TID 0000.0001) grdchk perturb(+)fc: fcpertplus = 1.47701232551291E+00
3950 jmc 1.1 (PID.TID 0000.0001) Start initial hydrostatic pressure computation
3951     (PID.TID 0000.0001) Pressure is predetermined for buoyancyRelation OCEANIC
3952     (PID.TID 0000.0001)
3953     (PID.TID 0000.0001) // =======================================================
3954     (PID.TID 0000.0001) // Model current state
3955     (PID.TID 0000.0001) // =======================================================
3956     (PID.TID 0000.0001)
3957 jmc 1.3 (PID.TID 0000.0001) SOLVE_FOR_PRESSURE: putPmEinXvector = F
3958 heimbach 1.4 cg2d: Sum(rhs),rhsMax = -7.87435592178018E+00 1.37697984471785E+00
3959     cg2d: Sum(rhs),rhsMax = -1.01791081157114E+02 2.13040853307025E-01
3960 jmc 1.6 cg2d: Sum(rhs),rhsMax = -1.59112718348972E+02 2.04436757292388E-01
3961     cg2d: Sum(rhs),rhsMax = -2.24736325184259E+02 1.92987571288386E-01
3962     (PID.TID 0000.0001) Did not write pickup because writePickupAtEnd = FALSE
3963 jmc 1.1 (PID.TID 0000.0001) ph-cost call cost_theta0
3964     (PID.TID 0000.0001) ph-cost call cost_theta
3965 jmc 1.6 --> f_temp = 0.147701115171241D+01
3966 jmc 1.1 --> f_salt = 0.000000000000000D+00
3967     --> f_temp0 = 0.000000000000000D+00
3968     --> f_salt0 = 0.000000000000000D+00
3969     --> f_temp0smoo = 0.000000000000000D+00
3970     --> f_salt0smoo = 0.000000000000000D+00
3971     --> f_etan0 = 0.000000000000000D+00
3972     --> f_uvel0 = 0.000000000000000D+00
3973     --> f_vvel0 = 0.000000000000000D+00
3974     --> f_sst = 0.000000000000000D+00
3975     --> f_tmi = 0.000000000000000D+00
3976     --> f_sss = 0.000000000000000D+00
3977     --> f_bp = 0.000000000000000D+00
3978 jmc 1.7 --> f_ies = 0.000000000000000D+00
3979 jmc 1.1 --> f_ssh = 0.000000000000000D+00
3980     --> f_tp = 0.000000000000000D+00
3981     --> f_ers = 0.000000000000000D+00
3982     --> f_gfo = 0.000000000000000D+00
3983     --> f_tauu = 0.000000000000000D+00
3984     --> f_tauum = 0.000000000000000D+00
3985     --> f_tauusmoo = 0.000000000000000D+00
3986     --> f_tauv = 0.000000000000000D+00
3987     --> f_tauvm = 0.000000000000000D+00
3988     --> f_tauvsmoo = 0.000000000000000D+00
3989     --> f_hflux = 0.000000000000000D+00
3990     --> f_hfluxmm = 0.000000000000000D+00
3991     --> f_hfluxsmoo = 0.000000000000000D+00
3992     --> f_sflux = 0.000000000000000D+00
3993     --> f_sfluxmm = 0.000000000000000D+00
3994     --> f_sfluxsmoo = 0.000000000000000D+00
3995     --> f_uwind = 0.000000000000000D+00
3996     --> f_vwind = 0.000000000000000D+00
3997     --> f_atemp = 0.000000000000000D+00
3998     --> f_aqh = 0.000000000000000D+00
3999     --> f_precip = 0.000000000000000D+00
4000     --> f_swflux = 0.000000000000000D+00
4001     --> f_swdown = 0.000000000000000D+00
4002     --> f_uwindm = 0.000000000000000D+00
4003     --> f_vwindm = 0.000000000000000D+00
4004     --> f_atempm = 0.000000000000000D+00
4005     --> f_aqhm = 0.000000000000000D+00
4006     --> f_precipm = 0.000000000000000D+00
4007     --> f_swfluxm = 0.000000000000000D+00
4008     --> f_swdownm = 0.000000000000000D+00
4009     --> f_uwindsmoo = 0.000000000000000D+00
4010     --> f_vwindsmoo = 0.000000000000000D+00
4011     --> f_atempsmoo = 0.000000000000000D+00
4012     --> f_aqhsmoo = 0.000000000000000D+00
4013     --> f_precipsmoo = 0.000000000000000D+00
4014     --> f_swfluxsmoo = 0.000000000000000D+00
4015     --> f_swdownsmoo = 0.000000000000000D+00
4016     --> f_atl = 0.000000000000000D+00
4017     --> f_ctdt = 0.000000000000000D+00
4018     --> f_ctds = 0.000000000000000D+00
4019     --> f_ctdtclim= 0.000000000000000D+00
4020     --> f_ctdsclim= 0.000000000000000D+00
4021     --> f_xbt = 0.000000000000000D+00
4022     --> f_argot = 0.000000000000000D+00
4023     --> f_argos = 0.000000000000000D+00
4024     --> f_drifter = 0.000000000000000D+00
4025     --> f_tdrift = 0.000000000000000D+00
4026     --> f_sdrift = 0.000000000000000D+00
4027     --> f_wdrift = 0.000000000000000D+00
4028     --> f_scatx = 0.000000000000000D+00
4029     --> f_scaty = 0.000000000000000D+00
4030     --> f_scatxm = 0.000000000000000D+00
4031     --> f_scatym = 0.000000000000000D+00
4032     --> f_obcsn = 0.000000000000000D+00
4033     --> f_obcss = 0.000000000000000D+00
4034 heimbach 1.4 --> f_obcsw = 0.152587890625000D-12
4035 jmc 1.1 --> f_obcse = 0.000000000000000D+00
4036     --> f_ageos = 0.000000000000000D+00
4037     --> f_curmtr = 0.000000000000000D+00
4038     --> f_kapgm = 0.000000000000000D+00
4039     --> f_kapredi = 0.000000000000000D+00
4040     --> f_diffkr = 0.000000000000000D+00
4041     --> f_eddytau = 0.000000000000000D+00
4042     --> f_bottomdrag = 0.000000000000000D+00
4043     --> f_hfluxmm2 = 0.000000000000000D+00
4044     --> f_sfluxmm2 = 0.000000000000000D+00
4045     --> f_transp = 0.000000000000000D+00
4046     --> objf_hmean = 0.000000000000000D+00
4047 jmc 1.7 --> fc = 0.000000000000000D+00
4048     early fc = 0.000000000000000D+00
4049     --> objf_test(bi,bj) = 0.000000000000000D+00
4050     --> objf_tracer(bi,bj) = 0.000000000000000D+00
4051     --> objf_atl(bi,bj) = 0.000000000000000D+00
4052     --> objf_test(bi,bj) = 0.000000000000000D+00
4053     --> objf_tracer(bi,bj) = 0.000000000000000D+00
4054     --> objf_atl(bi,bj) = 0.000000000000000D+00
4055     --> objf_test(bi,bj) = 0.000000000000000D+00
4056     --> objf_tracer(bi,bj) = 0.000000000000000D+00
4057     --> objf_atl(bi,bj) = 0.000000000000000D+00
4058     --> objf_test(bi,bj) = 0.000000000000000D+00
4059     --> objf_tracer(bi,bj) = 0.000000000000000D+00
4060     --> objf_atl(bi,bj) = 0.000000000000000D+00
4061     local fc = 0.147701115171256D+01
4062     global fc = 0.147701115171256D+01
4063     (PID.TID 0000.0001) grdchk perturb(-)fc: fcpertminus = 1.47701115171256E+00
4064 jmc 1.1 grad-res -------------------------------
4065 jmc 1.5 grad-res 0 5 1 5 4 1 1 1 1.47701073786E+00 1.47701232551E+00 1.47701115171E+00
4066 jmc 1.7 grad-res 0 5 5 101 0 1 1 1 5.86900146723E-03 5.86900173793E-03 -4.61237816829E-08
4067 jmc 1.6 (PID.TID 0000.0001) ADM ref_cost_function = 1.47701073786183E+00
4068 jmc 1.7 (PID.TID 0000.0001) ADM adjoint_gradient = 5.86900146723427E-03
4069 jmc 1.6 (PID.TID 0000.0001) ADM finite-diff_grad = 5.86900173793481E-03
4070 jmc 1.7 (PID.TID 0000.0001) ====== End of gradient-check number 5 (ierr= 0) =======
4071 jmc 1.1 (PID.TID 0000.0001)
4072     (PID.TID 0000.0001) // =======================================================
4073     (PID.TID 0000.0001) // Gradient check results >>> START <<<
4074     (PID.TID 0000.0001) // =======================================================
4075     (PID.TID 0000.0001)
4076     (PID.TID 0000.0001) EPS = 1.000000E-04
4077     (PID.TID 0000.0001)
4078 heimbach 1.4 (PID.TID 0000.0001) grdchk output h.p: Id Itile Jtile LAYER bi bj X(Id) X(Id)+/-EPS
4079 jmc 1.1 (PID.TID 0000.0001) grdchk output h.c: Id FC FC1 FC2
4080     (PID.TID 0000.0001) grdchk output h.g: Id FC1-FC2/(2*EPS) ADJ GRAD(FC) 1-FDGRD/ADGRD
4081     (PID.TID 0000.0001)
4082 heimbach 1.4 (PID.TID 0000.0001) grdchk output (p): 1 1 1 4 1 1 0.000000000E+00 -1.000000000E-04
4083     (PID.TID 0000.0001) grdchk output (c): 1 1.4770107378618E+00 1.4770117378619E+00 1.4770117378619E+00
4084     (PID.TID 0000.0001) grdchk output (g): 1 0.0000000000000E+00 0.0000000000000E+00 0.0000000000000E+00
4085     (PID.TID 0000.0001)
4086     (PID.TID 0000.0001) grdchk output (p): 2 1 2 4 1 1 0.000000000E+00 -1.000000000E-04
4087     (PID.TID 0000.0001) grdchk output (c): 2 1.4770107378618E+00 1.4770122954508E+00 1.4770111817659E+00
4088 jmc 1.7 (PID.TID 0000.0001) grdchk output (g): 2 5.5684244371079E-03 5.5684243446471E-03 -1.6604493335848E-08
4089 heimbach 1.4 (PID.TID 0000.0001)
4090     (PID.TID 0000.0001) grdchk output (p): 3 1 3 4 1 1 0.000000000E+00 -1.000000000E-04
4091     (PID.TID 0000.0001) grdchk output (c): 3 1.4770107378618E+00 1.4770123054769E+00 1.4770111717379E+00
4092 jmc 1.7 (PID.TID 0000.0001) grdchk output (g): 3 5.6686945282269E-03 5.6686945042639E-03 -4.2272609857008E-09
4093 heimbach 1.4 (PID.TID 0000.0001)
4094     (PID.TID 0000.0001) grdchk output (p): 4 1 4 4 1 1 0.000000000E+00 -1.000000000E-04
4095 jmc 1.6 (PID.TID 0000.0001) grdchk output (c): 4 1.4770107378618E+00 1.4770123157601E+00 1.4770111614614E+00
4096 jmc 1.7 (PID.TID 0000.0001) grdchk output (g): 4 5.7714934431630E-03 5.7714932492233E-03 -3.3603023030793E-08
4097 heimbach 1.4 (PID.TID 0000.0001)
4098     (PID.TID 0000.0001) grdchk output (p): 5 1 5 4 1 1 0.000000000E+00 -1.000000000E-04
4099 jmc 1.6 (PID.TID 0000.0001) grdchk output (c): 5 1.4770107378618E+00 1.4770123255129E+00 1.4770111517126E+00
4100 jmc 1.7 (PID.TID 0000.0001) grdchk output (g): 5 5.8690017379348E-03 5.8690014672343E-03 -4.6123781682894E-08
4101     (PID.TID 0000.0001)
4102     (PID.TID 0000.0001) grdchk summary : RMS of 5 ratios = 2.6646370589334E-08
4103 jmc 1.1 (PID.TID 0000.0001)
4104     (PID.TID 0000.0001) // =======================================================
4105     (PID.TID 0000.0001) // Gradient check results >>> END <<<
4106     (PID.TID 0000.0001) // =======================================================
4107     (PID.TID 0000.0001)
4108     (PID.TID 0000.0001) Seconds in section "ALL [THE_MODEL_MAIN]":
4109 jmc 1.7 (PID.TID 0000.0001) User time: 34.100000000000001
4110     (PID.TID 0000.0001) System time: 0.17000000000000001
4111     (PID.TID 0000.0001) Wall clock time: 34.478293895721436
4112 jmc 1.1 (PID.TID 0000.0001) No. starts: 1
4113     (PID.TID 0000.0001) No. stops: 1
4114     (PID.TID 0000.0001) Seconds in section "INITIALISE_FIXED [THE_MODEL_MAIN]":
4115 jmc 1.7 (PID.TID 0000.0001) User time: 0.17999999999999999
4116 jmc 1.6 (PID.TID 0000.0001) System time: 2.00000000000000004E-002
4117 jmc 1.7 (PID.TID 0000.0001) Wall clock time: 0.29795813560485840
4118 jmc 1.1 (PID.TID 0000.0001) No. starts: 1
4119     (PID.TID 0000.0001) No. stops: 1
4120     (PID.TID 0000.0001) Seconds in section "ADTHE_MAIN_LOOP [ADJOINT RUN]":
4121 jmc 1.7 (PID.TID 0000.0001) User time: 11.230000000000000
4122     (PID.TID 0000.0001) System time: 8.99999999999999967E-002
4123     (PID.TID 0000.0001) Wall clock time: 11.374592065811157
4124 jmc 1.1 (PID.TID 0000.0001) No. starts: 1
4125     (PID.TID 0000.0001) No. stops: 1
4126 jmc 1.7 (PID.TID 0000.0001) Seconds in section "FORWARD_STEP [MAIN_DO_LOOP]":
4127     (PID.TID 0000.0001) User time: 24.879999999999981
4128     (PID.TID 0000.0001) System time: 2.00000000000000178E-002
4129     (PID.TID 0000.0001) Wall clock time: 24.898962259292603
4130     (PID.TID 0000.0001) No. starts: 48
4131     (PID.TID 0000.0001) No. stops: 48
4132     (PID.TID 0000.0001) Seconds in section "DO_STATEVARS_DIAGS [FORWARD_STEP]":
4133     (PID.TID 0000.0001) User time: 0.0000000000000000
4134     (PID.TID 0000.0001) System time: 0.0000000000000000
4135     (PID.TID 0000.0001) Wall clock time: 1.09505653381347656E-003
4136     (PID.TID 0000.0001) No. starts: 12
4137     (PID.TID 0000.0001) No. stops: 12
4138     (PID.TID 0000.0001) Seconds in section "LOAD_FIELDS_DRIVER [FORWARD_STEP]":
4139     (PID.TID 0000.0001) User time: 0.17000000000000171
4140     (PID.TID 0000.0001) System time: 0.0000000000000000
4141     (PID.TID 0000.0001) Wall clock time: 0.12060761451721191
4142     (PID.TID 0000.0001) No. starts: 48
4143     (PID.TID 0000.0001) No. stops: 48
4144 jmc 1.1 (PID.TID 0000.0001) Seconds in section "EXF_GETFORCING [LOAD_FLDS_DRIVER]":
4145 jmc 1.7 (PID.TID 0000.0001) User time: 0.15999999999999659
4146 jmc 1.1 (PID.TID 0000.0001) System time: 0.0000000000000000
4147 jmc 1.7 (PID.TID 0000.0001) Wall clock time: 0.12880373001098633
4148 heimbach 1.4 (PID.TID 0000.0001) No. starts: 52
4149     (PID.TID 0000.0001) No. stops: 52
4150 jmc 1.1 (PID.TID 0000.0001) Seconds in section "I/O (WRITE) [ADJOINT LOOP]":
4151 jmc 1.7 (PID.TID 0000.0001) User time: 1.00000000000051159E-002
4152 jmc 1.1 (PID.TID 0000.0001) System time: 0.0000000000000000
4153 jmc 1.7 (PID.TID 0000.0001) Wall clock time: 1.62100791931152344E-003
4154     (PID.TID 0000.0001) No. starts: 176
4155     (PID.TID 0000.0001) No. stops: 176
4156     (PID.TID 0000.0001) Seconds in section "EXTERNAL_FLDS_LOAD [LOAD_FLDS_DRIVER]":
4157     (PID.TID 0000.0001) User time: 1.00000000000051159E-002
4158 jmc 1.6 (PID.TID 0000.0001) System time: 0.0000000000000000
4159 jmc 1.7 (PID.TID 0000.0001) Wall clock time: 4.94241714477539063E-004
4160     (PID.TID 0000.0001) No. starts: 52
4161     (PID.TID 0000.0001) No. stops: 52
4162 jmc 1.1 (PID.TID 0000.0001) Seconds in section "DO_ATMOSPHERIC_PHYS [FORWARD_STEP]":
4163 jmc 1.7 (PID.TID 0000.0001) User time: 0.0000000000000000
4164 jmc 1.1 (PID.TID 0000.0001) System time: 0.0000000000000000
4165 jmc 1.7 (PID.TID 0000.0001) Wall clock time: 4.29630279541015625E-004
4166     (PID.TID 0000.0001) No. starts: 48
4167     (PID.TID 0000.0001) No. stops: 48
4168 jmc 1.1 (PID.TID 0000.0001) Seconds in section "DO_OCEANIC_PHYS [FORWARD_STEP]":
4169 jmc 1.7 (PID.TID 0000.0001) User time: 0.28999999999999204
4170 jmc 1.1 (PID.TID 0000.0001) System time: 0.0000000000000000
4171 jmc 1.7 (PID.TID 0000.0001) Wall clock time: 0.32827782630920410
4172     (PID.TID 0000.0001) No. starts: 48
4173     (PID.TID 0000.0001) No. stops: 48
4174 jmc 1.1 (PID.TID 0000.0001) Seconds in section "DYNAMICS [FORWARD_STEP]":
4175 jmc 1.7 (PID.TID 0000.0001) User time: 7.2700000000000173
4176 jmc 1.3 (PID.TID 0000.0001) System time: 0.0000000000000000
4177 jmc 1.7 (PID.TID 0000.0001) Wall clock time: 7.2663896083831787
4178     (PID.TID 0000.0001) No. starts: 48
4179     (PID.TID 0000.0001) No. stops: 48
4180 jmc 1.1 (PID.TID 0000.0001) Seconds in section "SOLVE_FOR_PRESSURE [FORWARD_STEP]":
4181 jmc 1.7 (PID.TID 0000.0001) User time: 10.420000000000002
4182     (PID.TID 0000.0001) System time: 0.0000000000000000
4183     (PID.TID 0000.0001) Wall clock time: 10.446058034896851
4184     (PID.TID 0000.0001) No. starts: 48
4185     (PID.TID 0000.0001) No. stops: 48
4186     (PID.TID 0000.0001) Seconds in section "MOM_CORRECTION_STEP [FORWARD_STEP]":
4187     (PID.TID 0000.0001) User time: 0.28000000000000114
4188 jmc 1.1 (PID.TID 0000.0001) System time: 0.0000000000000000
4189 jmc 1.7 (PID.TID 0000.0001) Wall clock time: 0.28323864936828613
4190     (PID.TID 0000.0001) No. starts: 48
4191     (PID.TID 0000.0001) No. stops: 48
4192     (PID.TID 0000.0001) Seconds in section "INTEGR_CONTINUITY [FORWARD_STEP]":
4193     (PID.TID 0000.0001) User time: 0.40999999999999659
4194 jmc 1.1 (PID.TID 0000.0001) System time: 0.0000000000000000
4195 jmc 1.7 (PID.TID 0000.0001) Wall clock time: 0.39068937301635742
4196     (PID.TID 0000.0001) No. starts: 48
4197     (PID.TID 0000.0001) No. stops: 48
4198 jmc 1.1 (PID.TID 0000.0001) Seconds in section "BLOCKING_EXCHANGES [FORWARD_STEP]":
4199 jmc 1.7 (PID.TID 0000.0001) User time: 0.11999999999999744
4200 jmc 1.1 (PID.TID 0000.0001) System time: 0.0000000000000000
4201 jmc 1.7 (PID.TID 0000.0001) Wall clock time: 0.10990381240844727
4202     (PID.TID 0000.0001) No. starts: 96
4203     (PID.TID 0000.0001) No. stops: 96
4204 jmc 1.1 (PID.TID 0000.0001) Seconds in section "THERMODYNAMICS [FORWARD_STEP]":
4205 jmc 1.7 (PID.TID 0000.0001) User time: 5.7199999999999918
4206 jmc 1.6 (PID.TID 0000.0001) System time: 1.00000000000000089E-002
4207 jmc 1.7 (PID.TID 0000.0001) Wall clock time: 5.7523083686828613
4208     (PID.TID 0000.0001) No. starts: 48
4209     (PID.TID 0000.0001) No. stops: 48
4210     (PID.TID 0000.0001) Seconds in section "TRC_CORRECTION_STEP [FORWARD_STEP]":
4211     (PID.TID 0000.0001) User time: 0.10000000000000142
4212 jmc 1.1 (PID.TID 0000.0001) System time: 0.0000000000000000
4213 jmc 1.7 (PID.TID 0000.0001) Wall clock time: 0.10161018371582031
4214     (PID.TID 0000.0001) No. starts: 48
4215     (PID.TID 0000.0001) No. stops: 48
4216 jmc 1.1 (PID.TID 0000.0001) Seconds in section "DO_STATEVARS_TAVE [FORWARD_STEP]":
4217 jmc 1.7 (PID.TID 0000.0001) User time: 9.99999999999801048E-003
4218 jmc 1.1 (PID.TID 0000.0001) System time: 0.0000000000000000
4219 jmc 1.7 (PID.TID 0000.0001) Wall clock time: 4.88996505737304688E-004
4220     (PID.TID 0000.0001) No. starts: 48
4221     (PID.TID 0000.0001) No. stops: 48
4222 jmc 1.1 (PID.TID 0000.0001) Seconds in section "MONITOR [FORWARD_STEP]":
4223 jmc 1.7 (PID.TID 0000.0001) User time: 6.00000000000000533E-002
4224     (PID.TID 0000.0001) System time: 0.0000000000000000
4225     (PID.TID 0000.0001) Wall clock time: 5.62224388122558594E-002
4226     (PID.TID 0000.0001) No. starts: 4
4227     (PID.TID 0000.0001) No. stops: 4
4228     (PID.TID 0000.0001) Seconds in section "COST_TILE [FORWARD_STEP]":
4229 jmc 1.1 (PID.TID 0000.0001) User time: 0.0000000000000000
4230     (PID.TID 0000.0001) System time: 0.0000000000000000
4231 jmc 1.7 (PID.TID 0000.0001) Wall clock time: 4.80413436889648438E-004
4232     (PID.TID 0000.0001) No. starts: 48
4233     (PID.TID 0000.0001) No. stops: 48
4234 jmc 1.1 (PID.TID 0000.0001) Seconds in section "DO_THE_MODEL_IO [FORWARD_STEP]":
4235 jmc 1.7 (PID.TID 0000.0001) User time: 9.99999999999801048E-003
4236 heimbach 1.4 (PID.TID 0000.0001) System time: 0.0000000000000000
4237 jmc 1.7 (PID.TID 0000.0001) Wall clock time: 1.72021389007568359E-002
4238     (PID.TID 0000.0001) No. starts: 48
4239     (PID.TID 0000.0001) No. stops: 48
4240 jmc 1.1 (PID.TID 0000.0001) Seconds in section "DO_WRITE_PICKUP [FORWARD_STEP]":
4241 jmc 1.7 (PID.TID 0000.0001) User time: 2.00000000000031264E-002
4242 jmc 1.6 (PID.TID 0000.0001) System time: 1.00000000000000089E-002
4243 jmc 1.7 (PID.TID 0000.0001) Wall clock time: 1.66049003601074219E-002
4244     (PID.TID 0000.0001) No. starts: 48
4245     (PID.TID 0000.0001) No. stops: 48
4246 jmc 1.1 (PID.TID 0000.0001) Seconds in section "COST_FORCING [ECCO SPIN-DOWN]":
4247     (PID.TID 0000.0001) User time: 0.0000000000000000
4248     (PID.TID 0000.0001) System time: 0.0000000000000000
4249 jmc 1.7 (PID.TID 0000.0001) Wall clock time: 1.02996826171875000E-004
4250     (PID.TID 0000.0001) No. starts: 11
4251     (PID.TID 0000.0001) No. stops: 11
4252 jmc 1.1 (PID.TID 0000.0001) Seconds in section "COST_HYD [ECCO SPIN-DOWN]":
4253 jmc 1.7 (PID.TID 0000.0001) User time: 0.22000000000000597
4254 jmc 1.6 (PID.TID 0000.0001) System time: 0.0000000000000000
4255 jmc 1.7 (PID.TID 0000.0001) Wall clock time: 0.24884295463562012
4256     (PID.TID 0000.0001) No. starts: 11
4257     (PID.TID 0000.0001) No. stops: 11
4258 jmc 1.1 (PID.TID 0000.0001) Seconds in section "COST_OBCS [ECCO SPIN-DOWN]":
4259 jmc 1.7 (PID.TID 0000.0001) User time: 6.00000000000022737E-002
4260     (PID.TID 0000.0001) System time: 1.00000000000000089E-002
4261     (PID.TID 0000.0001) Wall clock time: 5.33852577209472656E-002
4262     (PID.TID 0000.0001) No. starts: 11
4263     (PID.TID 0000.0001) No. stops: 11
4264 jmc 1.1 (PID.TID 0000.0001) Seconds in section "COST_INTERNAL_PARAMS [ECCO SPIN-DOWN]":
4265     (PID.TID 0000.0001) User time: 0.0000000000000000
4266     (PID.TID 0000.0001) System time: 0.0000000000000000
4267 jmc 1.7 (PID.TID 0000.0001) Wall clock time: 1.08242034912109375E-004
4268     (PID.TID 0000.0001) No. starts: 11
4269     (PID.TID 0000.0001) No. stops: 11
4270 jmc 1.1 (PID.TID 0000.0001) Seconds in section "COST_GENCOST_ALL [ECCO SPIN-DOWN]":
4271 jmc 1.6 (PID.TID 0000.0001) User time: 0.0000000000000000
4272 jmc 1.1 (PID.TID 0000.0001) System time: 0.0000000000000000
4273 jmc 1.7 (PID.TID 0000.0001) Wall clock time: 1.05857849121093750E-004
4274     (PID.TID 0000.0001) No. starts: 11
4275     (PID.TID 0000.0001) No. stops: 11
4276     (PID.TID 0000.0001) Seconds in section "COST_USERCOST_ALL [ECCO SPIN-DOWN]":
4277     (PID.TID 0000.0001) User time: 0.0000000000000000
4278     (PID.TID 0000.0001) System time: 0.0000000000000000
4279     (PID.TID 0000.0001) Wall clock time: 1.01566314697265625E-004
4280     (PID.TID 0000.0001) No. starts: 11
4281     (PID.TID 0000.0001) No. stops: 11
4282     (PID.TID 0000.0001) Seconds in section "COST_GENCTRL [ECCO SPIN-DOWN]":
4283     (PID.TID 0000.0001) User time: 0.0000000000000000
4284     (PID.TID 0000.0001) System time: 0.0000000000000000
4285     (PID.TID 0000.0001) Wall clock time: 1.04188919067382813E-004
4286     (PID.TID 0000.0001) No. starts: 11
4287     (PID.TID 0000.0001) No. stops: 11
4288     (PID.TID 0000.0001) Seconds in section "CTRL_PACK [THE_MODEL_MAIN]":
4289     (PID.TID 0000.0001) User time: 1.99999999999995737E-002
4290     (PID.TID 0000.0001) System time: 0.0000000000000000
4291     (PID.TID 0000.0001) Wall clock time: 2.14171409606933594E-002
4292     (PID.TID 0000.0001) No. starts: 1
4293     (PID.TID 0000.0001) No. stops: 1
4294     (PID.TID 0000.0001) Seconds in section "CTRL_PACK [THE_MODEL_MAIN]":
4295     (PID.TID 0000.0001) User time: 9.99999999999978684E-003
4296     (PID.TID 0000.0001) System time: 9.99999999999999500E-003
4297     (PID.TID 0000.0001) Wall clock time: 2.05309391021728516E-002
4298     (PID.TID 0000.0001) No. starts: 1
4299     (PID.TID 0000.0001) No. stops: 1
4300     (PID.TID 0000.0001) Seconds in section "GRDCHK_MAIN [THE_MODEL_MAIN]":
4301     (PID.TID 0000.0001) User time: 22.660000000000004
4302     (PID.TID 0000.0001) System time: 5.00000000000000167E-002
4303     (PID.TID 0000.0001) Wall clock time: 22.763717174530029
4304     (PID.TID 0000.0001) No. starts: 1
4305     (PID.TID 0000.0001) No. stops: 1
4306     (PID.TID 0000.0001) Seconds in section "INITIALISE_VARIA [THE_MAIN_LOOP]":
4307     (PID.TID 0000.0001) User time: 0.66999999999999815
4308     (PID.TID 0000.0001) System time: 1.00000000000000089E-002
4309     (PID.TID 0000.0001) Wall clock time: 0.69437432289123535
4310     (PID.TID 0000.0001) No. starts: 10
4311     (PID.TID 0000.0001) No. stops: 10
4312     (PID.TID 0000.0001) Seconds in section "MAIN LOOP [THE_MAIN_LOOP]":
4313     (PID.TID 0000.0001) User time: 21.980000000000008
4314     (PID.TID 0000.0001) System time: 2.99999999999999989E-002
4315     (PID.TID 0000.0001) Wall clock time: 22.051962852478027
4316 jmc 1.1 (PID.TID 0000.0001) No. starts: 10
4317     (PID.TID 0000.0001) No. stops: 10
4318 jmc 1.7 (PID.TID 0000.0001) Seconds in section "COST_AVERAGESFIELDS [MAIN_DO_LOOP]":
4319     (PID.TID 0000.0001) User time: 0.15999999999999659
4320 jmc 1.1 (PID.TID 0000.0001) System time: 0.0000000000000000
4321 jmc 1.7 (PID.TID 0000.0001) Wall clock time: 0.19079446792602539
4322     (PID.TID 0000.0001) No. starts: 40
4323     (PID.TID 0000.0001) No. stops: 40
4324     (PID.TID 0000.0001) Seconds in section "MAIN_DO_LOOP [THE_MAIN_LOOP]":
4325     (PID.TID 0000.0001) User time: 20.659999999999982
4326     (PID.TID 0000.0001) System time: 1.00000000000000089E-002
4327     (PID.TID 0000.0001) Wall clock time: 20.672719240188599
4328     (PID.TID 0000.0001) No. starts: 40
4329     (PID.TID 0000.0001) No. stops: 40
4330     (PID.TID 0000.0001) Seconds in section "COST_AVERAGESFIELDS [THE_MAIN_LOOP]":
4331     (PID.TID 0000.0001) User time: 0.13000000000000966
4332     (PID.TID 0000.0001) System time: 9.99999999999998113E-003
4333     (PID.TID 0000.0001) Wall clock time: 0.15360999107360840
4334 jmc 1.1 (PID.TID 0000.0001) No. starts: 10
4335     (PID.TID 0000.0001) No. stops: 10
4336 jmc 1.7 (PID.TID 0000.0001) Seconds in section "ECCO_COST_DRIVER [THE_MAIN_LOOP]":
4337     (PID.TID 0000.0001) User time: 0.25000000000000711
4338     (PID.TID 0000.0001) System time: 1.00000000000000089E-002
4339     (PID.TID 0000.0001) Wall clock time: 0.25860691070556641
4340     (PID.TID 0000.0001) No. starts: 10
4341     (PID.TID 0000.0001) No. stops: 10
4342     (PID.TID 0000.0001) Seconds in section "COST_FINAL [ADJOINT SPIN-DOWN]":
4343     (PID.TID 0000.0001) User time: 9.99999999999801048E-003
4344 jmc 1.1 (PID.TID 0000.0001) System time: 0.0000000000000000
4345 jmc 1.7 (PID.TID 0000.0001) Wall clock time: 6.29687309265136719E-003
4346 jmc 1.1 (PID.TID 0000.0001) No. starts: 10
4347     (PID.TID 0000.0001) No. stops: 10
4348     (PID.TID 0000.0001) // ======================================================
4349     (PID.TID 0000.0001) // Tile <-> Tile communication statistics
4350     (PID.TID 0000.0001) // ======================================================
4351     (PID.TID 0000.0001) // o Tile number: 000001
4352     (PID.TID 0000.0001) // No. X exchanges = 0
4353     (PID.TID 0000.0001) // Max. X spins = 0
4354     (PID.TID 0000.0001) // Min. X spins = 1000000000
4355     (PID.TID 0000.0001) // Total. X spins = 0
4356     (PID.TID 0000.0001) // Avg. X spins = 0.00E+00
4357     (PID.TID 0000.0001) // No. Y exchanges = 0
4358     (PID.TID 0000.0001) // Max. Y spins = 0
4359     (PID.TID 0000.0001) // Min. Y spins = 1000000000
4360     (PID.TID 0000.0001) // Total. Y spins = 0
4361     (PID.TID 0000.0001) // Avg. Y spins = 0.00E+00
4362 heimbach 1.4 (PID.TID 0000.0001) // o Tile number: 000002
4363     (PID.TID 0000.0001) // No. X exchanges = 0
4364     (PID.TID 0000.0001) // Max. X spins = 0
4365     (PID.TID 0000.0001) // Min. X spins = 1000000000
4366     (PID.TID 0000.0001) // Total. X spins = 0
4367     (PID.TID 0000.0001) // Avg. X spins = 0.00E+00
4368     (PID.TID 0000.0001) // No. Y exchanges = 0
4369     (PID.TID 0000.0001) // Max. Y spins = 0
4370     (PID.TID 0000.0001) // Min. Y spins = 1000000000
4371     (PID.TID 0000.0001) // Total. Y spins = 0
4372     (PID.TID 0000.0001) // Avg. Y spins = 0.00E+00
4373     (PID.TID 0000.0001) // o Tile number: 000003
4374     (PID.TID 0000.0001) // No. X exchanges = 0
4375     (PID.TID 0000.0001) // Max. X spins = 0
4376     (PID.TID 0000.0001) // Min. X spins = 1000000000
4377     (PID.TID 0000.0001) // Total. X spins = 0
4378     (PID.TID 0000.0001) // Avg. X spins = 0.00E+00
4379     (PID.TID 0000.0001) // No. Y exchanges = 0
4380     (PID.TID 0000.0001) // Max. Y spins = 0
4381     (PID.TID 0000.0001) // Min. Y spins = 1000000000
4382     (PID.TID 0000.0001) // Total. Y spins = 0
4383     (PID.TID 0000.0001) // Avg. Y spins = 0.00E+00
4384     (PID.TID 0000.0001) // o Tile number: 000004
4385     (PID.TID 0000.0001) // No. X exchanges = 0
4386     (PID.TID 0000.0001) // Max. X spins = 0
4387     (PID.TID 0000.0001) // Min. X spins = 1000000000
4388     (PID.TID 0000.0001) // Total. X spins = 0
4389     (PID.TID 0000.0001) // Avg. X spins = 0.00E+00
4390     (PID.TID 0000.0001) // No. Y exchanges = 0
4391     (PID.TID 0000.0001) // Max. Y spins = 0
4392     (PID.TID 0000.0001) // Min. Y spins = 1000000000
4393     (PID.TID 0000.0001) // Total. Y spins = 0
4394     (PID.TID 0000.0001) // Avg. Y spins = 0.00E+00
4395 jmc 1.1 (PID.TID 0000.0001) // o Thread number: 000001
4396 jmc 1.7 (PID.TID 0000.0001) // No. barriers = 46212
4397 jmc 1.1 (PID.TID 0000.0001) // Max. barrier spins = 1
4398     (PID.TID 0000.0001) // Min. barrier spins = 1
4399 jmc 1.7 (PID.TID 0000.0001) // Total barrier spins = 46212
4400 jmc 1.1 (PID.TID 0000.0001) // Avg. barrier spins = 1.00E+00
4401     PROGRAM MAIN: Execution ended Normally

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