/[MITgcm]/MITgcm_contrib/verification_other/offline_cheapaml/results/output.dyn.txt
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Annotation of /MITgcm_contrib/verification_other/offline_cheapaml/results/output.dyn.txt

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Revision 1.1 - (hide annotations) (download)
Tue Jun 11 02:22:33 2013 UTC (12 years, 1 month ago) by jmc
Branch: MAIN
CVS Tags: checkpoint64k, checkpoint64x, checkpoint64z, checkpoint64o, checkpoint64p, checkpoint64r, checkpoint64w, checkpoint64v, checkpoint66g, checkpoint66f, checkpoint66e, checkpoint66d, checkpoint66c, checkpoint66b, checkpoint66a, checkpoint66h, checkpoint64m, checkpoint65z, checkpoint65x, checkpoint65y, checkpoint65r, checkpoint65s, checkpoint65p, checkpoint65q, checkpoint65v, checkpoint65w, checkpoint65u, checkpoint65j, checkpoint65i, checkpoint65m, checkpoint65c, checkpoint65a, checkpoint65f, checkpoint65e, checkpoint64i, checkpoint65h, checkpoint65, checkpoint64j, checkpoint65n
File MIME type: text/plain
add reference output for secondary test with seaice-dynamics
 and convergent wind to produce precip

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     (PID.TID 0000.0001) // MITgcmUV version: checkpoint64h
9     (PID.TID 0000.0001) // Build user: jmc
10     (PID.TID 0000.0001) // Build host: baudelaire
11     (PID.TID 0000.0001) // Build date: Mon Jun 10 22:12:00 EDT 2013
12     (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) >#debugMode=.TRUE.,
24     (PID.TID 0000.0001) > /
25     (PID.TID 0000.0001) ># Note: Some systems use & as the namelist terminator (as shown here).
26     (PID.TID 0000.0001) ># Other systems use a / character.
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     (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 = 40 ; /* Tile size in X */
37     (PID.TID 0000.0001) sNy = 21 ; /* Tile size in Y */
38     (PID.TID 0000.0001) OLx = 3 ; /* Tile overlap distance in X */
39     (PID.TID 0000.0001) OLy = 3 ; /* 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 = 1 ; /* No. levels in the vertical */
43     (PID.TID 0000.0001) Nx = 80 ; /* Total domain size in X ( = nPx*nSx*sNx ) */
44     (PID.TID 0000.0001) Ny = 42 ; /* Total domain size in Y ( = nPy*nSy*sNy ) */
45     (PID.TID 0000.0001) nTiles = 4 ; /* Total no. tiles per process ( = nSx*nSy ) */
46     (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     (PID.TID 0000.0001) debugMode = F ; /* print debug msg. (sequence of S/R calls) */
55     (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     (PID.TID 0000.0001) // -o- Thread 1, tiles ( 1: 2, 1: 2)
62     (PID.TID 0000.0001)
63     (PID.TID 0000.0001) // ======================================================
64     (PID.TID 0000.0001) // Tile <-> Tile connectvity table
65     (PID.TID 0000.0001) // ======================================================
66     (PID.TID 0000.0001) // Tile number: 000001 (process no. = 000000)
67     (PID.TID 0000.0001) // WEST: Tile = 000002, Process = 000000, Comm = put
68     (PID.TID 0000.0001) // bi = 000002, bj = 000001
69     (PID.TID 0000.0001) // EAST: Tile = 000002, Process = 000000, Comm = put
70     (PID.TID 0000.0001) // bi = 000002, bj = 000001
71     (PID.TID 0000.0001) // SOUTH: Tile = 000003, Process = 000000, Comm = put
72     (PID.TID 0000.0001) // bi = 000001, bj = 000002
73     (PID.TID 0000.0001) // NORTH: Tile = 000003, Process = 000000, Comm = put
74     (PID.TID 0000.0001) // bi = 000001, bj = 000002
75     (PID.TID 0000.0001) // Tile number: 000002 (process no. = 000000)
76     (PID.TID 0000.0001) // WEST: Tile = 000001, Process = 000000, Comm = put
77     (PID.TID 0000.0001) // bi = 000001, bj = 000001
78     (PID.TID 0000.0001) // EAST: Tile = 000001, Process = 000000, Comm = put
79     (PID.TID 0000.0001) // bi = 000001, bj = 000001
80     (PID.TID 0000.0001) // SOUTH: Tile = 000004, Process = 000000, Comm = put
81     (PID.TID 0000.0001) // bi = 000002, bj = 000002
82     (PID.TID 0000.0001) // NORTH: Tile = 000004, Process = 000000, Comm = put
83     (PID.TID 0000.0001) // bi = 000002, bj = 000002
84     (PID.TID 0000.0001) // Tile number: 000003 (process no. = 000000)
85     (PID.TID 0000.0001) // WEST: Tile = 000004, Process = 000000, Comm = put
86     (PID.TID 0000.0001) // bi = 000002, bj = 000002
87     (PID.TID 0000.0001) // EAST: Tile = 000004, Process = 000000, Comm = put
88     (PID.TID 0000.0001) // bi = 000002, bj = 000002
89     (PID.TID 0000.0001) // SOUTH: Tile = 000001, Process = 000000, Comm = put
90     (PID.TID 0000.0001) // bi = 000001, bj = 000001
91     (PID.TID 0000.0001) // NORTH: Tile = 000001, Process = 000000, Comm = put
92     (PID.TID 0000.0001) // bi = 000001, bj = 000001
93     (PID.TID 0000.0001) // Tile number: 000004 (process no. = 000000)
94     (PID.TID 0000.0001) // WEST: Tile = 000003, Process = 000000, Comm = put
95     (PID.TID 0000.0001) // bi = 000001, bj = 000002
96     (PID.TID 0000.0001) // EAST: Tile = 000003, Process = 000000, Comm = put
97     (PID.TID 0000.0001) // bi = 000001, bj = 000002
98     (PID.TID 0000.0001) // SOUTH: Tile = 000002, Process = 000000, Comm = put
99     (PID.TID 0000.0001) // bi = 000002, bj = 000001
100     (PID.TID 0000.0001) // NORTH: Tile = 000002, Process = 000000, Comm = put
101     (PID.TID 0000.0001) // bi = 000002, bj = 000001
102     (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) ># ====================
109     (PID.TID 0000.0001) ># | Model parameters |
110     (PID.TID 0000.0001) ># ====================
111     (PID.TID 0000.0001) >#
112     (PID.TID 0000.0001) > &PARM01
113     (PID.TID 0000.0001) > tRef= -1.62,
114     (PID.TID 0000.0001) > sRef= 30.,
115     (PID.TID 0000.0001) > no_slip_sides=.FALSE.,
116     (PID.TID 0000.0001) > no_slip_bottom=.TRUE.,
117     (PID.TID 0000.0001) >#bottomDragLinear=1.E-3,
118     (PID.TID 0000.0001) > bottomDragQuadratic=5.E-3,
119     (PID.TID 0000.0001) > viscAr=3.E-2,
120     (PID.TID 0000.0001) > viscAh=3.E+2,
121     (PID.TID 0000.0001) > HeatCapacity_Cp = 3986.,
122     (PID.TID 0000.0001) > rhoNil = 1030.,
123     (PID.TID 0000.0001) > rhoConstFresh = 1000.,
124     (PID.TID 0000.0001) > eosType='LINEAR',
125     (PID.TID 0000.0001) > tAlpha=2.E-4,
126     (PID.TID 0000.0001) > sBeta= 0.,
127     (PID.TID 0000.0001) > staggerTimeStep=.TRUE.,
128     (PID.TID 0000.0001) > saltStepping=.FALSE.,
129     (PID.TID 0000.0001) >#tempStepping=.FALSE.,
130     (PID.TID 0000.0001) > tempAdvection=.FALSE.,
131     (PID.TID 0000.0001) > momStepping=.FALSE.,
132     (PID.TID 0000.0001) > f0=0.e-4,
133     (PID.TID 0000.0001) > beta=0.,
134     (PID.TID 0000.0001) > useJamartWetPoints=.TRUE.,
135     (PID.TID 0000.0001) > rigidLid=.FALSE.,
136     (PID.TID 0000.0001) > implicitFreeSurface=.TRUE.,
137     (PID.TID 0000.0001) >#exactConserv=.TRUE.,
138     (PID.TID 0000.0001) > convertFW2Salt=-1,
139     (PID.TID 0000.0001) > readBinaryPrec=64,
140     (PID.TID 0000.0001) > writeBinaryPrec=64,
141     (PID.TID 0000.0001) >#globalFiles=.TRUE.,
142     (PID.TID 0000.0001) > useSingleCpuIO=.TRUE.,
143     (PID.TID 0000.0001) >#debugLevel=3,
144     (PID.TID 0000.0001) > /
145     (PID.TID 0000.0001) >
146     (PID.TID 0000.0001) ># Elliptic solver parameters
147     (PID.TID 0000.0001) > &PARM02
148     (PID.TID 0000.0001) > cg2dMaxIters=500,
149     (PID.TID 0000.0001) > cg2dTargetResidual=1.E-12,
150     (PID.TID 0000.0001) > /
151     (PID.TID 0000.0001) >
152     (PID.TID 0000.0001) ># Time stepping parameters
153     (PID.TID 0000.0001) > &PARM03
154     (PID.TID 0000.0001) > startTime=0.0,
155     (PID.TID 0000.0001) >#endTime=864000.,
156     (PID.TID 0000.0001) > deltaT=3600.0,
157     (PID.TID 0000.0001) > abEps=0.1,
158     (PID.TID 0000.0001) > forcing_In_AB = .FALSE.,
159     (PID.TID 0000.0001) ># 10 days restoring timescale for temperature
160     (PID.TID 0000.0001) > tauThetaClimRelax= 864000.,
161     (PID.TID 0000.0001) > pChkptFreq=3600000.,
162     (PID.TID 0000.0001) > monitorFreq=432000.,
163     (PID.TID 0000.0001) >#monitorSelect=2,
164     (PID.TID 0000.0001) > dumpFreq = 86400.,
165     (PID.TID 0000.0001) > nTimeSteps=12,
166     (PID.TID 0000.0001) > monitorFreq=43200.,
167     (PID.TID 0000.0001) >#dumpFreq = 1.,
168     (PID.TID 0000.0001) >#diagFreq = 1.,
169     (PID.TID 0000.0001) > /
170     (PID.TID 0000.0001) >
171     (PID.TID 0000.0001) ># Gridding parameters
172     (PID.TID 0000.0001) > &PARM04
173     (PID.TID 0000.0001) > usingCartesianGrid=.TRUE.,
174     (PID.TID 0000.0001) > delX=80*5.E3,
175     (PID.TID 0000.0001) > delY=42*5.E3,
176     (PID.TID 0000.0001) > ygOrigin=-110.E3,
177     (PID.TID 0000.0001) >#delR= 20., 30., 50.,
178     (PID.TID 0000.0001) > delR= 10.,
179     (PID.TID 0000.0001) > /
180     (PID.TID 0000.0001) >
181     (PID.TID 0000.0001) ># Input datasets
182     (PID.TID 0000.0001) > &PARM05
183     (PID.TID 0000.0001) > bathyFile = 'channel.bin',
184     (PID.TID 0000.0001) > uVelInitFile = 'const_00.bin',
185     (PID.TID 0000.0001) > vVelInitFile = 'const+20.bin',
186     (PID.TID 0000.0001) > thetaClimFile = 'tocn_1x.bin',
187     (PID.TID 0000.0001) > /
188     (PID.TID 0000.0001)
189     (PID.TID 0000.0001) INI_PARMS ; starts to read PARM01
190     (PID.TID 0000.0001) INI_PARMS ; read PARM01 : OK
191     (PID.TID 0000.0001) INI_PARMS ; starts to read PARM02
192     (PID.TID 0000.0001) INI_PARMS ; read PARM02 : OK
193     (PID.TID 0000.0001) INI_PARMS ; starts to read PARM03
194     (PID.TID 0000.0001) INI_PARMS ; read PARM03 : OK
195     (PID.TID 0000.0001) INI_PARMS ; starts to read PARM04
196     (PID.TID 0000.0001) INI_PARMS ; read PARM04 : OK
197     (PID.TID 0000.0001) INI_PARMS ; starts to read PARM05
198     (PID.TID 0000.0001) INI_PARMS ; read PARM05 : OK
199     (PID.TID 0000.0001) INI_PARMS: finished reading file "data"
200     (PID.TID 0000.0001) PACKAGES_BOOT: opening data.pkg
201     (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.pkg
202     (PID.TID 0000.0001) // =======================================================
203     (PID.TID 0000.0001) // Parameter file "data.pkg"
204     (PID.TID 0000.0001) // =======================================================
205     (PID.TID 0000.0001) ># Packages
206     (PID.TID 0000.0001) > &PACKAGES
207     (PID.TID 0000.0001) > useCheapAML=.TRUE.,
208     (PID.TID 0000.0001) > useSEAICE = .TRUE.,
209     (PID.TID 0000.0001) > useThSIce = .TRUE.,
210     (PID.TID 0000.0001) > useDiagnostics=.TRUE.,
211     (PID.TID 0000.0001) > /
212     (PID.TID 0000.0001)
213     (PID.TID 0000.0001) PACKAGES_BOOT: finished reading data.pkg
214     (PID.TID 0000.0001) BULKF_READPARMS: opening data.cheapaml
215     (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.cheapaml
216     (PID.TID 0000.0001) // =======================================================
217     (PID.TID 0000.0001) // Parameter file "data.cheapaml"
218     (PID.TID 0000.0001) // =======================================================
219     (PID.TID 0000.0001) ># Package CheapAML parameters
220     (PID.TID 0000.0001) >#--------------------
221     (PID.TID 0000.0001) > &CHEAPAML_CONST
222     (PID.TID 0000.0001) > cheapaml_ntim = 20,
223     (PID.TID 0000.0001) > cheapaml_mask_width=5,
224     (PID.TID 0000.0001) ># cheapaml_taurelax =0.,
225     (PID.TID 0000.0001) > cheapaml_h = 1000.,
226     (PID.TID 0000.0001) > cheapaml_kdiff= 100.,
227     (PID.TID 0000.0001) > /
228     (PID.TID 0000.0001) >
229     (PID.TID 0000.0001) > &CHEAPAML_PARM01
230     (PID.TID 0000.0001) > SolarFile = 'dsw_70y.bin',
231     (PID.TID 0000.0001) > cheap_dlwFile= 'dlw_270y.bin',
232     (PID.TID 0000.0001) > UWindFile = 'windx_10ms.bin',
233     (PID.TID 0000.0001) > VWindFile = 'windy_conv.bin',
234     (PID.TID 0000.0001) > AirTempFile= 'tair_-10.bin',
235     (PID.TID 0000.0001) > TrFile = 'tair_-10.bin',
236     (PID.TID 0000.0001) > AirQFile = 'qa70_-10.bin',
237     (PID.TID 0000.0001) > QrFile = 'qa70_-10.bin',
238     (PID.TID 0000.0001) > cheapMaskFile='const_00.bin',
239     (PID.TID 0000.0001) > /
240     (PID.TID 0000.0001) >
241     (PID.TID 0000.0001) > &CHEAPAML_PARM02
242     (PID.TID 0000.0001) > useFreshWaterFlux=.TRUE.,
243     (PID.TID 0000.0001) > useFluxLimit=.TRUE.,
244     (PID.TID 0000.0001) > FluxFormula='COARE3'
245     (PID.TID 0000.0001) > useDLongWave=.TRUE.,
246     (PID.TID 0000.0001) > cheapamlXperiodic=.TRUE.,
247     (PID.TID 0000.0001) > /
248     (PID.TID 0000.0001)
249     (PID.TID 0000.0001) CHEAPAML_READPARMS: read CHEAPAML_CONST
250     (PID.TID 0000.0001) CHEAPAML_READPARMS: read CHEAPAML_PARM01
251     (PID.TID 0000.0001) CHEAPAML_READPARMS: read CHEAPAML_PARM02
252     Caml: ntim = 20
253     Caml: mask_w = 5
254     Caml: h = 1000.0000000000000
255     Caml: kdiff = 100.00000000000000
256     Caml: taurelax = 0.10000000000000001 (days)
257     Caml: trelaxoce= 0.0000000000000000 (days)
258     Caml: rhoa = 1.3000000000000000
259     Caml: cpair = 1004.0000000000000
260     Caml: stefan = 5.66999999999999982E-008
261     Caml: cheapamlXperiodic = T
262     Caml: cheapamlYperiodic = F
263     Caml: useFreshWaterFlux = T
264     Caml: useFluxLimit = T
265     Caml: useStressOption = F
266     Caml: useCheapTracer = F
267     Caml: useTimeVarBLH = F
268     Caml: useClouds = F
269     Caml: useDlongwave = T
270     (PID.TID 0000.0001)
271     (PID.TID 0000.0001) SEAICE_READPARMS: opening data.seaice
272     (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.seaice
273     (PID.TID 0000.0001) // =======================================================
274     (PID.TID 0000.0001) // Parameter file "data.seaice"
275     (PID.TID 0000.0001) // =======================================================
276     (PID.TID 0000.0001) ># SEAICE parameters
277     (PID.TID 0000.0001) > &SEAICE_PARM01
278     (PID.TID 0000.0001) > SEAICErestoreUnderIce=.TRUE.,
279     (PID.TID 0000.0001) > usePW79thermodynamics=.FALSE.,
280     (PID.TID 0000.0001) > SEAICE_strength = 2.6780e+04,
281     (PID.TID 0000.0001) > OCEAN_drag = 8.1541e-04,
282     (PID.TID 0000.0001) > SEAICE_waterDrag = 5.3508,
283     (PID.TID 0000.0001) > LSR_ERROR = 1.E-12,
284     (PID.TID 0000.0001) > SOLV_MAX_ITERS = 1500,
285     (PID.TID 0000.0001) > LSR_mixIniGuess = 1,
286     (PID.TID 0000.0001) >#SEAICE_no_slip = .TRUE.,
287     (PID.TID 0000.0001) > SEAICEwriteState = .TRUE.,
288     (PID.TID 0000.0001) > SEAICE_monFreq = 21600.,
289     (PID.TID 0000.0001) >#SEAICE_monFreq = 1800.,
290     (PID.TID 0000.0001) > /
291     (PID.TID 0000.0001) >
292     (PID.TID 0000.0001) > &SEAICE_PARM03
293     (PID.TID 0000.0001) > /
294     (PID.TID 0000.0001)
295     (PID.TID 0000.0001) SEAICE_READPARMS: finished reading data.seaice
296     (PID.TID 0000.0001) THSICE_READPARMS: opening data.ice
297     (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.ice
298     (PID.TID 0000.0001) // =======================================================
299     (PID.TID 0000.0001) // Parameter file "data.ice"
300     (PID.TID 0000.0001) // =======================================================
301     (PID.TID 0000.0001) > &THSICE_CONST
302     (PID.TID 0000.0001) >#- with fractional ice:
303     (PID.TID 0000.0001) > iceMaskMin = 0.001,
304     (PID.TID 0000.0001) > hiMax = 10.,
305     (PID.TID 0000.0001) > hsMax = 10.,
306     (PID.TID 0000.0001) > dhSnowLin = 0.1,
307     (PID.TID 0000.0001) > fracEnFreez= 0.4,
308     (PID.TID 0000.0001) > hNewIceMax = 1.,
309     (PID.TID 0000.0001) > albIceMax = 0.6,
310     (PID.TID 0000.0001) > albIceMin = 0.6,
311     (PID.TID 0000.0001) >#albColdSnow= 0.85,
312     (PID.TID 0000.0001) >#albWarmSnow= 0.60,
313     (PID.TID 0000.0001) >#tempSnowAlb= -5.,
314     (PID.TID 0000.0001) >#albOldSnow = 0.60,
315     (PID.TID 0000.0001) >#hNewSnowAge= 2.e-3,
316     (PID.TID 0000.0001) >#snowAgTime = 4320000.,
317     (PID.TID 0000.0001) >#hAlbIce = 0.44,
318     (PID.TID 0000.0001) >#hAlbSnow = 0.15,
319     (PID.TID 0000.0001) > /
320     (PID.TID 0000.0001) >
321     (PID.TID 0000.0001) > &THSICE_PARM01
322     (PID.TID 0000.0001) >#StartIceModel=1,
323     (PID.TID 0000.0001) >#thSIce_skipThermo=.TRUE.,
324     (PID.TID 0000.0001) > thSIceAdvScheme=77,
325     (PID.TID 0000.0001) >#thSIce_diffK =800.,
326     (PID.TID 0000.0001) > stressReduction=0.,
327     (PID.TID 0000.0001) > thSIceFract_InitFile='ice0_area.bin',
328     (PID.TID 0000.0001) > thSIceThick_InitFile='const+20.bin',
329     (PID.TID 0000.0001) >#thSIce_diagFreq=2592000.,
330     (PID.TID 0000.0001) > thSIce_monFreq =43200.,
331     (PID.TID 0000.0001) > /
332     (PID.TID 0000.0001) >
333     (PID.TID 0000.0001)
334     (PID.TID 0000.0001) THSICE_READPARMS: read THSICE_CONST
335     (PID.TID 0000.0001) THSICE_READPARMS: read THSICE_PARM01
336     ThSI: rhos = 3.3000000000000E+02
337     ThSI: rhoi = 9.0000000000000E+02
338     ThSI: rhosw = 1.0300000000000E+03
339     ThSI: rhofw = 1.0000000000000E+03
340     ThSI: floodFac = 3.9393939393939E-01
341     ThSI: cpIce = 2.1060000000000E+03
342     ThSI: cpWater = 3.9860000000000E+03
343     ThSI: kIce = 2.0300000000000E+00
344     ThSI: kSnow = 3.0000000000000E-01
345     ThSI: bMeltCoef = 6.0000000000000E-03
346     ThSI: Lfresh = 3.3400000000000E+05
347     ThSI: qsnow = 3.3400000000000E+05
348     ThSI: albColdSnow = 8.5000000000000E-01
349     ThSI: albWarmSnow = 7.0000000000000E-01
350     ThSI: tempSnowAlb = -1.0000000000000E+01
351     ThSI: albOldSnow = 5.5000000000000E-01
352     ThSI: hNewSnowAge = 2.0000000000000E-03
353     ThSI: snowAgTime = 4.3200000000000E+06
354     ThSI: albIceMax = 6.0000000000000E-01
355     ThSI: albIceMin = 6.0000000000000E-01
356     ThSI: hAlbIce = 5.0000000000000E-01
357     ThSI: hAlbSnow = 3.0000000000000E-01
358     ThSI: i0swFrac = 3.0000000000000E-01
359     ThSI: ksolar = 1.5000000000000E+00
360     ThSI: dhSnowLin = 1.0000000000000E-01
361     ThSI: saltIce = 4.0000000000000E+00
362     ThSI: S_winton = 1.0000000000000E+00
363     ThSI: mu_Tf = 5.4000000000000E-02
364     ThSI: Tf0kel = 2.7315000000000E+02
365     ThSI: Tmlt1 = -5.4000000000000E-02
366     ThSI: Terrmax = 5.0000000000000E-01
367     ThSI: nitMaxTsf = 20
368     ThSI: hIceMin = 1.0000000000000E-02
369     ThSI: hiMax = 1.0000000000000E+01
370     ThSI: hsMax = 1.0000000000000E+01
371     ThSI: iceMaskMax = 1.0000000000000E+00
372     ThSI: iceMaskMin = 1.0000000000000E-03
373     ThSI: fracEnMelt = 4.0000000000000E-01
374     ThSI: fracEnFreez = 4.0000000000000E-01
375     ThSI: hThinIce = 2.0000000000000E-01
376     ThSI: hThickIce = 2.5000000000000E+00
377     ThSI: hNewIceMax = 1.0000000000000E+00
378     ThSI: stressReduction = 0.0000000000000E+00
379     ThSI: thSIce_skipThermo = F
380     ThSI: thSIceAdvScheme = 77
381     ThSI: thSIceBalanceAtmFW= 0
382     ThSI: thSIce_diffK = 0.0000000000000E+00
383     ThSI: thSIce_deltaT = 3.6000000000000E+03
384     ThSI: ocean_deltaT = 3.6000000000000E+03
385     ThSI: stepFwd_oceMxL = F
386     ThSI: tauRelax_MxL = 0.0000000000000E+00
387     ThSI: tauRelax_MxL_salt = 0.0000000000000E+00
388     ThSI: hMxL_default = 5.0000000000000E+01
389     ThSI: sMxL_default = 3.5000000000000E+01
390     ThSI: vMxL_default = 5.0000000000000E-02
391     ThSI: thSIce_taveFreq = 0.0000000000000E+00
392     ThSI: thSIce_diagFreq = 8.6400000000000E+04
393     ThSI: thSIce_monFreq = 4.3200000000000E+04
394     ThSI: startIceModel = 0
395     (PID.TID 0000.0001) DIAGNOSTICS_READPARMS: opening data.diagnostics
396     (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.diagnostics
397     (PID.TID 0000.0001) // =======================================================
398     (PID.TID 0000.0001) // Parameter file "data.diagnostics"
399     (PID.TID 0000.0001) // =======================================================
400     (PID.TID 0000.0001) ># Diagnostic Package Choices
401     (PID.TID 0000.0001) >#--------------------
402     (PID.TID 0000.0001) ># dumpAtLast (logical): always write output at the end of simulation (default=F)
403     (PID.TID 0000.0001) ># diag_mnc (logical): write to NetCDF files (default=useMNC)
404     (PID.TID 0000.0001) >#--for each output-stream:
405     (PID.TID 0000.0001) ># fileName(n) : prefix of the output file name (max 80c long) for outp.stream n
406     (PID.TID 0000.0001) ># frequency(n):< 0 : write snap-shot output every |frequency| seconds
407     (PID.TID 0000.0001) ># > 0 : write time-average output every frequency seconds
408     (PID.TID 0000.0001) ># timePhase(n) : write at time = timePhase + multiple of |frequency|
409     (PID.TID 0000.0001) ># averagingFreq : frequency (in s) for periodic averaging interval
410     (PID.TID 0000.0001) ># averagingPhase : phase (in s) for periodic averaging interval
411     (PID.TID 0000.0001) ># repeatCycle : number of averaging intervals in 1 cycle
412     (PID.TID 0000.0001) ># levels(:,n) : list of levels to write to file (Notes: declared as REAL)
413     (PID.TID 0000.0001) ># when this entry is missing, select all common levels of this list
414     (PID.TID 0000.0001) ># fields(:,n) : list of selected diagnostics fields (8.c) in outp.stream n
415     (PID.TID 0000.0001) ># (see "available_diagnostics.log" file for the full list of diags)
416     (PID.TID 0000.0001) ># missing_value(n) : missing value for real-type fields in output file "n"
417     (PID.TID 0000.0001) ># fileFlags(n) : specific code (8c string) for output file "n"
418     (PID.TID 0000.0001) >#--------------------
419     (PID.TID 0000.0001) > &DIAGNOSTICS_LIST
420     (PID.TID 0000.0001) > dumpAtLast = .TRUE.,
421     (PID.TID 0000.0001) >#--
422     (PID.TID 0000.0001) > fields(1:18,1) = 'CH_TAIR ','CH_QAIR ','THETA ',
423     (PID.TID 0000.0001) > 'SI_Fract','SI_Thick','SI_SnowH',
424     (PID.TID 0000.0001) > 'SIuice ','SIvice ',
425     (PID.TID 0000.0001) > 'SIflxAtm','SIfrwAtm','SIsnwPrc',
426     (PID.TID 0000.0001) > 'CH_QNET ','CH_EmP ','CH_SH ','CH_LH ',
427     (PID.TID 0000.0001) > 'CH_Prec ','CH_q100 ','CH_ssqt ',
428     (PID.TID 0000.0001) ># 'CH_Uwind','CH_Vwind',
429     (PID.TID 0000.0001) > fileName(1) = 'cheapAML',
430     (PID.TID 0000.0001) > frequency(1) = -43200.,
431     (PID.TID 0000.0001) > timePhase(1) = -3600.,
432     (PID.TID 0000.0001) >
433     (PID.TID 0000.0001) > fields(1:14,2) = 'SI_Fract','SI_Thick','THETA ','SI_Tsrf ',
434     (PID.TID 0000.0001) ># 'SI_Tsrf ','SI_Tice1','SI_Tice2',
435     (PID.TID 0000.0001) ># 'SI_Qice1','SI_Qice2',
436     (PID.TID 0000.0001) ># 'SIsnwPrc','SIalbedo','SIsnwAge',
437     (PID.TID 0000.0001) ># 'oceQnet ','oceQsw ','oceFWflx','oceSflux',
438     (PID.TID 0000.0001) > 'SIflx2oc','SIfrw2oc','SIsaltFx','oceQsw ',
439     (PID.TID 0000.0001) > 'SIflxAtm','SIfrwAtm','CH_Prec ',
440     (PID.TID 0000.0001) > 'SIuice ','SIvice ',
441     (PID.TID 0000.0001) > fileName(2) = 'iceDiag',
442     (PID.TID 0000.0001) > frequency(2) = 86400.,
443     (PID.TID 0000.0001) > /
444     (PID.TID 0000.0001) >
445     (PID.TID 0000.0001) >#--------------------
446     (PID.TID 0000.0001) ># Parameter for Diagnostics of per level statistics:
447     (PID.TID 0000.0001) >#--------------------
448     (PID.TID 0000.0001) ># diagSt_mnc (logical): write stat-diags to NetCDF files (default=diag_mnc)
449     (PID.TID 0000.0001) ># diagSt_regMaskFile : file containing the region-mask to read-in
450     (PID.TID 0000.0001) ># nSetRegMskFile : number of region-mask sets within the region-mask file
451     (PID.TID 0000.0001) ># set_regMask(i) : region-mask set-index that identifies the region "i"
452     (PID.TID 0000.0001) ># val_regMask(i) : region "i" identifier value in the region mask
453     (PID.TID 0000.0001) >#--for each output-stream:
454     (PID.TID 0000.0001) ># stat_fName(n) : prefix of the output file name (max 80c long) for outp.stream n
455     (PID.TID 0000.0001) ># stat_freq(n):< 0 : write snap-shot output every |stat_freq| seconds
456     (PID.TID 0000.0001) ># > 0 : write time-average output every stat_freq seconds
457     (PID.TID 0000.0001) ># stat_phase(n) : write at time = stat_phase + multiple of |stat_freq|
458     (PID.TID 0000.0001) ># stat_region(:,n) : list of "regions" (default: 1 region only=global)
459     (PID.TID 0000.0001) ># stat_fields(:,n) : list of selected diagnostics fields (8.c) in outp.stream n
460     (PID.TID 0000.0001) ># (see "available_diagnostics.log" file for the full list of diags)
461     (PID.TID 0000.0001) >#--------------------
462     (PID.TID 0000.0001) > &DIAG_STATIS_PARMS
463     (PID.TID 0000.0001) > stat_fields(1:14,1) = 'SI_Fract','SI_Thick','SI_SnowH','THETA ',
464     (PID.TID 0000.0001) > 'SI_Tsrf ','SI_Tice1','SI_Tice2',
465     (PID.TID 0000.0001) ># 'oceQnet ','oceQsw ','oceFWflx','oceSflux',
466     (PID.TID 0000.0001) > 'SIflx2oc','SIfrw2oc','SIsaltFx',
467     (PID.TID 0000.0001) > 'SIflxAtm','SIfrwAtm',
468     (PID.TID 0000.0001) > 'SIuice ','SIvice ',
469     (PID.TID 0000.0001) > stat_fName(1) = 'iceStDiag',
470     (PID.TID 0000.0001) > stat_freq(1) = 43200.,
471     (PID.TID 0000.0001) > stat_phase(1) = 3600.,
472     (PID.TID 0000.0001) >
473     (PID.TID 0000.0001) > stat_fields(1:10,2) = 'CH_TAIR ','CH_QAIR ',
474     (PID.TID 0000.0001) > 'CH_QNET ','CH_EmP ','CH_SH ','CH_LH ',
475     (PID.TID 0000.0001) > 'CH_Prec ','CH_q100 ','CH_ssqt ','SIsnwPrc',
476     (PID.TID 0000.0001) > stat_fName(2) = 'cheapStDiag',
477     (PID.TID 0000.0001) > stat_freq(2) = 43200.,
478     (PID.TID 0000.0001) > stat_phase(2) = 3600.,
479     (PID.TID 0000.0001) > /
480     (PID.TID 0000.0001)
481     (PID.TID 0000.0001) S/R DIAGNOSTICS_READPARMS, read namelist "diagnostics_list": start
482     (PID.TID 0000.0001) S/R DIAGNOSTICS_READPARMS, read namelist "diagnostics_list": OK
483     (PID.TID 0000.0001) S/R DIAGNOSTICS_READPARMS, read namelist "DIAG_STATIS_PARMS": start
484     (PID.TID 0000.0001) S/R DIAGNOSTICS_READPARMS, read namelist "DIAG_STATIS_PARMS": OK
485     (PID.TID 0000.0001) DIAGNOSTICS_READPARMS: global parameter summary:
486     (PID.TID 0000.0001) dumpAtLast = /* always write time-ave diags at the end */
487     (PID.TID 0000.0001) T
488     (PID.TID 0000.0001) ;
489     (PID.TID 0000.0001) diag_mnc = /* write NetCDF output files */
490     (PID.TID 0000.0001) F
491     (PID.TID 0000.0001) ;
492     (PID.TID 0000.0001) useMissingValue = /* put MissingValue where mask = 0 */
493     (PID.TID 0000.0001) F
494     (PID.TID 0000.0001) ;
495     (PID.TID 0000.0001) diagCG_maxIters = /* max number of iters in diag_cg2d */
496     (PID.TID 0000.0001) 500
497     (PID.TID 0000.0001) ;
498     (PID.TID 0000.0001) diagCG_resTarget = /* residual target for diag_cg2d */
499     (PID.TID 0000.0001) 1.000000000000000E-12
500     (PID.TID 0000.0001) ;
501     (PID.TID 0000.0001) -----------------------------------------------------
502     (PID.TID 0000.0001) DIAGNOSTICS_READPARMS: active diagnostics summary:
503     (PID.TID 0000.0001) -----------------------------------------------------
504     (PID.TID 0000.0001) Creating Output Stream: cheapAML
505     (PID.TID 0000.0001) Output Frequency: -43200.000000 ; Phase: -3600.000000
506     (PID.TID 0000.0001) Averaging Freq.: 0.000000 , Phase: 0.000000 , Cycle: 1
507     (PID.TID 0000.0001) missing value: -9.990000000000E+02
508     (PID.TID 0000.0001) Levels: will be set later
509     (PID.TID 0000.0001) Fields: CH_TAIR CH_QAIR THETA SI_Fract SI_Thick SI_SnowH SIuice SIvice SIflxAtm SIfrwAtm
510     (PID.TID 0000.0001) Fields: SIsnwPrc CH_QNET CH_EmP CH_SH CH_LH CH_Prec CH_q100 CH_ssqt
511     (PID.TID 0000.0001) Creating Output Stream: iceDiag
512     (PID.TID 0000.0001) Output Frequency: 86400.000000 ; Phase: 0.000000
513     (PID.TID 0000.0001) Averaging Freq.: 86400.000000 , Phase: 0.000000 , Cycle: 1
514     (PID.TID 0000.0001) missing value: -9.990000000000E+02
515     (PID.TID 0000.0001) Levels: will be set later
516     (PID.TID 0000.0001) Fields: SI_Fract SI_Thick THETA SI_Tsrf SIflx2oc SIfrw2oc SIsaltFx oceQsw SIflxAtm SIfrwAtm
517     (PID.TID 0000.0001) Fields: CH_Prec SIuice SIvice
518     (PID.TID 0000.0001) -----------------------------------------------------
519     (PID.TID 0000.0001) DIAGNOSTICS_READPARMS: statistics diags. summary:
520     (PID.TID 0000.0001) Creating Stats. Output Stream: iceStDiag
521     (PID.TID 0000.0001) Output Frequency: 43200.000000 ; Phase: 3600.000000
522     (PID.TID 0000.0001) Regions: 0
523     (PID.TID 0000.0001) Fields: SI_Fract SI_Thick SI_SnowH THETA SI_Tsrf SI_Tice1 SI_Tice2 SIflx2oc SIfrw2oc SIsaltFx
524     (PID.TID 0000.0001) Fields: SIflxAtm SIfrwAtm SIuice SIvice
525     (PID.TID 0000.0001) Creating Stats. Output Stream: cheapStDiag
526     (PID.TID 0000.0001) Output Frequency: 43200.000000 ; Phase: 3600.000000
527     (PID.TID 0000.0001) Regions: 0
528     (PID.TID 0000.0001) Fields: CH_TAIR CH_QAIR CH_QNET CH_EmP CH_SH CH_LH CH_Prec CH_q100 CH_ssqt SIsnwPrc
529     (PID.TID 0000.0001) -----------------------------------------------------
530     (PID.TID 0000.0001)
531     (PID.TID 0000.0001) SET_PARMS: done
532     (PID.TID 0000.0001) Enter INI_VERTICAL_GRID: setInterFDr= T ; setCenterDr= F
533     (PID.TID 0000.0001) %MON XC_max = 3.9750000000000E+05
534     (PID.TID 0000.0001) %MON XC_min = 2.5000000000000E+03
535     (PID.TID 0000.0001) %MON XC_mean = 2.0000000000000E+05
536     (PID.TID 0000.0001) %MON XC_sd = 1.1546103238755E+05
537     (PID.TID 0000.0001) %MON XG_max = 3.9500000000000E+05
538     (PID.TID 0000.0001) %MON XG_min = 0.0000000000000E+00
539     (PID.TID 0000.0001) %MON XG_mean = 1.9750000000000E+05
540     (PID.TID 0000.0001) %MON XG_sd = 1.1546103238755E+05
541     (PID.TID 0000.0001) %MON DXC_max = 5.0000000000000E+03
542     (PID.TID 0000.0001) %MON DXC_min = 5.0000000000000E+03
543     (PID.TID 0000.0001) %MON DXC_mean = 5.0000000000000E+03
544     (PID.TID 0000.0001) %MON DXC_sd = 0.0000000000000E+00
545     (PID.TID 0000.0001) %MON DXF_max = 5.0000000000000E+03
546     (PID.TID 0000.0001) %MON DXF_min = 5.0000000000000E+03
547     (PID.TID 0000.0001) %MON DXF_mean = 5.0000000000000E+03
548     (PID.TID 0000.0001) %MON DXF_sd = 0.0000000000000E+00
549     (PID.TID 0000.0001) %MON DXG_max = 5.0000000000000E+03
550     (PID.TID 0000.0001) %MON DXG_min = 5.0000000000000E+03
551     (PID.TID 0000.0001) %MON DXG_mean = 5.0000000000000E+03
552     (PID.TID 0000.0001) %MON DXG_sd = 0.0000000000000E+00
553     (PID.TID 0000.0001) %MON DXV_max = 5.0000000000000E+03
554     (PID.TID 0000.0001) %MON DXV_min = 5.0000000000000E+03
555     (PID.TID 0000.0001) %MON DXV_mean = 5.0000000000000E+03
556     (PID.TID 0000.0001) %MON DXV_sd = 0.0000000000000E+00
557     (PID.TID 0000.0001) %MON YC_max = 9.7500000000000E+04
558     (PID.TID 0000.0001) %MON YC_min = -1.0750000000000E+05
559     (PID.TID 0000.0001) %MON YC_mean = -5.0000000000000E+03
560     (PID.TID 0000.0001) %MON YC_sd = 6.0604592785256E+04
561     (PID.TID 0000.0001) %MON YG_max = 9.5000000000000E+04
562     (PID.TID 0000.0001) %MON YG_min = -1.1000000000000E+05
563     (PID.TID 0000.0001) %MON YG_mean = -7.5000000000000E+03
564     (PID.TID 0000.0001) %MON YG_sd = 6.0604592785256E+04
565     (PID.TID 0000.0001) %MON DYC_max = 5.0000000000000E+03
566     (PID.TID 0000.0001) %MON DYC_min = 5.0000000000000E+03
567     (PID.TID 0000.0001) %MON DYC_mean = 5.0000000000000E+03
568     (PID.TID 0000.0001) %MON DYC_sd = 0.0000000000000E+00
569     (PID.TID 0000.0001) %MON DYF_max = 5.0000000000000E+03
570     (PID.TID 0000.0001) %MON DYF_min = 5.0000000000000E+03
571     (PID.TID 0000.0001) %MON DYF_mean = 5.0000000000000E+03
572     (PID.TID 0000.0001) %MON DYF_sd = 0.0000000000000E+00
573     (PID.TID 0000.0001) %MON DYG_max = 5.0000000000000E+03
574     (PID.TID 0000.0001) %MON DYG_min = 5.0000000000000E+03
575     (PID.TID 0000.0001) %MON DYG_mean = 5.0000000000000E+03
576     (PID.TID 0000.0001) %MON DYG_sd = 0.0000000000000E+00
577     (PID.TID 0000.0001) %MON DYU_max = 5.0000000000000E+03
578     (PID.TID 0000.0001) %MON DYU_min = 5.0000000000000E+03
579     (PID.TID 0000.0001) %MON DYU_mean = 5.0000000000000E+03
580     (PID.TID 0000.0001) %MON DYU_sd = 0.0000000000000E+00
581     (PID.TID 0000.0001) %MON RA_max = 2.5000000000000E+07
582     (PID.TID 0000.0001) %MON RA_min = 2.5000000000000E+07
583     (PID.TID 0000.0001) %MON RA_mean = 2.5000000000000E+07
584     (PID.TID 0000.0001) %MON RA_sd = 3.7252902984619E-09
585     (PID.TID 0000.0001) %MON RAW_max = 2.5000000000000E+07
586     (PID.TID 0000.0001) %MON RAW_min = 2.5000000000000E+07
587     (PID.TID 0000.0001) %MON RAW_mean = 2.5000000000000E+07
588     (PID.TID 0000.0001) %MON RAW_sd = 3.7252902984619E-09
589     (PID.TID 0000.0001) %MON RAS_max = 2.5000000000000E+07
590     (PID.TID 0000.0001) %MON RAS_min = 2.5000000000000E+07
591     (PID.TID 0000.0001) %MON RAS_mean = 2.5000000000000E+07
592     (PID.TID 0000.0001) %MON RAS_sd = 3.7252902984619E-09
593     (PID.TID 0000.0001) %MON RAZ_max = 2.5000000000000E+07
594     (PID.TID 0000.0001) %MON RAZ_min = 2.5000000000000E+07
595     (PID.TID 0000.0001) %MON RAZ_mean = 2.5000000000000E+07
596     (PID.TID 0000.0001) %MON RAZ_sd = 3.7252902984619E-09
597     (PID.TID 0000.0001) %MON AngleCS_max = 1.0000000000000E+00
598     (PID.TID 0000.0001) %MON AngleCS_min = 1.0000000000000E+00
599     (PID.TID 0000.0001) %MON AngleCS_mean = 1.0000000000000E+00
600     (PID.TID 0000.0001) %MON AngleCS_sd = 0.0000000000000E+00
601     (PID.TID 0000.0001) %MON AngleSN_max = 0.0000000000000E+00
602     (PID.TID 0000.0001) %MON AngleSN_min = 0.0000000000000E+00
603     (PID.TID 0000.0001) %MON AngleSN_mean = 0.0000000000000E+00
604     (PID.TID 0000.0001) %MON AngleSN_sd = 0.0000000000000E+00
605     (PID.TID 0000.0001) MDS_READ_FIELD: opening global file: channel.bin
606     (PID.TID 0000.0001) // =======================================================
607     (PID.TID 0000.0001) // Field Model R_low (ini_masks_etc)
608     (PID.TID 0000.0001) // CMIN = -1.000000000000000E+01
609     (PID.TID 0000.0001) // CMAX = -1.000000000000000E+01
610     (PID.TID 0000.0001) // CINT = 0.000000000000000E+00
611     (PID.TID 0000.0001) // SYMBOLS (CMIN->CMAX): -abcdefghijklmnopqrstuvwxyz+
612     (PID.TID 0000.0001) // 0.0: .
613     (PID.TID 0000.0001) // RANGE I (Lo:Hi:Step):( -2: 83: 1)
614     (PID.TID 0000.0001) // RANGE J (Lo:Hi:Step):( 45: -2: -1)
615     (PID.TID 0000.0001) // RANGE K (Lo:Hi:Step):( 1: 1: 1)
616     (PID.TID 0000.0001) // =======================================================
617     (PID.TID 0000.0001) // =======================================================
618     (PID.TID 0000.0001) // END OF FIELD =
619     (PID.TID 0000.0001) // =======================================================
620     (PID.TID 0000.0001)
621     (PID.TID 0000.0001) // =======================================================
622     (PID.TID 0000.0001) // Field Model Ro_surf (ini_masks_etc)
623     (PID.TID 0000.0001) // CMIN = 1.000000000000000E+32
624     (PID.TID 0000.0001) // CMAX = -1.000000000000000E+32
625     (PID.TID 0000.0001) // CINT = 0.000000000000000E+00
626     (PID.TID 0000.0001) // SYMBOLS (CMIN->CMAX): -abcdefghijklmnopqrstuvwxyz+
627     (PID.TID 0000.0001) // 0.0: .
628     (PID.TID 0000.0001) // RANGE I (Lo:Hi:Step):( -2: 83: 1)
629     (PID.TID 0000.0001) // RANGE J (Lo:Hi:Step):( 45: -2: -1)
630     (PID.TID 0000.0001) // RANGE K (Lo:Hi:Step):( 1: 1: 1)
631     (PID.TID 0000.0001) // =======================================================
632     (PID.TID 0000.0001) // =======================================================
633     (PID.TID 0000.0001) // END OF FIELD =
634     (PID.TID 0000.0001) // =======================================================
635     (PID.TID 0000.0001)
636     (PID.TID 0000.0001) // =======================================================
637     (PID.TID 0000.0001) // Field hFacC at iteration 0
638     (PID.TID 0000.0001) // CMIN = 1.000000000000000E+00
639     (PID.TID 0000.0001) // CMAX = 1.000000000000000E+00
640     (PID.TID 0000.0001) // CINT = 0.000000000000000E+00
641     (PID.TID 0000.0001) // SYMBOLS (CMIN->CMAX): -abcdefghijklmnopqrstuvwxyz+
642     (PID.TID 0000.0001) // 0.0: .
643     (PID.TID 0000.0001) // RANGE I (Lo:Hi:Step):( -2: 83: 1)
644     (PID.TID 0000.0001) // RANGE J (Lo:Hi:Step):( 45: -2: -1)
645     (PID.TID 0000.0001) // RANGE K (Lo:Hi:Step):( 1: 1: 1)
646     (PID.TID 0000.0001) // =======================================================
647     (PID.TID 0000.0001) // =======================================================
648     (PID.TID 0000.0001) // END OF FIELD =
649     (PID.TID 0000.0001) // =======================================================
650     (PID.TID 0000.0001)
651     (PID.TID 0000.0001) // =======================================================
652     (PID.TID 0000.0001) // Field hFacW at iteration 0
653     (PID.TID 0000.0001) // CMIN = 1.000000000000000E+00
654     (PID.TID 0000.0001) // CMAX = 1.000000000000000E+00
655     (PID.TID 0000.0001) // CINT = 0.000000000000000E+00
656     (PID.TID 0000.0001) // SYMBOLS (CMIN->CMAX): -abcdefghijklmnopqrstuvwxyz+
657     (PID.TID 0000.0001) // 0.0: .
658     (PID.TID 0000.0001) // RANGE I (Lo:Hi:Step):( -2: 83: 1)
659     (PID.TID 0000.0001) // RANGE J (Lo:Hi:Step):( 45: -2: -1)
660     (PID.TID 0000.0001) // RANGE K (Lo:Hi:Step):( 1: 1: 1)
661     (PID.TID 0000.0001) // =======================================================
662     (PID.TID 0000.0001) // =======================================================
663     (PID.TID 0000.0001) // END OF FIELD =
664     (PID.TID 0000.0001) // =======================================================
665     (PID.TID 0000.0001)
666     (PID.TID 0000.0001) // =======================================================
667     (PID.TID 0000.0001) // Field hFacS at iteration 0
668     (PID.TID 0000.0001) // CMIN = 1.000000000000000E+00
669     (PID.TID 0000.0001) // CMAX = 1.000000000000000E+00
670     (PID.TID 0000.0001) // CINT = 0.000000000000000E+00
671     (PID.TID 0000.0001) // SYMBOLS (CMIN->CMAX): -abcdefghijklmnopqrstuvwxyz+
672     (PID.TID 0000.0001) // 0.0: .
673     (PID.TID 0000.0001) // RANGE I (Lo:Hi:Step):( -2: 83: 1)
674     (PID.TID 0000.0001) // RANGE J (Lo:Hi:Step):( 45: -2: -1)
675     (PID.TID 0000.0001) // RANGE K (Lo:Hi:Step):( 1: 1: 1)
676     (PID.TID 0000.0001) // =======================================================
677     (PID.TID 0000.0001) // =======================================================
678     (PID.TID 0000.0001) // END OF FIELD =
679     (PID.TID 0000.0001) // =======================================================
680     (PID.TID 0000.0001)
681     (PID.TID 0000.0001) GAD_INIT_FIXED: GAD_OlMinSize= 0 0 1
682     (PID.TID 0000.0001)
683     (PID.TID 0000.0001) // ===================================
684     (PID.TID 0000.0001) // GAD parameters :
685     (PID.TID 0000.0001) // ===================================
686     (PID.TID 0000.0001) tempAdvScheme = /* Temp. Horiz.Advection scheme selector */
687     (PID.TID 0000.0001) 2
688     (PID.TID 0000.0001) ;
689     (PID.TID 0000.0001) tempVertAdvScheme = /* Temp. Vert. Advection scheme selector */
690     (PID.TID 0000.0001) 2
691     (PID.TID 0000.0001) ;
692     (PID.TID 0000.0001) tempMultiDimAdvec = /* use Muti-Dim Advec method for Temp */
693     (PID.TID 0000.0001) F
694     (PID.TID 0000.0001) ;
695     (PID.TID 0000.0001) tempSOM_Advection = /* use 2nd Order Moment Advection for Temp */
696     (PID.TID 0000.0001) F
697     (PID.TID 0000.0001) ;
698     (PID.TID 0000.0001) AdamsBashforthGt = /* apply Adams-Bashforth extrapolation on Gt */
699     (PID.TID 0000.0001) T
700     (PID.TID 0000.0001) ;
701     (PID.TID 0000.0001) AdamsBashforth_T = /* apply Adams-Bashforth extrapolation on Temp */
702     (PID.TID 0000.0001) F
703     (PID.TID 0000.0001) ;
704     (PID.TID 0000.0001) saltAdvScheme = /* Salt. Horiz.advection scheme selector */
705     (PID.TID 0000.0001) 2
706     (PID.TID 0000.0001) ;
707     (PID.TID 0000.0001) saltVertAdvScheme = /* Salt. Vert. Advection scheme selector */
708     (PID.TID 0000.0001) 2
709     (PID.TID 0000.0001) ;
710     (PID.TID 0000.0001) saltMultiDimAdvec = /* use Muti-Dim Advec method for Salt */
711     (PID.TID 0000.0001) F
712     (PID.TID 0000.0001) ;
713     (PID.TID 0000.0001) saltSOM_Advection = /* use 2nd Order Moment Advection for Salt */
714     (PID.TID 0000.0001) F
715     (PID.TID 0000.0001) ;
716     (PID.TID 0000.0001) AdamsBashforthGs = /* apply Adams-Bashforth extrapolation on Gs */
717     (PID.TID 0000.0001) F
718     (PID.TID 0000.0001) ;
719     (PID.TID 0000.0001) AdamsBashforth_S = /* apply Adams-Bashforth extrapolation on Salt */
720     (PID.TID 0000.0001) F
721     (PID.TID 0000.0001) ;
722     (PID.TID 0000.0001) // ===================================
723     (PID.TID 0000.0001) // =======================================================
724     (PID.TID 0000.0001) // Seaice configuration (SEAICE_PARM01) >>> START <<<
725     (PID.TID 0000.0001) // =======================================================
726     (PID.TID 0000.0001)
727     (PID.TID 0000.0001) Seaice time stepping configuration > START <
728     (PID.TID 0000.0001) ----------------------------------------------
729     (PID.TID 0000.0001) SEAICE_deltaTtherm= /* thermodynamic timestep */
730     (PID.TID 0000.0001) 3.600000000000000E+03
731     (PID.TID 0000.0001) ;
732     (PID.TID 0000.0001) SEAICE_deltaTdyn = /* dynamic timestep */
733     (PID.TID 0000.0001) 3.600000000000000E+03
734     (PID.TID 0000.0001) ;
735     (PID.TID 0000.0001) SEAICE_deltaTevp = /* EVP timestep */
736     (PID.TID 0000.0001) 1.234567000000000E+05
737     (PID.TID 0000.0001) ;
738     (PID.TID 0000.0001) SEAICEuseAB2 = /* use Adams-Bashforth for mom. eq. */
739     (PID.TID 0000.0001) F
740     (PID.TID 0000.0001) ;
741     (PID.TID 0000.0001) SEAICErestoreUnderIce = /* restore T and S under ice */
742     (PID.TID 0000.0001) T
743     (PID.TID 0000.0001) ;
744     (PID.TID 0000.0001)
745     (PID.TID 0000.0001) Seaice dynamics configuration > START <
746     (PID.TID 0000.0001) ------------------------------------------
747     (PID.TID 0000.0001) SEAICEuseDYNAMICS = /* use dynamics */
748     (PID.TID 0000.0001) T
749     (PID.TID 0000.0001) ;
750     (PID.TID 0000.0001) model grid type = /* type of sea ice model grid */
751     (PID.TID 0000.0001) 'C-GRID'
752     (PID.TID 0000.0001) ;
753     (PID.TID 0000.0001) SEAICEuseEVP = /* use EVP solver rather than LSR */
754     (PID.TID 0000.0001) F
755     (PID.TID 0000.0001) ;
756     (PID.TID 0000.0001) SEAICEuseFREEDRIFT = /* use free drift solution */
757     (PID.TID 0000.0001) F
758     (PID.TID 0000.0001) ;
759     (PID.TID 0000.0001) OCEAN_drag = /* air-ocean drag coefficient */
760     (PID.TID 0000.0001) 8.154100000000000E-04
761     (PID.TID 0000.0001) ;
762     (PID.TID 0000.0001) SEAICE_drag = /* air-ice drag coefficient */
763     (PID.TID 0000.0001) 2.000000000000000E-03
764     (PID.TID 0000.0001) ;
765     (PID.TID 0000.0001) SEAICE_drag_south = /* Southern Ocean SEAICE_drag */
766     (PID.TID 0000.0001) 2.000000000000000E-03
767     (PID.TID 0000.0001) ;
768     (PID.TID 0000.0001) SEAICE_waterDrag = /* water-ice drag * density */
769     (PID.TID 0000.0001) 5.350800000000000E+00
770     (PID.TID 0000.0001) ;
771     (PID.TID 0000.0001) SEAICE_waterDrag_south = /* Southern Ocean waterDrag */
772     (PID.TID 0000.0001) 5.350800000000000E+00
773     (PID.TID 0000.0001) ;
774     (PID.TID 0000.0001) SEAICEuseTilt = /* include surface tilt in dyna. */
775     (PID.TID 0000.0001) T
776     (PID.TID 0000.0001) ;
777     (PID.TID 0000.0001) SEAICEuseTEM = /* use truncated ellipse rheology */
778     (PID.TID 0000.0001) F
779     (PID.TID 0000.0001) ;
780     (PID.TID 0000.0001) SEAICE_strength = /* sea-ice strength Pstar */
781     (PID.TID 0000.0001) 2.678000000000000E+04
782     (PID.TID 0000.0001) ;
783     (PID.TID 0000.0001) SEAICEpresH0 = /* sea-ice strength Heff threshold */
784     (PID.TID 0000.0001) 1.000000000000000E+00
785     (PID.TID 0000.0001) ;
786     (PID.TID 0000.0001) SEAICEpresPow0 = /* exponent for Heff<SEAICEpresH0 */
787     (PID.TID 0000.0001) 1
788     (PID.TID 0000.0001) ;
789     (PID.TID 0000.0001) SEAICEpresPow1 = /* exponent for Heff>SEAICEpresH0 */
790     (PID.TID 0000.0001) 1
791     (PID.TID 0000.0001) ;
792     (PID.TID 0000.0001) SEAICEetaZmethod = /* method computing eta at Z-point */
793     (PID.TID 0000.0001) 0
794     (PID.TID 0000.0001) ;
795     (PID.TID 0000.0001) SEAICE_zetaMin = /* lower bound for viscosity */
796     (PID.TID 0000.0001) 0.000000000000000E+00
797     (PID.TID 0000.0001) ;
798     (PID.TID 0000.0001) SEAICE_eccen = /* elliptical yield curve eccent */
799     (PID.TID 0000.0001) 2.000000000000000E+00
800     (PID.TID 0000.0001) ;
801     (PID.TID 0000.0001) SEAICEstressFactor = /* wind stress scaling factor */
802     (PID.TID 0000.0001) 1.000000000000000E+00
803     (PID.TID 0000.0001) ;
804     (PID.TID 0000.0001) SEAICE_airTurnAngle = /* air-ice turning angle */
805     (PID.TID 0000.0001) 0.000000000000000E+00
806     (PID.TID 0000.0001) ;
807     (PID.TID 0000.0001) SEAICE_waterTurnAngle = /* ice-water turning angle */
808     (PID.TID 0000.0001) 0.000000000000000E+00
809     (PID.TID 0000.0001) ;
810     (PID.TID 0000.0001) SEAICEuseMetricTerms = /* use metric terms */
811     (PID.TID 0000.0001) T
812     (PID.TID 0000.0001) ;
813     (PID.TID 0000.0001) SEAICE_no_slip = /* no slip boundary conditions */
814     (PID.TID 0000.0001) F
815     (PID.TID 0000.0001) ;
816     (PID.TID 0000.0001) SEAICE_clipVeloctities = /* impose max. vels. */
817     (PID.TID 0000.0001) F
818     (PID.TID 0000.0001) ;
819     (PID.TID 0000.0001) useHB87stressCoupling = /* altern. ice-ocean stress */
820     (PID.TID 0000.0001) F
821     (PID.TID 0000.0001) ;
822     (PID.TID 0000.0001) SEAICE_maskRHS = /* mask RHS of solver */
823     (PID.TID 0000.0001) F
824     (PID.TID 0000.0001) ;
825     (PID.TID 0000.0001) LSR_mixIniGuess = /* mix free-drift sol. into LSR initial Guess */
826     (PID.TID 0000.0001) 1
827     (PID.TID 0000.0001) ;
828     (PID.TID 0000.0001) SOLV_MAX_ITERS = /* max. number of LSR solver steps */
829     (PID.TID 0000.0001) 1500
830     (PID.TID 0000.0001) ;
831     (PID.TID 0000.0001) SEAICE_LSRrelaxU = /* LSR solver: relaxation parameter */
832     (PID.TID 0000.0001) 9.500000000000000E-01
833     (PID.TID 0000.0001) ;
834     (PID.TID 0000.0001) SEAICE_LSRrelaxV = /* LSR solver: relaxation parameter */
835     (PID.TID 0000.0001) 9.500000000000000E-01
836     (PID.TID 0000.0001) ;
837     (PID.TID 0000.0001) LSR_ERROR = /* sets accuracy of LSR solver */
838     (PID.TID 0000.0001) 1.000000000000000E-12
839     (PID.TID 0000.0001) ;
840     (PID.TID 0000.0001) SOLV_NCHECK = /* test interval for LSR solver */
841     (PID.TID 0000.0001) 2
842     (PID.TID 0000.0001) ;
843     (PID.TID 0000.0001) NPSEUDOTIMESTEPS = /* num. of extra pseudo time steps */
844     (PID.TID 0000.0001) 2
845     (PID.TID 0000.0001) ;
846     (PID.TID 0000.0001) SEAICEuseMultiTileSolver = /* use full domain tri-diag solver */
847     (PID.TID 0000.0001) F
848     (PID.TID 0000.0001) ;
849     (PID.TID 0000.0001) SEAICE_OLx = /* overlap for LSR/preconditioner */
850     (PID.TID 0000.0001) 1
851     (PID.TID 0000.0001) ;
852     (PID.TID 0000.0001) SEAICE_OLy = /* overlap for LSR/preconditioner */
853     (PID.TID 0000.0001) 1
854     (PID.TID 0000.0001) ;
855     (PID.TID 0000.0001)
856     (PID.TID 0000.0001) Seaice advection diffusion config, > START <
857     (PID.TID 0000.0001) -----------------------------------------------
858     (PID.TID 0000.0001) ==> advection diffusion done in pkg ThSIce
859     (PID.TID 0000.0001)
860     (PID.TID 0000.0001) Seaice thermodynamics configuration > START <
861     (PID.TID 0000.0001) -----------------------------------------------
862     (PID.TID 0000.0001) SEAICE_rhoIce = /* density of sea ice (kg/m3) */
863     (PID.TID 0000.0001) 9.100000000000000E+02
864     (PID.TID 0000.0001) ;
865     (PID.TID 0000.0001) SEAICE_rhoSnow = /* density of snow (kg/m3) */
866     (PID.TID 0000.0001) 3.300000000000000E+02
867     (PID.TID 0000.0001) ;
868     (PID.TID 0000.0001) SEAICE_rhoAir = /* density of air (kg/m3) */
869     (PID.TID 0000.0001) 1.300000000000000E+00
870     (PID.TID 0000.0001) ;
871     (PID.TID 0000.0001) usePW79thermodynamics = /* default 0-layer TD */
872     (PID.TID 0000.0001) F
873     (PID.TID 0000.0001) ;
874     (PID.TID 0000.0001) pkg/seaice thermodynamics is OFF
875     (PID.TID 0000.0001)
876     (PID.TID 0000.0001) Seaice initialization and IO config., > START <
877     (PID.TID 0000.0001) -------------------------------------------------
878     (PID.TID 0000.0001) SEAICE_initialHEFF= /* initial sea-ice thickness */
879     (PID.TID 0000.0001) 0.000000000000000E+00
880     (PID.TID 0000.0001) ;
881     (PID.TID 0000.0001) AreaFile = /* Initial ice concentration File */
882     (PID.TID 0000.0001) ''
883     (PID.TID 0000.0001) ;
884     (PID.TID 0000.0001) HeffFile = /* Initial effective ice thickness File */
885     (PID.TID 0000.0001) ''
886     (PID.TID 0000.0001) ;
887     (PID.TID 0000.0001) HsnowFile = /* Initial snow thickness File */
888     (PID.TID 0000.0001) ''
889     (PID.TID 0000.0001) ;
890     (PID.TID 0000.0001) uIceFile = /* Initial U-ice velocity File */
891     (PID.TID 0000.0001) ''
892     (PID.TID 0000.0001) ;
893     (PID.TID 0000.0001) vIceFile = /* Initial V-ice velocity File */
894     (PID.TID 0000.0001) ''
895     (PID.TID 0000.0001) ;
896     (PID.TID 0000.0001) SEAICEwriteState = /* write sea ice state to file */
897     (PID.TID 0000.0001) T
898     (PID.TID 0000.0001) ;
899     (PID.TID 0000.0001) SEAICE_monFreq = /* monitor frequency */
900     (PID.TID 0000.0001) 2.160000000000000E+04
901     (PID.TID 0000.0001) ;
902     (PID.TID 0000.0001) SEAICE_dumpFreq = /* dump frequency */
903     (PID.TID 0000.0001) 8.640000000000000E+04
904     (PID.TID 0000.0001) ;
905     (PID.TID 0000.0001) SEAICE_taveFreq = /* time-averaging frequency */
906     (PID.TID 0000.0001) 0.000000000000000E+00
907     (PID.TID 0000.0001) ;
908     (PID.TID 0000.0001) SEAICE_mon_stdio = /* write monitor to std-outp */
909     (PID.TID 0000.0001) T
910     (PID.TID 0000.0001) ;
911     (PID.TID 0000.0001) SEAICE_dump_mdsio = /* write snap-shot using MDSIO */
912     (PID.TID 0000.0001) T
913     (PID.TID 0000.0001) ;
914     (PID.TID 0000.0001) SEAICE_tave_mdsio = /* write TimeAverage using MDSIO */
915     (PID.TID 0000.0001) T
916     (PID.TID 0000.0001) ;
917     (PID.TID 0000.0001)
918     (PID.TID 0000.0001) Seaice regularization numbers, > START <
919     (PID.TID 0000.0001) -----------------------------------------------
920     (PID.TID 0000.0001) SEAICE_EPS = /* reduce derivative singularities */
921     (PID.TID 0000.0001) 1.000000000000000E-10
922     (PID.TID 0000.0001) ;
923     (PID.TID 0000.0001) SEAICE_EPS_SQ = /* reduce derivative singularities */
924     (PID.TID 0000.0001) 1.000000000000000E-20
925     (PID.TID 0000.0001) ;
926     (PID.TID 0000.0001) SEAICE_area_reg = /* reduce derivative singularities */
927     (PID.TID 0000.0001) 1.000000000000000E-05
928     (PID.TID 0000.0001) ;
929     (PID.TID 0000.0001) SEAICE_hice_reg = /* reduce derivative singularities */
930     (PID.TID 0000.0001) 5.000000000000000E-02
931     (PID.TID 0000.0001) ;
932     (PID.TID 0000.0001) SEAICE_area_floor = /* reduce derivative singularities */
933     (PID.TID 0000.0001) 1.000000000000000E-05
934     (PID.TID 0000.0001) ;
935     (PID.TID 0000.0001)
936     (PID.TID 0000.0001) // =======================================================
937     (PID.TID 0000.0001) // Seaice configuration (SEAICE_PARM01) >>> END <<<
938     (PID.TID 0000.0001) // =======================================================
939     (PID.TID 0000.0001)
940     (PID.TID 0000.0001) ------------------------------------------------------------
941     (PID.TID 0000.0001) DIAGNOSTICS_SET_LEVELS: done
942     (PID.TID 0000.0001) Total Nb of available Diagnostics: ndiagt= 232
943     (PID.TID 0000.0001) write list of available Diagnostics to file: available_diagnostics.log
944     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 121 CH_TAIR
945     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 123 CH_QAIR
946     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 26 THETA
947     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 200 SI_Fract
948     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 201 SI_Thick
949     (PID.TID 0000.0001) - NOTE - SETDIAG: Counter-mate # 200 SI_Fract is already set
950     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 202 SI_SnowH
951     (PID.TID 0000.0001) - NOTE - SETDIAG: Counter-mate # 200 SI_Fract is already set
952     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 142 SIuice
953     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 143 SIvice
954     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 211 SIflxAtm
955     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 212 SIfrwAtm
956     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 210 SIsnwPrc
957     (PID.TID 0000.0001) - NOTE - SETDIAG: Counter-mate # 200 SI_Fract is already set
958     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 122 CH_QNET
959     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 124 CH_EmP
960     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 129 CH_SH
961     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 128 CH_LH
962     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 130 CH_Prec
963     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 131 CH_q100
964     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 132 CH_ssqt
965     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 200 SI_Fract
966     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 201 SI_Thick
967     (PID.TID 0000.0001) - NOTE - SETDIAG: Counter-mate # 200 SI_Fract is already set
968     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 26 THETA
969     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 203 SI_Tsrf
970     (PID.TID 0000.0001) - NOTE - SETDIAG: Counter-mate # 200 SI_Fract is already set
971     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 213 SIflx2oc
972     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 214 SIfrw2oc
973     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 215 SIsaltFx
974     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 85 oceQsw
975     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 211 SIflxAtm
976     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 212 SIfrwAtm
977     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 130 CH_Prec
978     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 142 SIuice
979     (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 143 SIvice
980     (PID.TID 0000.0001) space allocated for all diagnostics: 31 levels
981     (PID.TID 0000.0001) set mate pointer for diag # 142 SIuice , Parms: UU M1 , mate: 143
982     (PID.TID 0000.0001) set mate pointer for diag # 143 SIvice , Parms: VV M1 , mate: 142
983     (PID.TID 0000.0001) set mate pointer for diag # 142 SIuice , Parms: UU M1 , mate: 143
984     (PID.TID 0000.0001) set mate pointer for diag # 143 SIvice , Parms: VV M1 , mate: 142
985     (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: cheapAML
986     (PID.TID 0000.0001) Levels: 1.
987     (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: iceDiag
988     (PID.TID 0000.0001) Levels: 1.
989     (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: done
990     (PID.TID 0000.0001) ------------------------------------------------------------
991     (PID.TID 0000.0001) DIAGSTATS_SET_REGIONS: define no region
992     (PID.TID 0000.0001) ------------------------------------------------------------
993     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 200 SI_Fract
994     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 201 SI_Thick
995     (PID.TID 0000.0001) - NOTE - SETDIAG: Counter Diagnostic # 200 SI_Fract has already been set
996     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 202 SI_SnowH
997     (PID.TID 0000.0001) - NOTE - SETDIAG: Counter Diagnostic # 200 SI_Fract has already been set
998     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 26 THETA
999     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 203 SI_Tsrf
1000     (PID.TID 0000.0001) - NOTE - SETDIAG: Counter Diagnostic # 200 SI_Fract has already been set
1001     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 204 SI_Tice1
1002     (PID.TID 0000.0001) - NOTE - SETDIAG: Counter Diagnostic # 200 SI_Fract has already been set
1003     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 205 SI_Tice2
1004     (PID.TID 0000.0001) - NOTE - SETDIAG: Counter Diagnostic # 200 SI_Fract has already been set
1005     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 213 SIflx2oc
1006     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 214 SIfrw2oc
1007     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 215 SIsaltFx
1008     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 211 SIflxAtm
1009     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 212 SIfrwAtm
1010     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 142 SIuice
1011     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 143 SIvice
1012     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 121 CH_TAIR
1013     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 123 CH_QAIR
1014     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 122 CH_QNET
1015     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 124 CH_EmP
1016     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 129 CH_SH
1017     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 128 CH_LH
1018     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 130 CH_Prec
1019     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 131 CH_q100
1020     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 132 CH_ssqt
1021     (PID.TID 0000.0001) SETDIAG: Allocate 1 Levels for Stats-Diag # 210 SIsnwPrc
1022     (PID.TID 0000.0001) - NOTE - SETDIAG: Counter Diagnostic # 200 SI_Fract has already been set
1023     (PID.TID 0000.0001) space allocated for all stats-diags: 24 levels
1024     (PID.TID 0000.0001) DIAGSTATS_SET_POINTERS: done
1025     (PID.TID 0000.0001) ------------------------------------------------------------
1026     (PID.TID 0000.0001) DIAGSTATS_INI_IO: open file: iceStDiag.0000000000.txt , unit= 9
1027     (PID.TID 0000.0001) DIAGSTATS_INI_IO: open file: cheapStDiag.0000000000.txt , unit= 10
1028     (PID.TID 0000.0001) %MON fCori_max = 0.0000000000000E+00
1029     (PID.TID 0000.0001) %MON fCori_min = 0.0000000000000E+00
1030     (PID.TID 0000.0001) %MON fCori_mean = 0.0000000000000E+00
1031     (PID.TID 0000.0001) %MON fCori_sd = 0.0000000000000E+00
1032     (PID.TID 0000.0001) %MON fCoriG_max = 0.0000000000000E+00
1033     (PID.TID 0000.0001) %MON fCoriG_min = 0.0000000000000E+00
1034     (PID.TID 0000.0001) %MON fCoriG_mean = 0.0000000000000E+00
1035     (PID.TID 0000.0001) %MON fCoriG_sd = 0.0000000000000E+00
1036     (PID.TID 0000.0001) %MON fCoriCos_max = 0.0000000000000E+00
1037     (PID.TID 0000.0001) %MON fCoriCos_min = 0.0000000000000E+00
1038     (PID.TID 0000.0001) %MON fCoriCos_mean = 0.0000000000000E+00
1039     (PID.TID 0000.0001) %MON fCoriCos_sd = 0.0000000000000E+00
1040     (PID.TID 0000.0001) INI_CG2D: CG2D normalisation factor = 1.0000000000000001E-01
1041     (PID.TID 0000.0001)
1042     (PID.TID 0000.0001) // =======================================================
1043     (PID.TID 0000.0001) // Model configuration
1044     (PID.TID 0000.0001) // =======================================================
1045     (PID.TID 0000.0001) //
1046     (PID.TID 0000.0001) // "Physical" paramters ( PARM01 in namelist )
1047     (PID.TID 0000.0001) //
1048     (PID.TID 0000.0001) buoyancyRelation = /* Type of relation to get Buoyancy */
1049     (PID.TID 0000.0001) 'OCEANIC'
1050     (PID.TID 0000.0001) ;
1051     (PID.TID 0000.0001) fluidIsAir = /* fluid major constituent is Air */
1052     (PID.TID 0000.0001) F
1053     (PID.TID 0000.0001) ;
1054     (PID.TID 0000.0001) fluidIsWater = /* fluid major constituent is Water */
1055     (PID.TID 0000.0001) T
1056     (PID.TID 0000.0001) ;
1057     (PID.TID 0000.0001) usingPCoords = /* use p (or p*) vertical coordinate */
1058     (PID.TID 0000.0001) F
1059     (PID.TID 0000.0001) ;
1060     (PID.TID 0000.0001) usingZCoords = /* use z (or z*) vertical coordinate */
1061     (PID.TID 0000.0001) T
1062     (PID.TID 0000.0001) ;
1063     (PID.TID 0000.0001) tRef = /* Reference temperature profile ( oC or K ) */
1064     (PID.TID 0000.0001) -1.620000000000000E+00 /* K = 1 */
1065     (PID.TID 0000.0001) ;
1066     (PID.TID 0000.0001) sRef = /* Reference salinity profile ( psu ) */
1067     (PID.TID 0000.0001) 3.000000000000000E+01 /* K = 1 */
1068     (PID.TID 0000.0001) ;
1069     (PID.TID 0000.0001) viscAh = /* Lateral eddy viscosity ( m^2/s ) */
1070     (PID.TID 0000.0001) 3.000000000000000E+02
1071     (PID.TID 0000.0001) ;
1072     (PID.TID 0000.0001) viscAhMax = /* Maximum lateral eddy viscosity ( m^2/s ) */
1073     (PID.TID 0000.0001) 1.000000000000000E+21
1074     (PID.TID 0000.0001) ;
1075     (PID.TID 0000.0001) viscAhGrid = /* Grid dependent lateral eddy viscosity ( non-dim. ) */
1076     (PID.TID 0000.0001) 0.000000000000000E+00
1077     (PID.TID 0000.0001) ;
1078     (PID.TID 0000.0001) useFullLeith = /* Use Full Form of Leith Viscosity on/off flag*/
1079     (PID.TID 0000.0001) F
1080     (PID.TID 0000.0001) ;
1081     (PID.TID 0000.0001) useStrainTensionVisc= /* Use StrainTension Form of Viscous Operator flag*/
1082     (PID.TID 0000.0001) F
1083     (PID.TID 0000.0001) ;
1084     (PID.TID 0000.0001) useAreaViscLength = /* Use area for visc length instead of geom. mean*/
1085     (PID.TID 0000.0001) F
1086     (PID.TID 0000.0001) ;
1087     (PID.TID 0000.0001) viscC2leith = /* Leith harmonic visc. factor (on grad(vort),non-dim.) */
1088     (PID.TID 0000.0001) 0.000000000000000E+00
1089     (PID.TID 0000.0001) ;
1090     (PID.TID 0000.0001) viscC2leithD = /* Leith harmonic viscosity factor (on grad(div),non-dim.)*/
1091     (PID.TID 0000.0001) 0.000000000000000E+00
1092     (PID.TID 0000.0001) ;
1093     (PID.TID 0000.0001) viscC2smag = /* Smagorinsky harmonic viscosity factor (non-dim.) */
1094     (PID.TID 0000.0001) 0.000000000000000E+00
1095     (PID.TID 0000.0001) ;
1096     (PID.TID 0000.0001) viscA4 = /* Lateral biharmonic viscosity ( m^4/s ) */
1097     (PID.TID 0000.0001) 0.000000000000000E+00
1098     (PID.TID 0000.0001) ;
1099     (PID.TID 0000.0001) viscA4Max = /* Maximum biharmonic viscosity ( m^2/s ) */
1100     (PID.TID 0000.0001) 1.000000000000000E+21
1101     (PID.TID 0000.0001) ;
1102     (PID.TID 0000.0001) viscA4Grid = /* Grid dependent biharmonic viscosity ( non-dim. ) */
1103     (PID.TID 0000.0001) 0.000000000000000E+00
1104     (PID.TID 0000.0001) ;
1105     (PID.TID 0000.0001) viscC4leith = /* Leith biharm viscosity factor (on grad(vort), non-dim.)*/
1106     (PID.TID 0000.0001) 0.000000000000000E+00
1107     (PID.TID 0000.0001) ;
1108     (PID.TID 0000.0001) viscC4leithD = /* Leith biharm viscosity factor (on grad(div), non-dim.) */
1109     (PID.TID 0000.0001) 0.000000000000000E+00
1110     (PID.TID 0000.0001) ;
1111     (PID.TID 0000.0001) viscC4Smag = /* Smagorinsky biharm viscosity factor (non-dim) */
1112     (PID.TID 0000.0001) 0.000000000000000E+00
1113     (PID.TID 0000.0001) ;
1114     (PID.TID 0000.0001) no_slip_sides = /* Viscous BCs: No-slip sides */
1115     (PID.TID 0000.0001) F
1116     (PID.TID 0000.0001) ;
1117     (PID.TID 0000.0001) sideDragFactor = /* side-drag scaling factor (non-dim) */
1118     (PID.TID 0000.0001) 2.000000000000000E+00
1119     (PID.TID 0000.0001) ;
1120     (PID.TID 0000.0001) viscArNr = /* vertical profile of vertical viscosity ( m^2/s )*/
1121     (PID.TID 0000.0001) 3.000000000000000E-02 /* K = 1 */
1122     (PID.TID 0000.0001) ;
1123     (PID.TID 0000.0001) no_slip_bottom = /* Viscous BCs: No-slip bottom */
1124     (PID.TID 0000.0001) T
1125     (PID.TID 0000.0001) ;
1126     (PID.TID 0000.0001) bottomDragLinear = /* linear bottom-drag coefficient ( m/s ) */
1127     (PID.TID 0000.0001) 0.000000000000000E+00
1128     (PID.TID 0000.0001) ;
1129     (PID.TID 0000.0001) bottomDragQuadratic = /* quadratic bottom-drag coefficient (-) */
1130     (PID.TID 0000.0001) 5.000000000000000E-03
1131     (PID.TID 0000.0001) ;
1132     (PID.TID 0000.0001) diffKhT = /* Laplacian diffusion of heat laterally ( m^2/s ) */
1133     (PID.TID 0000.0001) 0.000000000000000E+00
1134     (PID.TID 0000.0001) ;
1135     (PID.TID 0000.0001) diffK4T = /* Biharmonic diffusion of heat laterally ( m^4/s ) */
1136     (PID.TID 0000.0001) 0.000000000000000E+00
1137     (PID.TID 0000.0001) ;
1138     (PID.TID 0000.0001) diffKhS = /* Laplacian diffusion of salt laterally ( m^2/s ) */
1139     (PID.TID 0000.0001) 0.000000000000000E+00
1140     (PID.TID 0000.0001) ;
1141     (PID.TID 0000.0001) diffK4S = /* Biharmonic diffusion of salt laterally ( m^4/s ) */
1142     (PID.TID 0000.0001) 0.000000000000000E+00
1143     (PID.TID 0000.0001) ;
1144     (PID.TID 0000.0001) diffKrNrT = /* vertical profile of vertical diffusion of Temp ( m^2/s )*/
1145     (PID.TID 0000.0001) 0.000000000000000E+00 /* K = 1 */
1146     (PID.TID 0000.0001) ;
1147     (PID.TID 0000.0001) diffKrNrS = /* vertical profile of vertical diffusion of Salt ( m^2/s )*/
1148     (PID.TID 0000.0001) 0.000000000000000E+00 /* K = 1 */
1149     (PID.TID 0000.0001) ;
1150     (PID.TID 0000.0001) diffKrBL79surf = /* Surface diffusion for Bryan and Lewis 79 ( m^2/s ) */
1151     (PID.TID 0000.0001) 0.000000000000000E+00
1152     (PID.TID 0000.0001) ;
1153     (PID.TID 0000.0001) diffKrBL79deep = /* Deep diffusion for Bryan and Lewis 1979 ( m^2/s ) */
1154     (PID.TID 0000.0001) 0.000000000000000E+00
1155     (PID.TID 0000.0001) ;
1156     (PID.TID 0000.0001) diffKrBL79scl = /* Depth scale for Bryan and Lewis 1979 ( m ) */
1157     (PID.TID 0000.0001) 2.000000000000000E+02
1158     (PID.TID 0000.0001) ;
1159     (PID.TID 0000.0001) diffKrBL79Ho = /* Turning depth for Bryan and Lewis 1979 ( m ) */
1160     (PID.TID 0000.0001) -2.000000000000000E+03
1161     (PID.TID 0000.0001) ;
1162     (PID.TID 0000.0001) ivdc_kappa = /* Implicit Vertical Diffusivity for Convection ( m^2/s) */
1163     (PID.TID 0000.0001) 0.000000000000000E+00
1164     (PID.TID 0000.0001) ;
1165     (PID.TID 0000.0001) hMixCriteria= /* Criteria for mixed-layer diagnostic */
1166     (PID.TID 0000.0001) -8.000000000000000E-01
1167     (PID.TID 0000.0001) ;
1168     (PID.TID 0000.0001) dRhoSmall = /* Parameter for mixed-layer diagnostic */
1169     (PID.TID 0000.0001) 1.000000000000000E-06
1170     (PID.TID 0000.0001) ;
1171     (PID.TID 0000.0001) hMixSmooth= /* Smoothing parameter for mixed-layer diagnostic */
1172     (PID.TID 0000.0001) 0.000000000000000E+00
1173     (PID.TID 0000.0001) ;
1174     (PID.TID 0000.0001) eosType = /* Type of Equation of State */
1175     (PID.TID 0000.0001) 'LINEAR'
1176     (PID.TID 0000.0001) ;
1177     (PID.TID 0000.0001) tAlpha = /* Linear EOS thermal expansion coefficient ( 1/oC ) */
1178     (PID.TID 0000.0001) 2.000000000000000E-04
1179     (PID.TID 0000.0001) ;
1180     (PID.TID 0000.0001) sBeta = /* Linear EOS haline contraction coefficient ( 1/psu ) */
1181     (PID.TID 0000.0001) 0.000000000000000E+00
1182     (PID.TID 0000.0001) ;
1183     (PID.TID 0000.0001) rhoNil = /* Reference density for Linear EOS ( kg/m^3 ) */
1184     (PID.TID 0000.0001) 1.030000000000000E+03
1185     (PID.TID 0000.0001) ;
1186     (PID.TID 0000.0001) celsius2K = /* 0 degree Celsius converted to Kelvin ( K ) */
1187     (PID.TID 0000.0001) 2.731500000000000E+02
1188     (PID.TID 0000.0001) ;
1189     (PID.TID 0000.0001) rhoConst = /* Reference density (Boussinesq) ( kg/m^3 ) */
1190     (PID.TID 0000.0001) 1.030000000000000E+03
1191     (PID.TID 0000.0001) ;
1192     (PID.TID 0000.0001) rhoFacC = /* normalized Reference density @ cell-Center (-) */
1193     (PID.TID 0000.0001) 1.000000000000000E+00 /* K = 1 */
1194     (PID.TID 0000.0001) ;
1195     (PID.TID 0000.0001) rhoFacF = /* normalized Reference density @ W-Interface (-) */
1196     (PID.TID 0000.0001) 2 @ 1.000000000000000E+00 /* K = 1: 2 */
1197     (PID.TID 0000.0001) ;
1198     (PID.TID 0000.0001) rhoConstFresh = /* Fresh-water reference density ( kg/m^3 ) */
1199     (PID.TID 0000.0001) 1.000000000000000E+03
1200     (PID.TID 0000.0001) ;
1201     (PID.TID 0000.0001) gravity = /* Gravitational acceleration ( m/s^2 ) */
1202     (PID.TID 0000.0001) 9.810000000000000E+00
1203     (PID.TID 0000.0001) ;
1204     (PID.TID 0000.0001) gBaro = /* Barotropic gravity ( m/s^2 ) */
1205     (PID.TID 0000.0001) 9.810000000000000E+00
1206     (PID.TID 0000.0001) ;
1207     (PID.TID 0000.0001) rotationPeriod = /* Rotation Period ( s ) */
1208     (PID.TID 0000.0001) 8.616400000000000E+04
1209     (PID.TID 0000.0001) ;
1210     (PID.TID 0000.0001) omega = /* Angular velocity ( rad/s ) */
1211     (PID.TID 0000.0001) 7.292123516990375E-05
1212     (PID.TID 0000.0001) ;
1213     (PID.TID 0000.0001) f0 = /* Reference coriolis parameter ( 1/s ) */
1214     (PID.TID 0000.0001) 0.000000000000000E+00
1215     (PID.TID 0000.0001) ;
1216     (PID.TID 0000.0001) beta = /* Beta ( 1/(m.s) ) */
1217     (PID.TID 0000.0001) 0.000000000000000E+00
1218     (PID.TID 0000.0001) ;
1219     (PID.TID 0000.0001) fPrime = /* Second coriolis parameter ( 1/s ) */
1220     (PID.TID 0000.0001) 0.000000000000000E+00
1221     (PID.TID 0000.0001) ;
1222     (PID.TID 0000.0001) rigidLid = /* Rigid lid on/off flag */
1223     (PID.TID 0000.0001) F
1224     (PID.TID 0000.0001) ;
1225     (PID.TID 0000.0001) implicitFreeSurface = /* Implicit free surface on/off flag */
1226     (PID.TID 0000.0001) T
1227     (PID.TID 0000.0001) ;
1228     (PID.TID 0000.0001) freeSurfFac = /* Implicit free surface factor */
1229     (PID.TID 0000.0001) 1.000000000000000E+00
1230     (PID.TID 0000.0001) ;
1231     (PID.TID 0000.0001) implicSurfPress = /* Surface Pressure implicit factor (0-1)*/
1232     (PID.TID 0000.0001) 1.000000000000000E+00
1233     (PID.TID 0000.0001) ;
1234     (PID.TID 0000.0001) implicDiv2Dflow = /* Barot. Flow Div. implicit factor (0-1)*/
1235     (PID.TID 0000.0001) 1.000000000000000E+00
1236     (PID.TID 0000.0001) ;
1237     (PID.TID 0000.0001) uniformLin_PhiSurf = /* use uniform Bo_surf on/off flag*/
1238     (PID.TID 0000.0001) T
1239     (PID.TID 0000.0001) ;
1240     (PID.TID 0000.0001) uniformFreeSurfLev = /* free-surface level-index is uniform */
1241     (PID.TID 0000.0001) T
1242     (PID.TID 0000.0001) ;
1243     (PID.TID 0000.0001) hFacMin = /* minimum partial cell factor (hFac) */
1244     (PID.TID 0000.0001) 1.000000000000000E+00
1245     (PID.TID 0000.0001) ;
1246     (PID.TID 0000.0001) hFacMinDr = /* minimum partial cell thickness ( m) */
1247     (PID.TID 0000.0001) 1.000000000000000E+00
1248     (PID.TID 0000.0001) ;
1249     (PID.TID 0000.0001) exactConserv = /* Exact Volume Conservation on/off flag*/
1250     (PID.TID 0000.0001) F
1251     (PID.TID 0000.0001) ;
1252     (PID.TID 0000.0001) linFSConserveTr = /* Tracer correction for Lin Free Surface on/off flag*/
1253     (PID.TID 0000.0001) F
1254     (PID.TID 0000.0001) ;
1255     (PID.TID 0000.0001) nonlinFreeSurf = /* Non-linear Free Surf. options (-1,0,1,2,3)*/
1256     (PID.TID 0000.0001) 0
1257     (PID.TID 0000.0001) -1,0= Off ; 1,2,3= On, 2=+rescale gU,gV, 3=+update cg2d solv.
1258     (PID.TID 0000.0001) ;
1259     (PID.TID 0000.0001) hFacInf = /* lower threshold for hFac (nonlinFreeSurf only)*/
1260     (PID.TID 0000.0001) 2.000000000000000E-01
1261     (PID.TID 0000.0001) ;
1262     (PID.TID 0000.0001) hFacSup = /* upper threshold for hFac (nonlinFreeSurf only)*/
1263     (PID.TID 0000.0001) 2.000000000000000E+00
1264     (PID.TID 0000.0001) ;
1265     (PID.TID 0000.0001) select_rStar = /* r* Vertical coord. options (=0 r coord.; >0 uses r*)*/
1266     (PID.TID 0000.0001) 0
1267     (PID.TID 0000.0001) ;
1268     (PID.TID 0000.0001) useRealFreshWaterFlux = /* Real Fresh Water Flux on/off flag*/
1269     (PID.TID 0000.0001) F
1270     (PID.TID 0000.0001) ;
1271     (PID.TID 0000.0001) temp_EvPrRn = /* Temp. of Evap/Prec/R (UNSET=use local T)(oC)*/
1272     (PID.TID 0000.0001) 1.234567000000000E+05
1273     (PID.TID 0000.0001) ;
1274     (PID.TID 0000.0001) salt_EvPrRn = /* Salin. of Evap/Prec/R (UNSET=use local S)(psu)*/
1275     (PID.TID 0000.0001) 0.000000000000000E+00
1276     (PID.TID 0000.0001) ;
1277     (PID.TID 0000.0001) selectAddFluid = /* option for mass source/sink of fluid (=0: off) */
1278     (PID.TID 0000.0001) 0
1279     (PID.TID 0000.0001) ;
1280     (PID.TID 0000.0001) temp_addMass = /* Temp. of addMass array (UNSET=use local T)(oC)*/
1281     (PID.TID 0000.0001) 1.234567000000000E+05
1282     (PID.TID 0000.0001) ;
1283     (PID.TID 0000.0001) salt_addMass = /* Salin. of addMass array (UNSET=use local S)(psu)*/
1284     (PID.TID 0000.0001) 0.000000000000000E+00
1285     (PID.TID 0000.0001) ;
1286     (PID.TID 0000.0001) convertFW2Salt = /* convert F.W. Flux to Salt Flux (-1=use local S)(psu)*/
1287     (PID.TID 0000.0001) -1.000000000000000E+00
1288     (PID.TID 0000.0001) ;
1289     (PID.TID 0000.0001) use3Dsolver = /* use 3-D pressure solver on/off flag */
1290     (PID.TID 0000.0001) F
1291     (PID.TID 0000.0001) ;
1292     (PID.TID 0000.0001) nonHydrostatic = /* Non-Hydrostatic on/off flag */
1293     (PID.TID 0000.0001) F
1294     (PID.TID 0000.0001) ;
1295     (PID.TID 0000.0001) nh_Am2 = /* Non-Hydrostatic terms scaling factor */
1296     (PID.TID 0000.0001) 1.000000000000000E+00
1297     (PID.TID 0000.0001) ;
1298     (PID.TID 0000.0001) implicitNHPress = /* Non-Hyd Pressure implicit factor (0-1)*/
1299     (PID.TID 0000.0001) 1.000000000000000E+00
1300     (PID.TID 0000.0001) ;
1301     (PID.TID 0000.0001) selectNHfreeSurf = /* Non-Hyd (free-)Surface option */
1302     (PID.TID 0000.0001) 0
1303     (PID.TID 0000.0001) ;
1304     (PID.TID 0000.0001) quasiHydrostatic = /* Quasi-Hydrostatic on/off flag */
1305     (PID.TID 0000.0001) F
1306     (PID.TID 0000.0001) ;
1307     (PID.TID 0000.0001) calc_wVelocity = /* vertical velocity calculation on/off flag */
1308     (PID.TID 0000.0001) F
1309     (PID.TID 0000.0001) ;
1310     (PID.TID 0000.0001) momStepping = /* Momentum equation on/off flag */
1311     (PID.TID 0000.0001) F
1312     (PID.TID 0000.0001) ;
1313     (PID.TID 0000.0001) vectorInvariantMomentum= /* Vector-Invariant Momentum on/off */
1314     (PID.TID 0000.0001) F
1315     (PID.TID 0000.0001) ;
1316     (PID.TID 0000.0001) momAdvection = /* Momentum advection on/off flag */
1317     (PID.TID 0000.0001) F
1318     (PID.TID 0000.0001) ;
1319     (PID.TID 0000.0001) momViscosity = /* Momentum viscosity on/off flag */
1320     (PID.TID 0000.0001) F
1321     (PID.TID 0000.0001) ;
1322     (PID.TID 0000.0001) momImplVertAdv= /* Momentum implicit vert. advection on/off*/
1323     (PID.TID 0000.0001) F
1324     (PID.TID 0000.0001) ;
1325     (PID.TID 0000.0001) implicitViscosity = /* Implicit viscosity on/off flag */
1326     (PID.TID 0000.0001) F
1327     (PID.TID 0000.0001) ;
1328     (PID.TID 0000.0001) metricTerms = /* metric-Terms on/off flag */
1329     (PID.TID 0000.0001) F
1330     (PID.TID 0000.0001) ;
1331     (PID.TID 0000.0001) useNHMTerms = /* Non-Hydrostatic Metric-Terms on/off */
1332     (PID.TID 0000.0001) F
1333     (PID.TID 0000.0001) ;
1334     (PID.TID 0000.0001) selectCoriMap = /* Coriolis Map options (0,1,2,3)*/
1335     (PID.TID 0000.0001) 1
1336     (PID.TID 0000.0001) 0= f-Plane ; 1= Beta-Plane ; 2= Spherical ; 3= read from file
1337     (PID.TID 0000.0001) ;
1338     (PID.TID 0000.0001) use3dCoriolis = /* 3-D Coriolis on/off flag */
1339     (PID.TID 0000.0001) F
1340     (PID.TID 0000.0001) ;
1341     (PID.TID 0000.0001) useCoriolis = /* Coriolis on/off flag */
1342     (PID.TID 0000.0001) F
1343     (PID.TID 0000.0001) ;
1344     (PID.TID 0000.0001) useCDscheme = /* CD scheme on/off flag */
1345     (PID.TID 0000.0001) F
1346     (PID.TID 0000.0001) ;
1347     (PID.TID 0000.0001) useEnergyConservingCoriolis= /* Flx-Form Coriolis scheme flag */
1348     (PID.TID 0000.0001) F
1349     (PID.TID 0000.0001) ;
1350     (PID.TID 0000.0001) useJamartWetPoints= /* Coriolis WetPoints method flag */
1351     (PID.TID 0000.0001) T
1352     (PID.TID 0000.0001) ;
1353     (PID.TID 0000.0001) useJamartMomAdv= /* V.I Non-linear terms Jamart flag */
1354     (PID.TID 0000.0001) F
1355     (PID.TID 0000.0001) ;
1356     (PID.TID 0000.0001) useAbsVorticity= /* V.I Works with f+zeta in Coriolis */
1357     (PID.TID 0000.0001) F
1358     (PID.TID 0000.0001) ;
1359     (PID.TID 0000.0001) selectVortScheme= /* V.I Scheme selector for Vorticity-Term */
1360     (PID.TID 0000.0001) 123456789
1361     (PID.TID 0000.0001) = 0 : enstrophy (Shallow-Water Eq.) conserving scheme by Sadourny, JAS 75
1362     (PID.TID 0000.0001) = 1 : same as 0 with modified hFac
1363     (PID.TID 0000.0001) = 2 : energy conserving scheme (used by Sadourny in JAS 75 paper)
1364     (PID.TID 0000.0001) = 3 : energy (general) and enstrophy (2D, nonDiv.) conserving scheme
1365     (PID.TID 0000.0001) from Sadourny (Burridge & Haseler, ECMWF Rep.4, 1977)
1366     (PID.TID 0000.0001) ;
1367     (PID.TID 0000.0001) upwindVorticity= /* V.I Upwind bias vorticity flag */
1368     (PID.TID 0000.0001) F
1369     (PID.TID 0000.0001) ;
1370     (PID.TID 0000.0001) highOrderVorticity= /* V.I High order vort. advect. flag */
1371     (PID.TID 0000.0001) F
1372     (PID.TID 0000.0001) ;
1373     (PID.TID 0000.0001) upwindShear= /* V.I Upwind vertical Shear advection flag */
1374     (PID.TID 0000.0001) F
1375     (PID.TID 0000.0001) ;
1376     (PID.TID 0000.0001) selectKEscheme= /* V.I Kinetic Energy scheme selector */
1377     (PID.TID 0000.0001) 0
1378     (PID.TID 0000.0001) ;
1379     (PID.TID 0000.0001) momForcing = /* Momentum forcing on/off flag */
1380     (PID.TID 0000.0001) F
1381     (PID.TID 0000.0001) ;
1382     (PID.TID 0000.0001) momPressureForcing = /* Momentum pressure term on/off flag */
1383     (PID.TID 0000.0001) F
1384     (PID.TID 0000.0001) ;
1385     (PID.TID 0000.0001) implicitIntGravWave= /* Implicit Internal Gravity Wave flag */
1386     (PID.TID 0000.0001) F
1387     (PID.TID 0000.0001) ;
1388     (PID.TID 0000.0001) staggerTimeStep = /* Stagger time stepping on/off flag */
1389     (PID.TID 0000.0001) T
1390     (PID.TID 0000.0001) ;
1391     (PID.TID 0000.0001) doResetHFactors = /* reset thickness factors @ each time-step */
1392     (PID.TID 0000.0001) F
1393     (PID.TID 0000.0001) ;
1394     (PID.TID 0000.0001) multiDimAdvection = /* enable/disable Multi-Dim Advection */
1395     (PID.TID 0000.0001) T
1396     (PID.TID 0000.0001) ;
1397     (PID.TID 0000.0001) useMultiDimAdvec = /* Multi-Dim Advection is/is-not used */
1398     (PID.TID 0000.0001) F
1399     (PID.TID 0000.0001) ;
1400     (PID.TID 0000.0001) implicitDiffusion = /* Implicit Diffusion on/off flag */
1401     (PID.TID 0000.0001) F
1402     (PID.TID 0000.0001) ;
1403     (PID.TID 0000.0001) tempStepping = /* Temperature equation on/off flag */
1404     (PID.TID 0000.0001) T
1405     (PID.TID 0000.0001) ;
1406     (PID.TID 0000.0001) tempAdvection = /* Temperature advection on/off flag */
1407     (PID.TID 0000.0001) F
1408     (PID.TID 0000.0001) ;
1409     (PID.TID 0000.0001) tempImplVertAdv = /* Temp. implicit vert. advection on/off */
1410     (PID.TID 0000.0001) F
1411     (PID.TID 0000.0001) ;
1412     (PID.TID 0000.0001) tempForcing = /* Temperature forcing on/off flag */
1413     (PID.TID 0000.0001) T
1414     (PID.TID 0000.0001) ;
1415     (PID.TID 0000.0001) doThetaClimRelax = /* apply SST relaxation on/off flag */
1416     (PID.TID 0000.0001) T
1417     (PID.TID 0000.0001) ;
1418     (PID.TID 0000.0001) tempIsActiveTr = /* Temp. is a dynamically Active Tracer */
1419     (PID.TID 0000.0001) F
1420     (PID.TID 0000.0001) ;
1421     (PID.TID 0000.0001) saltStepping = /* Salinity equation on/off flag */
1422     (PID.TID 0000.0001) F
1423     (PID.TID 0000.0001) ;
1424     (PID.TID 0000.0001) saltAdvection = /* Salinity advection on/off flag */
1425     (PID.TID 0000.0001) F
1426     (PID.TID 0000.0001) ;
1427     (PID.TID 0000.0001) saltImplVertAdv = /* Sali. implicit vert. advection on/off */
1428     (PID.TID 0000.0001) F
1429     (PID.TID 0000.0001) ;
1430     (PID.TID 0000.0001) saltForcing = /* Salinity forcing on/off flag */
1431     (PID.TID 0000.0001) F
1432     (PID.TID 0000.0001) ;
1433     (PID.TID 0000.0001) doSaltClimRelax = /* apply SSS relaxation on/off flag */
1434     (PID.TID 0000.0001) F
1435     (PID.TID 0000.0001) ;
1436     (PID.TID 0000.0001) saltIsActiveTr = /* Salt is a dynamically Active Tracer */
1437     (PID.TID 0000.0001) F
1438     (PID.TID 0000.0001) ;
1439     (PID.TID 0000.0001) readBinaryPrec = /* Precision used for reading binary files */
1440     (PID.TID 0000.0001) 64
1441     (PID.TID 0000.0001) ;
1442     (PID.TID 0000.0001) writeBinaryPrec = /* Precision used for writing binary files */
1443     (PID.TID 0000.0001) 64
1444     (PID.TID 0000.0001) ;
1445     (PID.TID 0000.0001) globalFiles = /* write "global" (=not per tile) files */
1446     (PID.TID 0000.0001) F
1447     (PID.TID 0000.0001) ;
1448     (PID.TID 0000.0001) useSingleCpuIO = /* only master MPI process does I/O */
1449     (PID.TID 0000.0001) T
1450     (PID.TID 0000.0001) ;
1451     (PID.TID 0000.0001) /* debLev[*] : level of debug & auxiliary message printing */
1452     (PID.TID 0000.0001) debLevZero = 0 ; /* level of disabled aux. msg printing */
1453     (PID.TID 0000.0001) debLevA = 1 ; /* level of minimum aux. msg printing */
1454     (PID.TID 0000.0001) debLevB = 2 ; /* level of low aux. print (report read-file opening)*/
1455     (PID.TID 0000.0001) debLevC = 3 ; /* level of moderate debug prt (most pkgs debug msg) */
1456     (PID.TID 0000.0001) debLevD = 4 ; /* level of enhanced debug prt (add DEBUG_STATS prt) */
1457     (PID.TID 0000.0001) debLevE = 5 ; /* level of extensive debug printing */
1458     (PID.TID 0000.0001) debugLevel = /* select debug printing level */
1459     (PID.TID 0000.0001) 2
1460     (PID.TID 0000.0001) ;
1461     (PID.TID 0000.0001) //
1462     (PID.TID 0000.0001) // Elliptic solver(s) paramters ( PARM02 in namelist )
1463     (PID.TID 0000.0001) //
1464     (PID.TID 0000.0001) cg2dMaxIters = /* Upper limit on 2d con. grad iterations */
1465     (PID.TID 0000.0001) 500
1466     (PID.TID 0000.0001) ;
1467     (PID.TID 0000.0001) cg2dChkResFreq = /* 2d con. grad convergence test frequency */
1468     (PID.TID 0000.0001) 1
1469     (PID.TID 0000.0001) ;
1470     (PID.TID 0000.0001) cg2dUseMinResSol= /* use cg2d last-iter(=0) / min-resid.(=1) solution */
1471     (PID.TID 0000.0001) 0
1472     (PID.TID 0000.0001) ;
1473     (PID.TID 0000.0001) cg2dTargetResidual = /* 2d con. grad target residual */
1474     (PID.TID 0000.0001) 1.000000000000000E-12
1475     (PID.TID 0000.0001) ;
1476     (PID.TID 0000.0001) cg2dTargetResWunit = /* CG2d target residual [W units] */
1477     (PID.TID 0000.0001) -1.000000000000000E+00
1478     (PID.TID 0000.0001) ;
1479     (PID.TID 0000.0001) cg2dPreCondFreq = /* Freq. for updating cg2d preconditioner */
1480     (PID.TID 0000.0001) 1
1481     (PID.TID 0000.0001) ;
1482     (PID.TID 0000.0001) useSRCGSolver = /* use single reduction CG solver(s) */
1483     (PID.TID 0000.0001) F
1484     (PID.TID 0000.0001) ;
1485     (PID.TID 0000.0001) printResidualFreq = /* Freq. for printing CG residual */
1486     (PID.TID 0000.0001) 0
1487     (PID.TID 0000.0001) ;
1488     (PID.TID 0000.0001) //
1489     (PID.TID 0000.0001) // Time stepping paramters ( PARM03 in namelist )
1490     (PID.TID 0000.0001) //
1491     (PID.TID 0000.0001) deltaTMom = /* Momentum equation timestep ( s ) */
1492     (PID.TID 0000.0001) 3.600000000000000E+03
1493     (PID.TID 0000.0001) ;
1494     (PID.TID 0000.0001) deltaTFreeSurf = /* FreeSurface equation timestep ( s ) */
1495     (PID.TID 0000.0001) 3.600000000000000E+03
1496     (PID.TID 0000.0001) ;
1497     (PID.TID 0000.0001) dTtracerLev = /* Tracer equation timestep ( s ) */
1498     (PID.TID 0000.0001) 3.600000000000000E+03 /* K = 1 */
1499     (PID.TID 0000.0001) ;
1500     (PID.TID 0000.0001) deltaTClock = /* Model clock timestep ( s ) */
1501     (PID.TID 0000.0001) 3.600000000000000E+03
1502     (PID.TID 0000.0001) ;
1503     (PID.TID 0000.0001) cAdjFreq = /* Convective adjustment interval ( s ) */
1504     (PID.TID 0000.0001) 0.000000000000000E+00
1505     (PID.TID 0000.0001) ;
1506     (PID.TID 0000.0001) momForcingOutAB = /* =1: take Momentum Forcing out of Adams-Bash. stepping */
1507     (PID.TID 0000.0001) 1
1508     (PID.TID 0000.0001) ;
1509     (PID.TID 0000.0001) tracForcingOutAB = /* =1: take T,S,pTr Forcing out of Adams-Bash. stepping */
1510     (PID.TID 0000.0001) 1
1511     (PID.TID 0000.0001) ;
1512     (PID.TID 0000.0001) momDissip_In_AB = /* put Dissipation Tendency in Adams-Bash. stepping */
1513     (PID.TID 0000.0001) T
1514     (PID.TID 0000.0001) ;
1515     (PID.TID 0000.0001) doAB_onGtGs = /* apply AB on Tendencies (rather than on T,S)*/
1516     (PID.TID 0000.0001) T
1517     (PID.TID 0000.0001) ;
1518     (PID.TID 0000.0001) abEps = /* Adams-Bashforth-2 stabilizing weight */
1519     (PID.TID 0000.0001) 1.000000000000000E-01
1520     (PID.TID 0000.0001) ;
1521     (PID.TID 0000.0001) pickupStrictlyMatch= /* stop if pickup do not strictly match */
1522     (PID.TID 0000.0001) T
1523     (PID.TID 0000.0001) ;
1524     (PID.TID 0000.0001) nIter0 = /* Run starting timestep number */
1525     (PID.TID 0000.0001) 0
1526     (PID.TID 0000.0001) ;
1527     (PID.TID 0000.0001) nTimeSteps = /* Number of timesteps */
1528     (PID.TID 0000.0001) 12
1529     (PID.TID 0000.0001) ;
1530     (PID.TID 0000.0001) nEndIter = /* Run ending timestep number */
1531     (PID.TID 0000.0001) 12
1532     (PID.TID 0000.0001) ;
1533     (PID.TID 0000.0001) baseTime = /* Model base time ( s ) */
1534     (PID.TID 0000.0001) 0.000000000000000E+00
1535     (PID.TID 0000.0001) ;
1536     (PID.TID 0000.0001) startTime = /* Run start time ( s ) */
1537     (PID.TID 0000.0001) 0.000000000000000E+00
1538     (PID.TID 0000.0001) ;
1539     (PID.TID 0000.0001) endTime = /* Integration ending time ( s ) */
1540     (PID.TID 0000.0001) 4.320000000000000E+04
1541     (PID.TID 0000.0001) ;
1542     (PID.TID 0000.0001) pChkPtFreq = /* Permanent restart/pickup file interval ( s ) */
1543     (PID.TID 0000.0001) 3.600000000000000E+06
1544     (PID.TID 0000.0001) ;
1545     (PID.TID 0000.0001) chkPtFreq = /* Rolling restart/pickup file interval ( s ) */
1546     (PID.TID 0000.0001) 0.000000000000000E+00
1547     (PID.TID 0000.0001) ;
1548     (PID.TID 0000.0001) pickup_write_mdsio = /* Model IO flag. */
1549     (PID.TID 0000.0001) T
1550     (PID.TID 0000.0001) ;
1551     (PID.TID 0000.0001) pickup_read_mdsio = /* Model IO flag. */
1552     (PID.TID 0000.0001) T
1553     (PID.TID 0000.0001) ;
1554     (PID.TID 0000.0001) pickup_write_immed = /* Model IO flag. */
1555     (PID.TID 0000.0001) F
1556     (PID.TID 0000.0001) ;
1557     (PID.TID 0000.0001) writePickupAtEnd = /* Model IO flag. */
1558     (PID.TID 0000.0001) T
1559     (PID.TID 0000.0001) ;
1560     (PID.TID 0000.0001) dumpFreq = /* Model state write out interval ( s ). */
1561     (PID.TID 0000.0001) 8.640000000000000E+04
1562     (PID.TID 0000.0001) ;
1563     (PID.TID 0000.0001) dumpInitAndLast= /* write out Initial & Last iter. model state */
1564     (PID.TID 0000.0001) T
1565     (PID.TID 0000.0001) ;
1566     (PID.TID 0000.0001) snapshot_mdsio = /* Model IO flag. */
1567     (PID.TID 0000.0001) T
1568     (PID.TID 0000.0001) ;
1569     (PID.TID 0000.0001) monitorFreq = /* Monitor output interval ( s ). */
1570     (PID.TID 0000.0001) 4.320000000000000E+04
1571     (PID.TID 0000.0001) ;
1572     (PID.TID 0000.0001) monitorSelect = /* select group of variables to monitor */
1573     (PID.TID 0000.0001) 3
1574     (PID.TID 0000.0001) ;
1575     (PID.TID 0000.0001) monitor_stdio = /* Model IO flag. */
1576     (PID.TID 0000.0001) T
1577     (PID.TID 0000.0001) ;
1578     (PID.TID 0000.0001) externForcingPeriod = /* forcing period (s) */
1579     (PID.TID 0000.0001) 0.000000000000000E+00
1580     (PID.TID 0000.0001) ;
1581     (PID.TID 0000.0001) externForcingCycle = /* period of the cyle (s). */
1582     (PID.TID 0000.0001) 0.000000000000000E+00
1583     (PID.TID 0000.0001) ;
1584     (PID.TID 0000.0001) tauThetaClimRelax = /* relaxation time scale (s) */
1585     (PID.TID 0000.0001) 8.640000000000000E+05
1586     (PID.TID 0000.0001) ;
1587     (PID.TID 0000.0001) tauSaltClimRelax = /* relaxation time scale (s) */
1588     (PID.TID 0000.0001) 0.000000000000000E+00
1589     (PID.TID 0000.0001) ;
1590     (PID.TID 0000.0001) latBandClimRelax = /* max. Lat. where relaxation */
1591     (PID.TID 0000.0001) 6.300000000000000E+05
1592     (PID.TID 0000.0001) ;
1593     (PID.TID 0000.0001) //
1594     (PID.TID 0000.0001) // Gridding paramters ( PARM04 in namelist )
1595     (PID.TID 0000.0001) //
1596     (PID.TID 0000.0001) usingCartesianGrid = /* Cartesian coordinates flag ( True/False ) */
1597     (PID.TID 0000.0001) T
1598     (PID.TID 0000.0001) ;
1599     (PID.TID 0000.0001) usingCylindricalGrid = /* Cylindrical coordinates flag ( True/False ) */
1600     (PID.TID 0000.0001) F
1601     (PID.TID 0000.0001) ;
1602     (PID.TID 0000.0001) usingSphericalPolarGrid = /* Spherical coordinates flag ( True/False ) */
1603     (PID.TID 0000.0001) F
1604     (PID.TID 0000.0001) ;
1605     (PID.TID 0000.0001) usingCurvilinearGrid = /* Curvilinear coordinates flag ( True/False ) */
1606     (PID.TID 0000.0001) F
1607     (PID.TID 0000.0001) ;
1608     (PID.TID 0000.0001) selectSigmaCoord = /* Hybrid-Sigma Vert. Coordinate option */
1609     (PID.TID 0000.0001) 0
1610     (PID.TID 0000.0001) ;
1611     (PID.TID 0000.0001) Ro_SeaLevel = /* r(1) ( units of r == m ) */
1612     (PID.TID 0000.0001) 0.000000000000000E+00
1613     (PID.TID 0000.0001) ;
1614     (PID.TID 0000.0001) rSigmaBnd = /* r/sigma transition ( units of r == m ) */
1615     (PID.TID 0000.0001) 1.234567000000000E+05
1616     (PID.TID 0000.0001) ;
1617     (PID.TID 0000.0001) rkSign = /* index orientation relative to vertical coordinate */
1618     (PID.TID 0000.0001) -1.000000000000000E+00
1619     (PID.TID 0000.0001) ;
1620     (PID.TID 0000.0001) gravitySign = /* gravity orientation relative to vertical coordinate */
1621     (PID.TID 0000.0001) -1.000000000000000E+00
1622     (PID.TID 0000.0001) ;
1623     (PID.TID 0000.0001) mass2rUnit = /* convert mass per unit area [kg/m2] to r-units [m] */
1624     (PID.TID 0000.0001) 9.708737864077669E-04
1625     (PID.TID 0000.0001) ;
1626     (PID.TID 0000.0001) rUnit2mass = /* convert r-units [m] to mass per unit area [kg/m2] */
1627     (PID.TID 0000.0001) 1.030000000000000E+03
1628     (PID.TID 0000.0001) ;
1629     (PID.TID 0000.0001) drC = /* C spacing ( units of r ) */
1630     (PID.TID 0000.0001) 5.000000000000000E+00 /* K = 1 */
1631     (PID.TID 0000.0001) ;
1632     (PID.TID 0000.0001) drF = /* W spacing ( units of r ) */
1633     (PID.TID 0000.0001) 1.000000000000000E+01 /* K = 1 */
1634     (PID.TID 0000.0001) ;
1635     (PID.TID 0000.0001) delX = /* U spacing ( m - cartesian, degrees - spherical ) */
1636     (PID.TID 0000.0001) 80 @ 5.000000000000000E+03 /* I = 1: 80 */
1637     (PID.TID 0000.0001) ;
1638     (PID.TID 0000.0001) delY = /* V spacing ( m - cartesian, degrees - spherical ) */
1639     (PID.TID 0000.0001) 42 @ 5.000000000000000E+03 /* J = 1: 42 */
1640     (PID.TID 0000.0001) ;
1641     (PID.TID 0000.0001) xgOrigin = /* X-axis origin of West edge (cartesian: m, lat-lon: deg) */
1642     (PID.TID 0000.0001) 0.000000000000000E+00
1643     (PID.TID 0000.0001) ;
1644     (PID.TID 0000.0001) ygOrigin = /* Y-axis origin of South edge (cartesian: m, lat-lon: deg) */
1645     (PID.TID 0000.0001) -1.100000000000000E+05
1646     (PID.TID 0000.0001) ;
1647     (PID.TID 0000.0001) rSphere = /* Radius ( ignored - cartesian, m - spherical ) */
1648     (PID.TID 0000.0001) 6.370000000000000E+06
1649     (PID.TID 0000.0001) ;
1650     (PID.TID 0000.0001) deepAtmosphere = /* Deep/Shallow Atmosphere flag (True/False) */
1651     (PID.TID 0000.0001) F
1652     (PID.TID 0000.0001) ;
1653     (PID.TID 0000.0001) xC = /* xC(:,1,:,1) : P-point X coord ( deg. or m if cartesian) */
1654     (PID.TID 0000.0001) 2.500000000000000E+03, /* I = 1 */
1655     (PID.TID 0000.0001) 7.500000000000000E+03, /* I = 2 */
1656     (PID.TID 0000.0001) 1.250000000000000E+04, /* I = 3 */
1657     (PID.TID 0000.0001) . . .
1658     (PID.TID 0000.0001) 8.750000000000000E+04, /* I = 18 */
1659     (PID.TID 0000.0001) 9.250000000000000E+04, /* I = 19 */
1660     (PID.TID 0000.0001) 9.750000000000000E+04, /* I = 20 */
1661     (PID.TID 0000.0001) 1.025000000000000E+05, /* I = 21 */
1662     (PID.TID 0000.0001) 1.075000000000000E+05, /* I = 22 */
1663     (PID.TID 0000.0001) 1.125000000000000E+05, /* I = 23 */
1664     (PID.TID 0000.0001) . . .
1665     (PID.TID 0000.0001) 1.875000000000000E+05, /* I = 38 */
1666     (PID.TID 0000.0001) 1.925000000000000E+05, /* I = 39 */
1667     (PID.TID 0000.0001) 1.975000000000000E+05, /* I = 40 */
1668     (PID.TID 0000.0001) 2.025000000000000E+05, /* I = 41 */
1669     (PID.TID 0000.0001) 2.075000000000000E+05, /* I = 42 */
1670     (PID.TID 0000.0001) 2.125000000000000E+05, /* I = 43 */
1671     (PID.TID 0000.0001) . . .
1672     (PID.TID 0000.0001) 2.875000000000000E+05, /* I = 58 */
1673     (PID.TID 0000.0001) 2.925000000000000E+05, /* I = 59 */
1674     (PID.TID 0000.0001) 2.975000000000000E+05, /* I = 60 */
1675     (PID.TID 0000.0001) 3.025000000000000E+05, /* I = 61 */
1676     (PID.TID 0000.0001) 3.075000000000000E+05, /* I = 62 */
1677     (PID.TID 0000.0001) 3.125000000000000E+05, /* I = 63 */
1678     (PID.TID 0000.0001) . . .
1679     (PID.TID 0000.0001) 3.875000000000000E+05, /* I = 78 */
1680     (PID.TID 0000.0001) 3.925000000000000E+05, /* I = 79 */
1681     (PID.TID 0000.0001) 3.975000000000000E+05 /* I = 80 */
1682     (PID.TID 0000.0001) ;
1683     (PID.TID 0000.0001) yC = /* yC(1,:,1,:) : P-point Y coord ( deg. or m if cartesian) */
1684     (PID.TID 0000.0001) -1.075000000000000E+05, /* J = 1 */
1685     (PID.TID 0000.0001) -1.025000000000000E+05, /* J = 2 */
1686     (PID.TID 0000.0001) -9.750000000000000E+04, /* J = 3 */
1687     (PID.TID 0000.0001) -9.250000000000000E+04, /* J = 4 */
1688     (PID.TID 0000.0001) -8.750000000000000E+04, /* J = 5 */
1689     (PID.TID 0000.0001) -8.250000000000000E+04, /* J = 6 */
1690     (PID.TID 0000.0001) -7.750000000000000E+04, /* J = 7 */
1691     (PID.TID 0000.0001) -7.250000000000000E+04, /* J = 8 */
1692     (PID.TID 0000.0001) -6.750000000000000E+04, /* J = 9 */
1693     (PID.TID 0000.0001) -6.250000000000000E+04, /* J = 10 */
1694     (PID.TID 0000.0001) -5.750000000000000E+04, /* J = 11 */
1695     (PID.TID 0000.0001) -5.250000000000000E+04, /* J = 12 */
1696     (PID.TID 0000.0001) -4.750000000000000E+04, /* J = 13 */
1697     (PID.TID 0000.0001) -4.250000000000000E+04, /* J = 14 */
1698     (PID.TID 0000.0001) -3.750000000000000E+04, /* J = 15 */
1699     (PID.TID 0000.0001) -3.250000000000000E+04, /* J = 16 */
1700     (PID.TID 0000.0001) -2.750000000000000E+04, /* J = 17 */
1701     (PID.TID 0000.0001) -2.250000000000000E+04, /* J = 18 */
1702     (PID.TID 0000.0001) -1.750000000000000E+04, /* J = 19 */
1703     (PID.TID 0000.0001) -1.250000000000000E+04, /* J = 20 */
1704     (PID.TID 0000.0001) -7.500000000000000E+03, /* J = 21 */
1705     (PID.TID 0000.0001) -2.500000000000000E+03, /* J = 22 */
1706     (PID.TID 0000.0001) 2.500000000000000E+03, /* J = 23 */
1707     (PID.TID 0000.0001) 7.500000000000000E+03, /* J = 24 */
1708     (PID.TID 0000.0001) 1.250000000000000E+04, /* J = 25 */
1709     (PID.TID 0000.0001) 1.750000000000000E+04, /* J = 26 */
1710     (PID.TID 0000.0001) 2.250000000000000E+04, /* J = 27 */
1711     (PID.TID 0000.0001) 2.750000000000000E+04, /* J = 28 */
1712     (PID.TID 0000.0001) 3.250000000000000E+04, /* J = 29 */
1713     (PID.TID 0000.0001) 3.750000000000000E+04, /* J = 30 */
1714     (PID.TID 0000.0001) 4.250000000000000E+04, /* J = 31 */
1715     (PID.TID 0000.0001) 4.750000000000000E+04, /* J = 32 */
1716     (PID.TID 0000.0001) 5.250000000000000E+04, /* J = 33 */
1717     (PID.TID 0000.0001) 5.750000000000000E+04, /* J = 34 */
1718     (PID.TID 0000.0001) 6.250000000000000E+04, /* J = 35 */
1719     (PID.TID 0000.0001) 6.750000000000000E+04, /* J = 36 */
1720     (PID.TID 0000.0001) 7.250000000000000E+04, /* J = 37 */
1721     (PID.TID 0000.0001) 7.750000000000000E+04, /* J = 38 */
1722     (PID.TID 0000.0001) 8.250000000000000E+04, /* J = 39 */
1723     (PID.TID 0000.0001) 8.750000000000000E+04, /* J = 40 */
1724     (PID.TID 0000.0001) 9.250000000000000E+04, /* J = 41 */
1725     (PID.TID 0000.0001) 9.750000000000000E+04 /* J = 42 */
1726     (PID.TID 0000.0001) ;
1727     (PID.TID 0000.0001) rcoord = /* P-point R coordinate ( units of r ) */
1728     (PID.TID 0000.0001) -5.000000000000000E+00 /* K = 1 */
1729     (PID.TID 0000.0001) ;
1730     (PID.TID 0000.0001) rF = /* W-Interf. R coordinate ( units of r ) */
1731     (PID.TID 0000.0001) 0.000000000000000E+00, /* K = 1 */
1732     (PID.TID 0000.0001) -1.000000000000000E+01 /* K = 2 */
1733     (PID.TID 0000.0001) ;
1734     (PID.TID 0000.0001) deepFacC = /* deep-model grid factor @ cell-Center (-) */
1735     (PID.TID 0000.0001) 1.000000000000000E+00 /* K = 1 */
1736     (PID.TID 0000.0001) ;
1737     (PID.TID 0000.0001) deepFacF = /* deep-model grid factor @ W-Interface (-) */
1738     (PID.TID 0000.0001) 2 @ 1.000000000000000E+00 /* K = 1: 2 */
1739     (PID.TID 0000.0001) ;
1740     (PID.TID 0000.0001) rVel2wUnit = /* convert units: rVel -> wSpeed (=1 if z-coord)*/
1741     (PID.TID 0000.0001) 2 @ 1.000000000000000E+00 /* K = 1: 2 */
1742     (PID.TID 0000.0001) ;
1743     (PID.TID 0000.0001) wUnit2rVel = /* convert units: wSpeed -> rVel (=1 if z-coord)*/
1744     (PID.TID 0000.0001) 2 @ 1.000000000000000E+00 /* K = 1: 2 */
1745     (PID.TID 0000.0001) ;
1746     (PID.TID 0000.0001) dBdrRef = /* Vertical grad. of reference buoyancy [(m/s/r)^2] */
1747     (PID.TID 0000.0001) 0.000000000000000E+00 /* K = 1 */
1748     (PID.TID 0000.0001) ;
1749     (PID.TID 0000.0001) rotateGrid = /* use rotated grid ( True/False ) */
1750     (PID.TID 0000.0001) F
1751     (PID.TID 0000.0001) ;
1752     (PID.TID 0000.0001) phiEuler = /* Euler angle, rotation about original z-coordinate [rad] */
1753     (PID.TID 0000.0001) 0.000000000000000E+00
1754     (PID.TID 0000.0001) ;
1755     (PID.TID 0000.0001) thetaEuler = /* Euler angle, rotation about new x-coordinate [rad] */
1756     (PID.TID 0000.0001) 0.000000000000000E+00
1757     (PID.TID 0000.0001) ;
1758     (PID.TID 0000.0001) psiEuler = /* Euler angle, rotation about new z-coordinate [rad] */
1759     (PID.TID 0000.0001) 0.000000000000000E+00
1760     (PID.TID 0000.0001) ;
1761     (PID.TID 0000.0001) dxF = /* dxF(:,1,:,1) ( units: m ) */
1762     (PID.TID 0000.0001) 80 @ 5.000000000000000E+03 /* I = 1: 80 */
1763     (PID.TID 0000.0001) ;
1764     (PID.TID 0000.0001) dxF = /* dxF(1,:,1,:) ( units: m ) */
1765     (PID.TID 0000.0001) 42 @ 5.000000000000000E+03 /* J = 1: 42 */
1766     (PID.TID 0000.0001) ;
1767     (PID.TID 0000.0001) dyF = /* dyF(:,1,:,1) ( units: m ) */
1768     (PID.TID 0000.0001) 80 @ 5.000000000000000E+03 /* I = 1: 80 */
1769     (PID.TID 0000.0001) ;
1770     (PID.TID 0000.0001) dyF = /* dyF(1,:,1,:) ( units: m ) */
1771     (PID.TID 0000.0001) 42 @ 5.000000000000000E+03 /* J = 1: 42 */
1772     (PID.TID 0000.0001) ;
1773     (PID.TID 0000.0001) dxG = /* dxG(:,1,:,1) ( units: m ) */
1774     (PID.TID 0000.0001) 80 @ 5.000000000000000E+03 /* I = 1: 80 */
1775     (PID.TID 0000.0001) ;
1776     (PID.TID 0000.0001) dxG = /* dxG(1,:,1,:) ( units: m ) */
1777     (PID.TID 0000.0001) 42 @ 5.000000000000000E+03 /* J = 1: 42 */
1778     (PID.TID 0000.0001) ;
1779     (PID.TID 0000.0001) dyG = /* dyG(:,1,:,1) ( units: m ) */
1780     (PID.TID 0000.0001) 80 @ 5.000000000000000E+03 /* I = 1: 80 */
1781     (PID.TID 0000.0001) ;
1782     (PID.TID 0000.0001) dyG = /* dyG(1,:,1,:) ( units: m ) */
1783     (PID.TID 0000.0001) 42 @ 5.000000000000000E+03 /* J = 1: 42 */
1784     (PID.TID 0000.0001) ;
1785     (PID.TID 0000.0001) dxC = /* dxC(:,1,:,1) ( units: m ) */
1786     (PID.TID 0000.0001) 80 @ 5.000000000000000E+03 /* I = 1: 80 */
1787     (PID.TID 0000.0001) ;
1788     (PID.TID 0000.0001) dxC = /* dxC(1,:,1,:) ( units: m ) */
1789     (PID.TID 0000.0001) 42 @ 5.000000000000000E+03 /* J = 1: 42 */
1790     (PID.TID 0000.0001) ;
1791     (PID.TID 0000.0001) dyC = /* dyC(:,1,:,1) ( units: m ) */
1792     (PID.TID 0000.0001) 80 @ 5.000000000000000E+03 /* I = 1: 80 */
1793     (PID.TID 0000.0001) ;
1794     (PID.TID 0000.0001) dyC = /* dyC(1,:,1,:) ( units: m ) */
1795     (PID.TID 0000.0001) 42 @ 5.000000000000000E+03 /* J = 1: 42 */
1796     (PID.TID 0000.0001) ;
1797     (PID.TID 0000.0001) dxV = /* dxV(:,1,:,1) ( units: m ) */
1798     (PID.TID 0000.0001) 80 @ 5.000000000000000E+03 /* I = 1: 80 */
1799     (PID.TID 0000.0001) ;
1800     (PID.TID 0000.0001) dxV = /* dxV(1,:,1,:) ( units: m ) */
1801     (PID.TID 0000.0001) 42 @ 5.000000000000000E+03 /* J = 1: 42 */
1802     (PID.TID 0000.0001) ;
1803     (PID.TID 0000.0001) dyU = /* dyU(:,1,:,1) ( units: m ) */
1804     (PID.TID 0000.0001) 80 @ 5.000000000000000E+03 /* I = 1: 80 */
1805     (PID.TID 0000.0001) ;
1806     (PID.TID 0000.0001) dyU = /* dyU(1,:,1,:) ( units: m ) */
1807     (PID.TID 0000.0001) 42 @ 5.000000000000000E+03 /* J = 1: 42 */
1808     (PID.TID 0000.0001) ;
1809     (PID.TID 0000.0001) rA = /* rA (:,1,:,1) ( units: m^2 ) */
1810     (PID.TID 0000.0001) 80 @ 2.500000000000000E+07 /* I = 1: 80 */
1811     (PID.TID 0000.0001) ;
1812     (PID.TID 0000.0001) rA = /* rA (1,:,1,:) ( units: m^2 ) */
1813     (PID.TID 0000.0001) 42 @ 2.500000000000000E+07 /* J = 1: 42 */
1814     (PID.TID 0000.0001) ;
1815     (PID.TID 0000.0001) rAw = /* rAw(:,1,:,1) ( units: m^2 ) */
1816     (PID.TID 0000.0001) 80 @ 2.500000000000000E+07 /* I = 1: 80 */
1817     (PID.TID 0000.0001) ;
1818     (PID.TID 0000.0001) rAw = /* rAw(1,:,1,:) ( units: m^2 ) */
1819     (PID.TID 0000.0001) 42 @ 2.500000000000000E+07 /* J = 1: 42 */
1820     (PID.TID 0000.0001) ;
1821     (PID.TID 0000.0001) rAs = /* rAs(:,1,:,1) ( units: m^2 ) */
1822     (PID.TID 0000.0001) 80 @ 2.500000000000000E+07 /* I = 1: 80 */
1823     (PID.TID 0000.0001) ;
1824     (PID.TID 0000.0001) rAs = /* rAs(1,:,1,:) ( units: m^2 ) */
1825     (PID.TID 0000.0001) 42 @ 2.500000000000000E+07 /* J = 1: 42 */
1826     (PID.TID 0000.0001) ;
1827     (PID.TID 0000.0001) globalArea = /* Integrated horizontal Area (m^2) */
1828     (PID.TID 0000.0001) 8.000000000000000E+10
1829     (PID.TID 0000.0001) ;
1830     (PID.TID 0000.0001) // =======================================================
1831     (PID.TID 0000.0001) // End of Model config. summary
1832     (PID.TID 0000.0001) // =======================================================
1833     (PID.TID 0000.0001)
1834     (PID.TID 0000.0001) == Packages configuration : Check & print summary ==
1835     (PID.TID 0000.0001)
1836     (PID.TID 0000.0001) SEAICE_CHECK: #define ALLOW_SEAICE
1837     (PID.TID 0000.0001) THSICE_CHECK: #define THSICE
1838     (PID.TID 0000.0001) GAD_CHECK: #define ALLOW_GENERIC_ADVDIFF
1839     (PID.TID 0000.0001) // =======================================================
1840     (PID.TID 0000.0001) // Check Model config. (CONFIG_CHECK):
1841     (PID.TID 0000.0001) // CONFIG_CHECK : Normal End
1842     (PID.TID 0000.0001) // =======================================================
1843     (PID.TID 0000.0001)
1844     (PID.TID 0000.0001) MDS_READ_FIELD: opening global file: const_00.bin
1845     (PID.TID 0000.0001) MDS_READ_FIELD: opening global file: const+20.bin
1846     (PID.TID 0000.0001) Start initial hydrostatic pressure computation
1847     (PID.TID 0000.0001) Pressure is predetermined for buoyancyRelation OCEANIC
1848     (PID.TID 0000.0001)
1849     (PID.TID 0000.0001) MDS_READ_FIELD: opening global file: tocn_1x.bin
1850     (PID.TID 0000.0001) write diagnostics summary to file ioUnit: 6
1851     Iter.Nb: 0 ; Time(s): 0.0000000000000E+00
1852     ------------------------------------------------------------------------
1853     2D/3D diagnostics: Number of lists: 2
1854     ------------------------------------------------------------------------
1855     listId= 1 ; file name: cheapAML
1856     nFlds, nActive, freq & phase , nLev
1857     18 | 18 | -43200.000000 -3600.000000 | 1
1858     levels: 1
1859     diag# | name | ipt | iMate | kLev| count | mate.C|
1860     121 |CH_TAIR | 1 | 0 | 1 | 0 |
1861     123 |CH_QAIR | 2 | 0 | 1 | 0 |
1862     26 |THETA | 3 | 0 | 1 | 0 |
1863     200 |SI_Fract| 4 | 0 | 1 | 0 |
1864     201 |SI_Thick| 5 | 4 | 1 | 0 | 0 |
1865     202 |SI_SnowH| 6 | 4 | 1 | 0 | 0 |
1866     142 |SIuice | 7 | 8 | 1 | 0 | 0 |
1867     143 |SIvice | 8 | 7 | 1 | 0 | 0 |
1868     211 |SIflxAtm| 9 | 0 | 1 | 0 |
1869     212 |SIfrwAtm| 10 | 0 | 1 | 0 |
1870     210 |SIsnwPrc| 11 | 4 | 1 | 0 | 0 |
1871     122 |CH_QNET | 12 | 0 | 1 | 0 |
1872     124 |CH_EmP | 13 | 0 | 1 | 0 |
1873     129 |CH_SH | 14 | 0 | 1 | 0 |
1874     128 |CH_LH | 15 | 0 | 1 | 0 |
1875     130 |CH_Prec | 16 | 0 | 1 | 0 |
1876     131 |CH_q100 | 17 | 0 | 1 | 0 |
1877     132 |CH_ssqt | 18 | 0 | 1 | 0 |
1878     ------------------------------------------------------------------------
1879     listId= 2 ; file name: iceDiag
1880     nFlds, nActive, freq & phase , nLev
1881     13 | 13 | 86400.000000 0.000000 | 1
1882     levels: 1
1883     diag# | name | ipt | iMate | kLev| count | mate.C|
1884     200 |SI_Fract| 19 | 0 | 1 | 0 |
1885     201 |SI_Thick| 20 | 19 | 1 | 0 | 0 |
1886     26 |THETA | 21 | 0 | 1 | 0 |
1887     203 |SI_Tsrf | 22 | 19 | 1 | 0 | 0 |
1888     213 |SIflx2oc| 23 | 0 | 1 | 0 |
1889     214 |SIfrw2oc| 24 | 0 | 1 | 0 |
1890     215 |SIsaltFx| 25 | 0 | 1 | 0 |
1891     85 |oceQsw | 26 | 0 | 1 | 0 |
1892     211 |SIflxAtm| 27 | 0 | 1 | 0 |
1893     212 |SIfrwAtm| 28 | 0 | 1 | 0 |
1894     130 |CH_Prec | 29 | 0 | 1 | 0 |
1895     142 |SIuice | 30 | 31 | 1 | 0 | 0 |
1896     143 |SIvice | 31 | 30 | 1 | 0 | 0 |
1897     ------------------------------------------------------------------------
1898     Global & Regional Statistics diagnostics: Number of lists: 2
1899     ------------------------------------------------------------------------
1900     listId= 1 ; file name: iceStDiag
1901     nFlds, nActive, freq & phase |
1902     14 | 14 | 43200.000000 3600.000000 |
1903     Regions: 0
1904     diag# | name | ipt | iMate | Volume | mate-Vol. |
1905     200 |SI_Fract| 1 | 0 | 0.00000E+00 |
1906     201 |SI_Thick| 2 | 1 | 0.00000E+00 | 0.00000E+00 |
1907     202 |SI_SnowH| 3 | 1 | 0.00000E+00 | 0.00000E+00 |
1908     26 |THETA | 4 | 0 | 0.00000E+00 |
1909     203 |SI_Tsrf | 5 | 1 | 0.00000E+00 | 0.00000E+00 |
1910     204 |SI_Tice1| 6 | 1 | 0.00000E+00 | 0.00000E+00 |
1911     205 |SI_Tice2| 7 | 1 | 0.00000E+00 | 0.00000E+00 |
1912     213 |SIflx2oc| 8 | 0 | 0.00000E+00 |
1913     214 |SIfrw2oc| 9 | 0 | 0.00000E+00 |
1914     215 |SIsaltFx| 10 | 0 | 0.00000E+00 |
1915     211 |SIflxAtm| 11 | 0 | 0.00000E+00 |
1916     212 |SIfrwAtm| 12 | 0 | 0.00000E+00 |
1917     142 |SIuice | 13 | 0 | 0.00000E+00 |
1918     143 |SIvice | 14 | 0 | 0.00000E+00 |
1919     ------------------------------------------------------------------------
1920     listId= 2 ; file name: cheapStDiag
1921     nFlds, nActive, freq & phase |
1922     10 | 10 | 43200.000000 3600.000000 |
1923     Regions: 0
1924     diag# | name | ipt | iMate | Volume | mate-Vol. |
1925     121 |CH_TAIR | 15 | 0 | 0.00000E+00 |
1926     123 |CH_QAIR | 16 | 0 | 0.00000E+00 |
1927     122 |CH_QNET | 17 | 0 | 0.00000E+00 |
1928     124 |CH_EmP | 18 | 0 | 0.00000E+00 |
1929     129 |CH_SH | 19 | 0 | 0.00000E+00 |
1930     128 |CH_LH | 20 | 0 | 0.00000E+00 |
1931     130 |CH_Prec | 21 | 0 | 0.00000E+00 |
1932     131 |CH_q100 | 22 | 0 | 0.00000E+00 |
1933     132 |CH_ssqt | 23 | 0 | 0.00000E+00 |
1934     210 |SIsnwPrc| 24 | 1 | 0.00000E+00 | 0.00000E+00 |
1935     ------------------------------------------------------------------------
1936     (PID.TID 0000.0001) CHEAPAML_INIT_VARIA: Tair initialized from ->tair_-10.bin<-
1937     (PID.TID 0000.0001) MDS_READ_FIELD: opening global file: tair_-10.bin
1938     (PID.TID 0000.0001) CHEAPAML_INIT_VARIA: Qair initialized from ->qa70_-10.bin<-
1939     (PID.TID 0000.0001) MDS_READ_FIELD: opening global file: qa70_-10.bin
1940     (PID.TID 0000.0001) CHEAPAML_INIT_VARIA: Tracer initialized using standard profile
1941     (PID.TID 0000.0001) CHEAPAML_INIT_VARIA: CheapMask initialized from ->const_00.bin<-
1942     (PID.TID 0000.0001) MDS_READ_FIELD: opening global file: const_00.bin
1943     (PID.TID 0000.0001) MDS_READ_FIELD: opening global file: ice0_area.bin
1944     (PID.TID 0000.0001) MDS_READ_FIELD: opening global file: const+20.bin
1945     (PID.TID 0000.0001) // =======================================================
1946     (PID.TID 0000.0001) // Model current state
1947     (PID.TID 0000.0001) // =======================================================
1948     (PID.TID 0000.0001)
1949     (PID.TID 0000.0001) // =======================================================
1950     (PID.TID 0000.0001) // Begin MONITOR dynamic field statistics
1951     (PID.TID 0000.0001) // =======================================================
1952     (PID.TID 0000.0001) %MON time_tsnumber = 0
1953     (PID.TID 0000.0001) %MON time_secondsf = 0.0000000000000E+00
1954     (PID.TID 0000.0001) %MON dynstat_eta_max = 0.0000000000000E+00
1955     (PID.TID 0000.0001) %MON dynstat_eta_min = 0.0000000000000E+00
1956     (PID.TID 0000.0001) %MON dynstat_eta_mean = 0.0000000000000E+00
1957     (PID.TID 0000.0001) %MON dynstat_eta_sd = 0.0000000000000E+00
1958     (PID.TID 0000.0001) %MON dynstat_eta_del2 = 0.0000000000000E+00
1959     (PID.TID 0000.0001) %MON dynstat_uvel_max = 0.0000000000000E+00
1960     (PID.TID 0000.0001) %MON dynstat_uvel_min = 0.0000000000000E+00
1961     (PID.TID 0000.0001) %MON dynstat_uvel_mean = 0.0000000000000E+00
1962     (PID.TID 0000.0001) %MON dynstat_uvel_sd = 0.0000000000000E+00
1963     (PID.TID 0000.0001) %MON dynstat_uvel_del2 = 0.0000000000000E+00
1964     (PID.TID 0000.0001) %MON dynstat_vvel_max = 2.0000000000000E-01
1965     (PID.TID 0000.0001) %MON dynstat_vvel_min = 2.0000000000000E-01
1966     (PID.TID 0000.0001) %MON dynstat_vvel_mean = 2.0000000000000E-01
1967     (PID.TID 0000.0001) %MON dynstat_vvel_sd = 0.0000000000000E+00
1968     (PID.TID 0000.0001) %MON dynstat_vvel_del2 = 0.0000000000000E+00
1969     (PID.TID 0000.0001) %MON dynstat_wvel_max = 4.0000000000000E-04
1970     (PID.TID 0000.0001) %MON dynstat_wvel_min = -4.0000000000000E-04
1971     (PID.TID 0000.0001) %MON dynstat_wvel_mean = 0.0000000000000E+00
1972     (PID.TID 0000.0001) %MON dynstat_wvel_sd = 8.9442719099992E-05
1973     (PID.TID 0000.0001) %MON dynstat_wvel_del2 = 1.5811388300842E-06
1974     (PID.TID 0000.0001) %MON dynstat_theta_max = -1.6200000000000E+00
1975     (PID.TID 0000.0001) %MON dynstat_theta_min = -1.6200000000000E+00
1976     (PID.TID 0000.0001) %MON dynstat_theta_mean = -1.6200000000000E+00
1977     (PID.TID 0000.0001) %MON dynstat_theta_sd = 0.0000000000000E+00
1978     (PID.TID 0000.0001) %MON dynstat_theta_del2 = 0.0000000000000E+00
1979     (PID.TID 0000.0001) %MON dynstat_salt_max = 3.0000000000000E+01
1980     (PID.TID 0000.0001) %MON dynstat_salt_min = 3.0000000000000E+01
1981     (PID.TID 0000.0001) %MON dynstat_salt_mean = 3.0000000000000E+01
1982     (PID.TID 0000.0001) %MON dynstat_salt_sd = 0.0000000000000E+00
1983     (PID.TID 0000.0001) %MON dynstat_salt_del2 = 0.0000000000000E+00
1984     (PID.TID 0000.0001) %MON forcing_qnet_max = 0.0000000000000E+00
1985     (PID.TID 0000.0001) %MON forcing_qnet_min = 0.0000000000000E+00
1986     (PID.TID 0000.0001) %MON forcing_qnet_mean = 0.0000000000000E+00
1987     (PID.TID 0000.0001) %MON forcing_qnet_sd = 0.0000000000000E+00
1988     (PID.TID 0000.0001) %MON forcing_qnet_del2 = 0.0000000000000E+00
1989     (PID.TID 0000.0001) %MON forcing_qsw_max = 0.0000000000000E+00
1990     (PID.TID 0000.0001) %MON forcing_qsw_min = 0.0000000000000E+00
1991     (PID.TID 0000.0001) %MON forcing_qsw_mean = 0.0000000000000E+00
1992     (PID.TID 0000.0001) %MON forcing_qsw_sd = 0.0000000000000E+00
1993     (PID.TID 0000.0001) %MON forcing_qsw_del2 = 0.0000000000000E+00
1994     (PID.TID 0000.0001) %MON forcing_empmr_max = 0.0000000000000E+00
1995     (PID.TID 0000.0001) %MON forcing_empmr_min = 0.0000000000000E+00
1996     (PID.TID 0000.0001) %MON forcing_empmr_mean = 0.0000000000000E+00
1997     (PID.TID 0000.0001) %MON forcing_empmr_sd = 0.0000000000000E+00
1998     (PID.TID 0000.0001) %MON forcing_empmr_del2 = 0.0000000000000E+00
1999     (PID.TID 0000.0001) %MON forcing_fu_max = 0.0000000000000E+00
2000     (PID.TID 0000.0001) %MON forcing_fu_min = 0.0000000000000E+00
2001     (PID.TID 0000.0001) %MON forcing_fu_mean = 0.0000000000000E+00
2002     (PID.TID 0000.0001) %MON forcing_fu_sd = 0.0000000000000E+00
2003     (PID.TID 0000.0001) %MON forcing_fu_del2 = 0.0000000000000E+00
2004     (PID.TID 0000.0001) %MON forcing_fv_max = 0.0000000000000E+00
2005     (PID.TID 0000.0001) %MON forcing_fv_min = 0.0000000000000E+00
2006     (PID.TID 0000.0001) %MON forcing_fv_mean = 0.0000000000000E+00
2007     (PID.TID 0000.0001) %MON forcing_fv_sd = 0.0000000000000E+00
2008     (PID.TID 0000.0001) %MON forcing_fv_del2 = 0.0000000000000E+00
2009     (PID.TID 0000.0001) %MON advcfl_uvel_max = 0.0000000000000E+00
2010     (PID.TID 0000.0001) %MON advcfl_vvel_max = 1.4400000000000E-01
2011     (PID.TID 0000.0001) %MON advcfl_wvel_max = 2.8800000000000E-01
2012     (PID.TID 0000.0001) %MON advcfl_W_hf_max = 0.0000000000000E+00
2013     (PID.TID 0000.0001) %MON pe_b_mean = 0.0000000000000E+00
2014     (PID.TID 0000.0001) %MON ke_max = 2.0000000000000E-02
2015     (PID.TID 0000.0001) %MON ke_mean = 1.9500000000000E-02
2016     (PID.TID 0000.0001) %MON ke_vol = 8.0000000000000E+11
2017     (PID.TID 0000.0001) %MON vort_r_min = 0.0000000000000E+00
2018     (PID.TID 0000.0001) %MON vort_r_max = 0.0000000000000E+00
2019     (PID.TID 0000.0001) %MON vort_a_mean = 0.0000000000000E+00
2020     (PID.TID 0000.0001) %MON vort_a_sd = 0.0000000000000E+00
2021     (PID.TID 0000.0001) %MON vort_p_mean = 0.0000000000000E+00
2022     (PID.TID 0000.0001) %MON vort_p_sd = 0.0000000000000E+00
2023     (PID.TID 0000.0001) %MON surfExpan_theta_mean = 0.0000000000000E+00
2024     (PID.TID 0000.0001) %MON surfExpan_salt_mean = 0.0000000000000E+00
2025     (PID.TID 0000.0001) // =======================================================
2026     (PID.TID 0000.0001) // End MONITOR dynamic field statistics
2027     (PID.TID 0000.0001) // =======================================================
2028     (PID.TID 0000.0001) // =======================================================
2029     (PID.TID 0000.0001) // Begin MONITOR SEAICE statistics
2030     (PID.TID 0000.0001) // =======================================================
2031     (PID.TID 0000.0001) %MON seaice_tsnumber = 0
2032     (PID.TID 0000.0001) %MON seaice_time_sec = 0.0000000000000E+00
2033     (PID.TID 0000.0001) %MON seaice_uice_max = 0.0000000000000E+00
2034     (PID.TID 0000.0001) %MON seaice_uice_min = 0.0000000000000E+00
2035     (PID.TID 0000.0001) %MON seaice_uice_mean = 0.0000000000000E+00
2036     (PID.TID 0000.0001) %MON seaice_uice_sd = 0.0000000000000E+00
2037     (PID.TID 0000.0001) %MON seaice_uice_del2 = 0.0000000000000E+00
2038     (PID.TID 0000.0001) %MON seaice_vice_max = 0.0000000000000E+00
2039     (PID.TID 0000.0001) %MON seaice_vice_min = 0.0000000000000E+00
2040     (PID.TID 0000.0001) %MON seaice_vice_mean = 0.0000000000000E+00
2041     (PID.TID 0000.0001) %MON seaice_vice_sd = 0.0000000000000E+00
2042     (PID.TID 0000.0001) %MON seaice_vice_del2 = 0.0000000000000E+00
2043     (PID.TID 0000.0001) // =======================================================
2044     (PID.TID 0000.0001) // End MONITOR SEAICE statistics
2045     (PID.TID 0000.0001) // =======================================================
2046     (PID.TID 0000.0001) // =======================================================
2047     (PID.TID 0000.0001) // Begin MONITOR Therm.SeaIce statistics
2048     (PID.TID 0000.0001) // =======================================================
2049     (PID.TID 0000.0001) %MON thSI_time_sec = 0.0000000000000E+00
2050     (PID.TID 0000.0001) %MON thSI_Ice_Area_G = 4.0000000000000E+10
2051     (PID.TID 0000.0001) %MON thSI_Ice_Area_S = 2.1000000000000E+10
2052     (PID.TID 0000.0001) %MON thSI_Ice_Area_N = 1.9000000000000E+10
2053     (PID.TID 0000.0001) %MON thSI_IceH_ave_G = 2.0000000000000E-01
2054     (PID.TID 0000.0001) %MON thSI_IceH_ave_S = 2.0000000000000E-01
2055     (PID.TID 0000.0001) %MON thSI_IceH_ave_N = 2.0000000000000E-01
2056     (PID.TID 0000.0001) %MON thSI_IceH_max_S = 2.0000000000000E-01
2057     (PID.TID 0000.0001) %MON thSI_IceH_max_N = 2.0000000000000E-01
2058     (PID.TID 0000.0001) %MON thSI_SnwH_ave_G = 0.0000000000000E+00
2059     (PID.TID 0000.0001) %MON thSI_SnwH_ave_S = 0.0000000000000E+00
2060     (PID.TID 0000.0001) %MON thSI_SnwH_ave_N = 0.0000000000000E+00
2061     (PID.TID 0000.0001) %MON thSI_SnwH_max_S = 0.0000000000000E+00
2062     (PID.TID 0000.0001) %MON thSI_SnwH_max_N = 0.0000000000000E+00
2063     (PID.TID 0000.0001) %MON thSI_Tsrf_ave_G = 0.0000000000000E+00
2064     (PID.TID 0000.0001) %MON thSI_Tsrf_ave_S = 0.0000000000000E+00
2065     (PID.TID 0000.0001) %MON thSI_Tsrf_ave_N = 0.0000000000000E+00
2066     (PID.TID 0000.0001) %MON thSI_Tsrf_min_S = 0.0000000000000E+00
2067     (PID.TID 0000.0001) %MON thSI_Tsrf_min_N = 0.0000000000000E+00
2068     (PID.TID 0000.0001) %MON thSI_Tsrf_max_S = 0.0000000000000E+00
2069     (PID.TID 0000.0001) %MON thSI_Tsrf_max_N = 0.0000000000000E+00
2070     (PID.TID 0000.0001) %MON thSI_Tic1_ave_G = 0.0000000000000E+00
2071     (PID.TID 0000.0001) %MON thSI_Tic1_ave_S = 0.0000000000000E+00
2072     (PID.TID 0000.0001) %MON thSI_Tic1_ave_N = 0.0000000000000E+00
2073     (PID.TID 0000.0001) %MON thSI_Tic1_min_S = 0.0000000000000E+00
2074     (PID.TID 0000.0001) %MON thSI_Tic1_min_N = 0.0000000000000E+00
2075     (PID.TID 0000.0001) %MON thSI_Tic1_max_S = 0.0000000000000E+00
2076     (PID.TID 0000.0001) %MON thSI_Tic1_max_N = 0.0000000000000E+00
2077     (PID.TID 0000.0001) %MON thSI_Tic2_ave_G = 0.0000000000000E+00
2078     (PID.TID 0000.0001) %MON thSI_Tic2_ave_S = 0.0000000000000E+00
2079     (PID.TID 0000.0001) %MON thSI_Tic2_ave_N = 0.0000000000000E+00
2080     (PID.TID 0000.0001) %MON thSI_Tic2_min_S = 0.0000000000000E+00
2081     (PID.TID 0000.0001) %MON thSI_Tic2_min_N = 0.0000000000000E+00
2082     (PID.TID 0000.0001) %MON thSI_Tic2_max_S = 0.0000000000000E+00
2083     (PID.TID 0000.0001) %MON thSI_Tic2_max_N = 0.0000000000000E+00
2084     (PID.TID 0000.0001) %MON thSI_TotEnerg_G = -2.3927490296471E+18
2085     (PID.TID 0000.0001) // =======================================================
2086     (PID.TID 0000.0001) // End MONITOR Therm.SeaIce statistics
2087     (PID.TID 0000.0001) // =======================================================
2088     (PID.TID 0000.0001) MDS_READ_FIELD: opening global file: dsw_70y.bin
2089     (PID.TID 0000.0001) MDS_READ_FIELD: opening global file: tair_-10.bin
2090     (PID.TID 0000.0001) MDS_READ_FIELD: opening global file: qa70_-10.bin
2091     (PID.TID 0000.0001) MDS_READ_FIELD: opening global file: windx_10ms.bin
2092     (PID.TID 0000.0001) MDS_READ_FIELD: opening global file: windy_conv.bin
2093     (PID.TID 0000.0001) MDS_READ_FIELD: opening global file: dlw_270y.bin
2094     SEAICE_LSR: Residual Initial ipass,Uice,Vice= 1 4.76868078E-01 1.99570573E-01
2095     SEAICE_LSR: Residual FrDrift U_fd,V_fd= 1.16825932E+03 1.81721147E+03
2096     SEAICE_LSR (ipass= 1) iters,dU,Resid= 1500 2.43972142E-05 4.14169510E-01
2097     SEAICE_LSR (ipass= 1) iters,dV,Resid= 912 9.78775871E-13 1.27753864E-08
2098     SEAICE_LSR: Residual Initial ipass,Uice,Vice= 2 3.76808043E-01 1.56861740E-01
2099     SEAICE_LSR: Residual FrDrift U_fd,V_fd= 4.66649262E+02 5.18213203E+02
2100     SEAICE_LSR (ipass= 2) iters,dU,Resid= 1500 4.03693209E-05 4.08130384E-01
2101     SEAICE_LSR (ipass= 2) iters,dV,Resid= 1500 4.41136949E-12 4.37869571E-08
2102     Compute Stats, Diag. # 200 SI_Fract vol( 0 ): 8.000E+10 Parms: SM P M1
2103     Compute Stats, Diag. # 201 SI_Thick vol( 0 ): 4.000E+10 Parms: SM PC M1
2104     use Counter Mate # 200 SI_Fract vol( 0 ): 8.000E+10 integral 4.000E+10
2105     Compute Stats, Diag. # 202 SI_SnowH vol( 0 ): 4.000E+10 Parms: SM PC M1
2106     use Counter Mate # 200 SI_Fract vol( 0 ): 8.000E+10 integral 4.000E+10
2107     Compute Stats, Diag. # 26 THETA vol( 0 ): 8.000E+11 Parms: SMR MR
2108     Compute Stats, Diag. # 203 SI_Tsrf vol( 0 ): 4.000E+10 Parms: SM C M1
2109     use Counter Mate # 200 SI_Fract vol( 0 ): 8.000E+10 integral 4.000E+10
2110     Compute Stats, Diag. # 204 SI_Tice1 vol( 0 ): 4.000E+10 Parms: SM C M1
2111     use Counter Mate # 200 SI_Fract vol( 0 ): 8.000E+10 integral 4.000E+10
2112     Compute Stats, Diag. # 205 SI_Tice2 vol( 0 ): 4.000E+10 Parms: SM C M1
2113     use Counter Mate # 200 SI_Fract vol( 0 ): 8.000E+10 integral 4.000E+10
2114     Compute Stats, Diag. # 213 SIflx2oc vol( 0 ): 8.000E+10 Parms: SM M1
2115     Compute Stats, Diag. # 214 SIfrw2oc vol( 0 ): 8.000E+10 Parms: SM M1
2116     Compute Stats, Diag. # 215 SIsaltFx vol( 0 ): 8.000E+10 Parms: SM M1
2117     Compute Stats, Diag. # 211 SIflxAtm vol( 0 ): 8.000E+10 Parms: SM M1
2118     Compute Stats, Diag. # 212 SIfrwAtm vol( 0 ): 8.000E+10 Parms: SM M1
2119     Compute Stats, Diag. # 142 SIuice vol( 0 ): 8.000E+10 Parms: UU M1
2120     Compute Stats, Diag. # 143 SIvice vol( 0 ): 7.800E+10 Parms: VV M1
2121     Compute Stats, Diag. # 121 CH_TAIR vol( 0 ): 8.000E+10 Parms: SM L1
2122     Compute Stats, Diag. # 123 CH_QAIR vol( 0 ): 8.000E+10 Parms: SM L1
2123     Compute Stats, Diag. # 122 CH_QNET vol( 0 ): 8.000E+10 Parms: SM L1
2124     Compute Stats, Diag. # 124 CH_EmP vol( 0 ): 8.000E+10 Parms: SM L1
2125     Compute Stats, Diag. # 129 CH_SH vol( 0 ): 8.000E+10 Parms: SM L1
2126     Compute Stats, Diag. # 128 CH_LH vol( 0 ): 8.000E+10 Parms: SM L1
2127     Compute Stats, Diag. # 130 CH_Prec vol( 0 ): 8.000E+10 Parms: SM L1
2128     Compute Stats, Diag. # 131 CH_q100 vol( 0 ): 8.000E+10 Parms: SM L1
2129     Compute Stats, Diag. # 132 CH_ssqt vol( 0 ): 8.000E+10 Parms: SM L1
2130     Compute Stats, Diag. # 210 SIsnwPrc vol( 0 ): 4.000E+10 Parms: SM C M1
2131     use Counter Mate # 200 SI_Fract vol( 0 ): 8.000E+10 integral 4.000E+10
2132     (PID.TID 0000.0001) // =======================================================
2133     (PID.TID 0000.0001) // Begin MONITOR SEAICE statistics
2134     (PID.TID 0000.0001) // =======================================================
2135     (PID.TID 0000.0001) %MON seaice_tsnumber = 6
2136     (PID.TID 0000.0001) %MON seaice_time_sec = 2.1600000000000E+04
2137     (PID.TID 0000.0001) %MON seaice_uice_max = 4.2355844095083E-01
2138     (PID.TID 0000.0001) %MON seaice_uice_min = 1.4908218138121E-01
2139     (PID.TID 0000.0001) %MON seaice_uice_mean = 2.9539900334009E-01
2140     (PID.TID 0000.0001) %MON seaice_uice_sd = 8.3570508150598E-03
2141     (PID.TID 0000.0001) %MON seaice_uice_del2 = 1.7338390539234E-04
2142     (PID.TID 0000.0001) %MON seaice_vice_max = 1.9690229827663E-01
2143     (PID.TID 0000.0001) %MON seaice_vice_min = 3.6389363223299E-02
2144     (PID.TID 0000.0001) %MON seaice_vice_mean = 1.8354602402383E-01
2145     (PID.TID 0000.0001) %MON seaice_vice_sd = 1.5266209556291E-02
2146     (PID.TID 0000.0001) %MON seaice_vice_del2 = 1.1671327290893E-04
2147     (PID.TID 0000.0001) // =======================================================
2148     (PID.TID 0000.0001) // End MONITOR SEAICE statistics
2149     (PID.TID 0000.0001) // =======================================================
2150     SEAICE_LSR: Residual Initial ipass,Uice,Vice= 1 2.70775330E-02 2.31445337E-02
2151     SEAICE_LSR: Residual FrDrift U_fd,V_fd= 1.65203302E-01 1.78987833E-01
2152     SEAICE_LSR (ipass= 1) iters,dU,Resid= 1500 5.53871781E-08 2.93276627E-05
2153     SEAICE_LSR (ipass= 1) iters,dV,Resid= 1500 4.87727185E-08 3.52239230E-05
2154     SEAICE_LSR: Residual Initial ipass,Uice,Vice= 2 1.45048009E-02 1.55812346E-02
2155     SEAICE_LSR: Residual FrDrift U_fd,V_fd= 1.78353047E-01 1.80217398E-01
2156     SEAICE_LSR (ipass= 2) iters,dU,Resid= 1500 6.20181073E-09 3.34924186E-06
2157     SEAICE_LSR (ipass= 2) iters,dV,Resid= 1500 3.21779697E-08 2.34321495E-05
2158     (PID.TID 0000.0001) // =======================================================
2159     (PID.TID 0000.0001) // Begin MONITOR dynamic field statistics
2160     (PID.TID 0000.0001) // =======================================================
2161     (PID.TID 0000.0001) %MON time_tsnumber = 12
2162     (PID.TID 0000.0001) %MON time_secondsf = 4.3200000000000E+04
2163     (PID.TID 0000.0001) %MON dynstat_eta_max = 0.0000000000000E+00
2164     (PID.TID 0000.0001) %MON dynstat_eta_min = 0.0000000000000E+00
2165     (PID.TID 0000.0001) %MON dynstat_eta_mean = 0.0000000000000E+00
2166     (PID.TID 0000.0001) %MON dynstat_eta_sd = 0.0000000000000E+00
2167     (PID.TID 0000.0001) %MON dynstat_eta_del2 = 0.0000000000000E+00
2168     (PID.TID 0000.0001) %MON dynstat_uvel_max = 0.0000000000000E+00
2169     (PID.TID 0000.0001) %MON dynstat_uvel_min = 0.0000000000000E+00
2170     (PID.TID 0000.0001) %MON dynstat_uvel_mean = 0.0000000000000E+00
2171     (PID.TID 0000.0001) %MON dynstat_uvel_sd = 0.0000000000000E+00
2172     (PID.TID 0000.0001) %MON dynstat_uvel_del2 = 0.0000000000000E+00
2173     (PID.TID 0000.0001) %MON dynstat_vvel_max = 2.0000000000000E-01
2174     (PID.TID 0000.0001) %MON dynstat_vvel_min = 2.0000000000000E-01
2175     (PID.TID 0000.0001) %MON dynstat_vvel_mean = 2.0000000000000E-01
2176     (PID.TID 0000.0001) %MON dynstat_vvel_sd = 0.0000000000000E+00
2177     (PID.TID 0000.0001) %MON dynstat_vvel_del2 = 0.0000000000000E+00
2178     (PID.TID 0000.0001) %MON dynstat_wvel_max = 4.0000000000000E-04
2179     (PID.TID 0000.0001) %MON dynstat_wvel_min = -4.0000000000000E-04
2180     (PID.TID 0000.0001) %MON dynstat_wvel_mean = 0.0000000000000E+00
2181     (PID.TID 0000.0001) %MON dynstat_wvel_sd = 8.9442719099992E-05
2182     (PID.TID 0000.0001) %MON dynstat_wvel_del2 = 1.5811388300842E-06
2183     (PID.TID 0000.0001) %MON dynstat_theta_max = -1.5386650596416E+00
2184     (PID.TID 0000.0001) %MON dynstat_theta_min = -1.6315490429861E+00
2185     (PID.TID 0000.0001) %MON dynstat_theta_mean = -1.6010421085399E+00
2186     (PID.TID 0000.0001) %MON dynstat_theta_sd = 3.0538608156686E-02
2187     (PID.TID 0000.0001) %MON dynstat_theta_del2 = 7.3191594320079E-05
2188     (PID.TID 0000.0001) %MON dynstat_salt_max = 3.0000000000000E+01
2189     (PID.TID 0000.0001) %MON dynstat_salt_min = 3.0000000000000E+01
2190     (PID.TID 0000.0001) %MON dynstat_salt_mean = 3.0000000000000E+01
2191     (PID.TID 0000.0001) %MON dynstat_salt_sd = 0.0000000000000E+00
2192     (PID.TID 0000.0001) %MON dynstat_salt_del2 = 0.0000000000000E+00
2193     (PID.TID 0000.0001) %MON forcing_qnet_max = 1.0138309841621E+02
2194     (PID.TID 0000.0001) %MON forcing_qnet_min = -5.7765984168076E+00
2195     (PID.TID 0000.0001) %MON forcing_qnet_mean = 2.8214195137508E+01
2196     (PID.TID 0000.0001) %MON forcing_qnet_sd = 2.6593838049942E+01
2197     (PID.TID 0000.0001) %MON forcing_qnet_del2 = 4.9381905253918E-01
2198     (PID.TID 0000.0001) %MON forcing_qsw_max = -4.2649665866292E+00
2199     (PID.TID 0000.0001) %MON forcing_qsw_min = -9.6984481503143E+01
2200     (PID.TID 0000.0001) %MON forcing_qsw_mean = -3.6263698430365E+01
2201     (PID.TID 0000.0001) %MON forcing_qsw_sd = 3.2077963897458E+01
2202     (PID.TID 0000.0001) %MON forcing_qsw_del2 = 2.8511574873349E-01
2203     (PID.TID 0000.0001) %MON forcing_empmr_max = 4.2325518588225E-04
2204     (PID.TID 0000.0001) %MON forcing_empmr_min = -3.5142887687415E-05
2205     (PID.TID 0000.0001) %MON forcing_empmr_mean = 1.3940237031865E-04
2206     (PID.TID 0000.0001) %MON forcing_empmr_sd = 1.1023739486113E-04
2207     (PID.TID 0000.0001) %MON forcing_empmr_del2 = 9.5208911070733E-07
2208     (PID.TID 0000.0001) %MON forcing_fu_max = 7.8122044158422E-01
2209     (PID.TID 0000.0001) %MON forcing_fu_min = 1.7069674294741E-01
2210     (PID.TID 0000.0001) %MON forcing_fu_mean = 3.2885540255796E-01
2211     (PID.TID 0000.0001) %MON forcing_fu_sd = 1.2540173273673E-01
2212     (PID.TID 0000.0001) %MON forcing_fu_del2 = 4.2160794072985E-04
2213     (PID.TID 0000.0001) %MON forcing_fv_max = -2.0578797851117E-03
2214     (PID.TID 0000.0001) %MON forcing_fv_min = -3.4256862072793E-01
2215     (PID.TID 0000.0001) %MON forcing_fv_mean = -2.7198950323622E-02
2216     (PID.TID 0000.0001) %MON forcing_fv_sd = 3.6497177435952E-02
2217     (PID.TID 0000.0001) %MON forcing_fv_del2 = 2.4329997658236E-04
2218     (PID.TID 0000.0001) %MON advcfl_uvel_max = 0.0000000000000E+00
2219     (PID.TID 0000.0001) %MON advcfl_vvel_max = 1.4400000000000E-01
2220     (PID.TID 0000.0001) %MON advcfl_wvel_max = 2.8800000000000E-01
2221     (PID.TID 0000.0001) %MON advcfl_W_hf_max = 0.0000000000000E+00
2222     (PID.TID 0000.0001) %MON pe_b_mean = 0.0000000000000E+00
2223     (PID.TID 0000.0001) %MON ke_max = 2.0000000000000E-02
2224     (PID.TID 0000.0001) %MON ke_mean = 1.9500000000000E-02
2225     (PID.TID 0000.0001) %MON ke_vol = 8.0000000000000E+11
2226     (PID.TID 0000.0001) %MON vort_r_min = 0.0000000000000E+00
2227     (PID.TID 0000.0001) %MON vort_r_max = 0.0000000000000E+00
2228     (PID.TID 0000.0001) %MON vort_a_mean = 0.0000000000000E+00
2229     (PID.TID 0000.0001) %MON vort_a_sd = 0.0000000000000E+00
2230     (PID.TID 0000.0001) %MON vort_p_mean = 0.0000000000000E+00
2231     (PID.TID 0000.0001) %MON vort_p_sd = 0.0000000000000E+00
2232     (PID.TID 0000.0001) %MON surfExpan_theta_mean = 1.8455408661173E-07
2233     (PID.TID 0000.0001) %MON surfExpan_salt_mean = 0.0000000000000E+00
2234     (PID.TID 0000.0001) // =======================================================
2235     (PID.TID 0000.0001) // End MONITOR dynamic field statistics
2236     (PID.TID 0000.0001) // =======================================================
2237     (PID.TID 0000.0001) // =======================================================
2238     (PID.TID 0000.0001) // Begin MONITOR SEAICE statistics
2239     (PID.TID 0000.0001) // =======================================================
2240     (PID.TID 0000.0001) %MON seaice_tsnumber = 12
2241     (PID.TID 0000.0001) %MON seaice_time_sec = 4.3200000000000E+04
2242     (PID.TID 0000.0001) %MON seaice_uice_max = 3.9249033599031E-01
2243     (PID.TID 0000.0001) %MON seaice_uice_min = 1.6044144713185E-01
2244     (PID.TID 0000.0001) %MON seaice_uice_mean = 2.9281391101449E-01
2245     (PID.TID 0000.0001) %MON seaice_uice_sd = 9.1127943334290E-03
2246     (PID.TID 0000.0001) %MON seaice_uice_del2 = 1.6432427434172E-04
2247     (PID.TID 0000.0001) %MON seaice_vice_max = 1.9691394074270E-01
2248     (PID.TID 0000.0001) %MON seaice_vice_min = 2.5999241746550E-02
2249     (PID.TID 0000.0001) %MON seaice_vice_mean = 1.8082302915869E-01
2250     (PID.TID 0000.0001) %MON seaice_vice_sd = 2.1866801273125E-02
2251     (PID.TID 0000.0001) %MON seaice_vice_del2 = 1.5328418866395E-04
2252     (PID.TID 0000.0001) // =======================================================
2253     (PID.TID 0000.0001) // End MONITOR SEAICE statistics
2254     (PID.TID 0000.0001) // =======================================================
2255     (PID.TID 0000.0001) // =======================================================
2256     (PID.TID 0000.0001) // Begin MONITOR Therm.SeaIce statistics
2257     (PID.TID 0000.0001) // =======================================================
2258     (PID.TID 0000.0001) %MON thSI_time_sec = 4.3200000000000E+04
2259     (PID.TID 0000.0001) %MON thSI_Ice_Area_G = 4.1222336907219E+10
2260     (PID.TID 0000.0001) %MON thSI_Ice_Area_S = 2.0896472183679E+10
2261     (PID.TID 0000.0001) %MON thSI_Ice_Area_N = 2.0325864723540E+10
2262     (PID.TID 0000.0001) %MON thSI_IceH_ave_G = 2.0793441255117E-01
2263     (PID.TID 0000.0001) %MON thSI_IceH_ave_S = 2.0289250251671E-01
2264     (PID.TID 0000.0001) %MON thSI_IceH_ave_N = 2.1311786399203E-01
2265     (PID.TID 0000.0001) %MON thSI_IceH_max_S = 2.1924839524376E-01
2266     (PID.TID 0000.0001) %MON thSI_IceH_max_N = 3.3657407475331E-01
2267     (PID.TID 0000.0001) %MON thSI_SnwH_ave_G = 0.0000000000000E+00
2268     (PID.TID 0000.0001) %MON thSI_SnwH_ave_S = 0.0000000000000E+00
2269     (PID.TID 0000.0001) %MON thSI_SnwH_ave_N = 0.0000000000000E+00
2270     (PID.TID 0000.0001) %MON thSI_SnwH_max_S = 0.0000000000000E+00
2271     (PID.TID 0000.0001) %MON thSI_SnwH_max_N = 0.0000000000000E+00
2272     (PID.TID 0000.0001) %MON thSI_Tsrf_ave_G = -5.6303469885182E+00
2273     (PID.TID 0000.0001) %MON thSI_Tsrf_ave_S = -5.4028186041450E+00
2274     (PID.TID 0000.0001) %MON thSI_Tsrf_ave_N = -5.8642627711783E+00
2275     (PID.TID 0000.0001) %MON thSI_Tsrf_min_S = -5.8591354442392E+00
2276     (PID.TID 0000.0001) %MON thSI_Tsrf_min_N = -7.0120756694228E+00
2277     (PID.TID 0000.0001) %MON thSI_Tsrf_max_S = -5.1946261260556E+00
2278     (PID.TID 0000.0001) %MON thSI_Tsrf_max_N = -5.5190940470573E+00
2279     (PID.TID 0000.0001) %MON thSI_Tic1_ave_G = -4.6397686334426E+00
2280     (PID.TID 0000.0001) %MON thSI_Tic1_ave_S = -4.4822690967428E+00
2281     (PID.TID 0000.0001) %MON thSI_Tic1_ave_N = -4.7939207056119E+00
2282     (PID.TID 0000.0001) %MON thSI_Tic1_min_S = -4.8023347690924E+00
2283     (PID.TID 0000.0001) %MON thSI_Tic1_min_N = -5.4073173302680E+00
2284     (PID.TID 0000.0001) %MON thSI_Tic1_max_S = -4.2508138167118E+00
2285     (PID.TID 0000.0001) %MON thSI_Tic1_max_N = -4.4602101366712E+00
2286     (PID.TID 0000.0001) %MON thSI_Tic2_ave_G = -2.6276990375656E+00
2287     (PID.TID 0000.0001) %MON thSI_Tic2_ave_S = -2.5782689729668E+00
2288     (PID.TID 0000.0001) %MON thSI_Tic2_ave_N = -2.6760785251820E+00
2289     (PID.TID 0000.0001) %MON thSI_Tic2_min_S = -2.6753547429115E+00
2290     (PID.TID 0000.0001) %MON thSI_Tic2_min_N = -2.8539481641877E+00
2291     (PID.TID 0000.0001) %MON thSI_Tic2_max_S = -2.4656237759255E+00
2292     (PID.TID 0000.0001) %MON thSI_Tic2_max_N = -2.5319382068840E+00
2293     (PID.TID 0000.0001) %MON thSI_TotEnerg_G = -2.6209588397590E+18
2294     (PID.TID 0000.0001) // =======================================================
2295     (PID.TID 0000.0001) // End MONITOR Therm.SeaIce statistics
2296     (PID.TID 0000.0001) // =======================================================
2297     Computing Diagnostic # 121 CH_TAIR Counter: 1 Parms: SM L1
2298     Computing Diagnostic # 123 CH_QAIR Counter: 1 Parms: SM L1
2299     Computing Diagnostic # 26 THETA Counter: 1 Parms: SMR MR
2300     Computing Diagnostic # 200 SI_Fract Counter: 1 Parms: SM P M1
2301     Computing Diagnostic # 201 SI_Thick Counter: 1 Parms: SM PC M1
2302     use Counter Mate for SI_Thick Diagnostic # 200 SI_Fract
2303     Computing Diagnostic # 202 SI_SnowH Counter: 1 Parms: SM PC M1
2304     use Counter Mate for SI_SnowH Diagnostic # 200 SI_Fract
2305     Computing Diagnostic # 142 SIuice Counter: 1 Parms: UU M1
2306     Vector Mate for SIuice Diagnostic # 143 SIvice exists
2307     Computing Diagnostic # 143 SIvice Counter: 1 Parms: VV M1
2308     Vector Mate for SIvice Diagnostic # 142 SIuice exists
2309     Computing Diagnostic # 211 SIflxAtm Counter: 1 Parms: SM M1
2310     Computing Diagnostic # 212 SIfrwAtm Counter: 1 Parms: SM M1
2311     Computing Diagnostic # 210 SIsnwPrc Counter: 1 Parms: SM C M1
2312     use Counter Mate for SIsnwPrc Diagnostic # 200 SI_Fract
2313     Computing Diagnostic # 122 CH_QNET Counter: 1 Parms: SM L1
2314     Computing Diagnostic # 124 CH_EmP Counter: 1 Parms: SM L1
2315     Computing Diagnostic # 129 CH_SH Counter: 1 Parms: SM L1
2316     Computing Diagnostic # 128 CH_LH Counter: 1 Parms: SM L1
2317     Computing Diagnostic # 130 CH_Prec Counter: 1 Parms: SM L1
2318     Computing Diagnostic # 131 CH_q100 Counter: 1 Parms: SM L1
2319     Computing Diagnostic # 132 CH_ssqt Counter: 1 Parms: SM L1
2320     Computing Diagnostic # 200 SI_Fract Counter: 12 Parms: SM P M1
2321     Computing Diagnostic # 201 SI_Thick Counter: 12 Parms: SM PC M1
2322     use Counter Mate for SI_Thick Diagnostic # 200 SI_Fract
2323     Computing Diagnostic # 26 THETA Counter: 12 Parms: SMR MR
2324     Computing Diagnostic # 203 SI_Tsrf Counter: 12 Parms: SM C M1
2325     use Counter Mate for SI_Tsrf Diagnostic # 200 SI_Fract
2326     Computing Diagnostic # 213 SIflx2oc Counter: 12 Parms: SM M1
2327     Computing Diagnostic # 214 SIfrw2oc Counter: 12 Parms: SM M1
2328     Computing Diagnostic # 215 SIsaltFx Counter: 12 Parms: SM M1
2329     Computing Diagnostic # 85 oceQsw Counter: 12 Parms: SM U1
2330     Computing Diagnostic # 211 SIflxAtm Counter: 12 Parms: SM M1
2331     Computing Diagnostic # 212 SIfrwAtm Counter: 12 Parms: SM M1
2332     Computing Diagnostic # 130 CH_Prec Counter: 12 Parms: SM L1
2333     Computing Diagnostic # 142 SIuice Counter: 12 Parms: UU M1
2334     Vector Mate for SIuice Diagnostic # 143 SIvice exists
2335     Computing Diagnostic # 143 SIvice Counter: 12 Parms: VV M1
2336     Vector Mate for SIvice Diagnostic # 142 SIuice exists
2337     Compute Stats, Diag. # 200 SI_Fract vol( 0 ): 8.800E+11 Parms: SM P M1
2338     Compute Stats, Diag. # 201 SI_Thick vol( 0 ): 4.483E+11 Parms: SM PC M1
2339     use Counter Mate # 200 SI_Fract vol( 0 ): 8.800E+11 integral 4.483E+11
2340     Compute Stats, Diag. # 202 SI_SnowH vol( 0 ): 4.483E+11 Parms: SM PC M1
2341     use Counter Mate # 200 SI_Fract vol( 0 ): 8.800E+11 integral 4.483E+11
2342     Compute Stats, Diag. # 26 THETA vol( 0 ): 8.800E+12 Parms: SMR MR
2343     Compute Stats, Diag. # 203 SI_Tsrf vol( 0 ): 4.483E+11 Parms: SM C M1
2344     use Counter Mate # 200 SI_Fract vol( 0 ): 8.800E+11 integral 4.483E+11
2345     Compute Stats, Diag. # 204 SI_Tice1 vol( 0 ): 4.483E+11 Parms: SM C M1
2346     use Counter Mate # 200 SI_Fract vol( 0 ): 8.800E+11 integral 4.483E+11
2347     Compute Stats, Diag. # 205 SI_Tice2 vol( 0 ): 4.483E+11 Parms: SM C M1
2348     use Counter Mate # 200 SI_Fract vol( 0 ): 8.800E+11 integral 4.483E+11
2349     Compute Stats, Diag. # 213 SIflx2oc vol( 0 ): 8.800E+11 Parms: SM M1
2350     Compute Stats, Diag. # 214 SIfrw2oc vol( 0 ): 8.800E+11 Parms: SM M1
2351     Compute Stats, Diag. # 215 SIsaltFx vol( 0 ): 8.800E+11 Parms: SM M1
2352     Compute Stats, Diag. # 211 SIflxAtm vol( 0 ): 8.800E+11 Parms: SM M1
2353     Compute Stats, Diag. # 212 SIfrwAtm vol( 0 ): 8.800E+11 Parms: SM M1
2354     Compute Stats, Diag. # 142 SIuice vol( 0 ): 8.800E+11 Parms: UU M1
2355     Compute Stats, Diag. # 143 SIvice vol( 0 ): 8.580E+11 Parms: VV M1
2356     Compute Stats, Diag. # 121 CH_TAIR vol( 0 ): 8.800E+11 Parms: SM L1
2357     Compute Stats, Diag. # 123 CH_QAIR vol( 0 ): 8.800E+11 Parms: SM L1
2358     Compute Stats, Diag. # 122 CH_QNET vol( 0 ): 8.800E+11 Parms: SM L1
2359     Compute Stats, Diag. # 124 CH_EmP vol( 0 ): 8.800E+11 Parms: SM L1
2360     Compute Stats, Diag. # 129 CH_SH vol( 0 ): 8.800E+11 Parms: SM L1
2361     Compute Stats, Diag. # 128 CH_LH vol( 0 ): 8.800E+11 Parms: SM L1
2362     Compute Stats, Diag. # 130 CH_Prec vol( 0 ): 8.800E+11 Parms: SM L1
2363     Compute Stats, Diag. # 131 CH_q100 vol( 0 ): 8.800E+11 Parms: SM L1
2364     Compute Stats, Diag. # 132 CH_ssqt vol( 0 ): 8.800E+11 Parms: SM L1
2365     Compute Stats, Diag. # 210 SIsnwPrc vol( 0 ): 4.483E+11 Parms: SM C M1
2366     use Counter Mate # 200 SI_Fract vol( 0 ): 8.800E+11 integral 4.483E+11
2367     (PID.TID 0000.0001) DIAGSTATS_CLOSE_IO: close file: iceStDiag.0000000000.txt , unit= 9
2368     (PID.TID 0000.0001) DIAGSTATS_CLOSE_IO: close file: cheapStDiag.0000000000.txt , unit= 10
2369     (PID.TID 0000.0001) %CHECKPOINT 12 ckptA
2370     (PID.TID 0000.0001) Seconds in section "ALL [THE_MODEL_MAIN]":
2371     (PID.TID 0000.0001) User time: 70.810000000000002
2372     (PID.TID 0000.0001) System time: 2.00000000000000004E-002
2373     (PID.TID 0000.0001) Wall clock time: 71.020517110824585
2374     (PID.TID 0000.0001) No. starts: 1
2375     (PID.TID 0000.0001) No. stops: 1
2376     (PID.TID 0000.0001) Seconds in section "INITIALISE_FIXED [THE_MODEL_MAIN]":
2377     (PID.TID 0000.0001) User time: 4.00000000000000008E-002
2378     (PID.TID 0000.0001) System time: 0.0000000000000000
2379     (PID.TID 0000.0001) Wall clock time: 4.85692024230957031E-002
2380     (PID.TID 0000.0001) No. starts: 1
2381     (PID.TID 0000.0001) No. stops: 1
2382     (PID.TID 0000.0001) Seconds in section "THE_MAIN_LOOP [THE_MODEL_MAIN]":
2383     (PID.TID 0000.0001) User time: 70.769999999999996
2384     (PID.TID 0000.0001) System time: 2.00000000000000004E-002
2385     (PID.TID 0000.0001) Wall clock time: 70.971911907196045
2386     (PID.TID 0000.0001) No. starts: 1
2387     (PID.TID 0000.0001) No. stops: 1
2388     (PID.TID 0000.0001) Seconds in section "INITIALISE_VARIA [THE_MAIN_LOOP]":
2389     (PID.TID 0000.0001) User time: 4.99999999999999958E-002
2390     (PID.TID 0000.0001) System time: 1.00000000000000002E-002
2391     (PID.TID 0000.0001) Wall clock time: 7.66389369964599609E-002
2392     (PID.TID 0000.0001) No. starts: 1
2393     (PID.TID 0000.0001) No. stops: 1
2394     (PID.TID 0000.0001) Seconds in section "MAIN LOOP [THE_MAIN_LOOP]":
2395     (PID.TID 0000.0001) User time: 70.719999999999999
2396     (PID.TID 0000.0001) System time: 1.00000000000000002E-002
2397     (PID.TID 0000.0001) Wall clock time: 70.895243167877197
2398     (PID.TID 0000.0001) No. starts: 1
2399     (PID.TID 0000.0001) No. stops: 1
2400     (PID.TID 0000.0001) Seconds in section "MAIN_DO_LOOP [THE_MAIN_LOOP]":
2401     (PID.TID 0000.0001) User time: 70.719999999999999
2402     (PID.TID 0000.0001) System time: 9.99999999999999847E-003
2403     (PID.TID 0000.0001) Wall clock time: 70.895126581192017
2404     (PID.TID 0000.0001) No. starts: 12
2405     (PID.TID 0000.0001) No. stops: 12
2406     (PID.TID 0000.0001) Seconds in section "FORWARD_STEP [MAIN_DO_LOOP]":
2407     (PID.TID 0000.0001) User time: 70.719999999999999
2408     (PID.TID 0000.0001) System time: 9.99999999999999847E-003
2409     (PID.TID 0000.0001) Wall clock time: 70.894912481307983
2410     (PID.TID 0000.0001) No. starts: 12
2411     (PID.TID 0000.0001) No. stops: 12
2412     (PID.TID 0000.0001) Seconds in section "DO_STATEVARS_DIAGS [FORWARD_STEP]":
2413     (PID.TID 0000.0001) User time: 1.99999999999960210E-002
2414     (PID.TID 0000.0001) System time: 0.0000000000000000
2415     (PID.TID 0000.0001) Wall clock time: 2.43067741394042969E-002
2416     (PID.TID 0000.0001) No. starts: 36
2417     (PID.TID 0000.0001) No. stops: 36
2418     (PID.TID 0000.0001) Seconds in section "LOAD_FIELDS_DRIVER [FORWARD_STEP]":
2419     (PID.TID 0000.0001) User time: 1.00000000000051159E-002
2420     (PID.TID 0000.0001) System time: 0.0000000000000000
2421     (PID.TID 0000.0001) Wall clock time: 1.73320770263671875E-002
2422     (PID.TID 0000.0001) No. starts: 12
2423     (PID.TID 0000.0001) No. stops: 12
2424     (PID.TID 0000.0001) Seconds in section "CHEAPAML [FORWARD_STEP]":
2425     (PID.TID 0000.0001) User time: 3.3500000000000085
2426     (PID.TID 0000.0001) System time: 9.99999999999999847E-003
2427     (PID.TID 0000.0001) Wall clock time: 3.3704724311828613
2428     (PID.TID 0000.0001) No. starts: 12
2429     (PID.TID 0000.0001) No. stops: 12
2430     (PID.TID 0000.0001) Seconds in section "DO_ATMOSPHERIC_PHYS [FORWARD_STEP]":
2431     (PID.TID 0000.0001) User time: 0.0000000000000000
2432     (PID.TID 0000.0001) System time: 0.0000000000000000
2433     (PID.TID 0000.0001) Wall clock time: 1.14679336547851563E-004
2434     (PID.TID 0000.0001) No. starts: 12
2435     (PID.TID 0000.0001) No. stops: 12
2436     (PID.TID 0000.0001) Seconds in section "DO_OCEANIC_PHYS [FORWARD_STEP]":
2437     (PID.TID 0000.0001) User time: 67.230000000000018
2438     (PID.TID 0000.0001) System time: 0.0000000000000000
2439     (PID.TID 0000.0001) Wall clock time: 67.371004343032837
2440     (PID.TID 0000.0001) No. starts: 12
2441     (PID.TID 0000.0001) No. stops: 12
2442     (PID.TID 0000.0001) Seconds in section "THSICE_MAIN [DO_OCEANIC_PHYS]":
2443     (PID.TID 0000.0001) User time: 7.99999999999840838E-002
2444     (PID.TID 0000.0001) System time: 0.0000000000000000
2445     (PID.TID 0000.0001) Wall clock time: 7.36627578735351563E-002
2446     (PID.TID 0000.0001) No. starts: 12
2447     (PID.TID 0000.0001) No. stops: 12
2448     (PID.TID 0000.0001) Seconds in section "SEAICE_MODEL [DO_OCEANIC_PHYS]":
2449     (PID.TID 0000.0001) User time: 67.120000000000033
2450     (PID.TID 0000.0001) System time: 0.0000000000000000
2451     (PID.TID 0000.0001) Wall clock time: 67.275252580642700
2452     (PID.TID 0000.0001) No. starts: 12
2453     (PID.TID 0000.0001) No. stops: 12
2454     (PID.TID 0000.0001) Seconds in section "SEAICE_DYNSOLVER [SEAICE_MODEL]":
2455     (PID.TID 0000.0001) User time: 66.970000000000027
2456     (PID.TID 0000.0001) System time: 0.0000000000000000
2457     (PID.TID 0000.0001) Wall clock time: 67.120100498199463
2458     (PID.TID 0000.0001) No. starts: 12
2459     (PID.TID 0000.0001) No. stops: 12
2460     (PID.TID 0000.0001) Seconds in section "BLOCKING_EXCHANGES [FORWARD_STEP]":
2461     (PID.TID 0000.0001) User time: 0.0000000000000000
2462     (PID.TID 0000.0001) System time: 0.0000000000000000
2463     (PID.TID 0000.0001) Wall clock time: 4.54783439636230469E-003
2464     (PID.TID 0000.0001) No. starts: 24
2465     (PID.TID 0000.0001) No. stops: 24
2466     (PID.TID 0000.0001) Seconds in section "THERMODYNAMICS [FORWARD_STEP]":
2467     (PID.TID 0000.0001) User time: 4.99999999999971578E-002
2468     (PID.TID 0000.0001) System time: 0.0000000000000000
2469     (PID.TID 0000.0001) Wall clock time: 4.95858192443847656E-002
2470     (PID.TID 0000.0001) No. starts: 12
2471     (PID.TID 0000.0001) No. stops: 12
2472     (PID.TID 0000.0001) Seconds in section "TRC_CORRECTION_STEP [FORWARD_STEP]":
2473     (PID.TID 0000.0001) User time: 9.99999999999090505E-003
2474     (PID.TID 0000.0001) System time: 0.0000000000000000
2475     (PID.TID 0000.0001) Wall clock time: 1.43766403198242188E-003
2476     (PID.TID 0000.0001) No. starts: 12
2477     (PID.TID 0000.0001) No. stops: 12
2478     (PID.TID 0000.0001) Seconds in section "MONITOR [FORWARD_STEP]":
2479     (PID.TID 0000.0001) User time: 9.99999999999090505E-003
2480     (PID.TID 0000.0001) System time: 0.0000000000000000
2481     (PID.TID 0000.0001) Wall clock time: 1.16543769836425781E-002
2482     (PID.TID 0000.0001) No. starts: 12
2483     (PID.TID 0000.0001) No. stops: 12
2484     (PID.TID 0000.0001) Seconds in section "DO_THE_MODEL_IO [FORWARD_STEP]":
2485     (PID.TID 0000.0001) User time: 3.00000000000011369E-002
2486     (PID.TID 0000.0001) System time: 0.0000000000000000
2487     (PID.TID 0000.0001) Wall clock time: 3.45630645751953125E-002
2488     (PID.TID 0000.0001) No. starts: 12
2489     (PID.TID 0000.0001) No. stops: 12
2490     (PID.TID 0000.0001) Seconds in section "DO_WRITE_PICKUP [FORWARD_STEP]":
2491     (PID.TID 0000.0001) User time: 1.00000000000051159E-002
2492     (PID.TID 0000.0001) System time: 0.0000000000000000
2493     (PID.TID 0000.0001) Wall clock time: 8.14938545227050781E-003
2494     (PID.TID 0000.0001) No. starts: 12
2495     (PID.TID 0000.0001) No. stops: 12
2496     (PID.TID 0000.0001) // ======================================================
2497     (PID.TID 0000.0001) // Tile <-> Tile communication statistics
2498     (PID.TID 0000.0001) // ======================================================
2499     (PID.TID 0000.0001) // o Tile number: 000001
2500     (PID.TID 0000.0001) // No. X exchanges = 0
2501     (PID.TID 0000.0001) // Max. X spins = 0
2502     (PID.TID 0000.0001) // Min. X spins = 1000000000
2503     (PID.TID 0000.0001) // Total. X spins = 0
2504     (PID.TID 0000.0001) // Avg. X spins = 0.00E+00
2505     (PID.TID 0000.0001) // No. Y exchanges = 0
2506     (PID.TID 0000.0001) // Max. Y spins = 0
2507     (PID.TID 0000.0001) // Min. Y spins = 1000000000
2508     (PID.TID 0000.0001) // Total. Y spins = 0
2509     (PID.TID 0000.0001) // Avg. Y spins = 0.00E+00
2510     (PID.TID 0000.0001) // o Tile number: 000002
2511     (PID.TID 0000.0001) // No. X exchanges = 0
2512     (PID.TID 0000.0001) // Max. X spins = 0
2513     (PID.TID 0000.0001) // Min. X spins = 1000000000
2514     (PID.TID 0000.0001) // Total. X spins = 0
2515     (PID.TID 0000.0001) // Avg. X spins = 0.00E+00
2516     (PID.TID 0000.0001) // No. Y exchanges = 0
2517     (PID.TID 0000.0001) // Max. Y spins = 0
2518     (PID.TID 0000.0001) // Min. Y spins = 1000000000
2519     (PID.TID 0000.0001) // Total. Y spins = 0
2520     (PID.TID 0000.0001) // Avg. Y spins = 0.00E+00
2521     (PID.TID 0000.0001) // o Tile number: 000003
2522     (PID.TID 0000.0001) // No. X exchanges = 0
2523     (PID.TID 0000.0001) // Max. X spins = 0
2524     (PID.TID 0000.0001) // Min. X spins = 1000000000
2525     (PID.TID 0000.0001) // Total. X spins = 0
2526     (PID.TID 0000.0001) // Avg. X spins = 0.00E+00
2527     (PID.TID 0000.0001) // No. Y exchanges = 0
2528     (PID.TID 0000.0001) // Max. Y spins = 0
2529     (PID.TID 0000.0001) // Min. Y spins = 1000000000
2530     (PID.TID 0000.0001) // Total. Y spins = 0
2531     (PID.TID 0000.0001) // Avg. Y spins = 0.00E+00
2532     (PID.TID 0000.0001) // o Tile number: 000004
2533     (PID.TID 0000.0001) // No. X exchanges = 0
2534     (PID.TID 0000.0001) // Max. X spins = 0
2535     (PID.TID 0000.0001) // Min. X spins = 1000000000
2536     (PID.TID 0000.0001) // Total. X spins = 0
2537     (PID.TID 0000.0001) // Avg. X spins = 0.00E+00
2538     (PID.TID 0000.0001) // No. Y exchanges = 0
2539     (PID.TID 0000.0001) // Max. Y spins = 0
2540     (PID.TID 0000.0001) // Min. Y spins = 1000000000
2541     (PID.TID 0000.0001) // Total. Y spins = 0
2542     (PID.TID 0000.0001) // Avg. Y spins = 0.00E+00
2543     (PID.TID 0000.0001) // o Thread number: 000001
2544     (PID.TID 0000.0001) // No. barriers = 73232
2545     (PID.TID 0000.0001) // Max. barrier spins = 1
2546     (PID.TID 0000.0001) // Min. barrier spins = 1
2547     (PID.TID 0000.0001) // Total barrier spins = 73232
2548     (PID.TID 0000.0001) // Avg. barrier spins = 1.00E+00
2549     PROGRAM MAIN: Execution ended Normally

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