/[MITgcm]/MITgcm_contrib/high_res_cube/results/output.txt
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Contents of /MITgcm_contrib/high_res_cube/results/output.txt

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Revision 1.30 - (show annotations) (download)
Wed Sep 26 19:15:01 2012 UTC (12 years, 9 months ago) by dimitri
Branch: MAIN
CVS Tags: HEAD
Changes since 1.29: +1533 -1413 lines
File MIME type: text/plain
updating output.txt to checkpoint63s

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: checkpoint63s
9 (PID.TID 0000.0001) // Build user: dmenemen
10 (PID.TID 0000.0001) // Build host: dhcp-149-33-234.jpl.nasa.gov
11 (PID.TID 0000.0001) // Build date: Wed Sep 26 11:59:18 PDT 2012
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) > useCubedSphereExchange=.TRUE.,
22 (PID.TID 0000.0001) > nTx=1,
23 (PID.TID 0000.0001) > nTy=1,
24 (PID.TID 0000.0001) > printMapIncludesZeros = .TRUE.
25 (PID.TID 0000.0001) > /
26 (PID.TID 0000.0001) ># Note: Some systems use & as the
27 (PID.TID 0000.0001) ># namelist terminator. Other systems
28 (PID.TID 0000.0001) ># use a / character (as shown here).
29 (PID.TID 0000.0001)
30 (PID.TID 0000.0001) // =======================================================
31 (PID.TID 0000.0001) // Computational Grid Specification ( see files "SIZE.h" )
32 (PID.TID 0000.0001) // ( and "eedata" )
33 (PID.TID 0000.0001) // =======================================================
34 (PID.TID 0000.0001) nPx = 1 ; /* No. processes in X */
35 (PID.TID 0000.0001) nPy = 1 ; /* No. processes in Y */
36 (PID.TID 0000.0001) nSx = 12 ; /* No. tiles in X per process */
37 (PID.TID 0000.0001) nSy = 1 ; /* No. tiles in Y per process */
38 (PID.TID 0000.0001) sNx = 16 ; /* Tile size in X */
39 (PID.TID 0000.0001) sNy = 32 ; /* Tile size in Y */
40 (PID.TID 0000.0001) OLx = 8 ; /* Tile overlap distance in X */
41 (PID.TID 0000.0001) OLy = 8 ; /* Tile overlap distance in Y */
42 (PID.TID 0000.0001) nTx = 1 ; /* No. threads in X per process */
43 (PID.TID 0000.0001) nTy = 1 ; /* No. threads in Y per process */
44 (PID.TID 0000.0001) Nr = 15 ; /* No. levels in the vertical */
45 (PID.TID 0000.0001) Nx = 192 ; /* Total domain size in X ( = nPx*nSx*sNx ) */
46 (PID.TID 0000.0001) Ny = 32 ; /* Total domain size in Y ( = nPy*nSy*sNy ) */
47 (PID.TID 0000.0001) nTiles = 12 ; /* Total no. tiles per process ( = nSx*nSy ) */
48 (PID.TID 0000.0001) nProcs = 1 ; /* Total no. processes ( = nPx*nPy ) */
49 (PID.TID 0000.0001) nThreads = 1 ; /* Total no. threads per process ( = nTx*nTy ) */
50 (PID.TID 0000.0001) usingMPI = F ; /* Flag used to control whether MPI is in use */
51 (PID.TID 0000.0001) /* note: To execute a program with MPI calls */
52 (PID.TID 0000.0001) /* it must be launched appropriately e.g */
53 (PID.TID 0000.0001) /* "mpirun -np 64 ......" */
54 (PID.TID 0000.0001) useCoupler= F ;/* Flag used to control communications with */
55 (PID.TID 0000.0001) /* other model components, through a coupler */
56 (PID.TID 0000.0001) debugMode = F ; /* print debug msg. (sequence of S/R calls) */
57 (PID.TID 0000.0001) printMapIncludesZeros= T ; /* print zeros in Std.Output maps */
58 (PID.TID 0000.0001) maxLengthPrt1D= 65 /* maxLength of 1D array printed to StdOut */
59 (PID.TID 0000.0001)
60 (PID.TID 0000.0001) // ======================================================
61 (PID.TID 0000.0001) // Mapping of tiles to threads
62 (PID.TID 0000.0001) // ======================================================
63 (PID.TID 0000.0001) // -o- Thread 1, tiles ( 1: 12, 1: 1)
64 (PID.TID 0000.0001)
65 (PID.TID 0000.0001) W2_READPARMS: file data.exch2 not found
66 (PID.TID 0000.0001) => use W2_EXCH2 default: regular 6-facets Cube
67 (PID.TID 0000.0001) W2_useE2ioLayOut= T ;/* T: use Exch2 glob IO map; F: use model default */
68 (PID.TID 0000.0001) W2_mapIO = -1 ; /* select option for Exch2 global-IO map */
69 (PID.TID 0000.0001) W2_printMsg = -1 ; /* select option for printing information */
70 (PID.TID 0000.0001) ===== Start setting W2 TOPOLOGY:
71 (PID.TID 0000.0001) write to log-file: w2_tile_topology.0000.log
72 (PID.TID 0000.0001) ===== setting W2 TOPOLOGY: Done
73 (PID.TID 0000.0001)
74 (PID.TID 0000.0001) INI_PARMS: opening model parameter file "data"
75 (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data
76 (PID.TID 0000.0001) // =======================================================
77 (PID.TID 0000.0001) // Parameter file "data"
78 (PID.TID 0000.0001) // =======================================================
79 (PID.TID 0000.0001) ># ====================
80 (PID.TID 0000.0001) ># | Model parameters |
81 (PID.TID 0000.0001) ># ====================
82 (PID.TID 0000.0001) >#
83 (PID.TID 0000.0001) ># Continuous equation parameters
84 (PID.TID 0000.0001) > &PARM01
85 (PID.TID 0000.0001) > tRef=15*20.,
86 (PID.TID 0000.0001) > sRef=15*35.,
87 (PID.TID 0000.0001) > viscAr= 6.0826e-04,
88 (PID.TID 0000.0001) > no_slip_sides=.FALSE.,
89 (PID.TID 0000.0001) > no_slip_bottom=.TRUE.,
90 (PID.TID 0000.0001) > rhonil=1027.5,
91 (PID.TID 0000.0001) > rhoConstFresh=999.8,
92 (PID.TID 0000.0001) > eosType='JMD95Z',
93 (PID.TID 0000.0001) > hFacMinDr=50.,
94 (PID.TID 0000.0001) > hFacMin=0.3,
95 (PID.TID 0000.0001) > hFacInf=0.1,
96 (PID.TID 0000.0001) > hFacSup=5.,
97 (PID.TID 0000.0001) > select_rStar=2,
98 (PID.TID 0000.0001) > nonlinFreeSurf=4,
99 (PID.TID 0000.0001) > implicitDiffusion=.TRUE.,
100 (PID.TID 0000.0001) > implicitViscosity=.TRUE.,
101 (PID.TID 0000.0001) > viscC4Leith=1.5,
102 (PID.TID 0000.0001) > viscC4Leithd=1.5,
103 (PID.TID 0000.0001) > viscA4GridMax=0.5,
104 (PID.TID 0000.0001) > useAreaViscLength=.TRUE.,
105 (PID.TID 0000.0001) > sideDragFactor=0.,
106 (PID.TID 0000.0001) > highOrderVorticity = .TRUE.,
107 (PID.TID 0000.0001) > bottomDragQuadratic = 0.002,
108 (PID.TID 0000.0001) > tempAdvScheme=7,
109 (PID.TID 0000.0001) > saltAdvScheme=7,
110 (PID.TID 0000.0001) > StaggerTimeStep=.TRUE.,
111 (PID.TID 0000.0001) > multiDimAdvection=.TRUE.,
112 (PID.TID 0000.0001) > vectorInvariantMomentum=.TRUE.,
113 (PID.TID 0000.0001) > implicitFreeSurface=.TRUE.,
114 (PID.TID 0000.0001) > exactConserv=.TRUE.,
115 (PID.TID 0000.0001) > debuglevel=-1,
116 (PID.TID 0000.0001) > convertFW2Salt=-1
117 (PID.TID 0000.0001) > useRealFreshWaterFlux=.TRUE.,
118 (PID.TID 0000.0001) > useSingleCPUio=.TRUE.,
119 (PID.TID 0000.0001) > globalFiles=.TRUE.,
120 (PID.TID 0000.0001) > readBinaryPrec=64,
121 (PID.TID 0000.0001) > /
122 (PID.TID 0000.0001) >
123 (PID.TID 0000.0001) ># Elliptic solver parameters
124 (PID.TID 0000.0001) > &PARM02
125 (PID.TID 0000.0001) > cg2dMaxIters=100,
126 (PID.TID 0000.0001) > cg2dTargetResidual=1.E-5,
127 (PID.TID 0000.0001) > /
128 (PID.TID 0000.0001) >
129 (PID.TID 0000.0001) ># Time stepping parameters
130 (PID.TID 0000.0001) > &PARM03
131 (PID.TID 0000.0001) > nIter0=0,
132 (PID.TID 0000.0001) > nTimeSteps=72,
133 (PID.TID 0000.0001) > abEps=0.1,
134 (PID.TID 0000.0001) > deltaT=1200,
135 (PID.TID 0000.0001) > cAdjFreq=0.,
136 (PID.TID 0000.0001) > pChkptFreq=31536000.,
137 (PID.TID 0000.0001) > chkptFreq=2592000.,
138 (PID.TID 0000.0001) > monitorFreq=86400.,
139 (PID.TID 0000.0001) > forcing_In_AB = .FALSE.,
140 (PID.TID 0000.0001) > dumpInitAndLast=.FALSE.,
141 (PID.TID 0000.0001) > /
142 (PID.TID 0000.0001) >
143 (PID.TID 0000.0001) ># Gridding parameters
144 (PID.TID 0000.0001) > &PARM04
145 (PID.TID 0000.0001) > usingCartesianGrid=.FALSE.,
146 (PID.TID 0000.0001) > usingSphericalPolarGrid=.FALSE.,
147 (PID.TID 0000.0001) > usingCurvilinearGrid=.TRUE.,
148 (PID.TID 0000.0001) > horizGridFile='grid_cs32',
149 (PID.TID 0000.0001) > delR= 50., 70., 100., 140., 190.,
150 (PID.TID 0000.0001) > 240., 290., 340., 390., 440.,
151 (PID.TID 0000.0001) > 490., 540., 590., 640., 690.,
152 (PID.TID 0000.0001) > /
153 (PID.TID 0000.0001) >
154 (PID.TID 0000.0001) ># Input datasets
155 (PID.TID 0000.0001) > &PARM05
156 (PID.TID 0000.0001) > bathyFile ='bathy_Hmin50.bin',
157 (PID.TID 0000.0001) > hydrogThetaFile='lev_T_cs_15k.bin',
158 (PID.TID 0000.0001) > hydrogSaltFile ='lev_S_cs_15k.bin',
159 (PID.TID 0000.0001) > /
160 (PID.TID 0000.0001)
161 (PID.TID 0000.0001) INI_PARMS ; starts to read PARM01
162 (PID.TID 0000.0001) INI_PARMS ; read PARM01 : OK
163 (PID.TID 0000.0001) INI_PARMS ; starts to read PARM02
164 (PID.TID 0000.0001) INI_PARMS ; read PARM02 : OK
165 (PID.TID 0000.0001) INI_PARMS ; starts to read PARM03
166 (PID.TID 0000.0001) INI_PARMS ; read PARM03 : OK
167 (PID.TID 0000.0001) INI_PARMS ; starts to read PARM04
168 (PID.TID 0000.0001) INI_PARMS ; read PARM04 : OK
169 (PID.TID 0000.0001) INI_PARMS ; starts to read PARM05
170 (PID.TID 0000.0001) INI_PARMS ; read PARM05 : OK
171 (PID.TID 0000.0001) INI_PARMS: finished reading file "data"
172 (PID.TID 0000.0001) PACKAGES_BOOT: opening data.pkg
173 (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.pkg
174 (PID.TID 0000.0001) // =======================================================
175 (PID.TID 0000.0001) // Parameter file "data.pkg"
176 (PID.TID 0000.0001) // =======================================================
177 (PID.TID 0000.0001) ># Packages
178 (PID.TID 0000.0001) > &PACKAGES
179 (PID.TID 0000.0001) > useSEAICE = .TRUE.,
180 (PID.TID 0000.0001) > useKPP = .TRUE.,
181 (PID.TID 0000.0001) > useDiagnostics = .TRUE.,
182 (PID.TID 0000.0001) > useEXF = .TRUE.,
183 (PID.TID 0000.0001) > useSALT_PLUME = .TRUE.,
184 (PID.TID 0000.0001) > useBBL = .TRUE.,
185 (PID.TID 0000.0001) > useFRAZIL = .TRUE.,
186 (PID.TID 0000.0001) > /
187 (PID.TID 0000.0001)
188 (PID.TID 0000.0001) PACKAGES_BOOT: finished reading data.pkg
189 (PID.TID 0000.0001) CAL_READPARMS: opening data.cal
190 (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.cal
191 (PID.TID 0000.0001) // =======================================================
192 (PID.TID 0000.0001) // Parameter file "data.cal"
193 (PID.TID 0000.0001) // =======================================================
194 (PID.TID 0000.0001) >#
195 (PID.TID 0000.0001) ># *******************
196 (PID.TID 0000.0001) ># Calendar Parameters
197 (PID.TID 0000.0001) ># *******************
198 (PID.TID 0000.0001) > &CAL_NML
199 (PID.TID 0000.0001) > TheCalendar='gregorian',
200 (PID.TID 0000.0001) > startDate_1=19920101,
201 (PID.TID 0000.0001) > startDate_2=000000,
202 (PID.TID 0000.0001) > calendarDumps = .FALSE.,
203 (PID.TID 0000.0001) > /
204 (PID.TID 0000.0001)
205 (PID.TID 0000.0001) CAL_READPARMS: finished reading data.cal
206 (PID.TID 0000.0001) EXF_READPARMS: opening data.exf
207 (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.exf
208 (PID.TID 0000.0001) // =======================================================
209 (PID.TID 0000.0001) // Parameter file "data.exf"
210 (PID.TID 0000.0001) // =======================================================
211 (PID.TID 0000.0001) ># *********************
212 (PID.TID 0000.0001) ># External Forcing Data
213 (PID.TID 0000.0001) ># *********************
214 (PID.TID 0000.0001) >#
215 (PID.TID 0000.0001) > &EXF_NML_01
216 (PID.TID 0000.0001) ># repeat period is 365.25 days
217 (PID.TID 0000.0001) > RepeatPeriod= 31557600.0,
218 (PID.TID 0000.0001) > exf_iprec = 32,
219 (PID.TID 0000.0001) > exf_yftype = 'RL',
220 (PID.TID 0000.0001) > /
221 (PID.TID 0000.0001) >#
222 (PID.TID 0000.0001) > &EXF_NML_02
223 (PID.TID 0000.0001) > precipfile = 'precip_192_94_12.bin',
224 (PID.TID 0000.0001) > atempfile = 'atemp_192_94_12.bin',
225 (PID.TID 0000.0001) > aqhfile = 'aqh_192_94_12.bin',
226 (PID.TID 0000.0001) > swdownfile = 'swdown_192_94_12.bin',
227 (PID.TID 0000.0001) > lwdownfile = 'lwdown_192_94_12.bin',
228 (PID.TID 0000.0001) > uwindfile = 'uwind_192_94_12.bin',
229 (PID.TID 0000.0001) > vwindfile = 'vwind_192_94_12.bin',
230 (PID.TID 0000.0001) >#
231 (PID.TID 0000.0001) > precipstartdate1=19920115,
232 (PID.TID 0000.0001) > precipstartdate2=051500,
233 (PID.TID 0000.0001) > precipperiod=2629800.0,
234 (PID.TID 0000.0001) > atempstartdate1=19920115,
235 (PID.TID 0000.0001) > atempstartdate2=051500,
236 (PID.TID 0000.0001) > atempperiod=2629800.0,
237 (PID.TID 0000.0001) > aqhstartdate1=19920115,
238 (PID.TID 0000.0001) > aqhstartdate2=051500,
239 (PID.TID 0000.0001) > aqhperiod=2629800.0,
240 (PID.TID 0000.0001) > swdownstartdate1=19920115,
241 (PID.TID 0000.0001) > swdownstartdate2=051500,
242 (PID.TID 0000.0001) > swdownperiod=2629800.0,
243 (PID.TID 0000.0001) > lwdownstartdate1=19920115,
244 (PID.TID 0000.0001) > lwdownstartdate2=051500,
245 (PID.TID 0000.0001) > lwdownperiod=2629800.0,
246 (PID.TID 0000.0001) > uwindstartdate1=19920115,
247 (PID.TID 0000.0001) > uwindstartdate2=051500,
248 (PID.TID 0000.0001) > uwindperiod=2629800.0,
249 (PID.TID 0000.0001) > vwindstartdate1=19920115,
250 (PID.TID 0000.0001) > vwindstartdate2=051500,
251 (PID.TID 0000.0001) > vwindperiod=2629800.0,
252 (PID.TID 0000.0001) > /
253 (PID.TID 0000.0001) >#
254 (PID.TID 0000.0001) > &EXF_NML_03
255 (PID.TID 0000.0001) > exf_offset_atemp=273.15,
256 (PID.TID 0000.0001) > /
257 (PID.TID 0000.0001) >#
258 (PID.TID 0000.0001) > &EXF_NML_04
259 (PID.TID 0000.0001) > precip_lon0 = 0.00D0,
260 (PID.TID 0000.0001) > precip_lon_inc = 1.875D0,
261 (PID.TID 0000.0001) > precip_lat0 = -88.5420D0,
262 (PID.TID 0000.0001) > precip_lat_inc = 1.8888, 1.9000, 1.9024, 1.9034, 1.9039, 1.9042,
263 (PID.TID 0000.0001) > 1.9042, 1.9044, 1.9045, 1.9045, 1.9046, 1.9046, 1.9046, 1.9046,
264 (PID.TID 0000.0001) > 1.9047, 1.9046, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047,
265 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9047,
266 (PID.TID 0000.0001) > 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048,
267 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047,
268 (PID.TID 0000.0001) > 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047,
269 (PID.TID 0000.0001) > 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048,
270 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9047,
271 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9046,
272 (PID.TID 0000.0001) > 1.9047, 1.9046, 1.9046, 1.9046, 1.9046, 1.9045, 1.9045, 1.9044,
273 (PID.TID 0000.0001) > 1.9042, 1.9042, 1.9039, 1.9034, 1.9024, 1.9000, 1.8888, 1.8888,
274 (PID.TID 0000.0001) > precip_nlon = 192,
275 (PID.TID 0000.0001) > precip_nlat = 94,
276 (PID.TID 0000.0001) >#
277 (PID.TID 0000.0001) > atemp_lon0 = 0.00D0,
278 (PID.TID 0000.0001) > atemp_lon_inc = 1.875D0,
279 (PID.TID 0000.0001) > atemp_lat0 = -88.5420D0,
280 (PID.TID 0000.0001) > atemp_lat_inc = 1.8888, 1.9000, 1.9024, 1.9034, 1.9039, 1.9042,
281 (PID.TID 0000.0001) > 1.9042, 1.9044, 1.9045, 1.9045, 1.9046, 1.9046, 1.9046, 1.9046,
282 (PID.TID 0000.0001) > 1.9047, 1.9046, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047,
283 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9047,
284 (PID.TID 0000.0001) > 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048,
285 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047,
286 (PID.TID 0000.0001) > 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047,
287 (PID.TID 0000.0001) > 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048,
288 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9047,
289 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9046,
290 (PID.TID 0000.0001) > 1.9047, 1.9046, 1.9046, 1.9046, 1.9046, 1.9045, 1.9045, 1.9044,
291 (PID.TID 0000.0001) > 1.9042, 1.9042, 1.9039, 1.9034, 1.9024, 1.9000, 1.8888, 1.8888,
292 (PID.TID 0000.0001) > atemp_nlon = 192,
293 (PID.TID 0000.0001) > atemp_nlat = 94,
294 (PID.TID 0000.0001) >#
295 (PID.TID 0000.0001) > aqh_lon0 = 0.00D0,
296 (PID.TID 0000.0001) > aqh_lon_inc = 1.875D0,
297 (PID.TID 0000.0001) > aqh_lat0 = -88.5420D0,
298 (PID.TID 0000.0001) > aqh_lat_inc = 1.8888, 1.9000, 1.9024, 1.9034, 1.9039, 1.9042,
299 (PID.TID 0000.0001) > 1.9042, 1.9044, 1.9045, 1.9045, 1.9046, 1.9046, 1.9046, 1.9046,
300 (PID.TID 0000.0001) > 1.9047, 1.9046, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047,
301 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9047,
302 (PID.TID 0000.0001) > 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048,
303 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047,
304 (PID.TID 0000.0001) > 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047,
305 (PID.TID 0000.0001) > 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048,
306 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9047,
307 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9046,
308 (PID.TID 0000.0001) > 1.9047, 1.9046, 1.9046, 1.9046, 1.9046, 1.9045, 1.9045, 1.9044,
309 (PID.TID 0000.0001) > 1.9042, 1.9042, 1.9039, 1.9034, 1.9024, 1.9000, 1.8888, 1.8888,
310 (PID.TID 0000.0001) > aqh_nlon = 192,
311 (PID.TID 0000.0001) > aqh_nlat = 94,
312 (PID.TID 0000.0001) >#
313 (PID.TID 0000.0001) > swdown_lon0 = 0.00D0,
314 (PID.TID 0000.0001) > swdown_lon_inc = 1.875D0,
315 (PID.TID 0000.0001) > swdown_lat0 = -88.5420D0,
316 (PID.TID 0000.0001) > swdown_lat_inc = 1.8888, 1.9000, 1.9024, 1.9034, 1.9039, 1.9042,
317 (PID.TID 0000.0001) > 1.9042, 1.9044, 1.9045, 1.9045, 1.9046, 1.9046, 1.9046, 1.9046,
318 (PID.TID 0000.0001) > 1.9047, 1.9046, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047,
319 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9047,
320 (PID.TID 0000.0001) > 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048,
321 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047,
322 (PID.TID 0000.0001) > 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047,
323 (PID.TID 0000.0001) > 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048,
324 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9047,
325 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9046,
326 (PID.TID 0000.0001) > 1.9047, 1.9046, 1.9046, 1.9046, 1.9046, 1.9045, 1.9045, 1.9044,
327 (PID.TID 0000.0001) > 1.9042, 1.9042, 1.9039, 1.9034, 1.9024, 1.9000, 1.8888, 1.8888,
328 (PID.TID 0000.0001) > swdown_nlon = 192,
329 (PID.TID 0000.0001) > swdown_nlat = 94,
330 (PID.TID 0000.0001) >#
331 (PID.TID 0000.0001) > lwdown_lon0 = 0.00D0,
332 (PID.TID 0000.0001) > lwdown_lon_inc = 1.875D0,
333 (PID.TID 0000.0001) > lwdown_lat0 = -88.5420D0,
334 (PID.TID 0000.0001) > lwdown_lat_inc = 1.8888, 1.9000, 1.9024, 1.9034, 1.9039, 1.9042,
335 (PID.TID 0000.0001) > 1.9042, 1.9044, 1.9045, 1.9045, 1.9046, 1.9046, 1.9046, 1.9046,
336 (PID.TID 0000.0001) > 1.9047, 1.9046, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047,
337 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9047,
338 (PID.TID 0000.0001) > 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048,
339 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047,
340 (PID.TID 0000.0001) > 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047,
341 (PID.TID 0000.0001) > 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048,
342 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9047,
343 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9046,
344 (PID.TID 0000.0001) > 1.9047, 1.9046, 1.9046, 1.9046, 1.9046, 1.9045, 1.9045, 1.9044,
345 (PID.TID 0000.0001) > 1.9042, 1.9042, 1.9039, 1.9034, 1.9024, 1.9000, 1.8888, 1.8888,
346 (PID.TID 0000.0001) > lwdown_nlon = 192,
347 (PID.TID 0000.0001) > lwdown_nlat = 94,
348 (PID.TID 0000.0001) >#
349 (PID.TID 0000.0001) > uwind_lon0 = 0.00D0,
350 (PID.TID 0000.0001) > uwind_lon_inc = 1.875D0,
351 (PID.TID 0000.0001) > uwind_lat0 = -88.5420D0,
352 (PID.TID 0000.0001) > uwind_lat_inc = 1.8888, 1.9000, 1.9024, 1.9034, 1.9039, 1.9042,
353 (PID.TID 0000.0001) > 1.9042, 1.9044, 1.9045, 1.9045, 1.9046, 1.9046, 1.9046, 1.9046,
354 (PID.TID 0000.0001) > 1.9047, 1.9046, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047,
355 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9047,
356 (PID.TID 0000.0001) > 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048,
357 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047,
358 (PID.TID 0000.0001) > 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047,
359 (PID.TID 0000.0001) > 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048,
360 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9047,
361 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9046,
362 (PID.TID 0000.0001) > 1.9047, 1.9046, 1.9046, 1.9046, 1.9046, 1.9045, 1.9045, 1.9044,
363 (PID.TID 0000.0001) > 1.9042, 1.9042, 1.9039, 1.9034, 1.9024, 1.9000, 1.8888, 1.8888,
364 (PID.TID 0000.0001) > uwind_nlon = 192,
365 (PID.TID 0000.0001) > uwind_nlat = 94,
366 (PID.TID 0000.0001) >#
367 (PID.TID 0000.0001) > vwind_lon0 = 0.00D0,
368 (PID.TID 0000.0001) > vwind_lon_inc = 1.875D0,
369 (PID.TID 0000.0001) > vwind_lat0 = -88.5420D0,
370 (PID.TID 0000.0001) > vwind_lat_inc = 1.8888, 1.9000, 1.9024, 1.9034, 1.9039, 1.9042,
371 (PID.TID 0000.0001) > 1.9042, 1.9044, 1.9045, 1.9045, 1.9046, 1.9046, 1.9046, 1.9046,
372 (PID.TID 0000.0001) > 1.9047, 1.9046, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047,
373 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9047,
374 (PID.TID 0000.0001) > 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048,
375 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047,
376 (PID.TID 0000.0001) > 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047,
377 (PID.TID 0000.0001) > 1.9047, 1.9048, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9048,
378 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9047, 1.9047, 1.9048, 1.9047, 1.9047, 1.9047,
379 (PID.TID 0000.0001) > 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9047, 1.9046,
380 (PID.TID 0000.0001) > 1.9047, 1.9046, 1.9046, 1.9046, 1.9046, 1.9045, 1.9045, 1.9044,
381 (PID.TID 0000.0001) > 1.9042, 1.9042, 1.9039, 1.9034, 1.9024, 1.9000, 1.8888, 1.8888,
382 (PID.TID 0000.0001) > vwind_nlon = 192,
383 (PID.TID 0000.0001) > vwind_nlat = 94,
384 (PID.TID 0000.0001) > /
385 (PID.TID 0000.0001)
386 (PID.TID 0000.0001) EXF_READPARMS: reading EXF_NML_01
387 (PID.TID 0000.0001) EXF_READPARMS: reading EXF_NML_02
388 (PID.TID 0000.0001) EXF_READPARMS: reading EXF_NML_03
389 (PID.TID 0000.0001) EXF_READPARMS: reading EXF_NML_04
390 (PID.TID 0000.0001) EXF_READPARMS: finished reading data.exf
391 (PID.TID 0000.0001) BBL_READPARMS: opening data.bbl
392 (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.bbl
393 (PID.TID 0000.0001) // =======================================================
394 (PID.TID 0000.0001) // Parameter file "data.bbl"
395 (PID.TID 0000.0001) // =======================================================
396 (PID.TID 0000.0001) > &BBL_PARM01
397 (PID.TID 0000.0001) > /
398 (PID.TID 0000.0001)
399 (PID.TID 0000.0001) BBL_READPARMS: finished reading data.bbl
400 (PID.TID 0000.0001) KPP_INIT: opening data.kpp
401 (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.kpp
402 (PID.TID 0000.0001) // =======================================================
403 (PID.TID 0000.0001) // Parameter file "data.kpp"
404 (PID.TID 0000.0001) // =======================================================
405 (PID.TID 0000.0001) ># KPP parameters
406 (PID.TID 0000.0001) > &KPP_PARM01
407 (PID.TID 0000.0001) > KPPmixingMaps = .FALSE.,
408 (PID.TID 0000.0001) > KPPwriteState = .FALSE.,
409 (PID.TID 0000.0001) > kpp_dumpFreq = 0.,
410 (PID.TID 0000.0001) > kpp_tavefreq = 0.,
411 (PID.TID 0000.0001) > Ricr = 0.3583,
412 (PID.TID 0000.0001) > Riinfty = 0.6998,
413 (PID.TID 0000.0001) > /
414 (PID.TID 0000.0001)
415 (PID.TID 0000.0001) KPP_INIT: finished reading data.kpp
416 (PID.TID 0000.0001)
417 (PID.TID 0000.0001) SEAICE_READPARMS: opening data.seaice
418 (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.seaice
419 (PID.TID 0000.0001) // =======================================================
420 (PID.TID 0000.0001) // Parameter file "data.seaice"
421 (PID.TID 0000.0001) // =======================================================
422 (PID.TID 0000.0001) ># SEAICE parameters
423 (PID.TID 0000.0001) > &SEAICE_PARM01
424 (PID.TID 0000.0001) >#
425 (PID.TID 0000.0001) > SEAICE_no_slip = .TRUE.,
426 (PID.TID 0000.0001) > SEAICEadvScheme = 7,
427 (PID.TID 0000.0001) > SEAICE_wetAlbTemp = 0.0,
428 (PID.TID 0000.0001) > SEAICE_mcPheeTaper = 0.92,
429 (PID.TID 0000.0001) > SEAICE_mcPheePiston= 0.0008333,
430 (PID.TID 0000.0001) > SEAICE_frazilFrac = 0.1,
431 (PID.TID 0000.0001) >#
432 (PID.TID 0000.0001) ># Northern Hemisphere are optimized values from
433 (PID.TID 0000.0001) ># /skylla/arctic/output/newcode_050109/JRA25_OPT3/input
434 (PID.TID 0000.0001) > SEAICE_dryIceAlb = 0.7000,
435 (PID.TID 0000.0001) > SEAICE_wetIceAlb = 0.7060,
436 (PID.TID 0000.0001) > SEAICE_drySnowAlb = 0.8652,
437 (PID.TID 0000.0001) > SEAICE_wetSnowAlb = 0.8085,
438 (PID.TID 0000.0001) > SEAICE_waterDrag = 5.5627,
439 (PID.TID 0000.0001) > SEAICE_drag = 0.00114,
440 (PID.TID 0000.0001) > HO = 0.6074,
441 (PID.TID 0000.0001) ># Southern Hemisphere are optimized values from
442 (PID.TID 0000.0001) ># skylla:/data14/scratch/hzhang/CP/JSO24/input
443 (PID.TID 0000.0001) > SEAICE_dryIceAlb_south = 0.85354,
444 (PID.TID 0000.0001) > SEAICE_wetIceAlb_south = 0.728965,
445 (PID.TID 0000.0001) > SEAICE_drySnowAlb_south = 0.77738,
446 (PID.TID 0000.0001) > SEAICE_wetSnowAlb_south = 0.7763,
447 (PID.TID 0000.0001) > SEAICE_waterDrag_south = 5.6328,
448 (PID.TID 0000.0001) > SEAICE_drag_south = 0.00121396,
449 (PID.TID 0000.0001) > HO_south = 0.98196,
450 (PID.TID 0000.0001) >#
451 (PID.TID 0000.0001) ># SEAICE_strength = 2.2640e+04, An's Arctic optimized value
452 (PID.TID 0000.0001) ># SEAICE_strength = 9.8191e+03, Hong's Southern Ocean optimized value
453 (PID.TID 0000.0001) > SEAICE_strength = 1.623e+04,
454 (PID.TID 0000.0001) > LSR_ERROR = 2e-4,
455 (PID.TID 0000.0001) > SEAICE_saltFrac = 0.3849,
456 (PID.TID 0000.0001) > /
457 (PID.TID 0000.0001) >
458 (PID.TID 0000.0001) > &SEAICE_PARM03
459 (PID.TID 0000.0001) > /
460 (PID.TID 0000.0001)
461 (PID.TID 0000.0001) SEAICE_READPARMS: finished reading data.seaice
462 (PID.TID 0000.0001) SALT_PLUME_READPARMS: opening data.salt_plume
463 (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.salt_plume
464 (PID.TID 0000.0001) // =======================================================
465 (PID.TID 0000.0001) // Parameter file "data.salt_plume"
466 (PID.TID 0000.0001) // =======================================================
467 (PID.TID 0000.0001) > &SALT_PLUME_PARM01
468 (PID.TID 0000.0001) ># turn off salt plume in Southern Ocean
469 (PID.TID 0000.0001) > SaltPlumeSouthernOcean = .FALSE.
470 (PID.TID 0000.0001) ># optimized values from
471 (PID.TID 0000.0001) ># /skylla/arctic/output/opt3/OPT3_c81/input
472 (PID.TID 0000.0001) > CriterionType = 2
473 (PID.TID 0000.0001) > SaltPlumeCriterion = 0.018D0
474 (PID.TID 0000.0001) > SPovershoot = 1.0D0
475 (PID.TID 0000.0001) > PlumeMethod = 1
476 (PID.TID 0000.0001) > Npower = 5
477 (PID.TID 0000.0001) > /
478 (PID.TID 0000.0001)
479 (PID.TID 0000.0001) SALT_PLUME_READPARMS: finished reading data.salt_plume
480 (PID.TID 0000.0001) DIAGNOSTICS_READPARMS: opening data.diagnostics
481 (PID.TID 0000.0001) OPEN_COPY_DATA_FILE: opening file data.diagnostics
482 (PID.TID 0000.0001) // =======================================================
483 (PID.TID 0000.0001) // Parameter file "data.diagnostics"
484 (PID.TID 0000.0001) // =======================================================
485 (PID.TID 0000.0001) ># Diagnostic Package Choices
486 (PID.TID 0000.0001) >#
487 (PID.TID 0000.0001) ># 6-hourly 2-D fields:
488 (PID.TID 0000.0001) ># ====================
489 (PID.TID 0000.0001) >#
490 (PID.TID 0000.0001) ># oceTAUX zonal surface wind stress, >0 increases uVel (N/m^2)
491 (PID.TID 0000.0001) ># oceTAUY meridional surf. wind stress, >0 increases vVel (N/m^2)
492 (PID.TID 0000.0001) ># oceFWflx net surface Fresh-Water flux into ocean, >0 decreases salinity (kg/m^2/s)
493 (PID.TID 0000.0001) ># oceSflux net surface Salt flux into the ocean, >0 increases salinity (g/m^2/s)
494 (PID.TID 0000.0001) ># oceQnet net surface heat flux into the ocean, >0 increases theta (W/m^2)
495 (PID.TID 0000.0001) ># oceQsw net Short-Wave radiation (+=down), >0 increases theta (W/m^2)
496 (PID.TID 0000.0001) ># KPPhbl KPP boundary layer depth, bulk Ri criterion
497 (PID.TID 0000.0001) ># MXLDEPTH Mixed layer depth, dT=.8degC density criterion
498 (PID.TID 0000.0001) ># SST Sea Surface Temperature (degC,K)
499 (PID.TID 0000.0001) >#
500 (PID.TID 0000.0001) ># daily 2-D fields:
501 (PID.TID 0000.0001) ># =================
502 (PID.TID 0000.0001) >#
503 (PID.TID 0000.0001) ># ETAN Perturbation of Surface (pressure, height) (Pa,m)
504 (PID.TID 0000.0001) ># PHIBOT ocean bottom pressure / top. atmos geo-Potential
505 (PID.TID 0000.0001) ># SSS Sea Surface Salinity (g/kg)
506 (PID.TID 0000.0001) ># SIarea SEAICE fractional ice-covered area [0 to 1]
507 (PID.TID 0000.0001) ># SIheff SEAICE effective ice thickness (m)
508 (PID.TID 0000.0001) ># SIuice SEAICE zonal ice velocity, >0 from West to East (m/s)
509 (PID.TID 0000.0001) ># SIvice SEAICE merid. ice velocity, >0 from South to North (m/s)
510 (PID.TID 0000.0001) ># SIhsnow SEAICE snow thickness (m)
511 (PID.TID 0000.0001) ># SIhsalt SEAICE effective salinity (g/m^2)
512 (PID.TID 0000.0001) >#
513 (PID.TID 0000.0001) ># 3-day 3-D fields:
514 (PID.TID 0000.0001) ># =================
515 (PID.TID 0000.0001) >#
516 (PID.TID 0000.0001) ># SALTanom Salt anomaly (=SALT-35; g/kg)
517 (PID.TID 0000.0001) ># THETA Potential Temperature (degC)
518 (PID.TID 0000.0001) ># UVELMASS Zonal Mass-Weighted Comp of Velocity (m/s)
519 (PID.TID 0000.0001) ># VVELMASS Meridional Mass-Weighted Comp of Velocity (m/s)
520 (PID.TID 0000.0001) ># WVELMASS Vertical Mass-Weighted Comp of Velocity (m/s)
521 (PID.TID 0000.0001) >#
522 (PID.TID 0000.0001) ># 30-day 3-D fields:
523 (PID.TID 0000.0001) ># =================
524 (PID.TID 0000.0001) >#
525 (PID.TID 0000.0001) ># WTHMASS Vertical Mass-Weight Transp of Pot Temp (degC.m/s)
526 (PID.TID 0000.0001) ># WSLTMASS Vertical Mass-Weight Transp of Salinity (PSU.m/s)
527 (PID.TID 0000.0001) ># ADVr_TH Vertical Advective Flux of Pot.Temperature (degC.m^3/s)
528 (PID.TID 0000.0001) ># ADVx_TH Zonal Advective Flux of Pot.Temperature (degC.m^3/s)
529 (PID.TID 0000.0001) ># ADVy_TH Meridional Advective Flux of Pot.Temperature (degC.m^3/s)
530 (PID.TID 0000.0001) ># DFrI_TH Vertical Diffusive Flux of Pot.Temperature (Implicit part)
531 (PID.TID 0000.0001) ># ADVr_SLT Vertical Advective Flux of Salinity
532 (PID.TID 0000.0001) ># ADVx_SLT Zonal Advective Flux of Salinity
533 (PID.TID 0000.0001) ># ADVy_SLT Meridional Advective Flux of Salinity
534 (PID.TID 0000.0001) ># DFrI_SLT Vertical Diffusive Flux of Salinity (Implicit part)
535 (PID.TID 0000.0001) ># KPPdiffT Vertical diffusion coefficient for heat
536 (PID.TID 0000.0001) ># KPPghat Nonlocal transport coefficient
537 (PID.TID 0000.0001) ># KPPfrac Short-wave flux fraction penetrating mixing layer
538 (PID.TID 0000.0001) >#
539 (PID.TID 0000.0001) > &diagnostics_list
540 (PID.TID 0000.0001) > frequency(1) = 21600.,
541 (PID.TID 0000.0001) > fields(1,1) = 'oceTAUX ',
542 (PID.TID 0000.0001) > filename(1) = 'oceTAUX',
543 (PID.TID 0000.0001) > frequency(2) = 21600.,
544 (PID.TID 0000.0001) > fields(1,2) = 'oceTAUY ',
545 (PID.TID 0000.0001) > filename(2) = 'oceTAUY',
546 (PID.TID 0000.0001) > frequency(3) = 21600.,
547 (PID.TID 0000.0001) > fields(1,3) = 'oceFWflx',
548 (PID.TID 0000.0001) > filename(3) = 'oceFWflx',
549 (PID.TID 0000.0001) > frequency(4) = 21600.,
550 (PID.TID 0000.0001) > fields(1,4) = 'oceSflux',
551 (PID.TID 0000.0001) > filename(4) = 'oceSflux',
552 (PID.TID 0000.0001) > frequency(5) = 21600.,
553 (PID.TID 0000.0001) > fields(1,5) = 'oceQnet ',
554 (PID.TID 0000.0001) > filename(5) = 'oceQnet',
555 (PID.TID 0000.0001) > frequency(6) = 21600.,
556 (PID.TID 0000.0001) > fields(1,6) = 'oceQsw ',
557 (PID.TID 0000.0001) > filename(6) = 'oceQsw',
558 (PID.TID 0000.0001) > frequency(7) = 21600.,
559 (PID.TID 0000.0001) > fields(1,7) = 'KPPhbl ',
560 (PID.TID 0000.0001) > filename(7) = 'KPPhbl',
561 (PID.TID 0000.0001) > frequency(8) = 21600.,
562 (PID.TID 0000.0001) > fields(1,8) = 'MXLDEPTH',
563 (PID.TID 0000.0001) > filename(8) = 'MXLDEPTH',
564 (PID.TID 0000.0001) > frequency(9) = 21600.,
565 (PID.TID 0000.0001) > fields(1,9) = 'THETA ',
566 (PID.TID 0000.0001) > levels(1,9) = 1.,
567 (PID.TID 0000.0001) > filename(9) = 'SST',
568 (PID.TID 0000.0001) > frequency(10) = 86400.,
569 (PID.TID 0000.0001) > fields(1,10) = 'ETAN ',
570 (PID.TID 0000.0001) > filename(10) = 'ETAN',
571 (PID.TID 0000.0001) > frequency(11) = 86400.,
572 (PID.TID 0000.0001) > fields(1,11) = 'PHIBOT ',
573 (PID.TID 0000.0001) > filename(11) = 'PHIBOT',
574 (PID.TID 0000.0001) > frequency(12) = 86400.,
575 (PID.TID 0000.0001) > fields(1,12) = 'SALT ',
576 (PID.TID 0000.0001) > levels(1,12) = 1.,
577 (PID.TID 0000.0001) > filename(12) = 'SSS',
578 (PID.TID 0000.0001) > frequency(13) = 86400.,
579 (PID.TID 0000.0001) > fields(1,13) = 'SIarea ',
580 (PID.TID 0000.0001) > filename(13) = 'SIarea',
581 (PID.TID 0000.0001) > frequency(14) = 86400.,
582 (PID.TID 0000.0001) > fields(1,14) = 'SIheff ',
583 (PID.TID 0000.0001) > filename(14) = 'SIheff',
584 (PID.TID 0000.0001) > frequency(15) = 86400.,
585 (PID.TID 0000.0001) > fields(1,15) = 'SIuice ',
586 (PID.TID 0000.0001) > filename(15) = 'SIuice',
587 (PID.TID 0000.0001) > frequency(16) = 86400.,
588 (PID.TID 0000.0001) > fields(1,16) = 'SIvice ',
589 (PID.TID 0000.0001) > filename(16) = 'SIvice',
590 (PID.TID 0000.0001) > frequency(17) = 86400.,
591 (PID.TID 0000.0001) > fields(1,17) = 'SIhsnow ',
592 (PID.TID 0000.0001) > filename(17) = 'SIhsnow',
593 (PID.TID 0000.0001) > frequency(18) = 86400.,
594 (PID.TID 0000.0001) > fields(1,18) = 'SIhsalt ',
595 (PID.TID 0000.0001) > filename(18) = 'SIhsalt',
596 (PID.TID 0000.0001) > frequency(19) = 259200.,
597 (PID.TID 0000.0001) > fields(1,19) = 'SALTanom',
598 (PID.TID 0000.0001) > filename(19) = 'SALTanom',
599 (PID.TID 0000.0001) > frequency(20) = 259200.,
600 (PID.TID 0000.0001) > fields(1,20) = 'THETA ',
601 (PID.TID 0000.0001) > filename(20) = 'THETA',
602 (PID.TID 0000.0001) > frequency(21) = 259200.,
603 (PID.TID 0000.0001) > fields(1,21) = 'UVELMASS',
604 (PID.TID 0000.0001) > filename(21) = 'UVELMASS',
605 (PID.TID 0000.0001) > frequency(22) = 259200.,
606 (PID.TID 0000.0001) > fields(1,22) = 'VVELMASS',
607 (PID.TID 0000.0001) > filename(22) = 'VVELMASS',
608 (PID.TID 0000.0001) > frequency(23) = 259200.,
609 (PID.TID 0000.0001) > fields(1,23) = 'WVELMASS',
610 (PID.TID 0000.0001) > filename(23) = 'WVELMASS',
611 (PID.TID 0000.0001) > frequency(24) = 2592000.,
612 (PID.TID 0000.0001) > fields(1,24) = 'WTHMASS ',
613 (PID.TID 0000.0001) > filename(24) = 'WTHMASS',
614 (PID.TID 0000.0001) > frequency(25) = 2592000.,
615 (PID.TID 0000.0001) > fields(1,25) = 'WSLTMASS',
616 (PID.TID 0000.0001) > filename(25) = 'WSLTMASS',
617 (PID.TID 0000.0001) > frequency(26) = 2592000.,
618 (PID.TID 0000.0001) > fields(1,26) = 'ADVr_TH ',
619 (PID.TID 0000.0001) > filename(26) = 'ADVr_TH',
620 (PID.TID 0000.0001) > frequency(27) = 2592000.,
621 (PID.TID 0000.0001) > fields(1,27) = 'ADVx_TH ',
622 (PID.TID 0000.0001) > filename(27) = 'ADVx_TH',
623 (PID.TID 0000.0001) > frequency(28) = 2592000.,
624 (PID.TID 0000.0001) > fields(1,28) = 'ADVy_TH ',
625 (PID.TID 0000.0001) > filename(28) = 'ADVy_TH',
626 (PID.TID 0000.0001) > frequency(29) = 2592000.,
627 (PID.TID 0000.0001) > fields(1,29) = 'DFrI_TH ',
628 (PID.TID 0000.0001) > filename(29) = 'DFrI_TH'
629 (PID.TID 0000.0001) > frequency(30) = 2592000.,
630 (PID.TID 0000.0001) > fields(1,30) = 'ADVr_SLT',
631 (PID.TID 0000.0001) > filename(30) = 'ADVr_SLT',
632 (PID.TID 0000.0001) > frequency(31) = 2592000.,
633 (PID.TID 0000.0001) > fields(1,31) = 'ADVx_SLT',
634 (PID.TID 0000.0001) > filename(31) = 'ADVx_SLT',
635 (PID.TID 0000.0001) > frequency(32) = 2592000.,
636 (PID.TID 0000.0001) > fields(1,32) = 'ADVy_SLT',
637 (PID.TID 0000.0001) > filename(32) = 'ADVy_SLT',
638 (PID.TID 0000.0001) > frequency(33) = 2592000.,
639 (PID.TID 0000.0001) > fields(1,33) = 'DFrI_SLT',
640 (PID.TID 0000.0001) > filename(33) = 'DFrI_SLT'
641 (PID.TID 0000.0001) > frequency(34) = 2592000.,
642 (PID.TID 0000.0001) > fields(1,34) = 'KPPdiffT',
643 (PID.TID 0000.0001) > filename(34) = 'KPPdiffT',
644 (PID.TID 0000.0001) > frequency(35) = 2592000.,
645 (PID.TID 0000.0001) > fields(1,35) = 'KPPghatK',
646 (PID.TID 0000.0001) > filename(35) = 'KPPghatK',
647 (PID.TID 0000.0001) > frequency(36) = 2592000.,
648 (PID.TID 0000.0001) > fields(1,36) = 'KPPfrac ',
649 (PID.TID 0000.0001) > filename(36) = 'KPPfrac',
650 (PID.TID 0000.0001) > /
651 (PID.TID 0000.0001) >
652 (PID.TID 0000.0001) ># Parameter for Diagnostics of per level statistics:
653 (PID.TID 0000.0001) >#-----------------
654 (PID.TID 0000.0001) ># for each output-stream:
655 (PID.TID 0000.0001) ># stat_fname(n) : prefix of the output file name (only 8.c long) for
656 (PID.TID 0000.0001) >#outp.stream n
657 (PID.TID 0000.0001) ># stat_freq(n):< 0 : write snap-shot output every |stat_freq| seconds
658 (PID.TID 0000.0001) ># > 0 : write time-average output every stat_freq seconds
659 (PID.TID 0000.0001) ># stat_phase(n) : write at time = stat_phase + multiple of |stat_freq|
660 (PID.TID 0000.0001) ># stat_region(:,n) : list of "regions" (default: 1 region only=global)
661 (PID.TID 0000.0001) ># stat_fields(:,n) : list of diagnostics fields (8.c) (see
662 (PID.TID 0000.0001) >#"available_diagnostics.log"
663 (PID.TID 0000.0001) ># file for the list of all available diag. in this particular
664 (PID.TID 0000.0001) >#config)
665 (PID.TID 0000.0001) >#-----------------
666 (PID.TID 0000.0001) > &DIAG_STATIS_PARMS
667 (PID.TID 0000.0001) >#- an example just to check the agreement with MONITOR output:
668 (PID.TID 0000.0001) >#stat_fields(1,1)= 'ETAN ','UVEL ','VVEL ','WVEL ', 'THETA ',
669 (PID.TID 0000.0001) ># stat_fname(1)= 'dynStDiag',
670 (PID.TID 0000.0001) ># stat_freq(1)= -864000.,
671 (PID.TID 0000.0001) ># stat_phase(1)= 0.,
672 (PID.TID 0000.0001) > /
673 (PID.TID 0000.0001)
674 (PID.TID 0000.0001) S/R DIAGNOSTICS_READPARMS, read namelist "diagnostics_list": start
675 (PID.TID 0000.0001) S/R DIAGNOSTICS_READPARMS, read namelist "diagnostics_list": OK
676 (PID.TID 0000.0001) S/R DIAGNOSTICS_READPARMS, read namelist "DIAG_STATIS_PARMS": start
677 (PID.TID 0000.0001) S/R DIAGNOSTICS_READPARMS, read namelist "DIAG_STATIS_PARMS": OK
678 (PID.TID 0000.0001) DIAGNOSTICS_READPARMS: global parameter summary:
679 (PID.TID 0000.0001) dumpAtLast = /* always write time-ave diags at the end */
680 (PID.TID 0000.0001) F
681 (PID.TID 0000.0001) ;
682 (PID.TID 0000.0001) diag_mnc = /* write NetCDF output files */
683 (PID.TID 0000.0001) F
684 (PID.TID 0000.0001) ;
685 (PID.TID 0000.0001) useMissingValue = /* put MissingValue where mask = 0 */
686 (PID.TID 0000.0001) F
687 (PID.TID 0000.0001) ;
688 (PID.TID 0000.0001) diagCG_maxIters = /* max number of iters in diag_cg2d */
689 (PID.TID 0000.0001) 100
690 (PID.TID 0000.0001) ;
691 (PID.TID 0000.0001) diagCG_resTarget = /* residual target for diag_cg2d */
692 (PID.TID 0000.0001) 1.000000000000000E-05
693 (PID.TID 0000.0001) ;
694 (PID.TID 0000.0001) -----------------------------------------------------
695 (PID.TID 0000.0001) DIAGNOSTICS_READPARMS: active diagnostics summary:
696 (PID.TID 0000.0001) -----------------------------------------------------
697 (PID.TID 0000.0001) Creating Output Stream: oceTAUX
698 (PID.TID 0000.0001) Output Frequency: 21600.000000 ; Phase: 0.000000
699 (PID.TID 0000.0001) Averaging Freq.: 21600.000000 , Phase: 0.000000 , Cycle: 1
700 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
701 (PID.TID 0000.0001) Levels: will be set later
702 (PID.TID 0000.0001) Fields: oceTAUX
703 (PID.TID 0000.0001) Creating Output Stream: oceTAUY
704 (PID.TID 0000.0001) Output Frequency: 21600.000000 ; Phase: 0.000000
705 (PID.TID 0000.0001) Averaging Freq.: 21600.000000 , Phase: 0.000000 , Cycle: 1
706 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
707 (PID.TID 0000.0001) Levels: will be set later
708 (PID.TID 0000.0001) Fields: oceTAUY
709 (PID.TID 0000.0001) Creating Output Stream: oceFWflx
710 (PID.TID 0000.0001) Output Frequency: 21600.000000 ; Phase: 0.000000
711 (PID.TID 0000.0001) Averaging Freq.: 21600.000000 , Phase: 0.000000 , Cycle: 1
712 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
713 (PID.TID 0000.0001) Levels: will be set later
714 (PID.TID 0000.0001) Fields: oceFWflx
715 (PID.TID 0000.0001) Creating Output Stream: oceSflux
716 (PID.TID 0000.0001) Output Frequency: 21600.000000 ; Phase: 0.000000
717 (PID.TID 0000.0001) Averaging Freq.: 21600.000000 , Phase: 0.000000 , Cycle: 1
718 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
719 (PID.TID 0000.0001) Levels: will be set later
720 (PID.TID 0000.0001) Fields: oceSflux
721 (PID.TID 0000.0001) Creating Output Stream: oceQnet
722 (PID.TID 0000.0001) Output Frequency: 21600.000000 ; Phase: 0.000000
723 (PID.TID 0000.0001) Averaging Freq.: 21600.000000 , Phase: 0.000000 , Cycle: 1
724 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
725 (PID.TID 0000.0001) Levels: will be set later
726 (PID.TID 0000.0001) Fields: oceQnet
727 (PID.TID 0000.0001) Creating Output Stream: oceQsw
728 (PID.TID 0000.0001) Output Frequency: 21600.000000 ; Phase: 0.000000
729 (PID.TID 0000.0001) Averaging Freq.: 21600.000000 , Phase: 0.000000 , Cycle: 1
730 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
731 (PID.TID 0000.0001) Levels: will be set later
732 (PID.TID 0000.0001) Fields: oceQsw
733 (PID.TID 0000.0001) Creating Output Stream: KPPhbl
734 (PID.TID 0000.0001) Output Frequency: 21600.000000 ; Phase: 0.000000
735 (PID.TID 0000.0001) Averaging Freq.: 21600.000000 , Phase: 0.000000 , Cycle: 1
736 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
737 (PID.TID 0000.0001) Levels: will be set later
738 (PID.TID 0000.0001) Fields: KPPhbl
739 (PID.TID 0000.0001) Creating Output Stream: MXLDEPTH
740 (PID.TID 0000.0001) Output Frequency: 21600.000000 ; Phase: 0.000000
741 (PID.TID 0000.0001) Averaging Freq.: 21600.000000 , Phase: 0.000000 , Cycle: 1
742 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
743 (PID.TID 0000.0001) Levels: will be set later
744 (PID.TID 0000.0001) Fields: MXLDEPTH
745 (PID.TID 0000.0001) Creating Output Stream: SST
746 (PID.TID 0000.0001) Output Frequency: 21600.000000 ; Phase: 0.000000
747 (PID.TID 0000.0001) Averaging Freq.: 21600.000000 , Phase: 0.000000 , Cycle: 1
748 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
749 (PID.TID 0000.0001) Levels: 1.
750 (PID.TID 0000.0001) Fields: THETA
751 (PID.TID 0000.0001) Creating Output Stream: ETAN
752 (PID.TID 0000.0001) Output Frequency: 86400.000000 ; Phase: 0.000000
753 (PID.TID 0000.0001) Averaging Freq.: 86400.000000 , Phase: 0.000000 , Cycle: 1
754 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
755 (PID.TID 0000.0001) Levels: will be set later
756 (PID.TID 0000.0001) Fields: ETAN
757 (PID.TID 0000.0001) Creating Output Stream: PHIBOT
758 (PID.TID 0000.0001) Output Frequency: 86400.000000 ; Phase: 0.000000
759 (PID.TID 0000.0001) Averaging Freq.: 86400.000000 , Phase: 0.000000 , Cycle: 1
760 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
761 (PID.TID 0000.0001) Levels: will be set later
762 (PID.TID 0000.0001) Fields: PHIBOT
763 (PID.TID 0000.0001) Creating Output Stream: SSS
764 (PID.TID 0000.0001) Output Frequency: 86400.000000 ; Phase: 0.000000
765 (PID.TID 0000.0001) Averaging Freq.: 86400.000000 , Phase: 0.000000 , Cycle: 1
766 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
767 (PID.TID 0000.0001) Levels: 1.
768 (PID.TID 0000.0001) Fields: SALT
769 (PID.TID 0000.0001) Creating Output Stream: SIarea
770 (PID.TID 0000.0001) Output Frequency: 86400.000000 ; Phase: 0.000000
771 (PID.TID 0000.0001) Averaging Freq.: 86400.000000 , Phase: 0.000000 , Cycle: 1
772 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
773 (PID.TID 0000.0001) Levels: will be set later
774 (PID.TID 0000.0001) Fields: SIarea
775 (PID.TID 0000.0001) Creating Output Stream: SIheff
776 (PID.TID 0000.0001) Output Frequency: 86400.000000 ; Phase: 0.000000
777 (PID.TID 0000.0001) Averaging Freq.: 86400.000000 , Phase: 0.000000 , Cycle: 1
778 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
779 (PID.TID 0000.0001) Levels: will be set later
780 (PID.TID 0000.0001) Fields: SIheff
781 (PID.TID 0000.0001) Creating Output Stream: SIuice
782 (PID.TID 0000.0001) Output Frequency: 86400.000000 ; Phase: 0.000000
783 (PID.TID 0000.0001) Averaging Freq.: 86400.000000 , Phase: 0.000000 , Cycle: 1
784 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
785 (PID.TID 0000.0001) Levels: will be set later
786 (PID.TID 0000.0001) Fields: SIuice
787 (PID.TID 0000.0001) Creating Output Stream: SIvice
788 (PID.TID 0000.0001) Output Frequency: 86400.000000 ; Phase: 0.000000
789 (PID.TID 0000.0001) Averaging Freq.: 86400.000000 , Phase: 0.000000 , Cycle: 1
790 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
791 (PID.TID 0000.0001) Levels: will be set later
792 (PID.TID 0000.0001) Fields: SIvice
793 (PID.TID 0000.0001) Creating Output Stream: SIhsnow
794 (PID.TID 0000.0001) Output Frequency: 86400.000000 ; Phase: 0.000000
795 (PID.TID 0000.0001) Averaging Freq.: 86400.000000 , Phase: 0.000000 , Cycle: 1
796 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
797 (PID.TID 0000.0001) Levels: will be set later
798 (PID.TID 0000.0001) Fields: SIhsnow
799 (PID.TID 0000.0001) Creating Output Stream: SIhsalt
800 (PID.TID 0000.0001) Output Frequency: 86400.000000 ; Phase: 0.000000
801 (PID.TID 0000.0001) Averaging Freq.: 86400.000000 , Phase: 0.000000 , Cycle: 1
802 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
803 (PID.TID 0000.0001) Levels: will be set later
804 (PID.TID 0000.0001) Fields: SIhsalt
805 (PID.TID 0000.0001) Creating Output Stream: SALTanom
806 (PID.TID 0000.0001) Output Frequency: 259200.000000 ; Phase: 0.000000
807 (PID.TID 0000.0001) Averaging Freq.: 259200.000000 , Phase: 0.000000 , Cycle: 1
808 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
809 (PID.TID 0000.0001) Levels: will be set later
810 (PID.TID 0000.0001) Fields: SALTanom
811 (PID.TID 0000.0001) Creating Output Stream: THETA
812 (PID.TID 0000.0001) Output Frequency: 259200.000000 ; Phase: 0.000000
813 (PID.TID 0000.0001) Averaging Freq.: 259200.000000 , Phase: 0.000000 , Cycle: 1
814 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
815 (PID.TID 0000.0001) Levels: will be set later
816 (PID.TID 0000.0001) Fields: THETA
817 (PID.TID 0000.0001) Creating Output Stream: UVELMASS
818 (PID.TID 0000.0001) Output Frequency: 259200.000000 ; Phase: 0.000000
819 (PID.TID 0000.0001) Averaging Freq.: 259200.000000 , Phase: 0.000000 , Cycle: 1
820 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
821 (PID.TID 0000.0001) Levels: will be set later
822 (PID.TID 0000.0001) Fields: UVELMASS
823 (PID.TID 0000.0001) Creating Output Stream: VVELMASS
824 (PID.TID 0000.0001) Output Frequency: 259200.000000 ; Phase: 0.000000
825 (PID.TID 0000.0001) Averaging Freq.: 259200.000000 , Phase: 0.000000 , Cycle: 1
826 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
827 (PID.TID 0000.0001) Levels: will be set later
828 (PID.TID 0000.0001) Fields: VVELMASS
829 (PID.TID 0000.0001) Creating Output Stream: WVELMASS
830 (PID.TID 0000.0001) Output Frequency: 259200.000000 ; Phase: 0.000000
831 (PID.TID 0000.0001) Averaging Freq.: 259200.000000 , Phase: 0.000000 , Cycle: 1
832 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
833 (PID.TID 0000.0001) Levels: will be set later
834 (PID.TID 0000.0001) Fields: WVELMASS
835 (PID.TID 0000.0001) Creating Output Stream: WTHMASS
836 (PID.TID 0000.0001) Output Frequency: 2592000.000000 ; Phase: 0.000000
837 (PID.TID 0000.0001) Averaging Freq.: 2592000.000000 , Phase: 0.000000 , Cycle: 1
838 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
839 (PID.TID 0000.0001) Levels: will be set later
840 (PID.TID 0000.0001) Fields: WTHMASS
841 (PID.TID 0000.0001) Creating Output Stream: WSLTMASS
842 (PID.TID 0000.0001) Output Frequency: 2592000.000000 ; Phase: 0.000000
843 (PID.TID 0000.0001) Averaging Freq.: 2592000.000000 , Phase: 0.000000 , Cycle: 1
844 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
845 (PID.TID 0000.0001) Levels: will be set later
846 (PID.TID 0000.0001) Fields: WSLTMASS
847 (PID.TID 0000.0001) Creating Output Stream: ADVr_TH
848 (PID.TID 0000.0001) Output Frequency: 2592000.000000 ; Phase: 0.000000
849 (PID.TID 0000.0001) Averaging Freq.: 2592000.000000 , Phase: 0.000000 , Cycle: 1
850 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
851 (PID.TID 0000.0001) Levels: will be set later
852 (PID.TID 0000.0001) Fields: ADVr_TH
853 (PID.TID 0000.0001) Creating Output Stream: ADVx_TH
854 (PID.TID 0000.0001) Output Frequency: 2592000.000000 ; Phase: 0.000000
855 (PID.TID 0000.0001) Averaging Freq.: 2592000.000000 , Phase: 0.000000 , Cycle: 1
856 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
857 (PID.TID 0000.0001) Levels: will be set later
858 (PID.TID 0000.0001) Fields: ADVx_TH
859 (PID.TID 0000.0001) Creating Output Stream: ADVy_TH
860 (PID.TID 0000.0001) Output Frequency: 2592000.000000 ; Phase: 0.000000
861 (PID.TID 0000.0001) Averaging Freq.: 2592000.000000 , Phase: 0.000000 , Cycle: 1
862 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
863 (PID.TID 0000.0001) Levels: will be set later
864 (PID.TID 0000.0001) Fields: ADVy_TH
865 (PID.TID 0000.0001) Creating Output Stream: DFrI_TH
866 (PID.TID 0000.0001) Output Frequency: 2592000.000000 ; Phase: 0.000000
867 (PID.TID 0000.0001) Averaging Freq.: 2592000.000000 , Phase: 0.000000 , Cycle: 1
868 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
869 (PID.TID 0000.0001) Levels: will be set later
870 (PID.TID 0000.0001) Fields: DFrI_TH
871 (PID.TID 0000.0001) Creating Output Stream: ADVr_SLT
872 (PID.TID 0000.0001) Output Frequency: 2592000.000000 ; Phase: 0.000000
873 (PID.TID 0000.0001) Averaging Freq.: 2592000.000000 , Phase: 0.000000 , Cycle: 1
874 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
875 (PID.TID 0000.0001) Levels: will be set later
876 (PID.TID 0000.0001) Fields: ADVr_SLT
877 (PID.TID 0000.0001) Creating Output Stream: ADVx_SLT
878 (PID.TID 0000.0001) Output Frequency: 2592000.000000 ; Phase: 0.000000
879 (PID.TID 0000.0001) Averaging Freq.: 2592000.000000 , Phase: 0.000000 , Cycle: 1
880 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
881 (PID.TID 0000.0001) Levels: will be set later
882 (PID.TID 0000.0001) Fields: ADVx_SLT
883 (PID.TID 0000.0001) Creating Output Stream: ADVy_SLT
884 (PID.TID 0000.0001) Output Frequency: 2592000.000000 ; Phase: 0.000000
885 (PID.TID 0000.0001) Averaging Freq.: 2592000.000000 , Phase: 0.000000 , Cycle: 1
886 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
887 (PID.TID 0000.0001) Levels: will be set later
888 (PID.TID 0000.0001) Fields: ADVy_SLT
889 (PID.TID 0000.0001) Creating Output Stream: DFrI_SLT
890 (PID.TID 0000.0001) Output Frequency: 2592000.000000 ; Phase: 0.000000
891 (PID.TID 0000.0001) Averaging Freq.: 2592000.000000 , Phase: 0.000000 , Cycle: 1
892 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
893 (PID.TID 0000.0001) Levels: will be set later
894 (PID.TID 0000.0001) Fields: DFrI_SLT
895 (PID.TID 0000.0001) Creating Output Stream: KPPdiffT
896 (PID.TID 0000.0001) Output Frequency: 2592000.000000 ; Phase: 0.000000
897 (PID.TID 0000.0001) Averaging Freq.: 2592000.000000 , Phase: 0.000000 , Cycle: 1
898 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
899 (PID.TID 0000.0001) Levels: will be set later
900 (PID.TID 0000.0001) Fields: KPPdiffT
901 (PID.TID 0000.0001) Creating Output Stream: KPPghatK
902 (PID.TID 0000.0001) Output Frequency: 2592000.000000 ; Phase: 0.000000
903 (PID.TID 0000.0001) Averaging Freq.: 2592000.000000 , Phase: 0.000000 , Cycle: 1
904 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
905 (PID.TID 0000.0001) Levels: will be set later
906 (PID.TID 0000.0001) Fields: KPPghatK
907 (PID.TID 0000.0001) Creating Output Stream: KPPfrac
908 (PID.TID 0000.0001) Output Frequency: 2592000.000000 ; Phase: 0.000000
909 (PID.TID 0000.0001) Averaging Freq.: 2592000.000000 , Phase: 0.000000 , Cycle: 1
910 (PID.TID 0000.0001) missing value: 1.234567000000E+05 ; for integers: 123456789
911 (PID.TID 0000.0001) Levels: will be set later
912 (PID.TID 0000.0001) Fields: KPPfrac
913 (PID.TID 0000.0001) -----------------------------------------------------
914 (PID.TID 0000.0001) DIAGNOSTICS_READPARMS: statistics diags. summary:
915 (PID.TID 0000.0001) -----------------------------------------------------
916 (PID.TID 0000.0001)
917 (PID.TID 0000.0001) SET_PARMS: done
918 (PID.TID 0000.0001) Enter INI_VERTICAL_GRID: setInterFDr= T ; setCenterDr= F
919 (PID.TID 0000.0001) tile: 1 ; Read from file grid_cs32.face001.bin
920 (PID.TID 0000.0001) => xC yC dxF dyF rA xG yG dxV dyU rAz dxC dyC rAw rAs dxG dyG AngleCS AngleSN
921 (PID.TID 0000.0001) tile: 2 ; Read from file grid_cs32.face001.bin
922 (PID.TID 0000.0001) => xC yC dxF dyF rA xG yG dxV dyU rAz dxC dyC rAw rAs dxG dyG AngleCS AngleSN
923 (PID.TID 0000.0001) tile: 3 ; Read from file grid_cs32.face002.bin
924 (PID.TID 0000.0001) => xC yC dxF dyF rA xG yG dxV dyU rAz dxC dyC rAw rAs dxG dyG AngleCS AngleSN
925 (PID.TID 0000.0001) tile: 4 ; Read from file grid_cs32.face002.bin
926 (PID.TID 0000.0001) => xC yC dxF dyF rA xG yG dxV dyU rAz dxC dyC rAw rAs dxG dyG AngleCS AngleSN
927 (PID.TID 0000.0001) tile: 5 ; Read from file grid_cs32.face003.bin
928 (PID.TID 0000.0001) => xC yC dxF dyF rA xG yG dxV dyU rAz dxC dyC rAw rAs dxG dyG AngleCS AngleSN
929 (PID.TID 0000.0001) tile: 6 ; Read from file grid_cs32.face003.bin
930 (PID.TID 0000.0001) => xC yC dxF dyF rA xG yG dxV dyU rAz dxC dyC rAw rAs dxG dyG AngleCS AngleSN
931 (PID.TID 0000.0001) tile: 7 ; Read from file grid_cs32.face004.bin
932 (PID.TID 0000.0001) => xC yC dxF dyF rA xG yG dxV dyU rAz dxC dyC rAw rAs dxG dyG AngleCS AngleSN
933 (PID.TID 0000.0001) tile: 8 ; Read from file grid_cs32.face004.bin
934 (PID.TID 0000.0001) => xC yC dxF dyF rA xG yG dxV dyU rAz dxC dyC rAw rAs dxG dyG AngleCS AngleSN
935 (PID.TID 0000.0001) tile: 9 ; Read from file grid_cs32.face005.bin
936 (PID.TID 0000.0001) => xC yC dxF dyF rA xG yG dxV dyU rAz dxC dyC rAw rAs dxG dyG AngleCS AngleSN
937 (PID.TID 0000.0001) tile: 10 ; Read from file grid_cs32.face005.bin
938 (PID.TID 0000.0001) => xC yC dxF dyF rA xG yG dxV dyU rAz dxC dyC rAw rAs dxG dyG AngleCS AngleSN
939 (PID.TID 0000.0001) tile: 11 ; Read from file grid_cs32.face006.bin
940 (PID.TID 0000.0001) => xC yC dxF dyF rA xG yG dxV dyU rAz dxC dyC rAw rAs dxG dyG AngleCS AngleSN
941 (PID.TID 0000.0001) tile: 12 ; Read from file grid_cs32.face006.bin
942 (PID.TID 0000.0001) => xC yC dxF dyF rA xG yG dxV dyU rAz dxC dyC rAw rAs dxG dyG AngleCS AngleSN
943 (PID.TID 0000.0001) %MON XC_max = 1.7854351589505E+02
944 (PID.TID 0000.0001) %MON XC_min = -1.7854351589505E+02
945 (PID.TID 0000.0001) %MON XC_mean = -3.5527136788005E-15
946 (PID.TID 0000.0001) %MON XC_sd = 1.0355545336287E+02
947 (PID.TID 0000.0001) %MON XG_max = 1.8000000000000E+02
948 (PID.TID 0000.0001) %MON XG_min = -1.7708797161002E+02
949 (PID.TID 0000.0001) %MON XG_mean = 1.8603515625000E+00
950 (PID.TID 0000.0001) %MON XG_sd = 1.0357130300504E+02
951 (PID.TID 0000.0001) %MON DXC_max = 3.2375185836900E+05
952 (PID.TID 0000.0001) %MON DXC_min = 1.1142031410131E+05
953 (PID.TID 0000.0001) %MON DXC_mean = 2.8605689051214E+05
954 (PID.TID 0000.0001) %MON DXC_sd = 3.4042087138252E+04
955 (PID.TID 0000.0001) %MON DXF_max = 3.2369947500827E+05
956 (PID.TID 0000.0001) %MON DXF_min = 1.2020820513318E+05
957 (PID.TID 0000.0001) %MON DXF_mean = 2.8605437324820E+05
958 (PID.TID 0000.0001) %MON DXF_sd = 3.4050524252539E+04
959 (PID.TID 0000.0001) %MON DXG_max = 3.2375195872773E+05
960 (PID.TID 0000.0001) %MON DXG_min = 1.0098378008791E+05
961 (PID.TID 0000.0001) %MON DXG_mean = 2.8603818508931E+05
962 (PID.TID 0000.0001) %MON DXG_sd = 3.4140406908005E+04
963 (PID.TID 0000.0001) %MON DXV_max = 3.2380418162750E+05
964 (PID.TID 0000.0001) %MON DXV_min = 8.0152299824136E+04
965 (PID.TID 0000.0001) %MON DXV_mean = 2.8603970633619E+05
966 (PID.TID 0000.0001) %MON DXV_sd = 3.4145142117723E+04
967 (PID.TID 0000.0001) %MON YC_max = 8.7940663871962E+01
968 (PID.TID 0000.0001) %MON YC_min = -8.7940663871962E+01
969 (PID.TID 0000.0001) %MON YC_mean = 1.1842378929335E-15
970 (PID.TID 0000.0001) %MON YC_sd = 3.8676242969072E+01
971 (PID.TID 0000.0001) %MON YG_max = 9.0000000000000E+01
972 (PID.TID 0000.0001) %MON YG_min = -9.0000000000000E+01
973 (PID.TID 0000.0001) %MON YG_mean = -5.9211894646675E-16
974 (PID.TID 0000.0001) %MON YG_sd = 3.8676895860710E+01
975 (PID.TID 0000.0001) %MON DYC_max = 3.2375185836900E+05
976 (PID.TID 0000.0001) %MON DYC_min = 1.1142031410131E+05
977 (PID.TID 0000.0001) %MON DYC_mean = 2.8605689051214E+05
978 (PID.TID 0000.0001) %MON DYC_sd = 3.4042087138252E+04
979 (PID.TID 0000.0001) %MON DYF_max = 3.2369947500827E+05
980 (PID.TID 0000.0001) %MON DYF_min = 1.2020820513318E+05
981 (PID.TID 0000.0001) %MON DYF_mean = 2.8605437324820E+05
982 (PID.TID 0000.0001) %MON DYF_sd = 3.4050524252539E+04
983 (PID.TID 0000.0001) %MON DYG_max = 3.2375195872773E+05
984 (PID.TID 0000.0001) %MON DYG_min = 1.0098378008791E+05
985 (PID.TID 0000.0001) %MON DYG_mean = 2.8603818508931E+05
986 (PID.TID 0000.0001) %MON DYG_sd = 3.4140406908005E+04
987 (PID.TID 0000.0001) %MON DYU_max = 3.2380418162750E+05
988 (PID.TID 0000.0001) %MON DYU_min = 8.0152299824136E+04
989 (PID.TID 0000.0001) %MON DYU_mean = 2.8603970633619E+05
990 (PID.TID 0000.0001) %MON DYU_sd = 3.4145142117723E+04
991 (PID.TID 0000.0001) %MON RA_max = 1.0479260248419E+11
992 (PID.TID 0000.0001) %MON RA_min = 1.4019007022556E+10
993 (PID.TID 0000.0001) %MON RA_mean = 8.2992246709265E+10
994 (PID.TID 0000.0001) %MON RA_sd = 1.7509089299457E+10
995 (PID.TID 0000.0001) %MON RAW_max = 1.0480965274559E+11
996 (PID.TID 0000.0001) %MON RAW_min = 1.2166903467143E+10
997 (PID.TID 0000.0001) %MON RAW_mean = 8.2992246709235E+10
998 (PID.TID 0000.0001) %MON RAW_sd = 1.7481917919656E+10
999 (PID.TID 0000.0001) %MON RAS_max = 1.0480965274559E+11
1000 (PID.TID 0000.0001) %MON RAS_min = 1.2166903467143E+10
1001 (PID.TID 0000.0001) %MON RAS_mean = 8.2992246709235E+10
1002 (PID.TID 0000.0001) %MON RAS_sd = 1.7481917919656E+10
1003 (PID.TID 0000.0001) %MON RAZ_max = 1.0484349334619E+11
1004 (PID.TID 0000.0001) %MON RAZ_min = 8.8317900612505E+09
1005 (PID.TID 0000.0001) %MON RAZ_mean = 8.2992246709235E+10
1006 (PID.TID 0000.0001) %MON RAZ_sd = 1.7482297311044E+10
1007 (PID.TID 0000.0001) %MON AngleCS_max = 9.9999994756719E-01
1008 (PID.TID 0000.0001) %MON AngleCS_min = -9.9968286884824E-01
1009 (PID.TID 0000.0001) %MON AngleCS_mean = 3.3078922539000E-01
1010 (PID.TID 0000.0001) %MON AngleCS_sd = 6.2496278958502E-01
1011 (PID.TID 0000.0001) %MON AngleSN_max = 9.9968286884824E-01
1012 (PID.TID 0000.0001) %MON AngleSN_min = -9.9999994756719E-01
1013 (PID.TID 0000.0001) %MON AngleSN_mean = -3.3078922539000E-01
1014 (PID.TID 0000.0001) %MON AngleSN_sd = 6.2496278958502E-01
1015 (PID.TID 0000.0001)
1016 (PID.TID 0000.0001) // =======================================================
1017 (PID.TID 0000.0001) // Calendar configuration >>> START <<<
1018 (PID.TID 0000.0001) // =======================================================
1019 (PID.TID 0000.0001)
1020 (PID.TID 0000.0001) modelstart = /* Start time of the model integration [s] */
1021 (PID.TID 0000.0001) 0.000000000000000E+00
1022 (PID.TID 0000.0001) ;
1023 (PID.TID 0000.0001) modelend = /* End time of the model integration [s] */
1024 (PID.TID 0000.0001) 8.640000000000000E+04
1025 (PID.TID 0000.0001) ;
1026 (PID.TID 0000.0001) modelstep = /* Time interval for a model forward step [s] */
1027 (PID.TID 0000.0001) 1.200000000000000E+03
1028 (PID.TID 0000.0001) ;
1029 (PID.TID 0000.0001) usingGregorianCalendar= /* Calendar Type: Gregorian Calendar */
1030 (PID.TID 0000.0001) T
1031 (PID.TID 0000.0001) ;
1032 (PID.TID 0000.0001) usingJulianCalendar = /* Calendar Type: Julian Calendar */
1033 (PID.TID 0000.0001) F
1034 (PID.TID 0000.0001) ;
1035 (PID.TID 0000.0001) usingModelCalendar = /* Calendar Type: Model Calendar */
1036 (PID.TID 0000.0001) F
1037 (PID.TID 0000.0001) ;
1038 (PID.TID 0000.0001) modelstartdate YYYYMMDD = /* Model start date YYYY-MM-DD */
1039 (PID.TID 0000.0001) 19920101
1040 (PID.TID 0000.0001) ;
1041 (PID.TID 0000.0001) modelstartdate HHMMSS = /* Model start date HH-MM-SS */
1042 (PID.TID 0000.0001) 0
1043 (PID.TID 0000.0001) ;
1044 (PID.TID 0000.0001) modelenddate YYYYMMDD = /* Model end date YYYY-MM-DD */
1045 (PID.TID 0000.0001) 19920102
1046 (PID.TID 0000.0001) ;
1047 (PID.TID 0000.0001) modelenddate HHMMSS = /* Model end date HH-MM-SS */
1048 (PID.TID 0000.0001) 0
1049 (PID.TID 0000.0001) ;
1050 (PID.TID 0000.0001) intyears = /* Number of calendar years affected by the integration */
1051 (PID.TID 0000.0001) 1
1052 (PID.TID 0000.0001) ;
1053 (PID.TID 0000.0001) intmonths= /* Number of calendar months affected by the integration */
1054 (PID.TID 0000.0001) 1
1055 (PID.TID 0000.0001) ;
1056 (PID.TID 0000.0001) intdays = /* Number of calendar days affected by the integration */
1057 (PID.TID 0000.0001) 1
1058 (PID.TID 0000.0001) ;
1059 (PID.TID 0000.0001) modeliter0 = /* Base timestep number */
1060 (PID.TID 0000.0001) 0
1061 (PID.TID 0000.0001) ;
1062 (PID.TID 0000.0001) modeliterend = /* Final timestep number */
1063 (PID.TID 0000.0001) 72
1064 (PID.TID 0000.0001) ;
1065 (PID.TID 0000.0001) modelintsteps= /* Number of model timesteps */
1066 (PID.TID 0000.0001) 72
1067 (PID.TID 0000.0001) ;
1068 (PID.TID 0000.0001)
1069 (PID.TID 0000.0001) // =======================================================
1070 (PID.TID 0000.0001) // Calendar configuration >>> END <<<
1071 (PID.TID 0000.0001) // =======================================================
1072 (PID.TID 0000.0001)
1073 (PID.TID 0000.0001) GAD_INIT_FIXED: GAD_OlMinSize= 4 0 2
1074 (PID.TID 0000.0001)
1075 (PID.TID 0000.0001) // ===================================
1076 (PID.TID 0000.0001) // GAD parameters :
1077 (PID.TID 0000.0001) // ===================================
1078 (PID.TID 0000.0001) tempAdvScheme = /* Temp. Horiz.Advection scheme selector */
1079 (PID.TID 0000.0001) 7
1080 (PID.TID 0000.0001) ;
1081 (PID.TID 0000.0001) tempVertAdvScheme = /* Temp. Vert. Advection scheme selector */
1082 (PID.TID 0000.0001) 7
1083 (PID.TID 0000.0001) ;
1084 (PID.TID 0000.0001) tempMultiDimAdvec = /* use Muti-Dim Advec method for Temp */
1085 (PID.TID 0000.0001) T
1086 (PID.TID 0000.0001) ;
1087 (PID.TID 0000.0001) tempSOM_Advection = /* use 2nd Order Moment Advection for Temp */
1088 (PID.TID 0000.0001) F
1089 (PID.TID 0000.0001) ;
1090 (PID.TID 0000.0001) AdamsBashforthGt = /* apply Adams-Bashforth extrapolation on Gt */
1091 (PID.TID 0000.0001) F
1092 (PID.TID 0000.0001) ;
1093 (PID.TID 0000.0001) AdamsBashforth_T = /* apply Adams-Bashforth extrapolation on Temp */
1094 (PID.TID 0000.0001) F
1095 (PID.TID 0000.0001) ;
1096 (PID.TID 0000.0001) saltAdvScheme = /* Salt. Horiz.advection scheme selector */
1097 (PID.TID 0000.0001) 7
1098 (PID.TID 0000.0001) ;
1099 (PID.TID 0000.0001) saltVertAdvScheme = /* Salt. Vert. Advection scheme selector */
1100 (PID.TID 0000.0001) 7
1101 (PID.TID 0000.0001) ;
1102 (PID.TID 0000.0001) saltMultiDimAdvec = /* use Muti-Dim Advec method for Salt */
1103 (PID.TID 0000.0001) T
1104 (PID.TID 0000.0001) ;
1105 (PID.TID 0000.0001) saltSOM_Advection = /* use 2nd Order Moment Advection for Salt */
1106 (PID.TID 0000.0001) F
1107 (PID.TID 0000.0001) ;
1108 (PID.TID 0000.0001) AdamsBashforthGs = /* apply Adams-Bashforth extrapolation on Gs */
1109 (PID.TID 0000.0001) F
1110 (PID.TID 0000.0001) ;
1111 (PID.TID 0000.0001) AdamsBashforth_S = /* apply Adams-Bashforth extrapolation on Salt */
1112 (PID.TID 0000.0001) F
1113 (PID.TID 0000.0001) ;
1114 (PID.TID 0000.0001) // ===================================
1115 (PID.TID 0000.0001)
1116 (PID.TID 0000.0001) // =======================================================
1117 (PID.TID 0000.0001) // External forcing (EXF) configuration >>> START <<<
1118 (PID.TID 0000.0001) // =======================================================
1119 (PID.TID 0000.0001)
1120 (PID.TID 0000.0001) EXF general parameters:
1121 (PID.TID 0000.0001)
1122 (PID.TID 0000.0001) exf_iprec = /* exf file precision */
1123 (PID.TID 0000.0001) 32
1124 (PID.TID 0000.0001) ;
1125 (PID.TID 0000.0001) useExfYearlyFields = /* add extension _YEAR to input file names */
1126 (PID.TID 0000.0001) F
1127 (PID.TID 0000.0001) ;
1128 (PID.TID 0000.0001) twoDigitYear = /* use 2-digit year extension */
1129 (PID.TID 0000.0001) F
1130 (PID.TID 0000.0001) ;
1131 (PID.TID 0000.0001) exf_verbose = /* print more messages to STDOUT */
1132 (PID.TID 0000.0001) F
1133 (PID.TID 0000.0001) ;
1134 (PID.TID 0000.0001) useExfCheckRange = /* check for fields range */
1135 (PID.TID 0000.0001) T
1136 (PID.TID 0000.0001) ;
1137 (PID.TID 0000.0001) exf_monFreq = /* EXF monitor frequency [ s ] */
1138 (PID.TID 0000.0001) 8.640000000000000E+04
1139 (PID.TID 0000.0001) ;
1140 (PID.TID 0000.0001) repeatPeriod = /* period for cycling forcing dataset [ s ] */
1141 (PID.TID 0000.0001) 3.155760000000000E+07
1142 (PID.TID 0000.0001) ;
1143 (PID.TID 0000.0001) climTempFreeze= /* Minimum climatological temperature [deg.C] */
1144 (PID.TID 0000.0001) -1.900000000000000E+00
1145 (PID.TID 0000.0001) ;
1146 (PID.TID 0000.0001) windStressMax = /* Maximum absolute windstress [ Pa ] */
1147 (PID.TID 0000.0001) 2.000000000000000E+00
1148 (PID.TID 0000.0001) ;
1149 (PID.TID 0000.0001) stressIsOnCgrid = /* set u,v_stress on Arakawa C-grid */
1150 (PID.TID 0000.0001) F
1151 (PID.TID 0000.0001) ;
1152 (PID.TID 0000.0001) cen2kel = /* conversion of deg. Centigrade to Kelvin [K] */
1153 (PID.TID 0000.0001) 2.731500000000000E+02
1154 (PID.TID 0000.0001) ;
1155 (PID.TID 0000.0001) gravity_mks= /* gravitational acceleration [m/s^2] */
1156 (PID.TID 0000.0001) 9.810000000000000E+00
1157 (PID.TID 0000.0001) ;
1158 (PID.TID 0000.0001) atmrho = /* mean atmospheric density [kg/m^3] */
1159 (PID.TID 0000.0001) 1.200000000000000E+00
1160 (PID.TID 0000.0001) ;
1161 (PID.TID 0000.0001) atmcp = /* mean atmospheric specific heat [J/kg/K] */
1162 (PID.TID 0000.0001) 1.005000000000000E+03
1163 (PID.TID 0000.0001) ;
1164 (PID.TID 0000.0001) flamb = /* latent heat of evaporation [J/kg] */
1165 (PID.TID 0000.0001) 2.500000000000000E+06
1166 (PID.TID 0000.0001) ;
1167 (PID.TID 0000.0001) flami = /* latent heat of pure-ice melting [J/kg] */
1168 (PID.TID 0000.0001) 3.340000000000000E+05
1169 (PID.TID 0000.0001) ;
1170 (PID.TID 0000.0001) cvapor_fac = /* const. for Saturation calculation [?] */
1171 (PID.TID 0000.0001) 6.403800000000000E+05
1172 (PID.TID 0000.0001) ;
1173 (PID.TID 0000.0001) cvapor_exp = /* const. for Saturation calculation [?] */
1174 (PID.TID 0000.0001) 5.107400000000000E+03
1175 (PID.TID 0000.0001) ;
1176 (PID.TID 0000.0001) cvapor_fac_ice= /* const. for Saturation calculation [?] */
1177 (PID.TID 0000.0001) 1.163780000000000E+07
1178 (PID.TID 0000.0001) ;
1179 (PID.TID 0000.0001) cvapor_exp_ice= /* const. for Saturation calculation [?] */
1180 (PID.TID 0000.0001) 5.897800000000000E+03
1181 (PID.TID 0000.0001) ;
1182 (PID.TID 0000.0001) humid_fac = /* humidity coef. in virtual temp. [(kg/kg)^-1] */
1183 (PID.TID 0000.0001) 6.060000000000000E-01
1184 (PID.TID 0000.0001) ;
1185 (PID.TID 0000.0001) gamma_blk = /* adiabatic lapse rate [?] */
1186 (PID.TID 0000.0001) 1.000000000000000E-02
1187 (PID.TID 0000.0001) ;
1188 (PID.TID 0000.0001) saltsat = /* reduction of Qsat over salty water [-] */
1189 (PID.TID 0000.0001) 9.800000000000000E-01
1190 (PID.TID 0000.0001) ;
1191 (PID.TID 0000.0001) noNegativeEvap = /* prevent negative Evaporation */
1192 (PID.TID 0000.0001) F
1193 (PID.TID 0000.0001) ;
1194 (PID.TID 0000.0001) sstExtrapol = /* extrapolation coeff from lev. 1 & 2 to surf [-] */
1195 (PID.TID 0000.0001) 0.000000000000000E+00
1196 (PID.TID 0000.0001) ;
1197 (PID.TID 0000.0001) cDrag_1 = /* coef used in drag calculation [?] */
1198 (PID.TID 0000.0001) 2.700000000000000E-03
1199 (PID.TID 0000.0001) ;
1200 (PID.TID 0000.0001) cDrag_2 = /* coef used in drag calculation [?] */
1201 (PID.TID 0000.0001) 1.420000000000000E-04
1202 (PID.TID 0000.0001) ;
1203 (PID.TID 0000.0001) cDrag_3 = /* coef used in drag calculation [?] */
1204 (PID.TID 0000.0001) 7.640000000000000E-05
1205 (PID.TID 0000.0001) ;
1206 (PID.TID 0000.0001) cStanton_1 = /* coef used in Stanton number calculation [?] */
1207 (PID.TID 0000.0001) 3.270000000000000E-02
1208 (PID.TID 0000.0001) ;
1209 (PID.TID 0000.0001) cStanton_2 = /* coef used in Stanton number calculation [?] */
1210 (PID.TID 0000.0001) 1.800000000000000E-02
1211 (PID.TID 0000.0001) ;
1212 (PID.TID 0000.0001) cDalton = /* coef used in Dalton number calculation [?] */
1213 (PID.TID 0000.0001) 3.460000000000000E-02
1214 (PID.TID 0000.0001) ;
1215 (PID.TID 0000.0001) exf_scal_BulkCdn= /* Drag coefficient scaling factor [-] */
1216 (PID.TID 0000.0001) 1.000000000000000E+00
1217 (PID.TID 0000.0001) ;
1218 (PID.TID 0000.0001) zolmin = /* minimum stability parameter [?] */
1219 (PID.TID 0000.0001) -1.000000000000000E+02
1220 (PID.TID 0000.0001) ;
1221 (PID.TID 0000.0001) psim_fac = /* coef used in turbulent fluxes calculation [-] */
1222 (PID.TID 0000.0001) 5.000000000000000E+00
1223 (PID.TID 0000.0001) ;
1224 (PID.TID 0000.0001) zref = /* reference height [ m ] */
1225 (PID.TID 0000.0001) 1.000000000000000E+01
1226 (PID.TID 0000.0001) ;
1227 (PID.TID 0000.0001) hu = /* height of mean wind [ m ] */
1228 (PID.TID 0000.0001) 1.000000000000000E+01
1229 (PID.TID 0000.0001) ;
1230 (PID.TID 0000.0001) ht = /* height of mean temperature [ m ] */
1231 (PID.TID 0000.0001) 2.000000000000000E+00
1232 (PID.TID 0000.0001) ;
1233 (PID.TID 0000.0001) hq = /* height of mean spec.humidity [ m ] */
1234 (PID.TID 0000.0001) 2.000000000000000E+00
1235 (PID.TID 0000.0001) ;
1236 (PID.TID 0000.0001) uMin = /* minimum wind speed [m/s] */
1237 (PID.TID 0000.0001) 5.000000000000000E-01
1238 (PID.TID 0000.0001) ;
1239 (PID.TID 0000.0001) useStabilityFct_overIce= /* transfert Coeffs over sea-ice depend on stability */
1240 (PID.TID 0000.0001) F
1241 (PID.TID 0000.0001) ;
1242 (PID.TID 0000.0001) exf_iceCd = /* drag coefficient over sea-ice (fixed) [-] */
1243 (PID.TID 0000.0001) 1.630000000000000E-03
1244 (PID.TID 0000.0001) ;
1245 (PID.TID 0000.0001) exf_iceCe = /* transfert coeff. over sea-ice, for Evap (fixed) [-] */
1246 (PID.TID 0000.0001) 1.630000000000000E-03
1247 (PID.TID 0000.0001) ;
1248 (PID.TID 0000.0001) exf_iceCh = /* transfert coeff. over sea-ice, Sens.Heat.(fixed)[-] */
1249 (PID.TID 0000.0001) 1.630000000000000E-03
1250 (PID.TID 0000.0001) ;
1251 (PID.TID 0000.0001) exf_albedo = /* Sea-water albedo [-] */
1252 (PID.TID 0000.0001) 1.000000000000000E-01
1253 (PID.TID 0000.0001) ;
1254 (PID.TID 0000.0001) useExfZenAlbedo = /* Sea-water albedo varies with zenith angle */
1255 (PID.TID 0000.0001) F
1256 (PID.TID 0000.0001) ;
1257 (PID.TID 0000.0001) select_ZenAlbedo = /* Sea-water albedo computation method */
1258 (PID.TID 0000.0001) 0
1259 (PID.TID 0000.0001) ;
1260 (PID.TID 0000.0001) useExfZenIncoming = /* compute incoming solar radiation */
1261 (PID.TID 0000.0001) F
1262 (PID.TID 0000.0001) ;
1263 (PID.TID 0000.0001) ocean_emissivity = /* longwave ocean-surface emissivity [-] */
1264 (PID.TID 0000.0001) 9.700176366843034E-01
1265 (PID.TID 0000.0001) ;
1266 (PID.TID 0000.0001) ice_emissivity = /* longwave seaice emissivity [-] */
1267 (PID.TID 0000.0001) 9.500000000000000E-01
1268 (PID.TID 0000.0001) ;
1269 (PID.TID 0000.0001) snow_emissivity = /* longwave snow emissivity [-] */
1270 (PID.TID 0000.0001) 9.500000000000000E-01
1271 (PID.TID 0000.0001) ;
1272 (PID.TID 0000.0001)
1273 (PID.TID 0000.0001) EXF main CPP flags:
1274 (PID.TID 0000.0001)
1275 (PID.TID 0000.0001) // USE_EXF_INTERPOLATION: defined
1276 (PID.TID 0000.0001) // ALLOW_ATM_TEMP: defined
1277 (PID.TID 0000.0001) // ALLOW_ATM_WIND (useAtmWind): defined
1278 (PID.TID 0000.0001) // ALLOW_DOWNWARD_RADIATION: defined
1279 (PID.TID 0000.0001) // ALLOW_BULKFORMULAE: defined
1280 (PID.TID 0000.0001)
1281 (PID.TID 0000.0001) Zonal wind stress forcing starts at 0.
1282 (PID.TID 0000.0001) Zonal wind stress forcing period is 0.
1283 (PID.TID 0000.0001) Zonal wind stress forcing is read from file:
1284 (PID.TID 0000.0001) >> <<
1285 (PID.TID 0000.0001) interpolate "ustress" (method= 12 ):
1286 (PID.TID 0000.0001) lon0= 6.173E+04, nlon= 32, lon_inc= 1.235E+05
1287 (PID.TID 0000.0001) lat0= 6.173E+04, nlat= 32, lat_inc= 1.235E+05
1288 (PID.TID 0000.0001)
1289 (PID.TID 0000.0001) Meridional wind stress forcing starts at 0.
1290 (PID.TID 0000.0001) Meridional wind stress forcing period is 0.
1291 (PID.TID 0000.0001) Meridional wind stress forcing is read from file:
1292 (PID.TID 0000.0001) >> <<
1293 (PID.TID 0000.0001) interpolate "vstress" (method= 22 ):
1294 (PID.TID 0000.0001) lon0= 6.173E+04, nlon= 32, lon_inc= 1.235E+05
1295 (PID.TID 0000.0001) lat0= 6.173E+04, nlat= 32, lat_inc= 1.235E+05
1296 (PID.TID 0000.0001) Interp. U & V comp. together: uvInterp_stress = F
1297 (PID.TID 0000.0001)
1298 (PID.TID 0000.0001) Net shortwave flux forcing starts at 0.
1299 (PID.TID 0000.0001) Net shortwave flux forcing period is 0.
1300 (PID.TID 0000.0001) Net shortwave flux forcing is read from file:
1301 (PID.TID 0000.0001) >> <<
1302 (PID.TID 0000.0001) interpolate "swflux" (method= 1 ):
1303 (PID.TID 0000.0001) lon0= 6.173E+04, nlon= 32, lon_inc= 1.235E+05
1304 (PID.TID 0000.0001) lat0= 6.173E+04, nlat= 32, lat_inc= 1.235E+05
1305 (PID.TID 0000.0001)
1306 (PID.TID 0000.0001) Zonal wind forcing starts at 1228500.
1307 (PID.TID 0000.0001) Zonal wind forcing period is 2629800.
1308 (PID.TID 0000.0001) Zonal wind forcing is read from file:
1309 (PID.TID 0000.0001) >> uwind_192_94_12.bin <<
1310 (PID.TID 0000.0001) interpolate "uwind" (method= 12 ):
1311 (PID.TID 0000.0001) lon0= 0.00000, nlon= 192, lon_inc= 1.8750000
1312 (PID.TID 0000.0001) lat0= -88.54200, nlat= 94, inc(min,max)= 1.88880 1.90480
1313 (PID.TID 0000.0001)
1314 (PID.TID 0000.0001) Meridional wind forcing starts at 1228500.
1315 (PID.TID 0000.0001) Meridional wind forcing period is 2629800.
1316 (PID.TID 0000.0001) Meridional wind forcing is read from file:
1317 (PID.TID 0000.0001) >> vwind_192_94_12.bin <<
1318 (PID.TID 0000.0001) interpolate "vwind" (method= 22 ):
1319 (PID.TID 0000.0001) lon0= 0.00000, nlon= 192, lon_inc= 1.8750000
1320 (PID.TID 0000.0001) lat0= -88.54200, nlat= 94, inc(min,max)= 1.88880 1.90480
1321 (PID.TID 0000.0001) Interp. U & V comp. together: uvInterp_wind = T
1322 (PID.TID 0000.0001)
1323 (PID.TID 0000.0001) Atmospheric temperature starts at 1228500.
1324 (PID.TID 0000.0001) Atmospheric temperature period is 2629800.
1325 (PID.TID 0000.0001) Atmospheric temperature is read from file:
1326 (PID.TID 0000.0001) >> atemp_192_94_12.bin <<
1327 (PID.TID 0000.0001) interpolate "atemp" (method= 1 ):
1328 (PID.TID 0000.0001) lon0= 0.00000, nlon= 192, lon_inc= 1.8750000
1329 (PID.TID 0000.0001) lat0= -88.54200, nlat= 94, inc(min,max)= 1.88880 1.90480
1330 (PID.TID 0000.0001)
1331 (PID.TID 0000.0001) Atmospheric specific humidity starts at 1228500.
1332 (PID.TID 0000.0001) Atmospheric specific humidity period is 2629800.
1333 (PID.TID 0000.0001) Atmospheric specific humidity is read from file:
1334 (PID.TID 0000.0001) >> aqh_192_94_12.bin <<
1335 (PID.TID 0000.0001) interpolate "aqh" (method= 1 ):
1336 (PID.TID 0000.0001) lon0= 0.00000, nlon= 192, lon_inc= 1.8750000
1337 (PID.TID 0000.0001) lat0= -88.54200, nlat= 94, inc(min,max)= 1.88880 1.90480
1338 (PID.TID 0000.0001)
1339 (PID.TID 0000.0001) Net longwave flux forcing starts at 0.
1340 (PID.TID 0000.0001) Net longwave flux forcing period is 0.
1341 (PID.TID 0000.0001) Net longwave flux forcing is read from file:
1342 (PID.TID 0000.0001) >> <<
1343 (PID.TID 0000.0001) interpolate "lwflux" (method= 1 ):
1344 (PID.TID 0000.0001) lon0= 6.173E+04, nlon= 32, lon_inc= 1.235E+05
1345 (PID.TID 0000.0001) lat0= 6.173E+04, nlat= 32, lat_inc= 1.235E+05
1346 (PID.TID 0000.0001)
1347 (PID.TID 0000.0001) Precipitation data set starts at 1228500.
1348 (PID.TID 0000.0001) Precipitation data period is 2629800.
1349 (PID.TID 0000.0001) Precipitation data is read from file:
1350 (PID.TID 0000.0001) >> precip_192_94_12.bin <<
1351 (PID.TID 0000.0001) interpolate "precip" (method= 1 ):
1352 (PID.TID 0000.0001) lon0= 0.00000, nlon= 192, lon_inc= 1.8750000
1353 (PID.TID 0000.0001) lat0= -88.54200, nlat= 94, inc(min,max)= 1.88880 1.90480
1354 (PID.TID 0000.0001)
1355 (PID.TID 0000.0001) // EXF_READ_EVAP: NOT defined
1356 (PID.TID 0000.0001)
1357 (PID.TID 0000.0001) // ALLOW_RUNOFF: defined
1358 (PID.TID 0000.0001) Runoff starts at 0.
1359 (PID.TID 0000.0001) Runoff period is 0.
1360 (PID.TID 0000.0001) Runoff is read from file:
1361 (PID.TID 0000.0001) >> <<
1362 (PID.TID 0000.0001) interpolate "runoff" (method= 1 ):
1363 (PID.TID 0000.0001) lon0= 6.173E+04, nlon= 32, lon_inc= 1.235E+05
1364 (PID.TID 0000.0001) lat0= 6.173E+04, nlat= 32, lat_inc= 1.235E+05
1365 (PID.TID 0000.0001)
1366 (PID.TID 0000.0001) Downward shortwave flux forcing starts at 1228500.
1367 (PID.TID 0000.0001) Downward shortwave flux forcing period is 2629800.
1368 (PID.TID 0000.0001) Downward shortwave flux forcing is read from file:
1369 (PID.TID 0000.0001) >> swdown_192_94_12.bin <<
1370 (PID.TID 0000.0001) interpolate "swdown" (method= 1 ):
1371 (PID.TID 0000.0001) lon0= 0.00000, nlon= 192, lon_inc= 1.8750000
1372 (PID.TID 0000.0001) lat0= -88.54200, nlat= 94, inc(min,max)= 1.88880 1.90480
1373 (PID.TID 0000.0001)
1374 (PID.TID 0000.0001) Downward longwave flux forcing starts at 1228500.
1375 (PID.TID 0000.0001) Downward longwave flux forcing period is 2629800.
1376 (PID.TID 0000.0001) Downward longwave flux forcing is read from file:
1377 (PID.TID 0000.0001) >> lwdown_192_94_12.bin <<
1378 (PID.TID 0000.0001) interpolate "lwdown" (method= 1 ):
1379 (PID.TID 0000.0001) lon0= 0.00000, nlon= 192, lon_inc= 1.8750000
1380 (PID.TID 0000.0001) lat0= -88.54200, nlat= 94, inc(min,max)= 1.88880 1.90480
1381 (PID.TID 0000.0001)
1382 (PID.TID 0000.0001) Atmospheric pressure forcing starts at 0.
1383 (PID.TID 0000.0001) Atmospheric pressure forcing period is 0.
1384 (PID.TID 0000.0001) Atmospheric pressureforcing is read from file:
1385 (PID.TID 0000.0001) >> <<
1386 (PID.TID 0000.0001) interpolate "apressure" (method= 1 ):
1387 (PID.TID 0000.0001) lon0= 6.173E+04, nlon= 32, lon_inc= 1.235E+05
1388 (PID.TID 0000.0001) lat0= 6.173E+04, nlat= 32, lat_inc= 1.235E+05
1389 (PID.TID 0000.0001)
1390 (PID.TID 0000.0001) // =======================================================
1391 (PID.TID 0000.0001) // External forcing (EXF) climatology configuration :
1392 (PID.TID 0000.0001) // =======================================================
1393 (PID.TID 0000.0001)
1394 (PID.TID 0000.0001) // ALLOW_CLIMSST_RELAXATION: defined
1395 (PID.TID 0000.0001) // ALLOW_CLIMSSS_RELAXATION: defined
1396 (PID.TID 0000.0001)
1397 (PID.TID 0000.0001) Climatological SST starts at 0.
1398 (PID.TID 0000.0001) Climatological SST period is 0.
1399 (PID.TID 0000.0001) Climatological SST is read from file:
1400 (PID.TID 0000.0001) >> <<
1401 (PID.TID 0000.0001) interpolate "climsst" (method= 2 ):
1402 (PID.TID 0000.0001) lon0= 6.173E+04, nlon= 32, lon_inc= 1.235E+05
1403 (PID.TID 0000.0001) lat0= 6.173E+04, nlat= 32, lat_inc= 1.235E+05
1404 (PID.TID 0000.0001)
1405 (PID.TID 0000.0001) Climatological SSS starts at 0.
1406 (PID.TID 0000.0001) Climatological SSS period is 0.
1407 (PID.TID 0000.0001) Climatological SSS is read from file:
1408 (PID.TID 0000.0001) >> <<
1409 (PID.TID 0000.0001) interpolate "climsss" (method= 2 ):
1410 (PID.TID 0000.0001) lon0= 6.173E+04, nlon= 32, lon_inc= 1.235E+05
1411 (PID.TID 0000.0001) lat0= 6.173E+04, nlat= 32, lat_inc= 1.235E+05
1412 (PID.TID 0000.0001)
1413 (PID.TID 0000.0001) // =======================================================
1414 (PID.TID 0000.0001) // External forcing (EXF) configuration >>> END <<<
1415 (PID.TID 0000.0001) // =======================================================
1416 (PID.TID 0000.0001)
1417 (PID.TID 0000.0001)
1418 (PID.TID 0000.0001) // =======================================================
1419 (PID.TID 0000.0001) // Seaice configuration (SEAICE_PARM01) >>> START <<<
1420 (PID.TID 0000.0001) // =======================================================
1421 (PID.TID 0000.0001)
1422 (PID.TID 0000.0001)
1423 (PID.TID 0000.0001) Seaice time stepping configuration > START <
1424 (PID.TID 0000.0001) ----------------------------------------------
1425 (PID.TID 0000.0001) SEAICE_deltaTtherm= /* thermodynamic timestep */
1426 (PID.TID 0000.0001) 1.200000000000000E+03
1427 (PID.TID 0000.0001) ;
1428 (PID.TID 0000.0001) SEAICE_deltaTdyn = /* dynamic timestep */
1429 (PID.TID 0000.0001) 1.200000000000000E+03
1430 (PID.TID 0000.0001) ;
1431 (PID.TID 0000.0001) SEAICE_deltaTevp = /* EVP timestep */
1432 (PID.TID 0000.0001) 1.234567000000000E+05
1433 (PID.TID 0000.0001) ;
1434 (PID.TID 0000.0001) SEAICErestoreUnderIce = /* restore T and S under ice */
1435 (PID.TID 0000.0001) F
1436 (PID.TID 0000.0001) ;
1437 (PID.TID 0000.0001)
1438 (PID.TID 0000.0001) Seaice dynamics configuration > START <
1439 (PID.TID 0000.0001) ------------------------------------------
1440 (PID.TID 0000.0001) SEAICEuseDYNAMICS = /* use dynamics */
1441 (PID.TID 0000.0001) T
1442 (PID.TID 0000.0001) ;
1443 (PID.TID 0000.0001) model grid type = /* type of sea ice model grid */
1444 (PID.TID 0000.0001) 'C-GRID'
1445 (PID.TID 0000.0001) ;
1446 (PID.TID 0000.0001) SEAICEuseEVP = /* use EVP solver rather than LSR */
1447 (PID.TID 0000.0001) F
1448 (PID.TID 0000.0001) ;
1449 (PID.TID 0000.0001) OCEAN_drag = /* air-ocean drag coefficient */
1450 (PID.TID 0000.0001) 1.000000000000000E-03
1451 (PID.TID 0000.0001) ;
1452 (PID.TID 0000.0001) SEAICE_drag = /* air-ice drag coefficient */
1453 (PID.TID 0000.0001) 1.140000000000000E-03
1454 (PID.TID 0000.0001) ;
1455 (PID.TID 0000.0001) SEAICE_drag_south = /* Southern Ocean SEAICE_drag */
1456 (PID.TID 0000.0001) 1.213960000000000E-03
1457 (PID.TID 0000.0001) ;
1458 (PID.TID 0000.0001) SEAICE_waterDrag = /* water-ice drag * density */
1459 (PID.TID 0000.0001) 5.562700000000000E+00
1460 (PID.TID 0000.0001) ;
1461 (PID.TID 0000.0001) SEAICE_waterDrag_south = /* Southern Ocean waterDrag */
1462 (PID.TID 0000.0001) 5.632800000000000E+00
1463 (PID.TID 0000.0001) ;
1464 (PID.TID 0000.0001) SEAICEuseTILT = /* include surface tilt in dyna. */
1465 (PID.TID 0000.0001) T
1466 (PID.TID 0000.0001) ;
1467 (PID.TID 0000.0001) SEAICEuseTEM = /* use truncated ellipse rheology */
1468 (PID.TID 0000.0001) F
1469 (PID.TID 0000.0001) ;
1470 (PID.TID 0000.0001) SEAICE_strength = /* sea-ice strength Pstar */
1471 (PID.TID 0000.0001) 1.623000000000000E+04
1472 (PID.TID 0000.0001) ;
1473 (PID.TID 0000.0001) SEAICEpresH0 = /* sea-ice strength Heff threshold */
1474 (PID.TID 0000.0001) 1.000000000000000E+00
1475 (PID.TID 0000.0001) ;
1476 (PID.TID 0000.0001) SEAICEpresPow0 = /* exponent for Heff<SEAICEpresH0 */
1477 (PID.TID 0000.0001) 1
1478 (PID.TID 0000.0001) ;
1479 (PID.TID 0000.0001) SEAICEpresPow1 = /* exponent for Heff>SEAICEpresH0 */
1480 (PID.TID 0000.0001) 1
1481 (PID.TID 0000.0001) ;
1482 (PID.TID 0000.0001) SEAICE_zetaMin = /* lower bound for viscosity */
1483 (PID.TID 0000.0001) 0.000000000000000E+00
1484 (PID.TID 0000.0001) ;
1485 (PID.TID 0000.0001) SEAICE_eccen = /* elliptical yield curve eccent */
1486 (PID.TID 0000.0001) 2.000000000000000E+00
1487 (PID.TID 0000.0001) ;
1488 (PID.TID 0000.0001) SEAICEstressFactor = /* wind stress scaling factor */
1489 (PID.TID 0000.0001) 1.000000000000000E+00
1490 (PID.TID 0000.0001) ;
1491 (PID.TID 0000.0001) SEAICE_airTurnAngle = /* air-ice turning angle */
1492 (PID.TID 0000.0001) 0.000000000000000E+00
1493 (PID.TID 0000.0001) ;
1494 (PID.TID 0000.0001) SEAICE_waterTurnAngle = /* ice-water turning angle */
1495 (PID.TID 0000.0001) 0.000000000000000E+00
1496 (PID.TID 0000.0001) ;
1497 (PID.TID 0000.0001) SEAICEuseMetricTerms = /* use metric terms */
1498 (PID.TID 0000.0001) T
1499 (PID.TID 0000.0001) ;
1500 (PID.TID 0000.0001) SEAICE_no_slip = /* no slip boundary conditions */
1501 (PID.TID 0000.0001) T
1502 (PID.TID 0000.0001) ;
1503 (PID.TID 0000.0001) SEAICE_clipVeloctities = /* impose max. vels. */
1504 (PID.TID 0000.0001) F
1505 (PID.TID 0000.0001) ;
1506 (PID.TID 0000.0001) useHB87stressCoupling = /* altern. ice-ocean stress */
1507 (PID.TID 0000.0001) F
1508 (PID.TID 0000.0001) ;
1509 (PID.TID 0000.0001) SEAICE_maskRHS = /* mask RHS of solver */
1510 (PID.TID 0000.0001) F
1511 (PID.TID 0000.0001) ;
1512 (PID.TID 0000.0001) LSR_mixIniGuess = /* mix free-drift sol. into LSR initial Guess */
1513 (PID.TID 0000.0001) -1
1514 (PID.TID 0000.0001) ;
1515 (PID.TID 0000.0001) SOLV_MAX_ITERS = /* max. number of LSR solver steps */
1516 (PID.TID 0000.0001) 1500
1517 (PID.TID 0000.0001) ;
1518 (PID.TID 0000.0001) LSR_ERROR = /* sets accuracy of LSR solver */
1519 (PID.TID 0000.0001) 2.000000000000000E-04
1520 (PID.TID 0000.0001) ;
1521 (PID.TID 0000.0001) SOLV_NCHECK = /* test interval for LSR solver */
1522 (PID.TID 0000.0001) 2
1523 (PID.TID 0000.0001) ;
1524 (PID.TID 0000.0001) NPSEUDOTIMESTEPS = /* num. of extra pseudo time steps */
1525 (PID.TID 0000.0001) 2
1526 (PID.TID 0000.0001) ;
1527 (PID.TID 0000.0001)
1528 (PID.TID 0000.0001) Seaice thermodynamics configuration > START <
1529 (PID.TID 0000.0001) -----------------------------------------------
1530 (PID.TID 0000.0001) SEAICE_rhoIce = /* density of sea ice (kg/m3) */
1531 (PID.TID 0000.0001) 9.100000000000000E+02
1532 (PID.TID 0000.0001) ;
1533 (PID.TID 0000.0001) SEAICE_rhoSnow = /* density of snow (kg/m3) */
1534 (PID.TID 0000.0001) 3.300000000000000E+02
1535 (PID.TID 0000.0001) ;
1536 (PID.TID 0000.0001) SEAICE_rhoAir = /* density of air (kg/m3) */
1537 (PID.TID 0000.0001) 1.200000000000000E+00
1538 (PID.TID 0000.0001) ;
1539 (PID.TID 0000.0001) usePW79thermodynamics = /* default 0-layer TD */
1540 (PID.TID 0000.0001) T
1541 (PID.TID 0000.0001) ;
1542 (PID.TID 0000.0001) SEAICE_lhEvap = /* latent heat of evaporation */
1543 (PID.TID 0000.0001) 2.500000000000000E+06
1544 (PID.TID 0000.0001) ;
1545 (PID.TID 0000.0001) SEAICE_lhFusion = /* latent heat of fusion */
1546 (PID.TID 0000.0001) 3.340000000000000E+05
1547 (PID.TID 0000.0001) ;
1548 (PID.TID 0000.0001) SEAICE_mcPheePiston = /* turbulent flux "piston velocity" a la McPhee (m/s) */
1549 (PID.TID 0000.0001) 8.333000000000000E-04
1550 (PID.TID 0000.0001) ;
1551 (PID.TID 0000.0001) SEAICE_mcPheeTaper = /* tapering of turbulent flux (0.< <1.) for AREA=1. */
1552 (PID.TID 0000.0001) 9.200000000000000E-01
1553 (PID.TID 0000.0001) ;
1554 (PID.TID 0000.0001) SEAICE_mcPheeStepFunc = /* replace linear tapering with step funct. */
1555 (PID.TID 0000.0001) F
1556 (PID.TID 0000.0001) ;
1557 (PID.TID 0000.0001) SEAICE_frazilFrac = /* frazil (T<tempFrz) to seaice conversion rate (0.< <1.) */
1558 (PID.TID 0000.0001) 1.000000000000000E-01
1559 (PID.TID 0000.0001) ;
1560 (PID.TID 0000.0001) SEAICE_tempFrz0 = /* freezing temp. of sea water (intercept) */
1561 (PID.TID 0000.0001) 9.010000000000000E-02
1562 (PID.TID 0000.0001) ;
1563 (PID.TID 0000.0001) SEAICE_dTempFrz_dS= /* freezing temp. of sea water (slope) */
1564 (PID.TID 0000.0001) -5.750000000000000E-02
1565 (PID.TID 0000.0001) ;
1566 (PID.TID 0000.0001) SEAICE_areaGainFormula = /* ice cover gain formula (1,2)*/
1567 (PID.TID 0000.0001) 1
1568 (PID.TID 0000.0001) 1=from growth by ATM
1569 (PID.TID 0000.0001) 2=from predicted growth by ATM
1570 (PID.TID 0000.0001) ;
1571 (PID.TID 0000.0001) SEAICE_areaLossFormula = /* ice cover loss formula (1,2)*/
1572 (PID.TID 0000.0001) 1
1573 (PID.TID 0000.0001) 1=from all but only melt conributions by ATM and OCN
1574 (PID.TID 0000.0001) 2=from net melt-grow>0 by ATM and OCN
1575 (PID.TID 0000.0001) 3=from predicted melt by ATM
1576 (PID.TID 0000.0001) ;
1577 (PID.TID 0000.0001) HO = /* nominal thickness of new ice */
1578 (PID.TID 0000.0001) 6.074000000000001E-01
1579 (PID.TID 0000.0001) ;
1580 (PID.TID 0000.0001) HO_south = /* Southern Ocean HO */
1581 (PID.TID 0000.0001) 9.819600000000001E-01
1582 (PID.TID 0000.0001) ;
1583 (PID.TID 0000.0001) SEAICE_area_max = /* set to les than 1. to mimic open leads */
1584 (PID.TID 0000.0001) 1.000000000000000E+00
1585 (PID.TID 0000.0001) ;
1586 (PID.TID 0000.0001) Sea ice has a variable salinity such that
1587 (PID.TID 0000.0001) SEAICE_saltFrac = /* fraction of ocn salinity in new ice */
1588 (PID.TID 0000.0001) 3.849000000000000E-01
1589 (PID.TID 0000.0001) ;
1590 (PID.TID 0000.0001) SEAICE_salinityTracer = /* test SITR varia. salinity */
1591 (PID.TID 0000.0001) F
1592 (PID.TID 0000.0001) ;
1593 (PID.TID 0000.0001) SEAICEuseFlooding = /* turn submerged snow into ice */
1594 (PID.TID 0000.0001) T
1595 (PID.TID 0000.0001) ;
1596 (PID.TID 0000.0001) MAX_HEFF has no effect because SEAICE_CAP_HEFF is undefined
1597 (PID.TID 0000.0001) MAX_HEFF = /* maximum ice thickness */
1598 (PID.TID 0000.0001) 1.000000000000000E+01
1599 (PID.TID 0000.0001) ;
1600 (PID.TID 0000.0001)
1601 (PID.TID 0000.0001) Seaice advection diffusion config, > START <
1602 (PID.TID 0000.0001) -----------------------------------------------
1603 (PID.TID 0000.0001) SEAICEadvHeff = /* advect effective ice thickness */
1604 (PID.TID 0000.0001) T
1605 (PID.TID 0000.0001) ;
1606 (PID.TID 0000.0001) SEAICEadvArea = /* advect fractional ice area */
1607 (PID.TID 0000.0001) T
1608 (PID.TID 0000.0001) ;
1609 (PID.TID 0000.0001) SEAICEadvSnow = /* advect snow layer together with ice */
1610 (PID.TID 0000.0001) T
1611 (PID.TID 0000.0001) ;
1612 (PID.TID 0000.0001) SEAICEadvSalt = /* advect salinity together with ice */
1613 (PID.TID 0000.0001) T
1614 (PID.TID 0000.0001) ;
1615 (PID.TID 0000.0001) SEAICEadvScheme = /* advection scheme for ice */
1616 (PID.TID 0000.0001) 7
1617 (PID.TID 0000.0001) ;
1618 (PID.TID 0000.0001) SEAICEadvSchArea = /* advection scheme for area */
1619 (PID.TID 0000.0001) 7
1620 (PID.TID 0000.0001) ;
1621 (PID.TID 0000.0001) SEAICEadvSchHeff = /* advection scheme for thickness */
1622 (PID.TID 0000.0001) 7
1623 (PID.TID 0000.0001) ;
1624 (PID.TID 0000.0001) SEAICEadvSchSnow = /* advection scheme for snow */
1625 (PID.TID 0000.0001) 7
1626 (PID.TID 0000.0001) ;
1627 (PID.TID 0000.0001) SEAICEadvSchSalt = /* advection scheme for salt */
1628 (PID.TID 0000.0001) 7
1629 (PID.TID 0000.0001) ;
1630 (PID.TID 0000.0001) SEAICEdiffKhArea = /* diffusivity (m^2/s) for area */
1631 (PID.TID 0000.0001) 0.000000000000000E+00
1632 (PID.TID 0000.0001) ;
1633 (PID.TID 0000.0001) SEAICEdiffKhHeff = /* diffusivity (m^2/s) for heff */
1634 (PID.TID 0000.0001) 0.000000000000000E+00
1635 (PID.TID 0000.0001) ;
1636 (PID.TID 0000.0001) SEAICEdiffKhSnow = /* diffusivity (m^2/s) for snow */
1637 (PID.TID 0000.0001) 0.000000000000000E+00
1638 (PID.TID 0000.0001) ;
1639 (PID.TID 0000.0001) SEAICEdiffKhSalt = /* diffusivity (m^2/s) for salt */
1640 (PID.TID 0000.0001) 0.000000000000000E+00
1641 (PID.TID 0000.0001) ;
1642 (PID.TID 0000.0001) DIFF1 = /* parameter used in advect.F [m/s] */
1643 (PID.TID 0000.0001) 0.000000000000000E+00
1644 (PID.TID 0000.0001) ;
1645 (PID.TID 0000.0001)
1646 (PID.TID 0000.0001) Seaice air-sea fluxes configuration, > START <
1647 (PID.TID 0000.0001) -----------------------------------------------
1648 (PID.TID 0000.0001) SEAICEheatConsFix = /* accound for ocn<->seaice advect. heat flux */
1649 (PID.TID 0000.0001) F
1650 (PID.TID 0000.0001) ;
1651 (PID.TID 0000.0001) SEAICE_multDim = /* number of ice categories (1 or 7) */
1652 (PID.TID 0000.0001) 7
1653 (PID.TID 0000.0001) ;
1654 (PID.TID 0000.0001) SEAICE_useMultDimSnow = /* use same fixed pdf for snow as for MULITCATEGORY ICE */
1655 (PID.TID 0000.0001) F
1656 (PID.TID 0000.0001) ;
1657 (PID.TID 0000.0001) IMAX_TICE = /* iterations for ice surface temp */
1658 (PID.TID 0000.0001) 10
1659 (PID.TID 0000.0001) ;
1660 (PID.TID 0000.0001) postSolvTempIter= /* flux calculation after surf. temp iter */
1661 (PID.TID 0000.0001) 2
1662 (PID.TID 0000.0001) ;
1663 (PID.TID 0000.0001) SEAICE_dryIceAlb = /* winter albedo */
1664 (PID.TID 0000.0001) 7.000000000000000E-01
1665 (PID.TID 0000.0001) ;
1666 (PID.TID 0000.0001) SEAICE_wetIceAlb = /* summer albedo */
1667 (PID.TID 0000.0001) 7.060000000000000E-01
1668 (PID.TID 0000.0001) ;
1669 (PID.TID 0000.0001) SEAICE_drySnowAlb = /* dry snow albedo */
1670 (PID.TID 0000.0001) 8.652000000000000E-01
1671 (PID.TID 0000.0001) ;
1672 (PID.TID 0000.0001) SEAICE_wetSnowAlb = /* wet snow albedo */
1673 (PID.TID 0000.0001) 8.085000000000000E-01
1674 (PID.TID 0000.0001) ;
1675 (PID.TID 0000.0001) SEAICE_dryIceAlb_south = /* Southern Ocean dryIceAlb */
1676 (PID.TID 0000.0001) 8.535400000000000E-01
1677 (PID.TID 0000.0001) ;
1678 (PID.TID 0000.0001) SEAICE_wetIceAlb_south = /* Southern Ocean wetIceAlb */
1679 (PID.TID 0000.0001) 7.289650000000000E-01
1680 (PID.TID 0000.0001) ;
1681 (PID.TID 0000.0001) SEAICE_drySnowAlb_south= /* Southern Ocean drySnowAlb */
1682 (PID.TID 0000.0001) 7.773800000000000E-01
1683 (PID.TID 0000.0001) ;
1684 (PID.TID 0000.0001) SEAICE_wetSnowAlb_south= /* Southern Ocean wetSnowAlb */
1685 (PID.TID 0000.0001) 7.763000000000000E-01
1686 (PID.TID 0000.0001) ;
1687 (PID.TID 0000.0001) SEAICE_wetAlbTemp= /* Temp (o.C) threshold for wet-albedo */
1688 (PID.TID 0000.0001) 0.000000000000000E+00
1689 (PID.TID 0000.0001) ;
1690 (PID.TID 0000.0001) SEAICE_snow_emiss = /* snow emissivity */
1691 (PID.TID 0000.0001) 9.500000000000000E-01
1692 (PID.TID 0000.0001) ;
1693 (PID.TID 0000.0001) SEAICE_ice_emiss = /* seaice emissivity */
1694 (PID.TID 0000.0001) 9.500000000000000E-01
1695 (PID.TID 0000.0001) ;
1696 (PID.TID 0000.0001) SEAICE_cpAir = /* heat capacity of air */
1697 (PID.TID 0000.0001) 1.005000000000000E+03
1698 (PID.TID 0000.0001) ;
1699 (PID.TID 0000.0001) SEAICE_dalton = /* constant dalton number */
1700 (PID.TID 0000.0001) 1.750000000000000E-03
1701 (PID.TID 0000.0001) ;
1702 (PID.TID 0000.0001) SEAICE_iceConduct = /* sea-ice conductivity */
1703 (PID.TID 0000.0001) 2.165600000000000E+00
1704 (PID.TID 0000.0001) ;
1705 (PID.TID 0000.0001) SEAICE_snowConduct= /* snow conductivity */
1706 (PID.TID 0000.0001) 3.100000000000000E-01
1707 (PID.TID 0000.0001) ;
1708 (PID.TID 0000.0001) SEAICE_snowThick = /* cutoff snow thickness (for albedo) */
1709 (PID.TID 0000.0001) 1.500000000000000E-01
1710 (PID.TID 0000.0001) ;
1711 (PID.TID 0000.0001) SEAICE_shortwave = /* penetration shortwave radiation */
1712 (PID.TID 0000.0001) 3.000000000000000E-01
1713 (PID.TID 0000.0001) ;
1714 (PID.TID 0000.0001) useMaykutSatVapPoly = /* use Maykut Polynomial for Sat.Vap.Pr */
1715 (PID.TID 0000.0001) F
1716 (PID.TID 0000.0001) ;
1717 (PID.TID 0000.0001) MIN_ATEMP = /* minimum air temperature */
1718 (PID.TID 0000.0001) -5.000000000000000E+01
1719 (PID.TID 0000.0001) ;
1720 (PID.TID 0000.0001) MIN_LWDOWN = /* minimum downward longwave */
1721 (PID.TID 0000.0001) 6.000000000000000E+01
1722 (PID.TID 0000.0001) ;
1723 (PID.TID 0000.0001) MIN_TICE = /* minimum ice temperature */
1724 (PID.TID 0000.0001) -5.000000000000000E+01
1725 (PID.TID 0000.0001) ;
1726 (PID.TID 0000.0001)
1727 (PID.TID 0000.0001) Seaice initialization and IO config., > START <
1728 (PID.TID 0000.0001) -------------------------------------------------
1729 (PID.TID 0000.0001) SEAICE_initialHEFF= /* initial sea-ice thickness */
1730 (PID.TID 0000.0001) 0.000000000000000E+00
1731 (PID.TID 0000.0001) ;
1732 (PID.TID 0000.0001) AreaFile = /* Initial ice concentration File */
1733 (PID.TID 0000.0001) ''
1734 (PID.TID 0000.0001) ;
1735 (PID.TID 0000.0001) HeffFile = /* Initial effective ice thickness File */
1736 (PID.TID 0000.0001) ''
1737 (PID.TID 0000.0001) ;
1738 (PID.TID 0000.0001) HsnowFile = /* Initial snow thickness File */
1739 (PID.TID 0000.0001) ''
1740 (PID.TID 0000.0001) ;
1741 (PID.TID 0000.0001) HsaltFile = /* Initial HSALT File */
1742 (PID.TID 0000.0001) ''
1743 (PID.TID 0000.0001) ;
1744 (PID.TID 0000.0001) uIceFile = /* Initial U-ice velocity File */
1745 (PID.TID 0000.0001) ''
1746 (PID.TID 0000.0001) ;
1747 (PID.TID 0000.0001) vIceFile = /* Initial V-ice velocity File */
1748 (PID.TID 0000.0001) ''
1749 (PID.TID 0000.0001) ;
1750 (PID.TID 0000.0001) SEAICEwriteState = /* write sea ice state to file */
1751 (PID.TID 0000.0001) F
1752 (PID.TID 0000.0001) ;
1753 (PID.TID 0000.0001) SEAICE_monFreq = /* monitor frequency */
1754 (PID.TID 0000.0001) 8.640000000000000E+04
1755 (PID.TID 0000.0001) ;
1756 (PID.TID 0000.0001) SEAICE_dumpFreq = /* dump frequency */
1757 (PID.TID 0000.0001) 0.000000000000000E+00
1758 (PID.TID 0000.0001) ;
1759 (PID.TID 0000.0001) SEAICE_taveFreq = /* time-averaging frequency */
1760 (PID.TID 0000.0001) 0.000000000000000E+00
1761 (PID.TID 0000.0001) ;
1762 (PID.TID 0000.0001) SEAICE_mon_stdio = /* write monitor to std-outp */
1763 (PID.TID 0000.0001) T
1764 (PID.TID 0000.0001) ;
1765 (PID.TID 0000.0001) SEAICE_dump_mdsio = /* write snap-shot using MDSIO */
1766 (PID.TID 0000.0001) T
1767 (PID.TID 0000.0001) ;
1768 (PID.TID 0000.0001) SEAICE_tave_mdsio = /* write TimeAverage using MDSIO */
1769 (PID.TID 0000.0001) T
1770 (PID.TID 0000.0001) ;
1771 (PID.TID 0000.0001)
1772 (PID.TID 0000.0001) Seaice regularization numbers, > START <
1773 (PID.TID 0000.0001) -----------------------------------------------
1774 (PID.TID 0000.0001) SEAICE_EPS = /* reduce derivative singularities */
1775 (PID.TID 0000.0001) 1.000000000000000E-10
1776 (PID.TID 0000.0001) ;
1777 (PID.TID 0000.0001) SEAICE_EPS_SQ = /* reduce derivative singularities */
1778 (PID.TID 0000.0001) 1.000000000000000E-20
1779 (PID.TID 0000.0001) ;
1780 (PID.TID 0000.0001) SEAICE_area_reg = /* reduce derivative singularities */
1781 (PID.TID 0000.0001) 1.000000000000000E-05
1782 (PID.TID 0000.0001) ;
1783 (PID.TID 0000.0001) SEAICE_hice_reg = /* reduce derivative singularities */
1784 (PID.TID 0000.0001) 5.000000000000000E-02
1785 (PID.TID 0000.0001) ;
1786 (PID.TID 0000.0001) SEAICE_area_floor = /* reduce derivative singularities */
1787 (PID.TID 0000.0001) 1.000000000000000E-05
1788 (PID.TID 0000.0001) ;
1789 (PID.TID 0000.0001) // =======================================================
1790 (PID.TID 0000.0001) // Seaice configuration (SEAICE_PARM01) >>> END <<<
1791 (PID.TID 0000.0001) // =======================================================
1792 (PID.TID 0000.0001) ------------------------------------------------------------
1793 (PID.TID 0000.0001) DIAGNOSTICS_SET_LEVELS: done
1794 (PID.TID 0000.0001) Total Nb of available Diagnostics: ndiagt= 286
1795 (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 79 oceTAUX
1796 (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 80 oceTAUY
1797 (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 83 oceFWflx
1798 (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 84 oceSflux
1799 (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 85 oceQnet
1800 (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 86 oceQsw
1801 (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 201 KPPhbl
1802 (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 76 MXLDEPTH
1803 (PID.TID 0000.0001) SETDIAG: Allocate 15 x 1 Levels for Diagnostic # 26 THETA
1804 (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 23 ETAN
1805 (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 73 PHIBOT
1806 (PID.TID 0000.0001) SETDIAG: Allocate 15 x 1 Levels for Diagnostic # 27 SALT
1807 (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 216 SIarea
1808 (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 219 SIheff
1809 (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 225 SIuice
1810 (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 226 SIvice
1811 (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 221 SIhsnow
1812 (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 223 SIhsalt
1813 (PID.TID 0000.0001) SETDIAG: Allocate 15 x 1 Levels for Diagnostic # 29 SALTanom
1814 (PID.TID 0000.0001) SETDIAG: Allocate 15 x 1 Levels for Diagnostic # 26 THETA
1815 (PID.TID 0000.0001) SETDIAG: Allocate 15 x 1 Levels for Diagnostic # 45 UVELMASS
1816 (PID.TID 0000.0001) SETDIAG: Allocate 15 x 1 Levels for Diagnostic # 46 VVELMASS
1817 (PID.TID 0000.0001) SETDIAG: Allocate 15 x 1 Levels for Diagnostic # 47 WVELMASS
1818 (PID.TID 0000.0001) SETDIAG: Allocate 15 x 1 Levels for Diagnostic # 52 WTHMASS
1819 (PID.TID 0000.0001) SETDIAG: Allocate 15 x 1 Levels for Diagnostic # 55 WSLTMASS
1820 (PID.TID 0000.0001) SETDIAG: Allocate 15 x 1 Levels for Diagnostic # 106 ADVr_TH
1821 (PID.TID 0000.0001) SETDIAG: Allocate 15 x 1 Levels for Diagnostic # 107 ADVx_TH
1822 (PID.TID 0000.0001) SETDIAG: Allocate 15 x 1 Levels for Diagnostic # 108 ADVy_TH
1823 (PID.TID 0000.0001) SETDIAG: Allocate 15 x 1 Levels for Diagnostic # 112 DFrI_TH
1824 (PID.TID 0000.0001) SETDIAG: Allocate 15 x 1 Levels for Diagnostic # 113 ADVr_SLT
1825 (PID.TID 0000.0001) SETDIAG: Allocate 15 x 1 Levels for Diagnostic # 114 ADVx_SLT
1826 (PID.TID 0000.0001) SETDIAG: Allocate 15 x 1 Levels for Diagnostic # 115 ADVy_SLT
1827 (PID.TID 0000.0001) SETDIAG: Allocate 15 x 1 Levels for Diagnostic # 119 DFrI_SLT
1828 (PID.TID 0000.0001) SETDIAG: Allocate 15 x 1 Levels for Diagnostic # 199 KPPdiffT
1829 (PID.TID 0000.0001) SETDIAG: Allocate 15 x 1 Levels for Diagnostic # 200 KPPghatK
1830 (PID.TID 0000.0001) SETDIAG: Allocate 1 x 1 Levels for Diagnostic # 202 KPPfrac
1831 (PID.TID 0000.0001) space allocated for all diagnostics: 302 levels
1832 (PID.TID 0000.0001) set mate pointer for diag # 79 oceTAUX , Parms: UU U1 , mate: 80
1833 (PID.TID 0000.0001) set mate pointer for diag # 80 oceTAUY , Parms: VV U1 , mate: 79
1834 (PID.TID 0000.0001) set mate pointer for diag # 225 SIuice , Parms: UU M1 , mate: 226
1835 (PID.TID 0000.0001) set mate pointer for diag # 226 SIvice , Parms: VV M1 , mate: 225
1836 (PID.TID 0000.0001) set mate pointer for diag # 45 UVELMASS , Parms: UUr MR , mate: 46
1837 (PID.TID 0000.0001) set mate pointer for diag # 46 VVELMASS , Parms: VVr MR , mate: 45
1838 (PID.TID 0000.0001) set mate pointer for diag # 107 ADVx_TH , Parms: UU MR , mate: 108
1839 (PID.TID 0000.0001) set mate pointer for diag # 108 ADVy_TH , Parms: VV MR , mate: 107
1840 (PID.TID 0000.0001) set mate pointer for diag # 114 ADVx_SLT , Parms: UU MR , mate: 115
1841 (PID.TID 0000.0001) set mate pointer for diag # 115 ADVy_SLT , Parms: VV MR , mate: 114
1842 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: oceTAUX
1843 (PID.TID 0000.0001) Levels: 1.
1844 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: oceTAUY
1845 (PID.TID 0000.0001) Levels: 1.
1846 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: oceFWflx
1847 (PID.TID 0000.0001) Levels: 1.
1848 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: oceSflux
1849 (PID.TID 0000.0001) Levels: 1.
1850 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: oceQnet
1851 (PID.TID 0000.0001) Levels: 1.
1852 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: oceQsw
1853 (PID.TID 0000.0001) Levels: 1.
1854 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: KPPhbl
1855 (PID.TID 0000.0001) Levels: 1.
1856 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: MXLDEPTH
1857 (PID.TID 0000.0001) Levels: 1.
1858 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: ETAN
1859 (PID.TID 0000.0001) Levels: 1.
1860 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: PHIBOT
1861 (PID.TID 0000.0001) Levels: 1.
1862 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: SIarea
1863 (PID.TID 0000.0001) Levels: 1.
1864 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: SIheff
1865 (PID.TID 0000.0001) Levels: 1.
1866 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: SIuice
1867 (PID.TID 0000.0001) Levels: 1.
1868 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: SIvice
1869 (PID.TID 0000.0001) Levels: 1.
1870 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: SIhsnow
1871 (PID.TID 0000.0001) Levels: 1.
1872 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: SIhsalt
1873 (PID.TID 0000.0001) Levels: 1.
1874 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: SALTanom
1875 (PID.TID 0000.0001) Levels: 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15.
1876 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: THETA
1877 (PID.TID 0000.0001) Levels: 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15.
1878 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: UVELMASS
1879 (PID.TID 0000.0001) Levels: 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15.
1880 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: VVELMASS
1881 (PID.TID 0000.0001) Levels: 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15.
1882 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: WVELMASS
1883 (PID.TID 0000.0001) Levels: 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15.
1884 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: WTHMASS
1885 (PID.TID 0000.0001) Levels: 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15.
1886 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: WSLTMASS
1887 (PID.TID 0000.0001) Levels: 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15.
1888 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: ADVr_TH
1889 (PID.TID 0000.0001) Levels: 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15.
1890 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: ADVx_TH
1891 (PID.TID 0000.0001) Levels: 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15.
1892 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: ADVy_TH
1893 (PID.TID 0000.0001) Levels: 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15.
1894 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: DFrI_TH
1895 (PID.TID 0000.0001) Levels: 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15.
1896 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: ADVr_SLT
1897 (PID.TID 0000.0001) Levels: 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15.
1898 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: ADVx_SLT
1899 (PID.TID 0000.0001) Levels: 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15.
1900 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: ADVy_SLT
1901 (PID.TID 0000.0001) Levels: 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15.
1902 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: DFrI_SLT
1903 (PID.TID 0000.0001) Levels: 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15.
1904 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: KPPdiffT
1905 (PID.TID 0000.0001) Levels: 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15.
1906 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: KPPghatK
1907 (PID.TID 0000.0001) Levels: 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15.
1908 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: Set levels for Outp.Stream: KPPfrac
1909 (PID.TID 0000.0001) Levels: 1.
1910 (PID.TID 0000.0001) DIAGNOSTICS_SET_POINTERS: done
1911 (PID.TID 0000.0001) ------------------------------------------------------------
1912 (PID.TID 0000.0001) DIAGSTATS_SET_REGIONS: define no region
1913 (PID.TID 0000.0001) ------------------------------------------------------------
1914 (PID.TID 0000.0001) space allocated for all stats-diags: 0 levels
1915 (PID.TID 0000.0001) DIAGSTATS_SET_POINTERS: done
1916 (PID.TID 0000.0001) ------------------------------------------------------------
1917 (PID.TID 0000.0001) INI_GLOBAL_DOMAIN: Found 19 CS-corner Pts in the domain
1918 (PID.TID 0000.0001) %MON fCori_max = 1.4574827780704E-04
1919 (PID.TID 0000.0001) %MON fCori_min = -1.4574827780704E-04
1920 (PID.TID 0000.0001) %MON fCori_mean = -2.2587545260115E-21
1921 (PID.TID 0000.0001) %MON fCori_sd = 8.4202189509968E-05
1922 (PID.TID 0000.0001) %MON fCoriG_max = 1.4584247033981E-04
1923 (PID.TID 0000.0001) %MON fCoriG_min = -1.4584247033981E-04
1924 (PID.TID 0000.0001) %MON fCoriG_mean = 6.7762635780344E-21
1925 (PID.TID 0000.0001) %MON fCoriG_sd = 8.4202189509968E-05
1926 (PID.TID 0000.0001) %MON fCoriCos_max = 1.4580166994612E-04
1927 (PID.TID 0000.0001) %MON fCoriCos_min = 5.2407700865903E-06
1928 (PID.TID 0000.0001) %MON fCoriCos_mean = 1.1514045869113E-04
1929 (PID.TID 0000.0001) %MON fCoriCos_sd = 3.0375849106513E-05
1930 (PID.TID 0000.0001) INI_CG2D: CG2D normalisation factor = 1.9156564154949553E-04
1931 (PID.TID 0000.0001)
1932 (PID.TID 0000.0001) // =======================================================
1933 (PID.TID 0000.0001) // Model configuration
1934 (PID.TID 0000.0001) // =======================================================
1935 (PID.TID 0000.0001) //
1936 (PID.TID 0000.0001) // "Physical" paramters ( PARM01 in namelist )
1937 (PID.TID 0000.0001) //
1938 (PID.TID 0000.0001) buoyancyRelation = /* Type of relation to get Buoyancy */
1939 (PID.TID 0000.0001) 'OCEANIC'
1940 (PID.TID 0000.0001) ;
1941 (PID.TID 0000.0001) fluidIsAir = /* fluid major constituent is Air */
1942 (PID.TID 0000.0001) F
1943 (PID.TID 0000.0001) ;
1944 (PID.TID 0000.0001) fluidIsWater = /* fluid major constituent is Water */
1945 (PID.TID 0000.0001) T
1946 (PID.TID 0000.0001) ;
1947 (PID.TID 0000.0001) usingPCoords = /* use p (or p*) vertical coordinate */
1948 (PID.TID 0000.0001) F
1949 (PID.TID 0000.0001) ;
1950 (PID.TID 0000.0001) usingZCoords = /* use z (or z*) vertical coordinate */
1951 (PID.TID 0000.0001) T
1952 (PID.TID 0000.0001) ;
1953 (PID.TID 0000.0001) tRef = /* Reference temperature profile ( oC or K ) */
1954 (PID.TID 0000.0001) 15 @ 2.000000000000000E+01 /* K = 1: 15 */
1955 (PID.TID 0000.0001) ;
1956 (PID.TID 0000.0001) sRef = /* Reference salinity profile ( psu ) */
1957 (PID.TID 0000.0001) 15 @ 3.500000000000000E+01 /* K = 1: 15 */
1958 (PID.TID 0000.0001) ;
1959 (PID.TID 0000.0001) viscAh = /* Lateral eddy viscosity ( m^2/s ) */
1960 (PID.TID 0000.0001) 0.000000000000000E+00
1961 (PID.TID 0000.0001) ;
1962 (PID.TID 0000.0001) viscAhMax = /* Maximum lateral eddy viscosity ( m^2/s ) */
1963 (PID.TID 0000.0001) 1.000000000000000E+21
1964 (PID.TID 0000.0001) ;
1965 (PID.TID 0000.0001) viscAhGrid = /* Grid dependent lateral eddy viscosity ( non-dim. ) */
1966 (PID.TID 0000.0001) 0.000000000000000E+00
1967 (PID.TID 0000.0001) ;
1968 (PID.TID 0000.0001) useFullLeith = /* Use Full Form of Leith Viscosity on/off flag*/
1969 (PID.TID 0000.0001) F
1970 (PID.TID 0000.0001) ;
1971 (PID.TID 0000.0001) useStrainTensionVisc= /* Use StrainTension Form of Viscous Operator flag*/
1972 (PID.TID 0000.0001) F
1973 (PID.TID 0000.0001) ;
1974 (PID.TID 0000.0001) useAreaViscLength = /* Use area for visc length instead of geom. mean*/
1975 (PID.TID 0000.0001) T
1976 (PID.TID 0000.0001) ;
1977 (PID.TID 0000.0001) viscC2leith = /* Leith harmonic visc. factor (on grad(vort),non-dim.) */
1978 (PID.TID 0000.0001) 0.000000000000000E+00
1979 (PID.TID 0000.0001) ;
1980 (PID.TID 0000.0001) viscC2leithD = /* Leith harmonic viscosity factor (on grad(div),non-dim.)*/
1981 (PID.TID 0000.0001) 0.000000000000000E+00
1982 (PID.TID 0000.0001) ;
1983 (PID.TID 0000.0001) viscC2smag = /* Smagorinsky harmonic viscosity factor (non-dim.) */
1984 (PID.TID 0000.0001) 0.000000000000000E+00
1985 (PID.TID 0000.0001) ;
1986 (PID.TID 0000.0001) viscA4 = /* Lateral biharmonic viscosity ( m^4/s ) */
1987 (PID.TID 0000.0001) 0.000000000000000E+00
1988 (PID.TID 0000.0001) ;
1989 (PID.TID 0000.0001) viscA4Max = /* Maximum biharmonic viscosity ( m^2/s ) */
1990 (PID.TID 0000.0001) 1.000000000000000E+21
1991 (PID.TID 0000.0001) ;
1992 (PID.TID 0000.0001) viscA4Grid = /* Grid dependent biharmonic viscosity ( non-dim. ) */
1993 (PID.TID 0000.0001) 0.000000000000000E+00
1994 (PID.TID 0000.0001) ;
1995 (PID.TID 0000.0001) viscC4leith = /* Leith biharm viscosity factor (on grad(vort), non-dim.)*/
1996 (PID.TID 0000.0001) 1.500000000000000E+00
1997 (PID.TID 0000.0001) ;
1998 (PID.TID 0000.0001) viscC4leithD = /* Leith biharm viscosity factor (on grad(div), non-dim.) */
1999 (PID.TID 0000.0001) 1.500000000000000E+00
2000 (PID.TID 0000.0001) ;
2001 (PID.TID 0000.0001) viscC4Smag = /* Smagorinsky biharm viscosity factor (non-dim) */
2002 (PID.TID 0000.0001) 0.000000000000000E+00
2003 (PID.TID 0000.0001) ;
2004 (PID.TID 0000.0001) no_slip_sides = /* Viscous BCs: No-slip sides */
2005 (PID.TID 0000.0001) F
2006 (PID.TID 0000.0001) ;
2007 (PID.TID 0000.0001) sideDragFactor = /* side-drag scaling factor (non-dim) */
2008 (PID.TID 0000.0001) 0.000000000000000E+00
2009 (PID.TID 0000.0001) ;
2010 (PID.TID 0000.0001) viscArNr = /* vertical profile of vertical viscosity ( m^2/s )*/
2011 (PID.TID 0000.0001) 15 @ 6.082600000000000E-04 /* K = 1: 15 */
2012 (PID.TID 0000.0001) ;
2013 (PID.TID 0000.0001) no_slip_bottom = /* Viscous BCs: No-slip bottom */
2014 (PID.TID 0000.0001) T
2015 (PID.TID 0000.0001) ;
2016 (PID.TID 0000.0001) bottomDragLinear = /* linear bottom-drag coefficient ( m/s ) */
2017 (PID.TID 0000.0001) 0.000000000000000E+00
2018 (PID.TID 0000.0001) ;
2019 (PID.TID 0000.0001) bottomDragQuadratic = /* quadratic bottom-drag coefficient (-) */
2020 (PID.TID 0000.0001) 2.000000000000000E-03
2021 (PID.TID 0000.0001) ;
2022 (PID.TID 0000.0001) diffKhT = /* Laplacian diffusion of heat laterally ( m^2/s ) */
2023 (PID.TID 0000.0001) 0.000000000000000E+00
2024 (PID.TID 0000.0001) ;
2025 (PID.TID 0000.0001) diffK4T = /* Biharmonic diffusion of heat laterally ( m^4/s ) */
2026 (PID.TID 0000.0001) 0.000000000000000E+00
2027 (PID.TID 0000.0001) ;
2028 (PID.TID 0000.0001) diffKhS = /* Laplacian diffusion of salt laterally ( m^2/s ) */
2029 (PID.TID 0000.0001) 0.000000000000000E+00
2030 (PID.TID 0000.0001) ;
2031 (PID.TID 0000.0001) diffK4S = /* Biharmonic diffusion of salt laterally ( m^4/s ) */
2032 (PID.TID 0000.0001) 0.000000000000000E+00
2033 (PID.TID 0000.0001) ;
2034 (PID.TID 0000.0001) diffKrNrT = /* vertical profile of vertical diffusion of Temp ( m^2/s )*/
2035 (PID.TID 0000.0001) 15 @ 0.000000000000000E+00 /* K = 1: 15 */
2036 (PID.TID 0000.0001) ;
2037 (PID.TID 0000.0001) diffKrNrS = /* vertical profile of vertical diffusion of Salt ( m^2/s )*/
2038 (PID.TID 0000.0001) 15 @ 0.000000000000000E+00 /* K = 1: 15 */
2039 (PID.TID 0000.0001) ;
2040 (PID.TID 0000.0001) diffKrBL79surf = /* Surface diffusion for Bryan and Lewis 79 ( m^2/s ) */
2041 (PID.TID 0000.0001) 0.000000000000000E+00
2042 (PID.TID 0000.0001) ;
2043 (PID.TID 0000.0001) diffKrBL79deep = /* Deep diffusion for Bryan and Lewis 1979 ( m^2/s ) */
2044 (PID.TID 0000.0001) 0.000000000000000E+00
2045 (PID.TID 0000.0001) ;
2046 (PID.TID 0000.0001) diffKrBL79scl = /* Depth scale for Bryan and Lewis 1979 ( m ) */
2047 (PID.TID 0000.0001) 2.000000000000000E+02
2048 (PID.TID 0000.0001) ;
2049 (PID.TID 0000.0001) diffKrBL79Ho = /* Turning depth for Bryan and Lewis 1979 ( m ) */
2050 (PID.TID 0000.0001) -2.000000000000000E+03
2051 (PID.TID 0000.0001) ;
2052 (PID.TID 0000.0001) ivdc_kappa = /* Implicit Vertical Diffusivity for Convection ( m^2/s) */
2053 (PID.TID 0000.0001) 0.000000000000000E+00
2054 (PID.TID 0000.0001) ;
2055 (PID.TID 0000.0001) hMixCriteria= /* Criteria for mixed-layer diagnostic */
2056 (PID.TID 0000.0001) -8.000000000000000E-01
2057 (PID.TID 0000.0001) ;
2058 (PID.TID 0000.0001) dRhoSmall = /* Parameter for mixed-layer diagnostic */
2059 (PID.TID 0000.0001) 1.000000000000000E-06
2060 (PID.TID 0000.0001) ;
2061 (PID.TID 0000.0001) hMixSmooth= /* Smoothing parameter for mixed-layer diagnostic */
2062 (PID.TID 0000.0001) 0.000000000000000E+00
2063 (PID.TID 0000.0001) ;
2064 (PID.TID 0000.0001) eosType = /* Type of Equation of State */
2065 (PID.TID 0000.0001) 'JMD95Z'
2066 (PID.TID 0000.0001) ;
2067 (PID.TID 0000.0001) celsius2K = /* 0 degree Celsius converted to Kelvin ( K ) */
2068 (PID.TID 0000.0001) 2.731500000000000E+02
2069 (PID.TID 0000.0001) ;
2070 (PID.TID 0000.0001) rhoConst = /* Reference density (Boussinesq) ( kg/m^3 ) */
2071 (PID.TID 0000.0001) 1.027500000000000E+03
2072 (PID.TID 0000.0001) ;
2073 (PID.TID 0000.0001) rhoFacC = /* normalized Reference density @ cell-Center (-) */
2074 (PID.TID 0000.0001) 15 @ 1.000000000000000E+00 /* K = 1: 15 */
2075 (PID.TID 0000.0001) ;
2076 (PID.TID 0000.0001) rhoFacF = /* normalized Reference density @ W-Interface (-) */
2077 (PID.TID 0000.0001) 16 @ 1.000000000000000E+00 /* K = 1: 16 */
2078 (PID.TID 0000.0001) ;
2079 (PID.TID 0000.0001) rhoConstFresh = /* Fresh-water reference density ( kg/m^3 ) */
2080 (PID.TID 0000.0001) 9.998000000000000E+02
2081 (PID.TID 0000.0001) ;
2082 (PID.TID 0000.0001) gravity = /* Gravitational acceleration ( m/s^2 ) */
2083 (PID.TID 0000.0001) 9.810000000000000E+00
2084 (PID.TID 0000.0001) ;
2085 (PID.TID 0000.0001) gBaro = /* Barotropic gravity ( m/s^2 ) */
2086 (PID.TID 0000.0001) 9.810000000000000E+00
2087 (PID.TID 0000.0001) ;
2088 (PID.TID 0000.0001) rotationPeriod = /* Rotation Period ( s ) */
2089 (PID.TID 0000.0001) 8.616400000000000E+04
2090 (PID.TID 0000.0001) ;
2091 (PID.TID 0000.0001) omega = /* Angular velocity ( rad/s ) */
2092 (PID.TID 0000.0001) 7.292123516990375E-05
2093 (PID.TID 0000.0001) ;
2094 (PID.TID 0000.0001) f0 = /* Reference coriolis parameter ( 1/s ) */
2095 (PID.TID 0000.0001) 1.000000000000000E-04
2096 (PID.TID 0000.0001) ;
2097 (PID.TID 0000.0001) beta = /* Beta ( 1/(m.s) ) */
2098 (PID.TID 0000.0001) 9.999999999999999E-12
2099 (PID.TID 0000.0001) ;
2100 (PID.TID 0000.0001) fPrime = /* Second coriolis parameter ( 1/s ) */
2101 (PID.TID 0000.0001) 0.000000000000000E+00
2102 (PID.TID 0000.0001) ;
2103 (PID.TID 0000.0001) rigidLid = /* Rigid lid on/off flag */
2104 (PID.TID 0000.0001) F
2105 (PID.TID 0000.0001) ;
2106 (PID.TID 0000.0001) implicitFreeSurface = /* Implicit free surface on/off flag */
2107 (PID.TID 0000.0001) T
2108 (PID.TID 0000.0001) ;
2109 (PID.TID 0000.0001) freeSurfFac = /* Implicit free surface factor */
2110 (PID.TID 0000.0001) 1.000000000000000E+00
2111 (PID.TID 0000.0001) ;
2112 (PID.TID 0000.0001) implicSurfPress = /* Surface Pressure implicit factor (0-1)*/
2113 (PID.TID 0000.0001) 1.000000000000000E+00
2114 (PID.TID 0000.0001) ;
2115 (PID.TID 0000.0001) implicDiv2Dflow = /* Barot. Flow Div. implicit factor (0-1)*/
2116 (PID.TID 0000.0001) 1.000000000000000E+00
2117 (PID.TID 0000.0001) ;
2118 (PID.TID 0000.0001) uniformLin_PhiSurf = /* use uniform Bo_surf on/off flag*/
2119 (PID.TID 0000.0001) T
2120 (PID.TID 0000.0001) ;
2121 (PID.TID 0000.0001) uniformFreeSurfLev = /* free-surface level-index is uniform */
2122 (PID.TID 0000.0001) T
2123 (PID.TID 0000.0001) ;
2124 (PID.TID 0000.0001) hFacMin = /* minimum partial cell factor (hFac) */
2125 (PID.TID 0000.0001) 3.000000000000000E-01
2126 (PID.TID 0000.0001) ;
2127 (PID.TID 0000.0001) hFacMinDr = /* minimum partial cell thickness ( m) */
2128 (PID.TID 0000.0001) 3.000000000000000E-01
2129 (PID.TID 0000.0001) ;
2130 (PID.TID 0000.0001) exactConserv = /* Exact Volume Conservation on/off flag*/
2131 (PID.TID 0000.0001) T
2132 (PID.TID 0000.0001) ;
2133 (PID.TID 0000.0001) linFSConserveTr = /* Tracer correction for Lin Free Surface on/off flag*/
2134 (PID.TID 0000.0001) F
2135 (PID.TID 0000.0001) ;
2136 (PID.TID 0000.0001) nonlinFreeSurf = /* Non-linear Free Surf. options (-1,0,1,2,3)*/
2137 (PID.TID 0000.0001) 4
2138 (PID.TID 0000.0001) -1,0= Off ; 1,2,3= On, 2=+rescale gU,gV, 3=+update cg2d solv.
2139 (PID.TID 0000.0001) ;
2140 (PID.TID 0000.0001) hFacInf = /* lower threshold for hFac (nonlinFreeSurf only)*/
2141 (PID.TID 0000.0001) 1.000000000000000E-01
2142 (PID.TID 0000.0001) ;
2143 (PID.TID 0000.0001) hFacSup = /* upper threshold for hFac (nonlinFreeSurf only)*/
2144 (PID.TID 0000.0001) 5.000000000000000E+00
2145 (PID.TID 0000.0001) ;
2146 (PID.TID 0000.0001) select_rStar = /* r* Vertical coord. options (=0 r coord.; >0 uses r*)*/
2147 (PID.TID 0000.0001) 2
2148 (PID.TID 0000.0001) ;
2149 (PID.TID 0000.0001) useRealFreshWaterFlux = /* Real Fresh Water Flux on/off flag*/
2150 (PID.TID 0000.0001) T
2151 (PID.TID 0000.0001) ;
2152 (PID.TID 0000.0001) temp_EvPrRn = /* Temp. of Evap/Prec/R (UNSET=use local T)(oC)*/
2153 (PID.TID 0000.0001) 1.234567000000000E+05
2154 (PID.TID 0000.0001) ;
2155 (PID.TID 0000.0001) salt_EvPrRn = /* Salin. of Evap/Prec/R (UNSET=use local S)(psu)*/
2156 (PID.TID 0000.0001) 0.000000000000000E+00
2157 (PID.TID 0000.0001) ;
2158 (PID.TID 0000.0001) selectAddFluid = /* option for mass source/sink of fluid (=0: off) */
2159 (PID.TID 0000.0001) 0
2160 (PID.TID 0000.0001) ;
2161 (PID.TID 0000.0001) temp_addMass = /* Temp. of addMass array (UNSET=use local T)(oC)*/
2162 (PID.TID 0000.0001) 1.234567000000000E+05
2163 (PID.TID 0000.0001) ;
2164 (PID.TID 0000.0001) salt_addMass = /* Salin. of addMass array (UNSET=use local S)(psu)*/
2165 (PID.TID 0000.0001) 0.000000000000000E+00
2166 (PID.TID 0000.0001) ;
2167 (PID.TID 0000.0001) use3Dsolver = /* use 3-D pressure solver on/off flag */
2168 (PID.TID 0000.0001) F
2169 (PID.TID 0000.0001) ;
2170 (PID.TID 0000.0001) nonHydrostatic = /* Non-Hydrostatic on/off flag */
2171 (PID.TID 0000.0001) F
2172 (PID.TID 0000.0001) ;
2173 (PID.TID 0000.0001) nh_Am2 = /* Non-Hydrostatic terms scaling factor */
2174 (PID.TID 0000.0001) 1.000000000000000E+00
2175 (PID.TID 0000.0001) ;
2176 (PID.TID 0000.0001) implicitNHPress = /* Non-Hyd Pressure implicit factor (0-1)*/
2177 (PID.TID 0000.0001) 1.000000000000000E+00
2178 (PID.TID 0000.0001) ;
2179 (PID.TID 0000.0001) selectNHfreeSurf = /* Non-Hyd (free-)Surface option */
2180 (PID.TID 0000.0001) 0
2181 (PID.TID 0000.0001) ;
2182 (PID.TID 0000.0001) quasiHydrostatic = /* Quasi-Hydrostatic on/off flag */
2183 (PID.TID 0000.0001) F
2184 (PID.TID 0000.0001) ;
2185 (PID.TID 0000.0001) calc_wVelocity = /* vertical velocity calculation on/off flag */
2186 (PID.TID 0000.0001) T
2187 (PID.TID 0000.0001) ;
2188 (PID.TID 0000.0001) momStepping = /* Momentum equation on/off flag */
2189 (PID.TID 0000.0001) T
2190 (PID.TID 0000.0001) ;
2191 (PID.TID 0000.0001) vectorInvariantMomentum= /* Vector-Invariant Momentum on/off */
2192 (PID.TID 0000.0001) T
2193 (PID.TID 0000.0001) ;
2194 (PID.TID 0000.0001) momAdvection = /* Momentum advection on/off flag */
2195 (PID.TID 0000.0001) T
2196 (PID.TID 0000.0001) ;
2197 (PID.TID 0000.0001) momViscosity = /* Momentum viscosity on/off flag */
2198 (PID.TID 0000.0001) T
2199 (PID.TID 0000.0001) ;
2200 (PID.TID 0000.0001) momImplVertAdv= /* Momentum implicit vert. advection on/off*/
2201 (PID.TID 0000.0001) F
2202 (PID.TID 0000.0001) ;
2203 (PID.TID 0000.0001) implicitViscosity = /* Implicit viscosity on/off flag */
2204 (PID.TID 0000.0001) T
2205 (PID.TID 0000.0001) ;
2206 (PID.TID 0000.0001) metricTerms = /* metric-Terms on/off flag */
2207 (PID.TID 0000.0001) F
2208 (PID.TID 0000.0001) ;
2209 (PID.TID 0000.0001) useNHMTerms = /* Non-Hydrostatic Metric-Terms on/off */
2210 (PID.TID 0000.0001) F
2211 (PID.TID 0000.0001) ;
2212 (PID.TID 0000.0001) selectCoriMap = /* Coriolis Map options (0,1,2,3)*/
2213 (PID.TID 0000.0001) 2
2214 (PID.TID 0000.0001) 0= f-Plane ; 1= Beta-Plane ; 2= Spherical ; 3= read from file
2215 (PID.TID 0000.0001) ;
2216 (PID.TID 0000.0001) use3dCoriolis = /* 3-D Coriolis on/off flag */
2217 (PID.TID 0000.0001) F
2218 (PID.TID 0000.0001) ;
2219 (PID.TID 0000.0001) useCoriolis = /* Coriolis on/off flag */
2220 (PID.TID 0000.0001) T
2221 (PID.TID 0000.0001) ;
2222 (PID.TID 0000.0001) useCDscheme = /* CD scheme on/off flag */
2223 (PID.TID 0000.0001) F
2224 (PID.TID 0000.0001) ;
2225 (PID.TID 0000.0001) useEnergyConservingCoriolis= /* Flx-Form Coriolis scheme flag */
2226 (PID.TID 0000.0001) F
2227 (PID.TID 0000.0001) ;
2228 (PID.TID 0000.0001) useJamartWetPoints= /* Coriolis WetPoints method flag */
2229 (PID.TID 0000.0001) F
2230 (PID.TID 0000.0001) ;
2231 (PID.TID 0000.0001) useJamartMomAdv= /* V.I Non-linear terms Jamart flag */
2232 (PID.TID 0000.0001) F
2233 (PID.TID 0000.0001) ;
2234 (PID.TID 0000.0001) useAbsVorticity= /* V.I Works with f+zeta in Coriolis */
2235 (PID.TID 0000.0001) F
2236 (PID.TID 0000.0001) ;
2237 (PID.TID 0000.0001) selectVortScheme= /* V.I Scheme selector for Vorticity-Term */
2238 (PID.TID 0000.0001) 0
2239 (PID.TID 0000.0001) = 0 : enstrophy (Shallow-Water Eq.) conserving scheme by Sadourny, JAS 75
2240 (PID.TID 0000.0001) = 1 : same as 0 with modified hFac
2241 (PID.TID 0000.0001) = 2 : energy conserving scheme (used by Sadourny in JAS 75 paper)
2242 (PID.TID 0000.0001) = 3 : energy (general) and enstrophy (2D, nonDiv.) conserving scheme
2243 (PID.TID 0000.0001) from Sadourny (Burridge & Haseler, ECMWF Rep.4, 1977)
2244 (PID.TID 0000.0001) ;
2245 (PID.TID 0000.0001) upwindVorticity= /* V.I Upwind bias vorticity flag */
2246 (PID.TID 0000.0001) F
2247 (PID.TID 0000.0001) ;
2248 (PID.TID 0000.0001) highOrderVorticity= /* V.I High order vort. advect. flag */
2249 (PID.TID 0000.0001) T
2250 (PID.TID 0000.0001) ;
2251 (PID.TID 0000.0001) upwindShear= /* V.I Upwind vertical Shear advection flag */
2252 (PID.TID 0000.0001) F
2253 (PID.TID 0000.0001) ;
2254 (PID.TID 0000.0001) selectKEscheme= /* V.I Kinetic Energy scheme selector */
2255 (PID.TID 0000.0001) 0
2256 (PID.TID 0000.0001) ;
2257 (PID.TID 0000.0001) momForcing = /* Momentum forcing on/off flag */
2258 (PID.TID 0000.0001) T
2259 (PID.TID 0000.0001) ;
2260 (PID.TID 0000.0001) momPressureForcing = /* Momentum pressure term on/off flag */
2261 (PID.TID 0000.0001) T
2262 (PID.TID 0000.0001) ;
2263 (PID.TID 0000.0001) implicitIntGravWave= /* Implicit Internal Gravity Wave flag */
2264 (PID.TID 0000.0001) F
2265 (PID.TID 0000.0001) ;
2266 (PID.TID 0000.0001) staggerTimeStep = /* Stagger time stepping on/off flag */
2267 (PID.TID 0000.0001) T
2268 (PID.TID 0000.0001) ;
2269 (PID.TID 0000.0001) doResetHFactors = /* reset thickness factors @ each time-step */
2270 (PID.TID 0000.0001) F
2271 (PID.TID 0000.0001) ;
2272 (PID.TID 0000.0001) multiDimAdvection = /* enable/disable Multi-Dim Advection */
2273 (PID.TID 0000.0001) T
2274 (PID.TID 0000.0001) ;
2275 (PID.TID 0000.0001) useMultiDimAdvec = /* Multi-Dim Advection is/is-not used */
2276 (PID.TID 0000.0001) T
2277 (PID.TID 0000.0001) ;
2278 (PID.TID 0000.0001) implicitDiffusion = /* Implicit Diffusion on/off flag */
2279 (PID.TID 0000.0001) T
2280 (PID.TID 0000.0001) ;
2281 (PID.TID 0000.0001) tempStepping = /* Temperature equation on/off flag */
2282 (PID.TID 0000.0001) T
2283 (PID.TID 0000.0001) ;
2284 (PID.TID 0000.0001) tempAdvection = /* Temperature advection on/off flag */
2285 (PID.TID 0000.0001) T
2286 (PID.TID 0000.0001) ;
2287 (PID.TID 0000.0001) tempImplVertAdv = /* Temp. implicit vert. advection on/off */
2288 (PID.TID 0000.0001) F
2289 (PID.TID 0000.0001) ;
2290 (PID.TID 0000.0001) tempForcing = /* Temperature forcing on/off flag */
2291 (PID.TID 0000.0001) T
2292 (PID.TID 0000.0001) ;
2293 (PID.TID 0000.0001) doThetaClimRelax = /* apply SST relaxation on/off flag */
2294 (PID.TID 0000.0001) F
2295 (PID.TID 0000.0001) ;
2296 (PID.TID 0000.0001) tempIsActiveTr = /* Temp. is a dynamically Active Tracer */
2297 (PID.TID 0000.0001) T
2298 (PID.TID 0000.0001) ;
2299 (PID.TID 0000.0001) saltStepping = /* Salinity equation on/off flag */
2300 (PID.TID 0000.0001) T
2301 (PID.TID 0000.0001) ;
2302 (PID.TID 0000.0001) saltAdvection = /* Salinity advection on/off flag */
2303 (PID.TID 0000.0001) T
2304 (PID.TID 0000.0001) ;
2305 (PID.TID 0000.0001) saltImplVertAdv = /* Sali. implicit vert. advection on/off */
2306 (PID.TID 0000.0001) F
2307 (PID.TID 0000.0001) ;
2308 (PID.TID 0000.0001) saltForcing = /* Salinity forcing on/off flag */
2309 (PID.TID 0000.0001) T
2310 (PID.TID 0000.0001) ;
2311 (PID.TID 0000.0001) doSaltClimRelax = /* apply SSS relaxation on/off flag */
2312 (PID.TID 0000.0001) F
2313 (PID.TID 0000.0001) ;
2314 (PID.TID 0000.0001) saltIsActiveTr = /* Salt is a dynamically Active Tracer */
2315 (PID.TID 0000.0001) T
2316 (PID.TID 0000.0001) ;
2317 (PID.TID 0000.0001) readBinaryPrec = /* Precision used for reading binary files */
2318 (PID.TID 0000.0001) 64
2319 (PID.TID 0000.0001) ;
2320 (PID.TID 0000.0001) writeBinaryPrec = /* Precision used for writing binary files */
2321 (PID.TID 0000.0001) 32
2322 (PID.TID 0000.0001) ;
2323 (PID.TID 0000.0001) globalFiles = /* write "global" (=not per tile) files */
2324 (PID.TID 0000.0001) T
2325 (PID.TID 0000.0001) ;
2326 (PID.TID 0000.0001) useSingleCpuIO = /* only master MPI process does I/O */
2327 (PID.TID 0000.0001) T
2328 (PID.TID 0000.0001) ;
2329 (PID.TID 0000.0001) /* debLev[*] : level of debug & auxiliary message printing */
2330 (PID.TID 0000.0001) debLevZero = 0 ; /* level of disabled aux. msg printing */
2331 (PID.TID 0000.0001) debLevA = 1 ; /* level of minimum aux. msg printing */
2332 (PID.TID 0000.0001) debLevB = 2 ; /* level of low aux. print (report read-file opening)*/
2333 (PID.TID 0000.0001) debLevC = 3 ; /* level of moderate debug prt (most pkgs debug msg) */
2334 (PID.TID 0000.0001) debLevD = 4 ; /* level of enhanced debug prt (add DEBUG_STATS prt) */
2335 (PID.TID 0000.0001) debLevE = 5 ; /* level of extensive debug printing */
2336 (PID.TID 0000.0001) debugLevel = /* select debug printing level */
2337 (PID.TID 0000.0001) -1
2338 (PID.TID 0000.0001) ;
2339 (PID.TID 0000.0001) //
2340 (PID.TID 0000.0001) // Elliptic solver(s) paramters ( PARM02 in namelist )
2341 (PID.TID 0000.0001) //
2342 (PID.TID 0000.0001) cg2dMaxIters = /* Upper limit on 2d con. grad iterations */
2343 (PID.TID 0000.0001) 100
2344 (PID.TID 0000.0001) ;
2345 (PID.TID 0000.0001) cg2dChkResFreq = /* 2d con. grad convergence test frequency */
2346 (PID.TID 0000.0001) 1
2347 (PID.TID 0000.0001) ;
2348 (PID.TID 0000.0001) cg2dTargetResidual = /* 2d con. grad target residual */
2349 (PID.TID 0000.0001) 1.000000000000000E-05
2350 (PID.TID 0000.0001) ;
2351 (PID.TID 0000.0001) cg2dTargetResWunit = /* CG2d target residual [W units] */
2352 (PID.TID 0000.0001) -1.000000000000000E+00
2353 (PID.TID 0000.0001) ;
2354 (PID.TID 0000.0001) cg2dPreCondFreq = /* Freq. for updating cg2d preconditioner */
2355 (PID.TID 0000.0001) 1
2356 (PID.TID 0000.0001) ;
2357 (PID.TID 0000.0001) useSRCGSolver = /* use single reduction CG solver(s) */
2358 (PID.TID 0000.0001) F
2359 (PID.TID 0000.0001) ;
2360 (PID.TID 0000.0001) printResidualFreq = /* Freq. for printing CG residual */
2361 (PID.TID 0000.0001) 0
2362 (PID.TID 0000.0001) ;
2363 (PID.TID 0000.0001) //
2364 (PID.TID 0000.0001) // Time stepping paramters ( PARM03 in namelist )
2365 (PID.TID 0000.0001) //
2366 (PID.TID 0000.0001) deltaTMom = /* Momentum equation timestep ( s ) */
2367 (PID.TID 0000.0001) 1.200000000000000E+03
2368 (PID.TID 0000.0001) ;
2369 (PID.TID 0000.0001) deltaTFreeSurf = /* FreeSurface equation timestep ( s ) */
2370 (PID.TID 0000.0001) 1.200000000000000E+03
2371 (PID.TID 0000.0001) ;
2372 (PID.TID 0000.0001) dTtracerLev = /* Tracer equation timestep ( s ) */
2373 (PID.TID 0000.0001) 15 @ 1.200000000000000E+03 /* K = 1: 15 */
2374 (PID.TID 0000.0001) ;
2375 (PID.TID 0000.0001) deltaTClock = /* Model clock timestep ( s ) */
2376 (PID.TID 0000.0001) 1.200000000000000E+03
2377 (PID.TID 0000.0001) ;
2378 (PID.TID 0000.0001) cAdjFreq = /* Convective adjustment interval ( s ) */
2379 (PID.TID 0000.0001) 0.000000000000000E+00
2380 (PID.TID 0000.0001) ;
2381 (PID.TID 0000.0001) momForcingOutAB = /* =1: take Momentum Forcing out of Adams-Bash. stepping */
2382 (PID.TID 0000.0001) 1
2383 (PID.TID 0000.0001) ;
2384 (PID.TID 0000.0001) tracForcingOutAB = /* =1: take T,S,pTr Forcing out of Adams-Bash. stepping */
2385 (PID.TID 0000.0001) 1
2386 (PID.TID 0000.0001) ;
2387 (PID.TID 0000.0001) momDissip_In_AB = /* put Dissipation Tendency in Adams-Bash. stepping */
2388 (PID.TID 0000.0001) T
2389 (PID.TID 0000.0001) ;
2390 (PID.TID 0000.0001) doAB_onGtGs = /* apply AB on Tendencies (rather than on T,S)*/
2391 (PID.TID 0000.0001) T
2392 (PID.TID 0000.0001) ;
2393 (PID.TID 0000.0001) abEps = /* Adams-Bashforth-2 stabilizing weight */
2394 (PID.TID 0000.0001) 1.000000000000000E-01
2395 (PID.TID 0000.0001) ;
2396 (PID.TID 0000.0001) pickupStrictlyMatch= /* stop if pickup do not strictly match */
2397 (PID.TID 0000.0001) T
2398 (PID.TID 0000.0001) ;
2399 (PID.TID 0000.0001) nIter0 = /* Run starting timestep number */
2400 (PID.TID 0000.0001) 0
2401 (PID.TID 0000.0001) ;
2402 (PID.TID 0000.0001) nTimeSteps = /* Number of timesteps */
2403 (PID.TID 0000.0001) 72
2404 (PID.TID 0000.0001) ;
2405 (PID.TID 0000.0001) nEndIter = /* Run ending timestep number */
2406 (PID.TID 0000.0001) 72
2407 (PID.TID 0000.0001) ;
2408 (PID.TID 0000.0001) baseTime = /* Model base time ( s ) */
2409 (PID.TID 0000.0001) 0.000000000000000E+00
2410 (PID.TID 0000.0001) ;
2411 (PID.TID 0000.0001) startTime = /* Run start time ( s ) */
2412 (PID.TID 0000.0001) 0.000000000000000E+00
2413 (PID.TID 0000.0001) ;
2414 (PID.TID 0000.0001) endTime = /* Integration ending time ( s ) */
2415 (PID.TID 0000.0001) 8.640000000000000E+04
2416 (PID.TID 0000.0001) ;
2417 (PID.TID 0000.0001) pChkPtFreq = /* Permanent restart/pickup file interval ( s ) */
2418 (PID.TID 0000.0001) 3.153600000000000E+07
2419 (PID.TID 0000.0001) ;
2420 (PID.TID 0000.0001) chkPtFreq = /* Rolling restart/pickup file interval ( s ) */
2421 (PID.TID 0000.0001) 2.592000000000000E+06
2422 (PID.TID 0000.0001) ;
2423 (PID.TID 0000.0001) pickup_write_mdsio = /* Model IO flag. */
2424 (PID.TID 0000.0001) T
2425 (PID.TID 0000.0001) ;
2426 (PID.TID 0000.0001) pickup_read_mdsio = /* Model IO flag. */
2427 (PID.TID 0000.0001) T
2428 (PID.TID 0000.0001) ;
2429 (PID.TID 0000.0001) pickup_write_immed = /* Model IO flag. */
2430 (PID.TID 0000.0001) F
2431 (PID.TID 0000.0001) ;
2432 (PID.TID 0000.0001) writePickupAtEnd = /* Model IO flag. */
2433 (PID.TID 0000.0001) T
2434 (PID.TID 0000.0001) ;
2435 (PID.TID 0000.0001) dumpFreq = /* Model state write out interval ( s ). */
2436 (PID.TID 0000.0001) 0.000000000000000E+00
2437 (PID.TID 0000.0001) ;
2438 (PID.TID 0000.0001) dumpInitAndLast= /* write out Initial & Last iter. model state */
2439 (PID.TID 0000.0001) F
2440 (PID.TID 0000.0001) ;
2441 (PID.TID 0000.0001) snapshot_mdsio = /* Model IO flag. */
2442 (PID.TID 0000.0001) T
2443 (PID.TID 0000.0001) ;
2444 (PID.TID 0000.0001) monitorFreq = /* Monitor output interval ( s ). */
2445 (PID.TID 0000.0001) 8.640000000000000E+04
2446 (PID.TID 0000.0001) ;
2447 (PID.TID 0000.0001) monitorSelect = /* select group of variables to monitor */
2448 (PID.TID 0000.0001) 3
2449 (PID.TID 0000.0001) ;
2450 (PID.TID 0000.0001) monitor_stdio = /* Model IO flag. */
2451 (PID.TID 0000.0001) T
2452 (PID.TID 0000.0001) ;
2453 (PID.TID 0000.0001) externForcingPeriod = /* forcing period (s) */
2454 (PID.TID 0000.0001) 0.000000000000000E+00
2455 (PID.TID 0000.0001) ;
2456 (PID.TID 0000.0001) externForcingCycle = /* period of the cyle (s). */
2457 (PID.TID 0000.0001) 0.000000000000000E+00
2458 (PID.TID 0000.0001) ;
2459 (PID.TID 0000.0001) tauThetaClimRelax = /* relaxation time scale (s) */
2460 (PID.TID 0000.0001) 0.000000000000000E+00
2461 (PID.TID 0000.0001) ;
2462 (PID.TID 0000.0001) tauSaltClimRelax = /* relaxation time scale (s) */
2463 (PID.TID 0000.0001) 0.000000000000000E+00
2464 (PID.TID 0000.0001) ;
2465 (PID.TID 0000.0001) latBandClimRelax = /* max. Lat. where relaxation */
2466 (PID.TID 0000.0001) 1.800000000000000E+02
2467 (PID.TID 0000.0001) ;
2468 (PID.TID 0000.0001) //
2469 (PID.TID 0000.0001) // Gridding paramters ( PARM04 in namelist )
2470 (PID.TID 0000.0001) //
2471 (PID.TID 0000.0001) usingCartesianGrid = /* Cartesian coordinates flag ( True/False ) */
2472 (PID.TID 0000.0001) F
2473 (PID.TID 0000.0001) ;
2474 (PID.TID 0000.0001) usingCylindricalGrid = /* Cylindrical coordinates flag ( True/False ) */
2475 (PID.TID 0000.0001) F
2476 (PID.TID 0000.0001) ;
2477 (PID.TID 0000.0001) usingSphericalPolarGrid = /* Spherical coordinates flag ( True/False ) */
2478 (PID.TID 0000.0001) F
2479 (PID.TID 0000.0001) ;
2480 (PID.TID 0000.0001) usingCurvilinearGrid = /* Curvilinear coordinates flag ( True/False ) */
2481 (PID.TID 0000.0001) T
2482 (PID.TID 0000.0001) ;
2483 (PID.TID 0000.0001) selectSigmaCoord = /* Hybrid-Sigma Vert. Coordinate option */
2484 (PID.TID 0000.0001) 0
2485 (PID.TID 0000.0001) ;
2486 (PID.TID 0000.0001) Ro_SeaLevel = /* r(1) ( units of r == m ) */
2487 (PID.TID 0000.0001) 0.000000000000000E+00
2488 (PID.TID 0000.0001) ;
2489 (PID.TID 0000.0001) rSigmaBnd = /* r/sigma transition ( units of r == m ) */
2490 (PID.TID 0000.0001) 1.234567000000000E+05
2491 (PID.TID 0000.0001) ;
2492 (PID.TID 0000.0001) rkSign = /* index orientation relative to vertical coordinate */
2493 (PID.TID 0000.0001) -1.000000000000000E+00
2494 (PID.TID 0000.0001) ;
2495 (PID.TID 0000.0001) gravitySign = /* gravity orientation relative to vertical coordinate */
2496 (PID.TID 0000.0001) -1.000000000000000E+00
2497 (PID.TID 0000.0001) ;
2498 (PID.TID 0000.0001) mass2rUnit = /* convert mass per unit area [kg/m2] to r-units [m] */
2499 (PID.TID 0000.0001) 9.732360097323601E-04
2500 (PID.TID 0000.0001) ;
2501 (PID.TID 0000.0001) rUnit2mass = /* convert r-units [m] to mass per unit area [kg/m2] */
2502 (PID.TID 0000.0001) 1.027500000000000E+03
2503 (PID.TID 0000.0001) ;
2504 (PID.TID 0000.0001) drC = /* C spacing ( units of r ) */
2505 (PID.TID 0000.0001) 2.500000000000000E+01, /* K = 1 */
2506 (PID.TID 0000.0001) 6.000000000000000E+01, /* K = 2 */
2507 (PID.TID 0000.0001) 8.500000000000000E+01, /* K = 3 */
2508 (PID.TID 0000.0001) 1.200000000000000E+02, /* K = 4 */
2509 (PID.TID 0000.0001) 1.650000000000000E+02, /* K = 5 */
2510 (PID.TID 0000.0001) 2.150000000000000E+02, /* K = 6 */
2511 (PID.TID 0000.0001) 2.650000000000000E+02, /* K = 7 */
2512 (PID.TID 0000.0001) 3.150000000000000E+02, /* K = 8 */
2513 (PID.TID 0000.0001) 3.650000000000000E+02, /* K = 9 */
2514 (PID.TID 0000.0001) 4.150000000000000E+02, /* K = 10 */
2515 (PID.TID 0000.0001) 4.650000000000000E+02, /* K = 11 */
2516 (PID.TID 0000.0001) 5.150000000000000E+02, /* K = 12 */
2517 (PID.TID 0000.0001) 5.650000000000000E+02, /* K = 13 */
2518 (PID.TID 0000.0001) 6.150000000000000E+02, /* K = 14 */
2519 (PID.TID 0000.0001) 6.650000000000000E+02 /* K = 15 */
2520 (PID.TID 0000.0001) ;
2521 (PID.TID 0000.0001) drF = /* W spacing ( units of r ) */
2522 (PID.TID 0000.0001) 5.000000000000000E+01, /* K = 1 */
2523 (PID.TID 0000.0001) 7.000000000000000E+01, /* K = 2 */
2524 (PID.TID 0000.0001) 1.000000000000000E+02, /* K = 3 */
2525 (PID.TID 0000.0001) 1.400000000000000E+02, /* K = 4 */
2526 (PID.TID 0000.0001) 1.900000000000000E+02, /* K = 5 */
2527 (PID.TID 0000.0001) 2.400000000000000E+02, /* K = 6 */
2528 (PID.TID 0000.0001) 2.900000000000000E+02, /* K = 7 */
2529 (PID.TID 0000.0001) 3.400000000000000E+02, /* K = 8 */
2530 (PID.TID 0000.0001) 3.900000000000000E+02, /* K = 9 */
2531 (PID.TID 0000.0001) 4.400000000000000E+02, /* K = 10 */
2532 (PID.TID 0000.0001) 4.900000000000000E+02, /* K = 11 */
2533 (PID.TID 0000.0001) 5.400000000000000E+02, /* K = 12 */
2534 (PID.TID 0000.0001) 5.900000000000000E+02, /* K = 13 */
2535 (PID.TID 0000.0001) 6.400000000000000E+02, /* K = 14 */
2536 (PID.TID 0000.0001) 6.900000000000000E+02 /* K = 15 */
2537 (PID.TID 0000.0001) ;
2538 (PID.TID 0000.0001) radius_fromHorizGrid = /* sphere Radius of input horiz. grid */
2539 (PID.TID 0000.0001) 6.370000000000000E+06
2540 (PID.TID 0000.0001) ;
2541 (PID.TID 0000.0001) rSphere = /* Radius ( ignored - cartesian, m - spherical ) */
2542 (PID.TID 0000.0001) 6.370000000000000E+06
2543 (PID.TID 0000.0001) ;
2544 (PID.TID 0000.0001) deepAtmosphere = /* Deep/Shallow Atmosphere flag (True/False) */
2545 (PID.TID 0000.0001) F
2546 (PID.TID 0000.0001) ;
2547 (PID.TID 0000.0001) xC = /* xC(:,1,:,1) : P-point X coord ( deg. or m if cartesian) */
2548 (PID.TID 0000.0001) -4.439521994760536E+01, /* I = 1 */
2549 (PID.TID 0000.0001) -4.295641272275883E+01, /* I = 2 */
2550 (PID.TID 0000.0001) -4.122055553388957E+01, /* I = 3 */
2551 (PID.TID 0000.0001) . . .
2552 (PID.TID 0000.0001) 8.070819219728060E+01, /* I = 46 */
2553 (PID.TID 0000.0001) 8.439652466417766E+01, /* I = 47 */
2554 (PID.TID 0000.0001) 8.812739148696656E+01, /* I = 48 */
2555 (PID.TID 0000.0001) 9.187260851303344E+01, /* I = 49 */
2556 (PID.TID 0000.0001) 9.560347533582234E+01, /* I = 50 */
2557 (PID.TID 0000.0001) 9.929180780271940E+01, /* I = 51 */
2558 (PID.TID 0000.0001) . . .
2559 (PID.TID 0000.0001) 1.321863035748696E+02, /* I = 94 */
2560 (PID.TID 0000.0001) 1.337919453120370E+02, /* I = 95 */
2561 (PID.TID 0000.0001) 1.350000000000000E+02, /* I = 96 */
2562 (PID.TID 0000.0001) 1.356047800523947E+02, /* I = 97 */
2563 (PID.TID 0000.0001) 1.358367907661329E+02, /* I = 98 */
2564 (PID.TID 0000.0001) 1.359720382181193E+02, /* I = 99 */
2565 (PID.TID 0000.0001) . . .
2566 (PID.TID 0000.0001) -1.336511021209287E+02, /* I =142 */
2567 (PID.TID 0000.0001) -1.336469399409420E+02, /* I =143 */
2568 (PID.TID 0000.0001) -1.336449032499283E+02, /* I =144 */
2569 (PID.TID 0000.0001) -1.336449032499283E+02, /* I =145 */
2570 (PID.TID 0000.0001) -1.336469399409420E+02, /* I =146 */
2571 (PID.TID 0000.0001) -1.336511021209287E+02, /* I =147 */
2572 (PID.TID 0000.0001) . . .
2573 (PID.TID 0000.0001) 1.378136964251304E+02, /* I =190 */
2574 (PID.TID 0000.0001) 1.362080546879630E+02, /* I =191 */
2575 (PID.TID 0000.0001) 1.350000000000000E+02 /* I =192 */
2576 (PID.TID 0000.0001) ;
2577 (PID.TID 0000.0001) yC = /* yC(1,:,1,:) : P-point Y coord ( deg. or m if cartesian) */
2578 (PID.TID 0000.0001) -3.497677942598243E+01, /* J = 1 */
2579 (PID.TID 0000.0001) -3.374005967394886E+01, /* J = 2 */
2580 (PID.TID 0000.0001) -3.220655175667454E+01, /* J = 3 */
2581 (PID.TID 0000.0001) -3.045756348838641E+01, /* J = 4 */
2582 (PID.TID 0000.0001) -2.853728129852918E+01, /* J = 5 */
2583 (PID.TID 0000.0001) -2.647426640173173E+01, /* J = 6 */
2584 (PID.TID 0000.0001) -2.428936657094636E+01, /* J = 7 */
2585 (PID.TID 0000.0001) -2.199915808312262E+01, /* J = 8 */
2586 (PID.TID 0000.0001) -1.961768597440146E+01, /* J = 9 */
2587 (PID.TID 0000.0001) -1.715743888281371E+01, /* J = 10 */
2588 (PID.TID 0000.0001) -1.462993396899330E+01, /* J = 11 */
2589 (PID.TID 0000.0001) -1.204608340464756E+01, /* J = 12 */
2590 (PID.TID 0000.0001) -9.416429130284818E+00, /* J = 13 */
2591 (PID.TID 0000.0001) -6.751293662992216E+00, /* J = 14 */
2592 (PID.TID 0000.0001) -4.060875511835959E+00, /* J = 15 */
2593 (PID.TID 0000.0001) -1.355307764409121E+00, /* J = 16 */
2594 (PID.TID 0000.0001) 1.355307764409121E+00, /* J = 17 */
2595 (PID.TID 0000.0001) 4.060875511835959E+00, /* J = 18 */
2596 (PID.TID 0000.0001) 6.751293662992216E+00, /* J = 19 */
2597 (PID.TID 0000.0001) 9.416429130284818E+00, /* J = 20 */
2598 (PID.TID 0000.0001) 1.204608340464756E+01, /* J = 21 */
2599 (PID.TID 0000.0001) 1.462993396899330E+01, /* J = 22 */
2600 (PID.TID 0000.0001) 1.715743888281371E+01, /* J = 23 */
2601 (PID.TID 0000.0001) 1.961768597440146E+01, /* J = 24 */
2602 (PID.TID 0000.0001) 2.199915808312262E+01, /* J = 25 */
2603 (PID.TID 0000.0001) 2.428936657094636E+01, /* J = 26 */
2604 (PID.TID 0000.0001) 2.647426640173173E+01, /* J = 27 */
2605 (PID.TID 0000.0001) 2.853728129852918E+01, /* J = 28 */
2606 (PID.TID 0000.0001) 3.045756348838641E+01, /* J = 29 */
2607 (PID.TID 0000.0001) 3.220655175667454E+01, /* J = 30 */
2608 (PID.TID 0000.0001) 3.374005967394886E+01, /* J = 31 */
2609 (PID.TID 0000.0001) 3.497677942598243E+01 /* J = 32 */
2610 (PID.TID 0000.0001) ;
2611 (PID.TID 0000.0001) rcoord = /* P-point R coordinate ( units of r ) */
2612 (PID.TID 0000.0001) -2.500000000000000E+01, /* K = 1 */
2613 (PID.TID 0000.0001) -8.500000000000000E+01, /* K = 2 */
2614 (PID.TID 0000.0001) -1.700000000000000E+02, /* K = 3 */
2615 (PID.TID 0000.0001) -2.900000000000000E+02, /* K = 4 */
2616 (PID.TID 0000.0001) -4.550000000000000E+02, /* K = 5 */
2617 (PID.TID 0000.0001) -6.700000000000000E+02, /* K = 6 */
2618 (PID.TID 0000.0001) -9.350000000000000E+02, /* K = 7 */
2619 (PID.TID 0000.0001) -1.250000000000000E+03, /* K = 8 */
2620 (PID.TID 0000.0001) -1.615000000000000E+03, /* K = 9 */
2621 (PID.TID 0000.0001) -2.030000000000000E+03, /* K = 10 */
2622 (PID.TID 0000.0001) -2.495000000000000E+03, /* K = 11 */
2623 (PID.TID 0000.0001) -3.010000000000000E+03, /* K = 12 */
2624 (PID.TID 0000.0001) -3.575000000000000E+03, /* K = 13 */
2625 (PID.TID 0000.0001) -4.190000000000000E+03, /* K = 14 */
2626 (PID.TID 0000.0001) -4.855000000000000E+03 /* K = 15 */
2627 (PID.TID 0000.0001) ;
2628 (PID.TID 0000.0001) rF = /* W-Interf. R coordinate ( units of r ) */
2629 (PID.TID 0000.0001) 0.000000000000000E+00, /* K = 1 */
2630 (PID.TID 0000.0001) -5.000000000000000E+01, /* K = 2 */
2631 (PID.TID 0000.0001) -1.200000000000000E+02, /* K = 3 */
2632 (PID.TID 0000.0001) -2.200000000000000E+02, /* K = 4 */
2633 (PID.TID 0000.0001) -3.600000000000000E+02, /* K = 5 */
2634 (PID.TID 0000.0001) -5.500000000000000E+02, /* K = 6 */
2635 (PID.TID 0000.0001) -7.900000000000000E+02, /* K = 7 */
2636 (PID.TID 0000.0001) -1.080000000000000E+03, /* K = 8 */
2637 (PID.TID 0000.0001) -1.420000000000000E+03, /* K = 9 */
2638 (PID.TID 0000.0001) -1.810000000000000E+03, /* K = 10 */
2639 (PID.TID 0000.0001) -2.250000000000000E+03, /* K = 11 */
2640 (PID.TID 0000.0001) -2.740000000000000E+03, /* K = 12 */
2641 (PID.TID 0000.0001) -3.280000000000000E+03, /* K = 13 */
2642 (PID.TID 0000.0001) -3.870000000000000E+03, /* K = 14 */
2643 (PID.TID 0000.0001) -4.510000000000000E+03, /* K = 15 */
2644 (PID.TID 0000.0001) -5.200000000000000E+03 /* K = 16 */
2645 (PID.TID 0000.0001) ;
2646 (PID.TID 0000.0001) deepFacC = /* deep-model grid factor @ cell-Center (-) */
2647 (PID.TID 0000.0001) 15 @ 1.000000000000000E+00 /* K = 1: 15 */
2648 (PID.TID 0000.0001) ;
2649 (PID.TID 0000.0001) deepFacF = /* deep-model grid factor @ W-Interface (-) */
2650 (PID.TID 0000.0001) 16 @ 1.000000000000000E+00 /* K = 1: 16 */
2651 (PID.TID 0000.0001) ;
2652 (PID.TID 0000.0001) rVel2wUnit = /* convert units: rVel -> wSpeed (=1 if z-coord)*/
2653 (PID.TID 0000.0001) 16 @ 1.000000000000000E+00 /* K = 1: 16 */
2654 (PID.TID 0000.0001) ;
2655 (PID.TID 0000.0001) wUnit2rVel = /* convert units: wSpeed -> rVel (=1 if z-coord)*/
2656 (PID.TID 0000.0001) 16 @ 1.000000000000000E+00 /* K = 1: 16 */
2657 (PID.TID 0000.0001) ;
2658 (PID.TID 0000.0001) dBdrRef = /* Vertical grad. of reference buoyancy [(m/s/r)^2] */
2659 (PID.TID 0000.0001) 15 @ 0.000000000000000E+00 /* K = 1: 15 */
2660 (PID.TID 0000.0001) ;
2661 (PID.TID 0000.0001) rotateGrid = /* use rotated grid ( True/False ) */
2662 (PID.TID 0000.0001) F
2663 (PID.TID 0000.0001) ;
2664 (PID.TID 0000.0001) phiEuler = /* Euler angle, rotation about original z-coordinate [rad] */
2665 (PID.TID 0000.0001) 0.000000000000000E+00
2666 (PID.TID 0000.0001) ;
2667 (PID.TID 0000.0001) thetaEuler = /* Euler angle, rotation about new x-coordinate [rad] */
2668 (PID.TID 0000.0001) 0.000000000000000E+00
2669 (PID.TID 0000.0001) ;
2670 (PID.TID 0000.0001) psiEuler = /* Euler angle, rotation about new z-coordinate [rad] */
2671 (PID.TID 0000.0001) 0.000000000000000E+00
2672 (PID.TID 0000.0001) ;
2673 (PID.TID 0000.0001) dxF = /* dxF(:,1,:,1) ( units: m ) */
2674 (PID.TID 0000.0001) 1.202082051331828E+05, /* I = 1 */
2675 (PID.TID 0000.0001) 1.563594089971120E+05, /* I = 2 */
2676 (PID.TID 0000.0001) 1.835530058121492E+05, /* I = 3 */
2677 (PID.TID 0000.0001) . . .
2678 (PID.TID 0000.0001) 2.978501920522794E+05, /* I = 46 */
2679 (PID.TID 0000.0001) 3.000967749619962E+05, /* I = 47 */
2680 (PID.TID 0000.0001) 3.012190981969055E+05, /* I = 48 */
2681 (PID.TID 0000.0001) 3.012190981969055E+05, /* I = 49 */
2682 (PID.TID 0000.0001) 3.000967749619962E+05, /* I = 50 */
2683 (PID.TID 0000.0001) 2.978501920522794E+05, /* I = 51 */
2684 (PID.TID 0000.0001) . . .
2685 (PID.TID 0000.0001) 1.835530058121492E+05, /* I = 94 */
2686 (PID.TID 0000.0001) 1.563594089971120E+05, /* I = 95 */
2687 (PID.TID 0000.0001) 1.202082051331828E+05, /* I = 96 */
2688 (PID.TID 0000.0001) 1.202082051331828E+05, /* I = 97 */
2689 (PID.TID 0000.0001) 1.563594089971120E+05, /* I = 98 */
2690 (PID.TID 0000.0001) 1.835530058121492E+05, /* I = 99 */
2691 (PID.TID 0000.0001) . . .
2692 (PID.TID 0000.0001) 2.978501920522794E+05, /* I =142 */
2693 (PID.TID 0000.0001) 3.000967749619962E+05, /* I =143 */
2694 (PID.TID 0000.0001) 3.012190981969055E+05, /* I =144 */
2695 (PID.TID 0000.0001) 3.012190981969055E+05, /* I =145 */
2696 (PID.TID 0000.0001) 3.000967749619962E+05, /* I =146 */
2697 (PID.TID 0000.0001) 2.978501920522794E+05, /* I =147 */
2698 (PID.TID 0000.0001) . . .
2699 (PID.TID 0000.0001) 1.835530058121492E+05, /* I =190 */
2700 (PID.TID 0000.0001) 1.563594089971120E+05, /* I =191 */
2701 (PID.TID 0000.0001) 1.202082051331828E+05 /* I =192 */
2702 (PID.TID 0000.0001) ;
2703 (PID.TID 0000.0001) dxF = /* dxF(1,:,1,:) ( units: m ) */
2704 (PID.TID 0000.0001) 1.202082051331828E+05, /* J = 1 */
2705 (PID.TID 0000.0001) 1.572908084538706E+05, /* J = 2 */
2706 (PID.TID 0000.0001) 1.840412227747703E+05, /* J = 3 */
2707 (PID.TID 0000.0001) 2.048868197919576E+05, /* J = 4 */
2708 (PID.TID 0000.0001) 2.220405216043041E+05, /* J = 5 */
2709 (PID.TID 0000.0001) 2.365892017348392E+05, /* J = 6 */
2710 (PID.TID 0000.0001) 2.491250781852558E+05, /* J = 7 */
2711 (PID.TID 0000.0001) 2.599949918261881E+05, /* J = 8 */
2712 (PID.TID 0000.0001) 2.694110134598581E+05, /* J = 9 */
2713 (PID.TID 0000.0001) 2.775055554645015E+05, /* J = 10 */
2714 (PID.TID 0000.0001) 2.843615645344775E+05, /* J = 11 */
2715 (PID.TID 0000.0001) 2.900303768613599E+05, /* J = 12 */
2716 (PID.TID 0000.0001) 2.945429307892709E+05, /* J = 13 */
2717 (PID.TID 0000.0001) 2.979171143158405E+05, /* J = 14 */
2718 (PID.TID 0000.0001) 3.001626787528886E+05, /* J = 15 */
2719 (PID.TID 0000.0001) 2 @ 3.012844832048790E+05, /* J = 16: 17 */
2720 (PID.TID 0000.0001) 3.001626787528886E+05, /* J = 18 */
2721 (PID.TID 0000.0001) 2.979171143158405E+05, /* J = 19 */
2722 (PID.TID 0000.0001) 2.945429307892709E+05, /* J = 20 */
2723 (PID.TID 0000.0001) 2.900303768613599E+05, /* J = 21 */
2724 (PID.TID 0000.0001) 2.843615645344775E+05, /* J = 22 */
2725 (PID.TID 0000.0001) 2.775055554645015E+05, /* J = 23 */
2726 (PID.TID 0000.0001) 2.694110134598581E+05, /* J = 24 */
2727 (PID.TID 0000.0001) 2.599949918261881E+05, /* J = 25 */
2728 (PID.TID 0000.0001) 2.491250781852558E+05, /* J = 26 */
2729 (PID.TID 0000.0001) 2.365892017348392E+05, /* J = 27 */
2730 (PID.TID 0000.0001) 2.220405216043041E+05, /* J = 28 */
2731 (PID.TID 0000.0001) 2.048868197919576E+05, /* J = 29 */
2732 (PID.TID 0000.0001) 1.840412227747703E+05, /* J = 30 */
2733 (PID.TID 0000.0001) 1.572908084538706E+05, /* J = 31 */
2734 (PID.TID 0000.0001) 1.202082051331828E+05 /* J = 32 */
2735 (PID.TID 0000.0001) ;
2736 (PID.TID 0000.0001) dyF = /* dyF(:,1,:,1) ( units: m ) */
2737 (PID.TID 0000.0001) 1.202082051331828E+05, /* I = 1 */
2738 (PID.TID 0000.0001) 1.572908084538706E+05, /* I = 2 */
2739 (PID.TID 0000.0001) 1.840412227747703E+05, /* I = 3 */
2740 (PID.TID 0000.0001) . . .
2741 (PID.TID 0000.0001) 2.979171143158405E+05, /* I = 46 */
2742 (PID.TID 0000.0001) 3.001626787528886E+05, /* I = 47 */
2743 (PID.TID 0000.0001) 3.012844832048790E+05, /* I = 48 */
2744 (PID.TID 0000.0001) 3.012844832048790E+05, /* I = 49 */
2745 (PID.TID 0000.0001) 3.001626787528886E+05, /* I = 50 */
2746 (PID.TID 0000.0001) 2.979171143158405E+05, /* I = 51 */
2747 (PID.TID 0000.0001) . . .
2748 (PID.TID 0000.0001) 1.840412227747703E+05, /* I = 94 */
2749 (PID.TID 0000.0001) 1.572908084538706E+05, /* I = 95 */
2750 (PID.TID 0000.0001) 1.202082051331828E+05, /* I = 96 */
2751 (PID.TID 0000.0001) 1.202082051331828E+05, /* I = 97 */
2752 (PID.TID 0000.0001) 1.572908084538706E+05, /* I = 98 */
2753 (PID.TID 0000.0001) 1.840412227747703E+05, /* I = 99 */
2754 (PID.TID 0000.0001) . . .
2755 (PID.TID 0000.0001) 2.979171143158405E+05, /* I =142 */
2756 (PID.TID 0000.0001) 3.001626787528886E+05, /* I =143 */
2757 (PID.TID 0000.0001) 3.012844832048790E+05, /* I =144 */
2758 (PID.TID 0000.0001) 3.012844832048790E+05, /* I =145 */
2759 (PID.TID 0000.0001) 3.001626787528886E+05, /* I =146 */
2760 (PID.TID 0000.0001) 2.979171143158405E+05, /* I =147 */
2761 (PID.TID 0000.0001) . . .
2762 (PID.TID 0000.0001) 1.840412227747703E+05, /* I =190 */
2763 (PID.TID 0000.0001) 1.572908084538706E+05, /* I =191 */
2764 (PID.TID 0000.0001) 1.202082051331828E+05 /* I =192 */
2765 (PID.TID 0000.0001) ;
2766 (PID.TID 0000.0001) dyF = /* dyF(1,:,1,:) ( units: m ) */
2767 (PID.TID 0000.0001) 1.202082051331828E+05, /* J = 1 */
2768 (PID.TID 0000.0001) 1.563594089971120E+05, /* J = 2 */
2769 (PID.TID 0000.0001) 1.835530058121492E+05, /* J = 3 */
2770 (PID.TID 0000.0001) 2.045883481718707E+05, /* J = 4 */
2771 (PID.TID 0000.0001) 2.218350349844185E+05, /* J = 5 */
2772 (PID.TID 0000.0001) 2.364352994647058E+05, /* J = 6 */
2773 (PID.TID 0000.0001) 2.490022710862746E+05, /* J = 7 */
2774 (PID.TID 0000.0001) 2.598919724358304E+05, /* J = 8 */
2775 (PID.TID 0000.0001) 2.693210245495156E+05, /* J = 9 */
2776 (PID.TID 0000.0001) 2.774243179696503E+05, /* J = 10 */
2777 (PID.TID 0000.0001) 2.842862532064524E+05, /* J = 11 */
2778 (PID.TID 0000.0001) 2.899590699694043E+05, /* J = 12 */
2779 (PID.TID 0000.0001) 2.944742915095688E+05, /* J = 13 */
2780 (PID.TID 0000.0001) 2.978501920522794E+05, /* J = 14 */
2781 (PID.TID 0000.0001) 3.000967749619962E+05, /* J = 15 */
2782 (PID.TID 0000.0001) 2 @ 3.012190981969055E+05, /* J = 16: 17 */
2783 (PID.TID 0000.0001) 3.000967749619962E+05, /* J = 18 */
2784 (PID.TID 0000.0001) 2.978501920522794E+05, /* J = 19 */
2785 (PID.TID 0000.0001) 2.944742915095688E+05, /* J = 20 */
2786 (PID.TID 0000.0001) 2.899590699694043E+05, /* J = 21 */
2787 (PID.TID 0000.0001) 2.842862532064524E+05, /* J = 22 */
2788 (PID.TID 0000.0001) 2.774243179696503E+05, /* J = 23 */
2789 (PID.TID 0000.0001) 2.693210245495156E+05, /* J = 24 */
2790 (PID.TID 0000.0001) 2.598919724358304E+05, /* J = 25 */
2791 (PID.TID 0000.0001) 2.490022710862746E+05, /* J = 26 */
2792 (PID.TID 0000.0001) 2.364352994647058E+05, /* J = 27 */
2793 (PID.TID 0000.0001) 2.218350349844185E+05, /* J = 28 */
2794 (PID.TID 0000.0001) 2.045883481718707E+05, /* J = 29 */
2795 (PID.TID 0000.0001) 1.835530058121492E+05, /* J = 30 */
2796 (PID.TID 0000.0001) 1.563594089971120E+05, /* J = 31 */
2797 (PID.TID 0000.0001) 1.202082051331828E+05 /* J = 32 */
2798 (PID.TID 0000.0001) ;
2799 (PID.TID 0000.0001) dxG = /* dxG(:,1,:,1) ( units: m ) */
2800 (PID.TID 0000.0001) 1.009837800879055E+05, /* I = 1 */
2801 (PID.TID 0000.0001) 1.534505834330338E+05, /* I = 2 */
2802 (PID.TID 0000.0001) 1.823321598773926E+05, /* I = 3 */
2803 (PID.TID 0000.0001) . . .
2804 (PID.TID 0000.0001) 2.977867909042096E+05, /* I = 46 */
2805 (PID.TID 0000.0001) 3.000380090330854E+05, /* I = 47 */
2806 (PID.TID 0000.0001) 3.011625828699101E+05, /* I = 48 */
2807 (PID.TID 0000.0001) 3.011625828699101E+05, /* I = 49 */
2808 (PID.TID 0000.0001) 3.000380090330854E+05, /* I = 50 */
2809 (PID.TID 0000.0001) 2.977867909042096E+05, /* I = 51 */
2810 (PID.TID 0000.0001) . . .
2811 (PID.TID 0000.0001) 1.823321598773926E+05, /* I = 94 */
2812 (PID.TID 0000.0001) 1.534505834330338E+05, /* I = 95 */
2813 (PID.TID 0000.0001) 1.009837800879055E+05, /* I = 96 */
2814 (PID.TID 0000.0001) 1.009837800879055E+05, /* I = 97 */
2815 (PID.TID 0000.0001) 1.534505834330338E+05, /* I = 98 */
2816 (PID.TID 0000.0001) 1.823321598773926E+05, /* I = 99 */
2817 (PID.TID 0000.0001) . . .
2818 (PID.TID 0000.0001) 2.977867909042096E+05, /* I =142 */
2819 (PID.TID 0000.0001) 3.000380090330854E+05, /* I =143 */
2820 (PID.TID 0000.0001) 3.011625828699101E+05, /* I =144 */
2821 (PID.TID 0000.0001) 3.011625828699101E+05, /* I =145 */
2822 (PID.TID 0000.0001) 3.000380090330854E+05, /* I =146 */
2823 (PID.TID 0000.0001) 2.977867909042096E+05, /* I =147 */
2824 (PID.TID 0000.0001) . . .
2825 (PID.TID 0000.0001) 1.823321598773926E+05, /* I =190 */
2826 (PID.TID 0000.0001) 1.534505834330338E+05, /* I =191 */
2827 (PID.TID 0000.0001) 1.009837800879055E+05 /* I =192 */
2828 (PID.TID 0000.0001) ;
2829 (PID.TID 0000.0001) dxG = /* dxG(1,:,1,:) ( units: m ) */
2830 (PID.TID 0000.0001) 1.009837800879055E+05, /* J = 1 */
2831 (PID.TID 0000.0001) 1.403701524205398E+05, /* J = 2 */
2832 (PID.TID 0000.0001) 1.716197227386011E+05, /* J = 3 */
2833 (PID.TID 0000.0001) 1.950254041626018E+05, /* J = 4 */
2834 (PID.TID 0000.0001) 2.138410773065497E+05, /* J = 5 */
2835 (PID.TID 0000.0001) 2.295958105911512E+05, /* J = 6 */
2836 (PID.TID 0000.0001) 2.430829951739083E+05, /* J = 7 */
2837 (PID.TID 0000.0001) 2.547526806712889E+05, /* J = 8 */
2838 (PID.TID 0000.0001) 2.648750305193301E+05, /* J = 9 */
2839 (PID.TID 0000.0001) 2.736173771018112E+05, /* J = 10 */
2840 (PID.TID 0000.0001) 2.810845823202647E+05, /* J = 11 */
2841 (PID.TID 0000.0001) 2.873420591008078E+05, /* J = 12 */
2842 (PID.TID 0000.0001) 2.924298293668651E+05, /* J = 13 */
2843 (PID.TID 0000.0001) 2.963715635865306E+05, /* J = 14 */
2844 (PID.TID 0000.0001) 2.991805843171258E+05, /* J = 15 */
2845 (PID.TID 0000.0001) 3.008638765647886E+05, /* J = 16 */
2846 (PID.TID 0000.0001) 3.014246674484008E+05, /* J = 17 */
2847 (PID.TID 0000.0001) 3.008638765647886E+05, /* J = 18 */
2848 (PID.TID 0000.0001) 2.991805843171258E+05, /* J = 19 */
2849 (PID.TID 0000.0001) 2.963715635865306E+05, /* J = 20 */
2850 (PID.TID 0000.0001) 2.924298293668651E+05, /* J = 21 */
2851 (PID.TID 0000.0001) 2.873420591008078E+05, /* J = 22 */
2852 (PID.TID 0000.0001) 2.810845823202647E+05, /* J = 23 */
2853 (PID.TID 0000.0001) 2.736173771018112E+05, /* J = 24 */
2854 (PID.TID 0000.0001) 2.648750305193301E+05, /* J = 25 */
2855 (PID.TID 0000.0001) 2.547526806712889E+05, /* J = 26 */
2856 (PID.TID 0000.0001) 2.430829951739083E+05, /* J = 27 */
2857 (PID.TID 0000.0001) 2.295958105911512E+05, /* J = 28 */
2858 (PID.TID 0000.0001) 2.138410773065497E+05, /* J = 29 */
2859 (PID.TID 0000.0001) 1.950254041626018E+05, /* J = 30 */
2860 (PID.TID 0000.0001) 1.716197227386011E+05, /* J = 31 */
2861 (PID.TID 0000.0001) 1.403701524205398E+05 /* J = 32 */
2862 (PID.TID 0000.0001) ;
2863 (PID.TID 0000.0001) dyG = /* dyG(:,1,:,1) ( units: m ) */
2864 (PID.TID 0000.0001) 1.009837800879055E+05, /* I = 1 */
2865 (PID.TID 0000.0001) 1.403701524205398E+05, /* I = 2 */
2866 (PID.TID 0000.0001) 1.716197227386011E+05, /* I = 3 */
2867 (PID.TID 0000.0001) . . .
2868 (PID.TID 0000.0001) 2.963715635865306E+05, /* I = 46 */
2869 (PID.TID 0000.0001) 2.991805843171258E+05, /* I = 47 */
2870 (PID.TID 0000.0001) 3.008638765647886E+05, /* I = 48 */
2871 (PID.TID 0000.0001) 3.014246674484008E+05, /* I = 49 */
2872 (PID.TID 0000.0001) 3.008638765647886E+05, /* I = 50 */
2873 (PID.TID 0000.0001) 2.991805843171258E+05, /* I = 51 */
2874 (PID.TID 0000.0001) . . .
2875 (PID.TID 0000.0001) 1.950254041626018E+05, /* I = 94 */
2876 (PID.TID 0000.0001) 1.716197227386011E+05, /* I = 95 */
2877 (PID.TID 0000.0001) 1.403701524205398E+05, /* I = 96 */
2878 (PID.TID 0000.0001) 1.009837800879055E+05, /* I = 97 */
2879 (PID.TID 0000.0001) 1.403701524205398E+05, /* I = 98 */
2880 (PID.TID 0000.0001) 1.716197227386011E+05, /* I = 99 */
2881 (PID.TID 0000.0001) . . .
2882 (PID.TID 0000.0001) 2.963715635865306E+05, /* I =142 */
2883 (PID.TID 0000.0001) 2.991805843171258E+05, /* I =143 */
2884 (PID.TID 0000.0001) 3.008638765647886E+05, /* I =144 */
2885 (PID.TID 0000.0001) 3.014246674484008E+05, /* I =145 */
2886 (PID.TID 0000.0001) 3.008638765647886E+05, /* I =146 */
2887 (PID.TID 0000.0001) 2.991805843171258E+05, /* I =147 */
2888 (PID.TID 0000.0001) . . .
2889 (PID.TID 0000.0001) 1.950254041626018E+05, /* I =190 */
2890 (PID.TID 0000.0001) 1.716197227386011E+05, /* I =191 */
2891 (PID.TID 0000.0001) 1.403701524205398E+05 /* I =192 */
2892 (PID.TID 0000.0001) ;
2893 (PID.TID 0000.0001) dyG = /* dyG(1,:,1,:) ( units: m ) */
2894 (PID.TID 0000.0001) 1.009837800879055E+05, /* J = 1 */
2895 (PID.TID 0000.0001) 1.534505834330338E+05, /* J = 2 */
2896 (PID.TID 0000.0001) 1.823321598773926E+05, /* J = 3 */
2897 (PID.TID 0000.0001) 2.038999045536999E+05, /* J = 4 */
2898 (PID.TID 0000.0001) 2.213884732245467E+05, /* J = 5 */
2899 (PID.TID 0000.0001) 2.361211699596122E+05, /* J = 6 */
2900 (PID.TID 0000.0001) 2.487693460283865E+05, /* J = 7 */
2901 (PID.TID 0000.0001) 2.597126963772147E+05, /* J = 8 */
2902 (PID.TID 0000.0001) 2.691790288994575E+05, /* J = 9 */
2903 (PID.TID 0000.0001) 2.773091043277394E+05, /* J = 10 */
2904 (PID.TID 0000.0001) 2.841906470085516E+05, /* J = 11 */
2905 (PID.TID 0000.0001) 2.898778860929753E+05, /* J = 12 */
2906 (PID.TID 0000.0001) 2.944035815526416E+05, /* J = 13 */
2907 (PID.TID 0000.0001) 2.977867909042096E+05, /* J = 14 */
2908 (PID.TID 0000.0001) 3.000380090330854E+05, /* J = 15 */
2909 (PID.TID 0000.0001) 2 @ 3.011625828699101E+05, /* J = 16: 17 */
2910 (PID.TID 0000.0001) 3.000380090330854E+05, /* J = 18 */
2911 (PID.TID 0000.0001) 2.977867909042096E+05, /* J = 19 */
2912 (PID.TID 0000.0001) 2.944035815526416E+05, /* J = 20 */
2913 (PID.TID 0000.0001) 2.898778860929753E+05, /* J = 21 */
2914 (PID.TID 0000.0001) 2.841906470085516E+05, /* J = 22 */
2915 (PID.TID 0000.0001) 2.773091043277394E+05, /* J = 23 */
2916 (PID.TID 0000.0001) 2.691790288994575E+05, /* J = 24 */
2917 (PID.TID 0000.0001) 2.597126963772147E+05, /* J = 25 */
2918 (PID.TID 0000.0001) 2.487693460283865E+05, /* J = 26 */
2919 (PID.TID 0000.0001) 2.361211699596122E+05, /* J = 27 */
2920 (PID.TID 0000.0001) 2.213884732245467E+05, /* J = 28 */
2921 (PID.TID 0000.0001) 2.038999045536999E+05, /* J = 29 */
2922 (PID.TID 0000.0001) 1.823321598773926E+05, /* J = 30 */
2923 (PID.TID 0000.0001) 1.534505834330338E+05, /* J = 31 */
2924 (PID.TID 0000.0001) 1.009837800879055E+05 /* J = 32 */
2925 (PID.TID 0000.0001) ;
2926 (PID.TID 0000.0001) dxC = /* dxC(:,1,:,1) ( units: m ) */
2927 (PID.TID 0000.0001) 1.114203141013064E+05, /* I = 1 */
2928 (PID.TID 0000.0001) 1.391343389937106E+05, /* I = 2 */
2929 (PID.TID 0000.0001) 1.709574999026266E+05, /* I = 3 */
2930 (PID.TID 0000.0001) . . .
2931 (PID.TID 0000.0001) 2.963038832565530E+05, /* I = 46 */
2932 (PID.TID 0000.0001) 2.991142470004740E+05, /* I = 47 */
2933 (PID.TID 0000.0001) 3.007982711627968E+05, /* I = 48 */
2934 (PID.TID 0000.0001) 3.013593857228136E+05, /* I = 49 */
2935 (PID.TID 0000.0001) 3.007982711627968E+05, /* I = 50 */
2936 (PID.TID 0000.0001) 2.991142470004740E+05, /* I = 51 */
2937 (PID.TID 0000.0001) . . .
2938 (PID.TID 0000.0001) 1.946503699269892E+05, /* I = 94 */
2939 (PID.TID 0000.0001) 1.709574999026266E+05, /* I = 95 */
2940 (PID.TID 0000.0001) 1.391343389937106E+05, /* I = 96 */
2941 (PID.TID 0000.0001) 1.114203141013064E+05, /* I = 97 */
2942 (PID.TID 0000.0001) 1.391343389937106E+05, /* I = 98 */
2943 (PID.TID 0000.0001) 1.709574999026266E+05, /* I = 99 */
2944 (PID.TID 0000.0001) . . .
2945 (PID.TID 0000.0001) 2.963038832565530E+05, /* I =142 */
2946 (PID.TID 0000.0001) 2.991142470004740E+05, /* I =143 */
2947 (PID.TID 0000.0001) 3.007982711627968E+05, /* I =144 */
2948 (PID.TID 0000.0001) 3.013593857228136E+05, /* I =145 */
2949 (PID.TID 0000.0001) 3.007982711627968E+05, /* I =146 */
2950 (PID.TID 0000.0001) 2.991142470004740E+05, /* I =147 */
2951 (PID.TID 0000.0001) . . .
2952 (PID.TID 0000.0001) 1.946503699269892E+05, /* I =190 */
2953 (PID.TID 0000.0001) 1.709574999026266E+05, /* I =191 */
2954 (PID.TID 0000.0001) 1.391343389937106E+05 /* I =192 */
2955 (PID.TID 0000.0001) ;
2956 (PID.TID 0000.0001) dxC = /* dxC(1,:,1,:) ( units: m ) */
2957 (PID.TID 0000.0001) 1.114203141013064E+05, /* J = 1 */
2958 (PID.TID 0000.0001) 1.549545757850771E+05, /* J = 2 */
2959 (PID.TID 0000.0001) 1.829777599966776E+05, /* J = 3 */
2960 (PID.TID 0000.0001) 2.042717761866506E+05, /* J = 4 */
2961 (PID.TID 0000.0001) 2.216367828252819E+05, /* J = 5 */
2962 (PID.TID 0000.0001) 2.363029564123586E+05, /* J = 6 */
2963 (PID.TID 0000.0001) 2.489113743322025E+05, /* J = 7 */
2964 (PID.TID 0000.0001) 2.598293319150326E+05, /* J = 8 */
2965 (PID.TID 0000.0001) 2.692787333338535E+05, /* J = 9 */
2966 (PID.TID 0000.0001) 2.773972106720365E+05, /* J = 10 */
2967 (PID.TID 0000.0001) 2.842706922224557E+05, /* J = 11 */
2968 (PID.TID 0000.0001) 2.899523122489403E+05, /* J = 12 */
2969 (PID.TID 0000.0001) 2.944741346384699E+05, /* J = 13 */
2970 (PID.TID 0000.0001) 2.978547649292580E+05, /* J = 14 */
2971 (PID.TID 0000.0001) 3.001044073506459E+05, /* J = 15 */
2972 (PID.TID 0000.0001) 2 @ 3.012281885409289E+05, /* J = 16: 17 */
2973 (PID.TID 0000.0001) 3.001044073506459E+05, /* J = 18 */
2974 (PID.TID 0000.0001) 2.978547649292580E+05, /* J = 19 */
2975 (PID.TID 0000.0001) 2.944741346384699E+05, /* J = 20 */
2976 (PID.TID 0000.0001) 2.899523122489403E+05, /* J = 21 */
2977 (PID.TID 0000.0001) 2.842706922224557E+05, /* J = 22 */
2978 (PID.TID 0000.0001) 2.773972106720365E+05, /* J = 23 */
2979 (PID.TID 0000.0001) 2.692787333338535E+05, /* J = 24 */
2980 (PID.TID 0000.0001) 2.598293319150326E+05, /* J = 25 */
2981 (PID.TID 0000.0001) 2.489113743322025E+05, /* J = 26 */
2982 (PID.TID 0000.0001) 2.363029564123586E+05, /* J = 27 */
2983 (PID.TID 0000.0001) 2.216367828252819E+05, /* J = 28 */
2984 (PID.TID 0000.0001) 2.042717761866506E+05, /* J = 29 */
2985 (PID.TID 0000.0001) 1.829777599966776E+05, /* J = 30 */
2986 (PID.TID 0000.0001) 1.549545757850771E+05, /* J = 31 */
2987 (PID.TID 0000.0001) 1.114203141013064E+05 /* J = 32 */
2988 (PID.TID 0000.0001) ;
2989 (PID.TID 0000.0001) dyC = /* dyC(:,1,:,1) ( units: m ) */
2990 (PID.TID 0000.0001) 1.114203141013064E+05, /* I = 1 */
2991 (PID.TID 0000.0001) 1.549545757850771E+05, /* I = 2 */
2992 (PID.TID 0000.0001) 1.829777599966776E+05, /* I = 3 */
2993 (PID.TID 0000.0001) . . .
2994 (PID.TID 0000.0001) 2.978547649292580E+05, /* I = 46 */
2995 (PID.TID 0000.0001) 3.001044073506459E+05, /* I = 47 */
2996 (PID.TID 0000.0001) 3.012281885409289E+05, /* I = 48 */
2997 (PID.TID 0000.0001) 3.012281885409289E+05, /* I = 49 */
2998 (PID.TID 0000.0001) 3.001044073506459E+05, /* I = 50 */
2999 (PID.TID 0000.0001) 2.978547649292580E+05, /* I = 51 */
3000 (PID.TID 0000.0001) . . .
3001 (PID.TID 0000.0001) 1.829777599966776E+05, /* I = 94 */
3002 (PID.TID 0000.0001) 1.549545757850771E+05, /* I = 95 */
3003 (PID.TID 0000.0001) 1.114203141013064E+05, /* I = 96 */
3004 (PID.TID 0000.0001) 1.114203141013064E+05, /* I = 97 */
3005 (PID.TID 0000.0001) 1.549545757850771E+05, /* I = 98 */
3006 (PID.TID 0000.0001) 1.829777599966776E+05, /* I = 99 */
3007 (PID.TID 0000.0001) . . .
3008 (PID.TID 0000.0001) 2.978547649292580E+05, /* I =142 */
3009 (PID.TID 0000.0001) 3.001044073506459E+05, /* I =143 */
3010 (PID.TID 0000.0001) 3.012281885409289E+05, /* I =144 */
3011 (PID.TID 0000.0001) 3.012281885409289E+05, /* I =145 */
3012 (PID.TID 0000.0001) 3.001044073506459E+05, /* I =146 */
3013 (PID.TID 0000.0001) 2.978547649292580E+05, /* I =147 */
3014 (PID.TID 0000.0001) . . .
3015 (PID.TID 0000.0001) 1.829777599966776E+05, /* I =190 */
3016 (PID.TID 0000.0001) 1.549545757850771E+05, /* I =191 */
3017 (PID.TID 0000.0001) 1.114203141013064E+05 /* I =192 */
3018 (PID.TID 0000.0001) ;
3019 (PID.TID 0000.0001) dyC = /* dyC(1,:,1,:) ( units: m ) */
3020 (PID.TID 0000.0001) 1.114203141013064E+05, /* J = 1 */
3021 (PID.TID 0000.0001) 1.391343389937106E+05, /* J = 2 */
3022 (PID.TID 0000.0001) 1.709574999026266E+05, /* J = 3 */
3023 (PID.TID 0000.0001) 1.946503699269892E+05, /* J = 4 */
3024 (PID.TID 0000.0001) 2.135964483342134E+05, /* J = 5 */
3025 (PID.TID 0000.0001) 2.294195678257306E+05, /* J = 6 */
3026 (PID.TID 0000.0001) 2.429464709770498E+05, /* J = 7 */
3027 (PID.TID 0000.0001) 2.546408290696998E+05, /* J = 8 */
3028 (PID.TID 0000.0001) 2.647791839299727E+05, /* J = 9 */
3029 (PID.TID 0000.0001) 2.735321911346108E+05, /* J = 10 */
3030 (PID.TID 0000.0001) 2.810065951609633E+05, /* J = 11 */
3031 (PID.TID 0000.0001) 2.872689479506990E+05, /* J = 12 */
3032 (PID.TID 0000.0001) 2.923599955312932E+05, /* J = 13 */
3033 (PID.TID 0000.0001) 2.963038832565530E+05, /* J = 14 */
3034 (PID.TID 0000.0001) 2.991142470004740E+05, /* J = 15 */
3035 (PID.TID 0000.0001) 3.007982711627968E+05, /* J = 16 */
3036 (PID.TID 0000.0001) 3.013593857228136E+05, /* J = 17 */
3037 (PID.TID 0000.0001) 3.007982711627968E+05, /* J = 18 */
3038 (PID.TID 0000.0001) 2.991142470004740E+05, /* J = 19 */
3039 (PID.TID 0000.0001) 2.963038832565530E+05, /* J = 20 */
3040 (PID.TID 0000.0001) 2.923599955312932E+05, /* J = 21 */
3041 (PID.TID 0000.0001) 2.872689479506990E+05, /* J = 22 */
3042 (PID.TID 0000.0001) 2.810065951609633E+05, /* J = 23 */
3043 (PID.TID 0000.0001) 2.735321911346108E+05, /* J = 24 */
3044 (PID.TID 0000.0001) 2.647791839299727E+05, /* J = 25 */
3045 (PID.TID 0000.0001) 2.546408290696998E+05, /* J = 26 */
3046 (PID.TID 0000.0001) 2.429464709770498E+05, /* J = 27 */
3047 (PID.TID 0000.0001) 2.294195678257306E+05, /* J = 28 */
3048 (PID.TID 0000.0001) 2.135964483342134E+05, /* J = 29 */
3049 (PID.TID 0000.0001) 1.946503699269892E+05, /* J = 30 */
3050 (PID.TID 0000.0001) 1.709574999026266E+05, /* J = 31 */
3051 (PID.TID 0000.0001) 1.391343389937106E+05 /* J = 32 */
3052 (PID.TID 0000.0001) ;
3053 (PID.TID 0000.0001) dxV = /* dxV(:,1,:,1) ( units: m ) */
3054 (PID.TID 0000.0001) 8.015229982413632E+04, /* I = 1 */
3055 (PID.TID 0000.0001) 1.333130744933864E+05, /* I = 2 */
3056 (PID.TID 0000.0001) 1.691744868129062E+05, /* I = 3 */
3057 (PID.TID 0000.0001) . . .
3058 (PID.TID 0000.0001) 2.962371870847826E+05, /* I = 46 */
3059 (PID.TID 0000.0001) 2.990534755671296E+05, /* I = 47 */
3060 (PID.TID 0000.0001) 3.007409169495504E+05, /* I = 48 */
3061 (PID.TID 0000.0001) 3.013031486919771E+05, /* I = 49 */
3062 (PID.TID 0000.0001) 3.007409169495504E+05, /* I = 50 */
3063 (PID.TID 0000.0001) 2.990534755671296E+05, /* I = 51 */
3064 (PID.TID 0000.0001) . . .
3065 (PID.TID 0000.0001) 1.937548202849060E+05, /* I = 94 */
3066 (PID.TID 0000.0001) 1.691744868129062E+05, /* I = 95 */
3067 (PID.TID 0000.0001) 1.333130744933864E+05, /* I = 96 */
3068 (PID.TID 0000.0001) 8.015229982413632E+04, /* I = 97 */
3069 (PID.TID 0000.0001) 1.333130744933864E+05, /* I = 98 */
3070 (PID.TID 0000.0001) 1.691744868129062E+05, /* I = 99 */
3071 (PID.TID 0000.0001) . . .
3072 (PID.TID 0000.0001) 2.962371870847826E+05, /* I =142 */
3073 (PID.TID 0000.0001) 2.990534755671296E+05, /* I =143 */
3074 (PID.TID 0000.0001) 3.007409169495504E+05, /* I =144 */
3075 (PID.TID 0000.0001) 3.013031486919771E+05, /* I =145 */
3076 (PID.TID 0000.0001) 3.007409169495504E+05, /* I =146 */
3077 (PID.TID 0000.0001) 2.990534755671296E+05, /* I =147 */
3078 (PID.TID 0000.0001) . . .
3079 (PID.TID 0000.0001) 1.937548202849060E+05, /* I =190 */
3080 (PID.TID 0000.0001) 1.691744868129062E+05, /* I =191 */
3081 (PID.TID 0000.0001) 1.333130744933864E+05 /* I =192 */
3082 (PID.TID 0000.0001) ;
3083 (PID.TID 0000.0001) dxV = /* dxV(1,:,1,:) ( units: m ) */
3084 (PID.TID 0000.0001) 8.015229982413632E+04, /* J = 1 */
3085 (PID.TID 0000.0001) 1.362652340208229E+05, /* J = 2 */
3086 (PID.TID 0000.0001) 1.701080315742101E+05, /* J = 3 */
3087 (PID.TID 0000.0001) 1.942331448101592E+05, /* J = 4 */
3088 (PID.TID 0000.0001) 2.133486626971531E+05, /* J = 5 */
3089 (PID.TID 0000.0001) 2.292584591272880E+05, /* J = 6 */
3090 (PID.TID 0000.0001) 2.428369969078989E+05, /* J = 7 */
3091 (PID.TID 0000.0001) 2.545652950875683E+05, /* J = 8 */
3092 (PID.TID 0000.0001) 2.647274964828301E+05, /* J = 9 */
3093 (PID.TID 0000.0001) 2.734980225206389E+05, /* J = 10 */
3094 (PID.TID 0000.0001) 2.809856491525217E+05, /* J = 11 */
3095 (PID.TID 0000.0001) 2.872580915202295E+05, /* J = 12 */
3096 (PID.TID 0000.0001) 2.923567890694162E+05, /* J = 13 */
3097 (PID.TID 0000.0001) 2.963063101754721E+05, /* J = 14 */
3098 (PID.TID 0000.0001) 2.991205495886625E+05, /* J = 15 */
3099 (PID.TID 0000.0001) 3.008068453676764E+05, /* J = 16 */
3100 (PID.TID 0000.0001) 3.013686170436881E+05, /* J = 17 */
3101 (PID.TID 0000.0001) 3.008068453676764E+05, /* J = 18 */
3102 (PID.TID 0000.0001) 2.991205495886625E+05, /* J = 19 */
3103 (PID.TID 0000.0001) 2.963063101754721E+05, /* J = 20 */
3104 (PID.TID 0000.0001) 2.923567890694162E+05, /* J = 21 */
3105 (PID.TID 0000.0001) 2.872580915202295E+05, /* J = 22 */
3106 (PID.TID 0000.0001) 2.809856491525217E+05, /* J = 23 */
3107 (PID.TID 0000.0001) 2.734980225206389E+05, /* J = 24 */
3108 (PID.TID 0000.0001) 2.647274964828301E+05, /* J = 25 */
3109 (PID.TID 0000.0001) 2.545652950875683E+05, /* J = 26 */
3110 (PID.TID 0000.0001) 2.428369969078989E+05, /* J = 27 */
3111 (PID.TID 0000.0001) 2.292584591272880E+05, /* J = 28 */
3112 (PID.TID 0000.0001) 2.133486626971531E+05, /* J = 29 */
3113 (PID.TID 0000.0001) 1.942331448101592E+05, /* J = 30 */
3114 (PID.TID 0000.0001) 1.701080315742101E+05, /* J = 31 */
3115 (PID.TID 0000.0001) 1.362652340208229E+05 /* J = 32 */
3116 (PID.TID 0000.0001) ;
3117 (PID.TID 0000.0001) dyU = /* dyU(:,1,:,1) ( units: m ) */
3118 (PID.TID 0000.0001) 8.015229982413632E+04, /* I = 1 */
3119 (PID.TID 0000.0001) 1.362652340208229E+05, /* I = 2 */
3120 (PID.TID 0000.0001) 1.701080315742101E+05, /* I = 3 */
3121 (PID.TID 0000.0001) . . .
3122 (PID.TID 0000.0001) 2.963063101754721E+05, /* I = 46 */
3123 (PID.TID 0000.0001) 2.991205495886625E+05, /* I = 47 */
3124 (PID.TID 0000.0001) 3.008068453676764E+05, /* I = 48 */
3125 (PID.TID 0000.0001) 3.013686170436881E+05, /* I = 49 */
3126 (PID.TID 0000.0001) 3.008068453676764E+05, /* I = 50 */
3127 (PID.TID 0000.0001) 2.991205495886625E+05, /* I = 51 */
3128 (PID.TID 0000.0001) . . .
3129 (PID.TID 0000.0001) 1.942331448101592E+05, /* I = 94 */
3130 (PID.TID 0000.0001) 1.701080315742101E+05, /* I = 95 */
3131 (PID.TID 0000.0001) 1.362652340208229E+05, /* I = 96 */
3132 (PID.TID 0000.0001) 8.015229982413632E+04, /* I = 97 */
3133 (PID.TID 0000.0001) 1.362652340208229E+05, /* I = 98 */
3134 (PID.TID 0000.0001) 1.701080315742101E+05, /* I = 99 */
3135 (PID.TID 0000.0001) . . .
3136 (PID.TID 0000.0001) 2.963063101754721E+05, /* I =142 */
3137 (PID.TID 0000.0001) 2.991205495886625E+05, /* I =143 */
3138 (PID.TID 0000.0001) 3.008068453676764E+05, /* I =144 */
3139 (PID.TID 0000.0001) 3.013686170436881E+05, /* I =145 */
3140 (PID.TID 0000.0001) 3.008068453676764E+05, /* I =146 */
3141 (PID.TID 0000.0001) 2.991205495886625E+05, /* I =147 */
3142 (PID.TID 0000.0001) . . .
3143 (PID.TID 0000.0001) 1.942331448101592E+05, /* I =190 */
3144 (PID.TID 0000.0001) 1.701080315742101E+05, /* I =191 */
3145 (PID.TID 0000.0001) 1.362652340208229E+05 /* I =192 */
3146 (PID.TID 0000.0001) ;
3147 (PID.TID 0000.0001) dyU = /* dyU(1,:,1,:) ( units: m ) */
3148 (PID.TID 0000.0001) 8.015229982413632E+04, /* J = 1 */
3149 (PID.TID 0000.0001) 1.333130744933864E+05, /* J = 2 */
3150 (PID.TID 0000.0001) 1.691744868129062E+05, /* J = 3 */
3151 (PID.TID 0000.0001) 1.937548202849060E+05, /* J = 4 */
3152 (PID.TID 0000.0001) 2.130490056267208E+05, /* J = 5 */
3153 (PID.TID 0000.0001) 2.290479919481738E+05, /* J = 6 */
3154 (PID.TID 0000.0001) 2.426774358027003E+05, /* J = 7 */
3155 (PID.TID 0000.0001) 2.544372984215561E+05, /* J = 8 */
3156 (PID.TID 0000.0001) 2.646201463834826E+05, /* J = 9 */
3157 (PID.TID 0000.0001) 2.734046499619031E+05, /* J = 10 */
3158 (PID.TID 0000.0001) 2.809019351693761E+05, /* J = 11 */
3159 (PID.TID 0000.0001) 2.871811105274442E+05, /* J = 12 */
3160 (PID.TID 0000.0001) 2.922844849381675E+05, /* J = 13 */
3161 (PID.TID 0000.0001) 2.962371870847826E+05, /* J = 14 */
3162 (PID.TID 0000.0001) 2.990534755671296E+05, /* J = 15 */
3163 (PID.TID 0000.0001) 3.007409169495504E+05, /* J = 16 */
3164 (PID.TID 0000.0001) 3.013031486919771E+05, /* J = 17 */
3165 (PID.TID 0000.0001) 3.007409169495504E+05, /* J = 18 */
3166 (PID.TID 0000.0001) 2.990534755671296E+05, /* J = 19 */
3167 (PID.TID 0000.0001) 2.962371870847826E+05, /* J = 20 */
3168 (PID.TID 0000.0001) 2.922844849381675E+05, /* J = 21 */
3169 (PID.TID 0000.0001) 2.871811105274442E+05, /* J = 22 */
3170 (PID.TID 0000.0001) 2.809019351693761E+05, /* J = 23 */
3171 (PID.TID 0000.0001) 2.734046499619031E+05, /* J = 24 */
3172 (PID.TID 0000.0001) 2.646201463834826E+05, /* J = 25 */
3173 (PID.TID 0000.0001) 2.544372984215561E+05, /* J = 26 */
3174 (PID.TID 0000.0001) 2.426774358027003E+05, /* J = 27 */
3175 (PID.TID 0000.0001) 2.290479919481738E+05, /* J = 28 */
3176 (PID.TID 0000.0001) 2.130490056267208E+05, /* J = 29 */
3177 (PID.TID 0000.0001) 1.937548202849060E+05, /* J = 30 */
3178 (PID.TID 0000.0001) 1.691744868129062E+05, /* J = 31 */
3179 (PID.TID 0000.0001) 1.333130744933864E+05 /* J = 32 */
3180 (PID.TID 0000.0001) ;
3181 (PID.TID 0000.0001) rA = /* rA (:,1,:,1) ( units: m^2 ) */
3182 (PID.TID 0000.0001) 1.401900702255611E+10, /* I = 1 */
3183 (PID.TID 0000.0001) 2.459906945574446E+10, /* I = 2 */
3184 (PID.TID 0000.0001) 3.378518544307869E+10, /* I = 3 */
3185 (PID.TID 0000.0001) . . .
3186 (PID.TID 0000.0001) 8.874277443041928E+10, /* I = 46 */
3187 (PID.TID 0000.0001) 9.008620045350865E+10, /* I = 47 */
3188 (PID.TID 0000.0001) 9.076111290418457E+10, /* I = 48 */
3189 (PID.TID 0000.0001) 9.076111290422060E+10, /* I = 49 */
3190 (PID.TID 0000.0001) 9.008620045354469E+10, /* I = 50 */
3191 (PID.TID 0000.0001) 8.874277443041928E+10, /* I = 51 */
3192 (PID.TID 0000.0001) . . .
3193 (PID.TID 0000.0001) 3.378518544304265E+10, /* I = 94 */
3194 (PID.TID 0000.0001) 2.459906945574446E+10, /* I = 95 */
3195 (PID.TID 0000.0001) 1.401900702259215E+10, /* I = 96 */
3196 (PID.TID 0000.0001) 1.401900702255611E+10, /* I = 97 */
3197 (PID.TID 0000.0001) 2.459906945574446E+10, /* I = 98 */
3198 (PID.TID 0000.0001) 3.378518544307869E+10, /* I = 99 */
3199 (PID.TID 0000.0001) . . .
3200 (PID.TID 0000.0001) 8.874277443041928E+10, /* I =142 */
3201 (PID.TID 0000.0001) 9.008620045350865E+10, /* I =143 */
3202 (PID.TID 0000.0001) 9.076111290418457E+10, /* I =144 */
3203 (PID.TID 0000.0001) 9.076111290422060E+10, /* I =145 */
3204 (PID.TID 0000.0001) 9.008620045354469E+10, /* I =146 */
3205 (PID.TID 0000.0001) 8.874277443041928E+10, /* I =147 */
3206 (PID.TID 0000.0001) . . .
3207 (PID.TID 0000.0001) 3.378518544304265E+10, /* I =190 */
3208 (PID.TID 0000.0001) 2.459906945574446E+10, /* I =191 */
3209 (PID.TID 0000.0001) 1.401900702259215E+10 /* I =192 */
3210 (PID.TID 0000.0001) ;
3211 (PID.TID 0000.0001) rA = /* rA (1,:,1,:) ( units: m^2 ) */
3212 (PID.TID 0000.0001) 1.401900702255611E+10, /* J = 1 */
3213 (PID.TID 0000.0001) 2.459906945574446E+10, /* J = 2 */
3214 (PID.TID 0000.0001) 3.378518544307869E+10, /* J = 3 */
3215 (PID.TID 0000.0001) 4.192037169898667E+10, /* J = 4 */
3216 (PID.TID 0000.0001) 4.925938996118163E+10, /* J = 5 */
3217 (PID.TID 0000.0001) 5.594154126607553E+10, /* J = 6 */
3218 (PID.TID 0000.0001) 6.203683527776127E+10, /* J = 7 */
3219 (PID.TID 0000.0001) 6.757541173817516E+10, /* J = 8 */
3220 (PID.TID 0000.0001) 7.256353271748119E+10, /* J = 9 */
3221 (PID.TID 0000.0001) 7.699293007098555E+10, /* J = 10 */
3222 (PID.TID 0000.0001) 8.084683449728902E+10, /* J = 11 */
3223 (PID.TID 0000.0001) 8.410423102799828E+10, /* J = 12 */
3224 (PID.TID 0000.0001) 8.674306976737517E+10, /* J = 13 */
3225 (PID.TID 0000.0001) 8.874277443041928E+10, /* J = 14 */
3226 (PID.TID 0000.0001) 9.008620045350865E+10, /* J = 15 */
3227 (PID.TID 0000.0001) 9.076111290418457E+10, /* J = 16 */
3228 (PID.TID 0000.0001) 9.076111290422060E+10, /* J = 17 */
3229 (PID.TID 0000.0001) 9.008620045354469E+10, /* J = 18 */
3230 (PID.TID 0000.0001) 8.874277443041928E+10, /* J = 19 */
3231 (PID.TID 0000.0001) 8.674306976737517E+10, /* J = 20 */
3232 (PID.TID 0000.0001) 8.410423102799828E+10, /* J = 21 */
3233 (PID.TID 0000.0001) 8.084683449728902E+10, /* J = 22 */
3234 (PID.TID 0000.0001) 7.699293007098555E+10, /* J = 23 */
3235 (PID.TID 0000.0001) 7.256353271748119E+10, /* J = 24 */
3236 (PID.TID 0000.0001) 6.757541173817516E+10, /* J = 25 */
3237 (PID.TID 0000.0001) 6.203683527772523E+10, /* J = 26 */
3238 (PID.TID 0000.0001) 5.594154126607553E+10, /* J = 27 */
3239 (PID.TID 0000.0001) 4.925938996118163E+10, /* J = 28 */
3240 (PID.TID 0000.0001) 4.192037169898667E+10, /* J = 29 */
3241 (PID.TID 0000.0001) 3.378518544307869E+10, /* J = 30 */
3242 (PID.TID 0000.0001) 2.459906945574446E+10, /* J = 31 */
3243 (PID.TID 0000.0001) 1.401900702259215E+10 /* J = 32 */
3244 (PID.TID 0000.0001) ;
3245 (PID.TID 0000.0001) rAw = /* rAw(:,1,:,1) ( units: m^2 ) */
3246 (PID.TID 0000.0001) 1.216690346714270E+10, /* I = 1 */
3247 (PID.TID 0000.0001) 1.974052138506315E+10, /* I = 2 */
3248 (PID.TID 0000.0001) 2.943712825252015E+10, /* I = 3 */
3249 (PID.TID 0000.0001) . . .
3250 (PID.TID 0000.0001) 8.781353403175085E+10, /* I = 46 */
3251 (PID.TID 0000.0001) 8.948571540392021E+10, /* I = 47 */
3252 (PID.TID 0000.0001) 9.049530583086168E+10, /* I = 48 */
3253 (PID.TID 0000.0001) 9.083293515008307E+10, /* I = 49 */
3254 (PID.TID 0000.0001) 9.049530583087070E+10, /* I = 50 */
3255 (PID.TID 0000.0001) 8.948571540391121E+10, /* I = 51 */
3256 (PID.TID 0000.0001) . . .
3257 (PID.TID 0000.0001) 3.801790263325260E+10, /* I = 94 */
3258 (PID.TID 0000.0001) 2.943712825251114E+10, /* I = 95 */
3259 (PID.TID 0000.0001) 1.974052138509018E+10, /* I = 96 */
3260 (PID.TID 0000.0001) 1.216690346714270E+10, /* I = 97 */
3261 (PID.TID 0000.0001) 1.974052138506315E+10, /* I = 98 */
3262 (PID.TID 0000.0001) 2.943712825252015E+10, /* I = 99 */
3263 (PID.TID 0000.0001) . . .
3264 (PID.TID 0000.0001) 8.781353403175085E+10, /* I =142 */
3265 (PID.TID 0000.0001) 8.948571540392021E+10, /* I =143 */
3266 (PID.TID 0000.0001) 9.049530583086168E+10, /* I =144 */
3267 (PID.TID 0000.0001) 9.083293515008307E+10, /* I =145 */
3268 (PID.TID 0000.0001) 9.049530583087070E+10, /* I =146 */
3269 (PID.TID 0000.0001) 8.948571540391121E+10, /* I =147 */
3270 (PID.TID 0000.0001) . . .
3271 (PID.TID 0000.0001) 3.801790263325260E+10, /* I =190 */
3272 (PID.TID 0000.0001) 2.943712825251114E+10, /* I =191 */
3273 (PID.TID 0000.0001) 1.974052138509018E+10 /* I =192 */
3274 (PID.TID 0000.0001) ;
3275 (PID.TID 0000.0001) rAw = /* rAw(1,:,1,:) ( units: m^2 ) */
3276 (PID.TID 0000.0001) 1.216690346714270E+10, /* J = 1 */
3277 (PID.TID 0000.0001) 2.390126200743558E+10, /* J = 2 */
3278 (PID.TID 0000.0001) 3.341968103208270E+10, /* J = 3 */
3279 (PID.TID 0000.0001) 4.168532893152940E+10, /* J = 4 */
3280 (PID.TID 0000.0001) 4.909074590409593E+10, /* J = 5 */
3281 (PID.TID 0000.0001) 5.581203765722643E+10, /* J = 6 */
3282 (PID.TID 0000.0001) 6.193257577506788E+10, /* J = 7 */
3283 (PID.TID 0000.0001) 6.748840226738273E+10, /* J = 8 */
3284 (PID.TID 0000.0001) 7.248875782324815E+10, /* J = 9 */
3285 (PID.TID 0000.0001) 7.692702995909871E+10, /* J = 10 */
3286 (PID.TID 0000.0001) 8.078743937057304E+10, /* J = 11 */
3287 (PID.TID 0000.0001) 8.404959656062837E+10, /* J = 12 */
3288 (PID.TID 0000.0001) 8.669186205742538E+10, /* J = 13 */
3289 (PID.TID 0000.0001) 8.869393350723613E+10, /* J = 14 */
3290 (PID.TID 0000.0001) 9.003884657168852E+10, /* J = 15 */
3291 (PID.TID 0000.0001) 2 @ 9.071447638299399E+10, /* J = 16: 17 */
3292 (PID.TID 0000.0001) 9.003884657168852E+10, /* J = 18 */
3293 (PID.TID 0000.0001) 8.869393350723613E+10, /* J = 19 */
3294 (PID.TID 0000.0001) 8.669186205742538E+10, /* J = 20 */
3295 (PID.TID 0000.0001) 8.404959656062837E+10, /* J = 21 */
3296 (PID.TID 0000.0001) 8.078743937057304E+10, /* J = 22 */
3297 (PID.TID 0000.0001) 7.692702995909871E+10, /* J = 23 */
3298 (PID.TID 0000.0001) 7.248875782324815E+10, /* J = 24 */
3299 (PID.TID 0000.0001) 6.748840226738273E+10, /* J = 25 */
3300 (PID.TID 0000.0001) 6.193257577506788E+10, /* J = 26 */
3301 (PID.TID 0000.0001) 5.581203765722643E+10, /* J = 27 */
3302 (PID.TID 0000.0001) 4.909074590409593E+10, /* J = 28 */
3303 (PID.TID 0000.0001) 4.168532893152940E+10, /* J = 29 */
3304 (PID.TID 0000.0001) 3.341968103208270E+10, /* J = 30 */
3305 (PID.TID 0000.0001) 2.390126200743558E+10, /* J = 31 */
3306 (PID.TID 0000.0001) 1.216690346714270E+10 /* J = 32 */
3307 (PID.TID 0000.0001) ;
3308 (PID.TID 0000.0001) rAs = /* rAs(:,1,:,1) ( units: m^2 ) */
3309 (PID.TID 0000.0001) 1.216690346714270E+10, /* I = 1 */
3310 (PID.TID 0000.0001) 2.390126200743558E+10, /* I = 2 */
3311 (PID.TID 0000.0001) 3.341968103208270E+10, /* I = 3 */
3312 (PID.TID 0000.0001) . . .
3313 (PID.TID 0000.0001) 8.869393350723613E+10, /* I = 46 */
3314 (PID.TID 0000.0001) 9.003884657168852E+10, /* I = 47 */
3315 (PID.TID 0000.0001) 9.071447638299399E+10, /* I = 48 */
3316 (PID.TID 0000.0001) 9.071447638299399E+10, /* I = 49 */
3317 (PID.TID 0000.0001) 9.003884657168852E+10, /* I = 50 */
3318 (PID.TID 0000.0001) 8.869393350723613E+10, /* I = 51 */
3319 (PID.TID 0000.0001) . . .
3320 (PID.TID 0000.0001) 3.341968103208270E+10, /* I = 94 */
3321 (PID.TID 0000.0001) 2.390126200743558E+10, /* I = 95 */
3322 (PID.TID 0000.0001) 1.216690346714270E+10, /* I = 96 */
3323 (PID.TID 0000.0001) 1.216690346714270E+10, /* I = 97 */
3324 (PID.TID 0000.0001) 2.390126200743558E+10, /* I = 98 */
3325 (PID.TID 0000.0001) 3.341968103208270E+10, /* I = 99 */
3326 (PID.TID 0000.0001) . . .
3327 (PID.TID 0000.0001) 8.869393350723613E+10, /* I =142 */
3328 (PID.TID 0000.0001) 9.003884657168852E+10, /* I =143 */
3329 (PID.TID 0000.0001) 9.071447638299399E+10, /* I =144 */
3330 (PID.TID 0000.0001) 9.071447638299399E+10, /* I =145 */
3331 (PID.TID 0000.0001) 9.003884657168852E+10, /* I =146 */
3332 (PID.TID 0000.0001) 8.869393350723613E+10, /* I =147 */
3333 (PID.TID 0000.0001) . . .
3334 (PID.TID 0000.0001) 3.341968103208270E+10, /* I =190 */
3335 (PID.TID 0000.0001) 2.390126200743558E+10, /* I =191 */
3336 (PID.TID 0000.0001) 1.216690346714270E+10 /* I =192 */
3337 (PID.TID 0000.0001) ;
3338 (PID.TID 0000.0001) rAs = /* rAs(1,:,1,:) ( units: m^2 ) */
3339 (PID.TID 0000.0001) 1.216690346714270E+10, /* J = 1 */
3340 (PID.TID 0000.0001) 1.974052138506315E+10, /* J = 2 */
3341 (PID.TID 0000.0001) 2.943712825252015E+10, /* J = 3 */
3342 (PID.TID 0000.0001) 3.801790263324359E+10, /* J = 4 */
3343 (PID.TID 0000.0001) 4.571243814189866E+10, /* J = 5 */
3344 (PID.TID 0000.0001) 5.269930713599979E+10, /* J = 6 */
3345 (PID.TID 0000.0001) 5.907428494299063E+10, /* J = 7 */
3346 (PID.TID 0000.0001) 6.488320895111514E+10, /* J = 8 */
3347 (PID.TID 0000.0001) 7.014205907741882E+10, /* J = 9 */
3348 (PID.TID 0000.0001) 7.484854821847499E+10, /* J = 10 */
3349 (PID.TID 0000.0001) 7.898934631431560E+10, /* J = 11 */
3350 (PID.TID 0000.0001) 8.254500894894537E+10, /* J = 12 */
3351 (PID.TID 0000.0001) 8.549360686473492E+10, /* J = 13 */
3352 (PID.TID 0000.0001) 8.781353403175085E+10, /* J = 14 */
3353 (PID.TID 0000.0001) 8.948571540392021E+10, /* J = 15 */
3354 (PID.TID 0000.0001) 9.049530583086168E+10, /* J = 16 */
3355 (PID.TID 0000.0001) 9.083293515008307E+10, /* J = 17 */
3356 (PID.TID 0000.0001) 9.049530583087070E+10, /* J = 18 */
3357 (PID.TID 0000.0001) 8.948571540391121E+10, /* J = 19 */
3358 (PID.TID 0000.0001) 8.781353403174185E+10, /* J = 20 */
3359 (PID.TID 0000.0001) 8.549360686467184E+10, /* J = 21 */
3360 (PID.TID 0000.0001) 8.254500894890933E+10, /* J = 22 */
3361 (PID.TID 0000.0001) 7.898934631434262E+10, /* J = 23 */
3362 (PID.TID 0000.0001) 7.484854821844795E+10, /* J = 24 */
3363 (PID.TID 0000.0001) 7.014205907742783E+10, /* J = 25 */
3364 (PID.TID 0000.0001) 6.488320895111514E+10, /* J = 26 */
3365 (PID.TID 0000.0001) 5.907428494299063E+10, /* J = 27 */
3366 (PID.TID 0000.0001) 5.269930713599078E+10, /* J = 28 */
3367 (PID.TID 0000.0001) 4.571243814190767E+10, /* J = 29 */
3368 (PID.TID 0000.0001) 3.801790263325260E+10, /* J = 30 */
3369 (PID.TID 0000.0001) 2.943712825251114E+10, /* J = 31 */
3370 (PID.TID 0000.0001) 1.974052138509018E+10 /* J = 32 */
3371 (PID.TID 0000.0001) ;
3372 (PID.TID 0000.0001) globalArea = /* Integrated horizontal Area (m^2) */
3373 (PID.TID 0000.0001) 3.638867375081599E+14
3374 (PID.TID 0000.0001) ;
3375 (PID.TID 0000.0001) hasWetCSCorners = /* Domain contains CS corners (True/False) */
3376 (PID.TID 0000.0001) T
3377 (PID.TID 0000.0001) ;
3378 (PID.TID 0000.0001) // =======================================================
3379 (PID.TID 0000.0001) // End of Model config. summary
3380 (PID.TID 0000.0001) // =======================================================
3381 (PID.TID 0000.0001)
3382 (PID.TID 0000.0001) == Packages configuration : Check & print summary ==
3383 (PID.TID 0000.0001)
3384 (PID.TID 0000.0001) KPP_CHECK: #define ALLOW_KPP
3385 (PID.TID 0000.0001) BBL_CHECK: #define BBL
3386 (PID.TID 0000.0001) bbl_RelaxH = /* horizontal transfer coefficient */
3387 (PID.TID 0000.0001) 8.640000000000000E+04
3388 (PID.TID 0000.0001) ;
3389 (PID.TID 0000.0001) bbl_RelaxR = /* vertical transfer coefficient */
3390 (PID.TID 0000.0001) 2.592000000000000E+06
3391 (PID.TID 0000.0001) ;
3392 (PID.TID 0000.0001) bbl_InitEta = /* default bbl thickness */
3393 (PID.TID 0000.0001) 2.000000000000000E+01
3394 (PID.TID 0000.0001) ;
3395 (PID.TID 0000.0001) SEAICE_CHECK: #define ALLOW_SEAICE
3396 (PID.TID 0000.0001) SALT_PLUME_CHECK: #define SALT_PLUME
3397 (PID.TID 0000.0001) GAD_CHECK: #define ALLOW_GENERIC_ADVDIFF
3398 (PID.TID 0000.0001) // =======================================================
3399 (PID.TID 0000.0001) // Check Model config. (CONFIG_CHECK):
3400 (PID.TID 0000.0001) // CONFIG_CHECK : Normal End
3401 (PID.TID 0000.0001) // =======================================================
3402 (PID.TID 0000.0001)
3403 (PID.TID 0000.0001) Start initial hydrostatic pressure computation
3404 (PID.TID 0000.0001) Pressure is predetermined for buoyancyRelation OCEANIC
3405 (PID.TID 0000.0001)
3406 (PID.TID 0000.0001) // =======================================================
3407 (PID.TID 0000.0001) // Model current state
3408 (PID.TID 0000.0001) // =======================================================
3409 (PID.TID 0000.0001)
3410 (PID.TID 0000.0001) // =======================================================
3411 (PID.TID 0000.0001) // Begin MONITOR dynamic field statistics
3412 (PID.TID 0000.0001) // =======================================================
3413 (PID.TID 0000.0001) %MON time_tsnumber = 0
3414 (PID.TID 0000.0001) %MON time_secondsf = 0.0000000000000E+00
3415 (PID.TID 0000.0001) %MON dynstat_eta_max = 0.0000000000000E+00
3416 (PID.TID 0000.0001) %MON dynstat_eta_min = 0.0000000000000E+00
3417 (PID.TID 0000.0001) %MON dynstat_eta_mean = 0.0000000000000E+00
3418 (PID.TID 0000.0001) %MON dynstat_eta_sd = 0.0000000000000E+00
3419 (PID.TID 0000.0001) %MON dynstat_eta_del2 = 0.0000000000000E+00
3420 (PID.TID 0000.0001) %MON dynstat_uvel_max = 0.0000000000000E+00
3421 (PID.TID 0000.0001) %MON dynstat_uvel_min = 0.0000000000000E+00
3422 (PID.TID 0000.0001) %MON dynstat_uvel_mean = 0.0000000000000E+00
3423 (PID.TID 0000.0001) %MON dynstat_uvel_sd = 0.0000000000000E+00
3424 (PID.TID 0000.0001) %MON dynstat_uvel_del2 = 0.0000000000000E+00
3425 (PID.TID 0000.0001) %MON dynstat_vvel_max = 0.0000000000000E+00
3426 (PID.TID 0000.0001) %MON dynstat_vvel_min = 0.0000000000000E+00
3427 (PID.TID 0000.0001) %MON dynstat_vvel_mean = 0.0000000000000E+00
3428 (PID.TID 0000.0001) %MON dynstat_vvel_sd = 0.0000000000000E+00
3429 (PID.TID 0000.0001) %MON dynstat_vvel_del2 = 0.0000000000000E+00
3430 (PID.TID 0000.0001) %MON dynstat_wvel_max = 0.0000000000000E+00
3431 (PID.TID 0000.0001) %MON dynstat_wvel_min = 0.0000000000000E+00
3432 (PID.TID 0000.0001) %MON dynstat_wvel_mean = 0.0000000000000E+00
3433 (PID.TID 0000.0001) %MON dynstat_wvel_sd = 0.0000000000000E+00
3434 (PID.TID 0000.0001) %MON dynstat_wvel_del2 = 0.0000000000000E+00
3435 (PID.TID 0000.0001) %MON dynstat_theta_max = 2.9382676376985E+01
3436 (PID.TID 0000.0001) %MON dynstat_theta_min = -1.8552983134796E+00
3437 (PID.TID 0000.0001) %MON dynstat_theta_mean = 3.6021420020891E+00
3438 (PID.TID 0000.0001) %MON dynstat_theta_sd = 4.4400121672128E+00
3439 (PID.TID 0000.0001) %MON dynstat_theta_del2 = 2.1374975397329E-03
3440 (PID.TID 0000.0001) %MON dynstat_salt_max = 4.0715748807407E+01
3441 (PID.TID 0000.0001) %MON dynstat_salt_min = 1.8144841495627E+01
3442 (PID.TID 0000.0001) %MON dynstat_salt_mean = 3.4721455080231E+01
3443 (PID.TID 0000.0001) %MON dynstat_salt_sd = 4.8896001530804E-01
3444 (PID.TID 0000.0001) %MON dynstat_salt_del2 = 5.1754754459343E-04
3445 (PID.TID 0000.0001) %MON forcing_qnet_max = 0.0000000000000E+00
3446 (PID.TID 0000.0001) %MON forcing_qnet_min = 0.0000000000000E+00
3447 (PID.TID 0000.0001) %MON forcing_qnet_mean = 0.0000000000000E+00
3448 (PID.TID 0000.0001) %MON forcing_qnet_sd = 0.0000000000000E+00
3449 (PID.TID 0000.0001) %MON forcing_qnet_del2 = 0.0000000000000E+00
3450 (PID.TID 0000.0001) %MON forcing_qsw_max = 0.0000000000000E+00
3451 (PID.TID 0000.0001) %MON forcing_qsw_min = 0.0000000000000E+00
3452 (PID.TID 0000.0001) %MON forcing_qsw_mean = 0.0000000000000E+00
3453 (PID.TID 0000.0001) %MON forcing_qsw_sd = 0.0000000000000E+00
3454 (PID.TID 0000.0001) %MON forcing_qsw_del2 = 0.0000000000000E+00
3455 (PID.TID 0000.0001) %MON forcing_empmr_max = 0.0000000000000E+00
3456 (PID.TID 0000.0001) %MON forcing_empmr_min = 0.0000000000000E+00
3457 (PID.TID 0000.0001) %MON forcing_empmr_mean = 0.0000000000000E+00
3458 (PID.TID 0000.0001) %MON forcing_empmr_sd = 0.0000000000000E+00
3459 (PID.TID 0000.0001) %MON forcing_empmr_del2 = 0.0000000000000E+00
3460 (PID.TID 0000.0001) %MON forcing_fu_max = 0.0000000000000E+00
3461 (PID.TID 0000.0001) %MON forcing_fu_min = 0.0000000000000E+00
3462 (PID.TID 0000.0001) %MON forcing_fu_mean = 0.0000000000000E+00
3463 (PID.TID 0000.0001) %MON forcing_fu_sd = 0.0000000000000E+00
3464 (PID.TID 0000.0001) %MON forcing_fu_del2 = 0.0000000000000E+00
3465 (PID.TID 0000.0001) %MON forcing_fv_max = 0.0000000000000E+00
3466 (PID.TID 0000.0001) %MON forcing_fv_min = 0.0000000000000E+00
3467 (PID.TID 0000.0001) %MON forcing_fv_mean = 0.0000000000000E+00
3468 (PID.TID 0000.0001) %MON forcing_fv_sd = 0.0000000000000E+00
3469 (PID.TID 0000.0001) %MON forcing_fv_del2 = 0.0000000000000E+00
3470 (PID.TID 0000.0001) %MON advcfl_uvel_max = 0.0000000000000E+00
3471 (PID.TID 0000.0001) %MON advcfl_vvel_max = 0.0000000000000E+00
3472 (PID.TID 0000.0001) %MON advcfl_wvel_max = 0.0000000000000E+00
3473 (PID.TID 0000.0001) %MON advcfl_W_hf_max = 0.0000000000000E+00
3474 (PID.TID 0000.0001) %MON pe_b_mean = 0.0000000000000E+00
3475 (PID.TID 0000.0001) %MON ke_max = 0.0000000000000E+00
3476 (PID.TID 0000.0001) %MON ke_mean = 0.0000000000000E+00
3477 (PID.TID 0000.0001) %MON ke_vol = 1.3402603134533E+18
3478 (PID.TID 0000.0001) %MON vort_r_min = 0.0000000000000E+00
3479 (PID.TID 0000.0001) %MON vort_r_max = 0.0000000000000E+00
3480 (PID.TID 0000.0001) %MON vort_a_mean = -2.0480922081434E-05
3481 (PID.TID 0000.0001) %MON vort_a_sd = 7.5250761587734E-05
3482 (PID.TID 0000.0001) %MON vort_p_mean = -2.4400027607898E-05
3483 (PID.TID 0000.0001) %MON vort_p_sd = 1.1315494135666E-04
3484 (PID.TID 0000.0001) %MON surfExpan_theta_mean = 0.0000000000000E+00
3485 (PID.TID 0000.0001) %MON surfExpan_salt_mean = 0.0000000000000E+00
3486 (PID.TID 0000.0001) // =======================================================
3487 (PID.TID 0000.0001) // End MONITOR dynamic field statistics
3488 (PID.TID 0000.0001) // =======================================================
3489 (PID.TID 0000.0001) // =======================================================
3490 (PID.TID 0000.0001) // Begin MONITOR SEAICE statistics
3491 (PID.TID 0000.0001) // =======================================================
3492 (PID.TID 0000.0001) %MON seaice_tsnumber = 0
3493 (PID.TID 0000.0001) %MON seaice_time_sec = 0.0000000000000E+00
3494 (PID.TID 0000.0001) %MON seaice_uice_max = 0.0000000000000E+00
3495 (PID.TID 0000.0001) %MON seaice_uice_min = 0.0000000000000E+00
3496 (PID.TID 0000.0001) %MON seaice_uice_mean = 0.0000000000000E+00
3497 (PID.TID 0000.0001) %MON seaice_uice_sd = 0.0000000000000E+00
3498 (PID.TID 0000.0001) %MON seaice_uice_del2 = 0.0000000000000E+00
3499 (PID.TID 0000.0001) %MON seaice_vice_max = 0.0000000000000E+00
3500 (PID.TID 0000.0001) %MON seaice_vice_min = 0.0000000000000E+00
3501 (PID.TID 0000.0001) %MON seaice_vice_mean = 0.0000000000000E+00
3502 (PID.TID 0000.0001) %MON seaice_vice_sd = 0.0000000000000E+00
3503 (PID.TID 0000.0001) %MON seaice_vice_del2 = 0.0000000000000E+00
3504 (PID.TID 0000.0001) %MON seaice_area_max = 0.0000000000000E+00
3505 (PID.TID 0000.0001) %MON seaice_area_min = 0.0000000000000E+00
3506 (PID.TID 0000.0001) %MON seaice_area_mean = 0.0000000000000E+00
3507 (PID.TID 0000.0001) %MON seaice_area_sd = 0.0000000000000E+00
3508 (PID.TID 0000.0001) %MON seaice_area_del2 = 0.0000000000000E+00
3509 (PID.TID 0000.0001) %MON seaice_heff_max = 0.0000000000000E+00
3510 (PID.TID 0000.0001) %MON seaice_heff_min = 0.0000000000000E+00
3511 (PID.TID 0000.0001) %MON seaice_heff_mean = 0.0000000000000E+00
3512 (PID.TID 0000.0001) %MON seaice_heff_sd = 0.0000000000000E+00
3513 (PID.TID 0000.0001) %MON seaice_heff_del2 = 0.0000000000000E+00
3514 (PID.TID 0000.0001) %MON seaice_hsnow_max = 0.0000000000000E+00
3515 (PID.TID 0000.0001) %MON seaice_hsnow_min = 0.0000000000000E+00
3516 (PID.TID 0000.0001) %MON seaice_hsnow_mean = 0.0000000000000E+00
3517 (PID.TID 0000.0001) %MON seaice_hsnow_sd = 0.0000000000000E+00
3518 (PID.TID 0000.0001) %MON seaice_hsnow_del2 = 0.0000000000000E+00
3519 (PID.TID 0000.0001) %MON seaice_hsalt_max = 0.0000000000000E+00
3520 (PID.TID 0000.0001) %MON seaice_hsalt_min = 0.0000000000000E+00
3521 (PID.TID 0000.0001) %MON seaice_hsalt_mean = 0.0000000000000E+00
3522 (PID.TID 0000.0001) %MON seaice_hsalt_sd = 0.0000000000000E+00
3523 (PID.TID 0000.0001) %MON seaice_hsalt_del2 = 0.0000000000000E+00
3524 (PID.TID 0000.0001) // =======================================================
3525 (PID.TID 0000.0001) // End MONITOR SEAICE statistics
3526 (PID.TID 0000.0001) // =======================================================
3527 (PID.TID 0000.0001) // =======================================================
3528 (PID.TID 0000.0001) // Begin MONITOR EXF statistics
3529 (PID.TID 0000.0001) // =======================================================
3530 (PID.TID 0000.0001) %MON exf_tsnumber = 0
3531 (PID.TID 0000.0001) %MON exf_time_sec = 0.0000000000000E+00
3532 (PID.TID 0000.0001) %MON exf_ustress_max = 8.7238602227014E-02
3533 (PID.TID 0000.0001) %MON exf_ustress_min = -9.0224293652889E-02
3534 (PID.TID 0000.0001) %MON exf_ustress_mean = -3.5643589385762E-03
3535 (PID.TID 0000.0001) %MON exf_ustress_sd = 2.4786345757006E-02
3536 (PID.TID 0000.0001) %MON exf_ustress_del2 = 1.2605040317612E-04
3537 (PID.TID 0000.0001) %MON exf_vstress_max = 1.1338762146086E-01
3538 (PID.TID 0000.0001) %MON exf_vstress_min = -1.1964802985161E-01
3539 (PID.TID 0000.0001) %MON exf_vstress_mean = -9.5738924438575E-03
3540 (PID.TID 0000.0001) %MON exf_vstress_sd = 2.9653285135802E-02
3541 (PID.TID 0000.0001) %MON exf_vstress_del2 = 1.4014531719608E-04
3542 (PID.TID 0000.0001) %MON exf_hflux_max = 5.8316084722204E+02
3543 (PID.TID 0000.0001) %MON exf_hflux_min = -3.0312226812406E+02
3544 (PID.TID 0000.0001) %MON exf_hflux_mean = -7.3568782361674E+01
3545 (PID.TID 0000.0001) %MON exf_hflux_sd = 1.4533380416285E+02
3546 (PID.TID 0000.0001) %MON exf_hflux_del2 = 5.1172631695107E-01
3547 (PID.TID 0000.0001) %MON exf_sflux_max = 9.1689027235712E-08
3548 (PID.TID 0000.0001) %MON exf_sflux_min = -1.4685380200679E-07
3549 (PID.TID 0000.0001) %MON exf_sflux_mean = -1.4292480522171E-08
3550 (PID.TID 0000.0001) %MON exf_sflux_sd = 2.9594202072464E-08
3551 (PID.TID 0000.0001) %MON exf_sflux_del2 = 2.3417851860615E-10
3552 (PID.TID 0000.0001) %MON exf_uwind_max = 7.8151306021850E+00
3553 (PID.TID 0000.0001) %MON exf_uwind_min = -7.6595892161450E+00
3554 (PID.TID 0000.0001) %MON exf_uwind_mean = -4.2116688060008E-01
3555 (PID.TID 0000.0001) %MON exf_uwind_sd = 3.0400214888233E+00
3556 (PID.TID 0000.0001) %MON exf_uwind_del2 = 2.4201193073202E-02
3557 (PID.TID 0000.0001) %MON exf_vwind_max = 8.9533399250746E+00
3558 (PID.TID 0000.0001) %MON exf_vwind_min = -8.8911962878915E+00
3559 (PID.TID 0000.0001) %MON exf_vwind_mean = -1.1178809375332E+00
3560 (PID.TID 0000.0001) %MON exf_vwind_sd = 3.4639530314615E+00
3561 (PID.TID 0000.0001) %MON exf_vwind_del2 = 2.4250755824449E-02
3562 (PID.TID 0000.0001) %MON exf_wspeed_max = 9.5847417655414E+00
3563 (PID.TID 0000.0001) %MON exf_wspeed_min = 7.4856379246817E-02
3564 (PID.TID 0000.0001) %MON exf_wspeed_mean = 4.2567452796436E+00
3565 (PID.TID 0000.0001) %MON exf_wspeed_sd = 2.1325712679123E+00
3566 (PID.TID 0000.0001) %MON exf_wspeed_del2 = 3.3525792672114E-02
3567 (PID.TID 0000.0001) %MON exf_atemp_max = 3.0267967881256E+02
3568 (PID.TID 0000.0001) %MON exf_atemp_min = 2.3794136732561E+02
3569 (PID.TID 0000.0001) %MON exf_atemp_mean = 2.8930299707938E+02
3570 (PID.TID 0000.0001) %MON exf_atemp_sd = 1.2461718937840E+01
3571 (PID.TID 0000.0001) %MON exf_atemp_del2 = 1.2276486902451E-01
3572 (PID.TID 0000.0001) %MON exf_aqh_max = 2.0915760913245E-02
3573 (PID.TID 0000.0001) %MON exf_aqh_min = 1.6807241815463E-04
3574 (PID.TID 0000.0001) %MON exf_aqh_mean = 1.1762362230089E-02
3575 (PID.TID 0000.0001) %MON exf_aqh_sd = 5.7499226989178E-03
3576 (PID.TID 0000.0001) %MON exf_aqh_del2 = 7.7379416589694E-05
3577 (PID.TID 0000.0001) %MON exf_lwflux_max = 1.8137510891540E+02
3578 (PID.TID 0000.0001) %MON exf_lwflux_min = 1.8022674862393E+01
3579 (PID.TID 0000.0001) %MON exf_lwflux_mean = 5.7459502618084E+01
3580 (PID.TID 0000.0001) %MON exf_lwflux_sd = 2.2634853562438E+01
3581 (PID.TID 0000.0001) %MON exf_lwflux_del2 = 3.7332381600085E-01
3582 (PID.TID 0000.0001) %MON exf_precip_max = 1.5620259789141E-07
3583 (PID.TID 0000.0001) %MON exf_precip_min = 4.6639761221218E-13
3584 (PID.TID 0000.0001) %MON exf_precip_mean = 3.4469835111191E-08
3585 (PID.TID 0000.0001) %MON exf_precip_sd = 2.7159091127542E-08
3586 (PID.TID 0000.0001) %MON exf_precip_del2 = 3.1439362047918E-10
3587 (PID.TID 0000.0001) %MON exf_swflux_max = -0.0000000000000E+00
3588 (PID.TID 0000.0001) %MON exf_swflux_min = -3.6721276088104E+02
3589 (PID.TID 0000.0001) %MON exf_swflux_mean = -1.9530725318870E+02
3590 (PID.TID 0000.0001) %MON exf_swflux_sd = 7.5074353951439E+01
3591 (PID.TID 0000.0001) %MON exf_swflux_del2 = 1.5090731260309E-01
3592 (PID.TID 0000.0001) %MON exf_evap_max = 1.1452369110059E-07
3593 (PID.TID 0000.0001) %MON exf_evap_min = -1.4597236406739E-08
3594 (PID.TID 0000.0001) %MON exf_evap_mean = 2.0177354589021E-08
3595 (PID.TID 0000.0001) %MON exf_evap_sd = 1.8141284738449E-08
3596 (PID.TID 0000.0001) %MON exf_evap_del2 = 1.8449519257212E-10
3597 (PID.TID 0000.0001) %MON exf_swdown_max = 4.0801417875671E+02
3598 (PID.TID 0000.0001) %MON exf_swdown_min = 0.0000000000000E+00
3599 (PID.TID 0000.0001) %MON exf_swdown_mean = 2.1700805909855E+02
3600 (PID.TID 0000.0001) %MON exf_swdown_sd = 8.3415948834932E+01
3601 (PID.TID 0000.0001) %MON exf_swdown_del2 = 1.4691030585285E+00
3602 (PID.TID 0000.0001) %MON exf_lwdown_max = 4.3088589444380E+02
3603 (PID.TID 0000.0001) %MON exf_lwdown_min = 1.2528564091647E+02
3604 (PID.TID 0000.0001) %MON exf_lwdown_mean = 3.5013169158660E+02
3605 (PID.TID 0000.0001) %MON exf_lwdown_sd = 6.4004627259700E+01
3606 (PID.TID 0000.0001) %MON exf_lwdown_del2 = 2.2172479200530E+00
3607 (PID.TID 0000.0001) // =======================================================
3608 (PID.TID 0000.0001) // End MONITOR EXF statistics
3609 (PID.TID 0000.0001) // =======================================================
3610 (PID.TID 0000.0001) // =======================================================
3611 (PID.TID 0000.0001) // Begin MONITOR dynamic field statistics
3612 (PID.TID 0000.0001) // =======================================================
3613 (PID.TID 0000.0001) %MON time_tsnumber = 72
3614 (PID.TID 0000.0001) %MON time_secondsf = 8.6400000000000E+04
3615 (PID.TID 0000.0001) %MON dynstat_eta_max = 1.3718059629212E+00
3616 (PID.TID 0000.0001) %MON dynstat_eta_min = -1.4202694224019E+00
3617 (PID.TID 0000.0001) %MON dynstat_eta_mean = 6.6075030136529E-04
3618 (PID.TID 0000.0001) %MON dynstat_eta_sd = 4.5041888060731E-01
3619 (PID.TID 0000.0001) %MON dynstat_eta_del2 = 1.4668676505263E-03
3620 (PID.TID 0000.0001) %MON dynstat_uvel_max = 7.9720601882156E-01
3621 (PID.TID 0000.0001) %MON dynstat_uvel_min = -4.8395512956351E-01
3622 (PID.TID 0000.0001) %MON dynstat_uvel_mean = 3.2215971952890E-03
3623 (PID.TID 0000.0001) %MON dynstat_uvel_sd = 2.5960588193774E-02
3624 (PID.TID 0000.0001) %MON dynstat_uvel_del2 = 2.4878809356538E-04
3625 (PID.TID 0000.0001) %MON dynstat_vvel_max = 1.7361589825641E+00
3626 (PID.TID 0000.0001) %MON dynstat_vvel_min = -1.7115516352441E+00
3627 (PID.TID 0000.0001) %MON dynstat_vvel_mean = -3.0029425489491E-04
3628 (PID.TID 0000.0001) %MON dynstat_vvel_sd = 3.2405918701186E-02
3629 (PID.TID 0000.0001) %MON dynstat_vvel_del2 = 2.8925234973568E-04
3630 (PID.TID 0000.0001) %MON dynstat_wvel_max = 7.5170254901532E-03
3631 (PID.TID 0000.0001) %MON dynstat_wvel_min = -5.2921240574256E-03
3632 (PID.TID 0000.0001) %MON dynstat_wvel_mean = 9.3355977835769E-08
3633 (PID.TID 0000.0001) %MON dynstat_wvel_sd = 1.2132937030015E-04
3634 (PID.TID 0000.0001) %MON dynstat_wvel_del2 = 1.1681307329643E-06
3635 (PID.TID 0000.0001) %MON dynstat_theta_max = 2.9423334786320E+01
3636 (PID.TID 0000.0001) %MON dynstat_theta_min = -1.8519496572415E+00
3637 (PID.TID 0000.0001) %MON dynstat_theta_mean = 3.6025800782092E+00
3638 (PID.TID 0000.0001) %MON dynstat_theta_sd = 4.4411835146098E+00
3639 (PID.TID 0000.0001) %MON dynstat_theta_del2 = 2.0572004683398E-03
3640 (PID.TID 0000.0001) %MON dynstat_salt_max = 4.0713360952407E+01
3641 (PID.TID 0000.0001) %MON dynstat_salt_min = 1.8151218857522E+01
3642 (PID.TID 0000.0001) %MON dynstat_salt_mean = 3.4721446968046E+01
3643 (PID.TID 0000.0001) %MON dynstat_salt_sd = 4.8835217136653E-01
3644 (PID.TID 0000.0001) %MON dynstat_salt_del2 = 4.0306639716913E-04
3645 (PID.TID 0000.0001) %MON forcing_qnet_max = 5.8077770138619E+02
3646 (PID.TID 0000.0001) %MON forcing_qnet_min = -3.0117968786956E+02
3647 (PID.TID 0000.0001) %MON forcing_qnet_mean = -7.6236027547698E+01
3648 (PID.TID 0000.0001) %MON forcing_qnet_sd = 1.3771437967278E+02
3649 (PID.TID 0000.0001) %MON forcing_qnet_del2 = 6.6885090602378E-01
3650 (PID.TID 0000.0001) %MON forcing_qsw_max = 0.0000000000000E+00
3651 (PID.TID 0000.0001) %MON forcing_qsw_min = -3.6581766134264E+02
3652 (PID.TID 0000.0001) %MON forcing_qsw_mean = -1.9526392292485E+02
3653 (PID.TID 0000.0001) %MON forcing_qsw_sd = 7.4882641628258E+01
3654 (PID.TID 0000.0001) %MON forcing_qsw_del2 = 1.5074368926442E-01
3655 (PID.TID 0000.0001) %MON forcing_empmr_max = 1.1945696113612E-03
3656 (PID.TID 0000.0001) %MON forcing_empmr_min = -1.4756876469755E-04
3657 (PID.TID 0000.0001) %MON forcing_empmr_mean = -6.2861715646935E-06
3658 (PID.TID 0000.0001) %MON forcing_empmr_sd = 8.9912835481685E-05
3659 (PID.TID 0000.0001) %MON forcing_empmr_del2 = 1.1761096770890E-06
3660 (PID.TID 0000.0001) %MON forcing_fu_max = 8.7559117742777E-02
3661 (PID.TID 0000.0001) %MON forcing_fu_min = -8.8090830630082E-02
3662 (PID.TID 0000.0001) %MON forcing_fu_mean = -3.7214155154697E-03
3663 (PID.TID 0000.0001) %MON forcing_fu_sd = 2.4810890707216E-02
3664 (PID.TID 0000.0001) %MON forcing_fu_del2 = 9.3828389077431E-05
3665 (PID.TID 0000.0001) %MON forcing_fv_max = 1.0882018921503E-01
3666 (PID.TID 0000.0001) %MON forcing_fv_min = -1.1384323090906E-01
3667 (PID.TID 0000.0001) %MON forcing_fv_mean = -9.8827498209639E-03
3668 (PID.TID 0000.0001) %MON forcing_fv_sd = 2.9921490828491E-02
3669 (PID.TID 0000.0001) %MON forcing_fv_del2 = 1.1523263221514E-04
3670 (PID.TID 0000.0001) %MON advcfl_uvel_max = 3.1510420290799E-03
3671 (PID.TID 0000.0001) %MON advcfl_vvel_max = 6.8168761498752E-03
3672 (PID.TID 0000.0001) %MON advcfl_wvel_max = 3.0089113248395E-02
3673 (PID.TID 0000.0001) %MON advcfl_W_hf_max = 3.3213042062297E-02
3674 (PID.TID 0000.0001) %MON pe_b_mean = 2.6991464983984E-04
3675 (PID.TID 0000.0001) %MON ke_max = 9.7803306228742E-01
3676 (PID.TID 0000.0001) %MON ke_mean = 8.0168201783553E-04
3677 (PID.TID 0000.0001) %MON ke_vol = 1.3402605512201E+18
3678 (PID.TID 0000.0001) %MON vort_r_min = -5.6657583596410E-06
3679 (PID.TID 0000.0001) %MON vort_r_max = 5.6401156085341E-06
3680 (PID.TID 0000.0001) %MON vort_a_mean = -2.0480922081434E-05
3681 (PID.TID 0000.0001) %MON vort_a_sd = 7.5250957021551E-05
3682 (PID.TID 0000.0001) %MON vort_p_mean = -2.4400009551563E-05
3683 (PID.TID 0000.0001) %MON vort_p_sd = 1.1315565694498E-04
3684 (PID.TID 0000.0001) %MON surfExpan_theta_mean = 1.8089353470406E-06
3685 (PID.TID 0000.0001) %MON surfExpan_salt_mean = 3.6933029095409E-07
3686 (PID.TID 0000.0001) // =======================================================
3687 (PID.TID 0000.0001) // End MONITOR dynamic field statistics
3688 (PID.TID 0000.0001) // =======================================================
3689 (PID.TID 0000.0001) // =======================================================
3690 (PID.TID 0000.0001) // Begin MONITOR SEAICE statistics
3691 (PID.TID 0000.0001) // =======================================================
3692 (PID.TID 0000.0001) %MON seaice_tsnumber = 72
3693 (PID.TID 0000.0001) %MON seaice_time_sec = 8.6400000000000E+04
3694 (PID.TID 0000.0001) %MON seaice_uice_max = 4.6834919412290E-01
3695 (PID.TID 0000.0001) %MON seaice_uice_min = -4.9561710673003E-01
3696 (PID.TID 0000.0001) %MON seaice_uice_mean = -1.5976645988352E-02
3697 (PID.TID 0000.0001) %MON seaice_uice_sd = 9.1541118083891E-02
3698 (PID.TID 0000.0001) %MON seaice_uice_del2 = 1.5725119810987E-03
3699 (PID.TID 0000.0001) %MON seaice_vice_max = 5.1097629796391E-01
3700 (PID.TID 0000.0001) %MON seaice_vice_min = -1.3130811572041E+00
3701 (PID.TID 0000.0001) %MON seaice_vice_mean = -3.0209804325729E-02
3702 (PID.TID 0000.0001) %MON seaice_vice_sd = 1.0711377638166E-01
3703 (PID.TID 0000.0001) %MON seaice_vice_del2 = 1.7404807614121E-03
3704 (PID.TID 0000.0001) %MON seaice_area_max = 1.9390677353098E-01
3705 (PID.TID 0000.0001) %MON seaice_area_min = 0.0000000000000E+00
3706 (PID.TID 0000.0001) %MON seaice_area_mean = 1.2597783921349E-03
3707 (PID.TID 0000.0001) %MON seaice_area_sd = 1.3409565218592E-02
3708 (PID.TID 0000.0001) %MON seaice_area_del2 = 2.0381303923810E-04
3709 (PID.TID 0000.0001) %MON seaice_heff_max = 1.2081526427799E-01
3710 (PID.TID 0000.0001) %MON seaice_heff_min = 0.0000000000000E+00
3711 (PID.TID 0000.0001) %MON seaice_heff_mean = 6.0866592928411E-04
3712 (PID.TID 0000.0001) %MON seaice_heff_sd = 7.0897259489676E-03
3713 (PID.TID 0000.0001) %MON seaice_heff_del2 = 1.1081257906602E-04
3714 (PID.TID 0000.0001) %MON seaice_hsnow_max = 2.2728608696696E-04
3715 (PID.TID 0000.0001) %MON seaice_hsnow_min = 0.0000000000000E+00
3716 (PID.TID 0000.0001) %MON seaice_hsnow_mean = 4.6433796594566E-07
3717 (PID.TID 0000.0001) %MON seaice_hsnow_sd = 7.4049873948147E-06
3718 (PID.TID 0000.0001) %MON seaice_hsnow_del2 = 2.5651811444073E-07
3719 (PID.TID 0000.0001) %MON seaice_hsalt_max = 1.3337924152636E+03
3720 (PID.TID 0000.0001) %MON seaice_hsalt_min = 0.0000000000000E+00
3721 (PID.TID 0000.0001) %MON seaice_hsalt_mean = 6.6496607042515E+00
3722 (PID.TID 0000.0001) %MON seaice_hsalt_sd = 7.7261795025367E+01
3723 (PID.TID 0000.0001) %MON seaice_hsalt_del2 = 1.2065359893871E+00
3724 (PID.TID 0000.0001) // =======================================================
3725 (PID.TID 0000.0001) // End MONITOR SEAICE statistics
3726 (PID.TID 0000.0001) // =======================================================
3727 (PID.TID 0000.0001) %CHECKPOINT 72 ckptA
3728 (PID.TID 0000.0001) Seconds in section "ALL [THE_MODEL_MAIN]":
3729 (PID.TID 0000.0001) User time: 27.600000000000001
3730 (PID.TID 0000.0001) System time: 0.11000000000000000
3731 (PID.TID 0000.0001) Wall clock time: 27.711106061935425
3732 (PID.TID 0000.0001) No. starts: 1
3733 (PID.TID 0000.0001) No. stops: 1
3734 (PID.TID 0000.0001) Seconds in section "INITIALISE_FIXED [THE_MODEL_MAIN]":
3735 (PID.TID 0000.0001) User time: 0.11000000000000000
3736 (PID.TID 0000.0001) System time: 2.0000000000000000E-002
3737 (PID.TID 0000.0001) Wall clock time: 0.12906479835510254
3738 (PID.TID 0000.0001) No. starts: 1
3739 (PID.TID 0000.0001) No. stops: 1
3740 (PID.TID 0000.0001) Seconds in section "THE_MAIN_LOOP [THE_MODEL_MAIN]":
3741 (PID.TID 0000.0001) User time: 27.490000000000002
3742 (PID.TID 0000.0001) System time: 8.9999999999999997E-002
3743 (PID.TID 0000.0001) Wall clock time: 27.582003831863403
3744 (PID.TID 0000.0001) No. starts: 1
3745 (PID.TID 0000.0001) No. stops: 1
3746 (PID.TID 0000.0001) Seconds in section "INITIALISE_VARIA [THE_MAIN_LOOP]":
3747 (PID.TID 0000.0001) User time: 6.0000000000000012E-002
3748 (PID.TID 0000.0001) System time: 3.0000000000000002E-002
3749 (PID.TID 0000.0001) Wall clock time: 0.10104489326477051
3750 (PID.TID 0000.0001) No. starts: 1
3751 (PID.TID 0000.0001) No. stops: 1
3752 (PID.TID 0000.0001) Seconds in section "MAIN LOOP [THE_MAIN_LOOP]":
3753 (PID.TID 0000.0001) User time: 27.430000000000000
3754 (PID.TID 0000.0001) System time: 5.9999999999999998E-002
3755 (PID.TID 0000.0001) Wall clock time: 27.480931043624878
3756 (PID.TID 0000.0001) No. starts: 1
3757 (PID.TID 0000.0001) No. stops: 1
3758 (PID.TID 0000.0001) Seconds in section "FORWARD_STEP [THE_MAIN_LOOP]":
3759 (PID.TID 0000.0001) User time: 27.430000000000000
3760 (PID.TID 0000.0001) System time: 6.0000000000000026E-002
3761 (PID.TID 0000.0001) Wall clock time: 27.480346679687500
3762 (PID.TID 0000.0001) No. starts: 72
3763 (PID.TID 0000.0001) No. stops: 72
3764 (PID.TID 0000.0001) Seconds in section "DO_STATEVARS_DIAGS [FORWARD_STEP]":
3765 (PID.TID 0000.0001) User time: 0.21000000000000441
3766 (PID.TID 0000.0001) System time: 0.0000000000000000
3767 (PID.TID 0000.0001) Wall clock time: 0.27063226699829102
3768 (PID.TID 0000.0001) No. starts: 216
3769 (PID.TID 0000.0001) No. stops: 216
3770 (PID.TID 0000.0001) Seconds in section "LOAD_FIELDS_DRIVER [FORWARD_STEP]":
3771 (PID.TID 0000.0001) User time: 0.36999999999999744
3772 (PID.TID 0000.0001) System time: 0.0000000000000000
3773 (PID.TID 0000.0001) Wall clock time: 0.32933282852172852
3774 (PID.TID 0000.0001) No. starts: 72
3775 (PID.TID 0000.0001) No. stops: 72
3776 (PID.TID 0000.0001) Seconds in section "EXF_GETFORCING [LOAD_FLDS_DRIVER]":
3777 (PID.TID 0000.0001) User time: 0.36999999999999744
3778 (PID.TID 0000.0001) System time: 0.0000000000000000
3779 (PID.TID 0000.0001) Wall clock time: 0.32812786102294922
3780 (PID.TID 0000.0001) No. starts: 72
3781 (PID.TID 0000.0001) No. stops: 72
3782 (PID.TID 0000.0001) Seconds in section "DO_ATMOSPHERIC_PHYS [FORWARD_STEP]":
3783 (PID.TID 0000.0001) User time: 0.0000000000000000
3784 (PID.TID 0000.0001) System time: 0.0000000000000000
3785 (PID.TID 0000.0001) Wall clock time: 5.6171417236328125E-004
3786 (PID.TID 0000.0001) No. starts: 72
3787 (PID.TID 0000.0001) No. stops: 72
3788 (PID.TID 0000.0001) Seconds in section "DO_OCEANIC_PHYS [FORWARD_STEP]":
3789 (PID.TID 0000.0001) User time: 11.120000000000015
3790 (PID.TID 0000.0001) System time: 9.9999999999999950E-003
3791 (PID.TID 0000.0001) Wall clock time: 11.157768964767456
3792 (PID.TID 0000.0001) No. starts: 72
3793 (PID.TID 0000.0001) No. stops: 72
3794 (PID.TID 0000.0001) Seconds in section "SEAICE_MODEL [DO_OCEANIC_PHYS]":
3795 (PID.TID 0000.0001) User time: 1.5700000000000074
3796 (PID.TID 0000.0001) System time: 9.9999999999999950E-003
3797 (PID.TID 0000.0001) Wall clock time: 1.5344583988189697
3798 (PID.TID 0000.0001) No. starts: 72
3799 (PID.TID 0000.0001) No. stops: 72
3800 (PID.TID 0000.0001) Seconds in section "SEAICE_DYNSOLVER [SEAICE_MODEL]":
3801 (PID.TID 0000.0001) User time: 0.44000000000000838
3802 (PID.TID 0000.0001) System time: 9.9999999999999950E-003
3803 (PID.TID 0000.0001) Wall clock time: 0.47274494171142578
3804 (PID.TID 0000.0001) No. starts: 72
3805 (PID.TID 0000.0001) No. stops: 72
3806 (PID.TID 0000.0001) Seconds in section "KPP_CALC [DO_OCEANIC_PHYS]":
3807 (PID.TID 0000.0001) User time: 6.5299999999998413
3808 (PID.TID 0000.0001) System time: 0.0000000000000000
3809 (PID.TID 0000.0001) Wall clock time: 6.3158717155456543
3810 (PID.TID 0000.0001) No. starts: 864
3811 (PID.TID 0000.0001) No. stops: 864
3812 (PID.TID 0000.0001) Seconds in section "DYNAMICS [FORWARD_STEP]":
3813 (PID.TID 0000.0001) User time: 5.0500000000000007
3814 (PID.TID 0000.0001) System time: 2.0000000000000004E-002
3815 (PID.TID 0000.0001) Wall clock time: 5.0707240104675293
3816 (PID.TID 0000.0001) No. starts: 72
3817 (PID.TID 0000.0001) No. stops: 72
3818 (PID.TID 0000.0001) Seconds in section "UPDATE_R_STAR [FORWARD_STEP]":
3819 (PID.TID 0000.0001) User time: 0.31000000000000583
3820 (PID.TID 0000.0001) System time: 0.0000000000000000
3821 (PID.TID 0000.0001) Wall clock time: 0.27232670783996582
3822 (PID.TID 0000.0001) No. starts: 72
3823 (PID.TID 0000.0001) No. stops: 72
3824 (PID.TID 0000.0001) Seconds in section "UPDATE_CG2D [FORWARD_STEP]":
3825 (PID.TID 0000.0001) User time: 9.0000000000003411E-002
3826 (PID.TID 0000.0001) System time: 0.0000000000000000
3827 (PID.TID 0000.0001) Wall clock time: 5.3843975067138672E-002
3828 (PID.TID 0000.0001) No. starts: 72
3829 (PID.TID 0000.0001) No. stops: 72
3830 (PID.TID 0000.0001) Seconds in section "SOLVE_FOR_PRESSURE [FORWARD_STEP]":
3831 (PID.TID 0000.0001) User time: 0.16000000000000014
3832 (PID.TID 0000.0001) System time: 0.0000000000000000
3833 (PID.TID 0000.0001) Wall clock time: 0.18027782440185547
3834 (PID.TID 0000.0001) No. starts: 72
3835 (PID.TID 0000.0001) No. stops: 72
3836 (PID.TID 0000.0001) Seconds in section "MOM_CORRECTION_STEP [FORWARD_STEP]":
3837 (PID.TID 0000.0001) User time: 6.0000000000002274E-002
3838 (PID.TID 0000.0001) System time: 0.0000000000000000
3839 (PID.TID 0000.0001) Wall clock time: 8.0771446228027344E-002
3840 (PID.TID 0000.0001) No. starts: 72
3841 (PID.TID 0000.0001) No. stops: 72
3842 (PID.TID 0000.0001) Seconds in section "INTEGR_CONTINUITY [FORWARD_STEP]":
3843 (PID.TID 0000.0001) User time: 8.9999999999996305E-002
3844 (PID.TID 0000.0001) System time: 0.0000000000000000
3845 (PID.TID 0000.0001) Wall clock time: 0.11332154273986816
3846 (PID.TID 0000.0001) No. starts: 72
3847 (PID.TID 0000.0001) No. stops: 72
3848 (PID.TID 0000.0001) Seconds in section "CALC_R_STAR [FORWARD_STEP]":
3849 (PID.TID 0000.0001) User time: 5.0000000000000711E-002
3850 (PID.TID 0000.0001) System time: 0.0000000000000000
3851 (PID.TID 0000.0001) Wall clock time: 5.9418201446533203E-002
3852 (PID.TID 0000.0001) No. starts: 72
3853 (PID.TID 0000.0001) No. stops: 72
3854 (PID.TID 0000.0001) Seconds in section "BLOCKING_EXCHANGES [FORWARD_STEP]":
3855 (PID.TID 0000.0001) User time: 0.57000000000000028
3856 (PID.TID 0000.0001) System time: 0.0000000000000000
3857 (PID.TID 0000.0001) Wall clock time: 0.50122427940368652
3858 (PID.TID 0000.0001) No. starts: 144
3859 (PID.TID 0000.0001) No. stops: 144
3860 (PID.TID 0000.0001) Seconds in section "THERMODYNAMICS [FORWARD_STEP]":
3861 (PID.TID 0000.0001) User time: 9.2300000000000040
3862 (PID.TID 0000.0001) System time: 2.0000000000000004E-002
3863 (PID.TID 0000.0001) Wall clock time: 9.2064995765686035
3864 (PID.TID 0000.0001) No. starts: 72
3865 (PID.TID 0000.0001) No. stops: 72
3866 (PID.TID 0000.0001) Seconds in section "TRC_CORRECTION_STEP [FORWARD_STEP]":
3867 (PID.TID 0000.0001) User time: 3.0000000000001137E-002
3868 (PID.TID 0000.0001) System time: 0.0000000000000000
3869 (PID.TID 0000.0001) Wall clock time: 5.3928136825561523E-002
3870 (PID.TID 0000.0001) No. starts: 72
3871 (PID.TID 0000.0001) No. stops: 72
3872 (PID.TID 0000.0001) Seconds in section "DO_STATEVARS_TAVE [FORWARD_STEP]":
3873 (PID.TID 0000.0001) User time: 0.0000000000000000
3874 (PID.TID 0000.0001) System time: 0.0000000000000000
3875 (PID.TID 0000.0001) Wall clock time: 5.6862831115722656E-004
3876 (PID.TID 0000.0001) No. starts: 72
3877 (PID.TID 0000.0001) No. stops: 72
3878 (PID.TID 0000.0001) Seconds in section "MONITOR [FORWARD_STEP]":
3879 (PID.TID 0000.0001) User time: 9.9999999999980105E-003
3880 (PID.TID 0000.0001) System time: 0.0000000000000000
3881 (PID.TID 0000.0001) Wall clock time: 9.6096992492675781E-003
3882 (PID.TID 0000.0001) No. starts: 72
3883 (PID.TID 0000.0001) No. stops: 72
3884 (PID.TID 0000.0001) Seconds in section "DO_THE_MODEL_IO [FORWARD_STEP]":
3885 (PID.TID 0000.0001) User time: 6.0000000000002274E-002
3886 (PID.TID 0000.0001) System time: 9.9999999999999950E-003
3887 (PID.TID 0000.0001) Wall clock time: 7.7857971191406250E-002
3888 (PID.TID 0000.0001) No. starts: 72
3889 (PID.TID 0000.0001) No. stops: 72
3890 (PID.TID 0000.0001) Seconds in section "DO_WRITE_PICKUP [FORWARD_STEP]":
3891 (PID.TID 0000.0001) User time: 1.9999999999999574E-002
3892 (PID.TID 0000.0001) System time: 0.0000000000000000
3893 (PID.TID 0000.0001) Wall clock time: 2.8737068176269531E-002
3894 (PID.TID 0000.0001) No. starts: 72
3895 (PID.TID 0000.0001) No. stops: 72
3896 (PID.TID 0000.0001) // ======================================================
3897 (PID.TID 0000.0001) // Tile <-> Tile communication statistics
3898 (PID.TID 0000.0001) // ======================================================
3899 (PID.TID 0000.0001) // o Tile number: 000001
3900 (PID.TID 0000.0001) // No. X exchanges = 0
3901 (PID.TID 0000.0001) // Max. X spins = 0
3902 (PID.TID 0000.0001) // Min. X spins = 1000000000
3903 (PID.TID 0000.0001) // Total. X spins = 0
3904 (PID.TID 0000.0001) // Avg. X spins = 0.00E+00
3905 (PID.TID 0000.0001) // No. Y exchanges = 0
3906 (PID.TID 0000.0001) // Max. Y spins = 0
3907 (PID.TID 0000.0001) // Min. Y spins = 1000000000
3908 (PID.TID 0000.0001) // Total. Y spins = 0
3909 (PID.TID 0000.0001) // Avg. Y spins = 0.00E+00
3910 (PID.TID 0000.0001) // o Tile number: 000002
3911 (PID.TID 0000.0001) // No. X exchanges = 0
3912 (PID.TID 0000.0001) // Max. X spins = 0
3913 (PID.TID 0000.0001) // Min. X spins = 1000000000
3914 (PID.TID 0000.0001) // Total. X spins = 0
3915 (PID.TID 0000.0001) // Avg. X spins = 0.00E+00
3916 (PID.TID 0000.0001) // No. Y exchanges = 0
3917 (PID.TID 0000.0001) // Max. Y spins = 0
3918 STOP NORMAL END
3919 ** WARNING ** SEAICE_CHECK: turbulent ice-ocn heat flux default changed.
3920 ** WARNING ** SEAICE_CHECK: To recover the old default : set
3921 ** WARNING ** SEAICE_CHECK: SEAICE_mcPheePiston to the first ocn level
3922 ** WARNING ** SEAICE_CHECK: thickness divided by SEAICE_deltaTtherm.
3923 ** WARNING ** SEAICE_CHECK: variable freezing point is new default.
3924 ** WARNING ** SEAICE_CHECK: To recover old constant freezing :
3925 ** WARNING ** SEAICE_CHECK: set SEAICE_tempFrz0 = -1.96 and
3926 ** WARNING ** SEAICE_CHECK: SEAICE_dTempFrz_dS = 0.
3927 (PID.TID 0000.0001) // Min. Y spins = 1000000000
3928 (PID.TID 0000.0001) // Total. Y spins = 0
3929 (PID.TID 0000.0001) // Avg. Y spins = 0.00E+00
3930 (PID.TID 0000.0001) // o Tile number: 000003
3931 (PID.TID 0000.0001) // No. X exchanges = 0
3932 (PID.TID 0000.0001) // Max. X spins = 0
3933 (PID.TID 0000.0001) // Min. X spins = 1000000000
3934 (PID.TID 0000.0001) // Total. X spins = 0
3935 (PID.TID 0000.0001) // Avg. X spins = 0.00E+00
3936 (PID.TID 0000.0001) // No. Y exchanges = 0
3937 (PID.TID 0000.0001) // Max. Y spins = 0
3938 (PID.TID 0000.0001) // Min. Y spins = 1000000000
3939 (PID.TID 0000.0001) // Total. Y spins = 0
3940 (PID.TID 0000.0001) // Avg. Y spins = 0.00E+00
3941 (PID.TID 0000.0001) // o Tile number: 000004
3942 (PID.TID 0000.0001) // No. X exchanges = 0
3943 (PID.TID 0000.0001) // Max. X spins = 0
3944 (PID.TID 0000.0001) // Min. X spins = 1000000000
3945 (PID.TID 0000.0001) // Total. X spins = 0
3946 (PID.TID 0000.0001) // Avg. X spins = 0.00E+00
3947 (PID.TID 0000.0001) // No. Y exchanges = 0
3948 (PID.TID 0000.0001) // Max. Y spins = 0
3949 (PID.TID 0000.0001) // Min. Y spins = 1000000000
3950 (PID.TID 0000.0001) // Total. Y spins = 0
3951 (PID.TID 0000.0001) // Avg. Y spins = 0.00E+00
3952 (PID.TID 0000.0001) // o Tile number: 000005
3953 (PID.TID 0000.0001) // No. X exchanges = 0
3954 (PID.TID 0000.0001) // Max. X spins = 0
3955 (PID.TID 0000.0001) // Min. X spins = 1000000000
3956 (PID.TID 0000.0001) // Total. X spins = 0
3957 (PID.TID 0000.0001) // Avg. X spins = 0.00E+00
3958 (PID.TID 0000.0001) // No. Y exchanges = 0
3959 (PID.TID 0000.0001) // Max. Y spins = 0
3960 (PID.TID 0000.0001) // Min. Y spins = 1000000000
3961 (PID.TID 0000.0001) // Total. Y spins = 0
3962 (PID.TID 0000.0001) // Avg. Y spins = 0.00E+00
3963 (PID.TID 0000.0001) // o Tile number: 000006
3964 (PID.TID 0000.0001) // No. X exchanges = 0
3965 (PID.TID 0000.0001) // Max. X spins = 0
3966 (PID.TID 0000.0001) // Min. X spins = 1000000000
3967 (PID.TID 0000.0001) // Total. X spins = 0
3968 (PID.TID 0000.0001) // Avg. X spins = 0.00E+00
3969 (PID.TID 0000.0001) // No. Y exchanges = 0
3970 (PID.TID 0000.0001) // Max. Y spins = 0
3971 (PID.TID 0000.0001) // Min. Y spins = 1000000000
3972 (PID.TID 0000.0001) // Total. Y spins = 0
3973 (PID.TID 0000.0001) // Avg. Y spins = 0.00E+00
3974 (PID.TID 0000.0001) // o Tile number: 000007
3975 (PID.TID 0000.0001) // No. X exchanges = 0
3976 (PID.TID 0000.0001) // Max. X spins = 0
3977 (PID.TID 0000.0001) // Min. X spins = 1000000000
3978 (PID.TID 0000.0001) // Total. X spins = 0
3979 (PID.TID 0000.0001) // Avg. X spins = 0.00E+00
3980 (PID.TID 0000.0001) // No. Y exchanges = 0
3981 (PID.TID 0000.0001) // Max. Y spins = 0
3982 (PID.TID 0000.0001) // Min. Y spins = 1000000000
3983 (PID.TID 0000.0001) // Total. Y spins = 0
3984 (PID.TID 0000.0001) // Avg. Y spins = 0.00E+00
3985 (PID.TID 0000.0001) // o Tile number: 000008
3986 (PID.TID 0000.0001) // No. X exchanges = 0
3987 (PID.TID 0000.0001) // Max. X spins = 0
3988 (PID.TID 0000.0001) // Min. X spins = 1000000000
3989 (PID.TID 0000.0001) // Total. X spins = 0
3990 (PID.TID 0000.0001) // Avg. X spins = 0.00E+00
3991 (PID.TID 0000.0001) // No. Y exchanges = 0
3992 (PID.TID 0000.0001) // Max. Y spins = 0
3993 (PID.TID 0000.0001) // Min. Y spins = 1000000000
3994 (PID.TID 0000.0001) // Total. Y spins = 0
3995 (PID.TID 0000.0001) // Avg. Y spins = 0.00E+00
3996 (PID.TID 0000.0001) // o Tile number: 000009
3997 (PID.TID 0000.0001) // No. X exchanges = 0
3998 (PID.TID 0000.0001) // Max. X spins = 0
3999 (PID.TID 0000.0001) // Min. X spins = 1000000000
4000 (PID.TID 0000.0001) // Total. X spins = 0
4001 (PID.TID 0000.0001) // Avg. X spins = 0.00E+00
4002 (PID.TID 0000.0001) // No. Y exchanges = 0
4003 (PID.TID 0000.0001) // Max. Y spins = 0
4004 (PID.TID 0000.0001) // Min. Y spins = 1000000000
4005 (PID.TID 0000.0001) // Total. Y spins = 0
4006 (PID.TID 0000.0001) // Avg. Y spins = 0.00E+00
4007 (PID.TID 0000.0001) // o Tile number: 000010
4008 (PID.TID 0000.0001) // No. X exchanges = 0
4009 (PID.TID 0000.0001) // Max. X spins = 0
4010 (PID.TID 0000.0001) // Min. X spins = 1000000000
4011 (PID.TID 0000.0001) // Total. X spins = 0
4012 (PID.TID 0000.0001) // Avg. X spins = 0.00E+00
4013 (PID.TID 0000.0001) // No. Y exchanges = 0
4014 (PID.TID 0000.0001) // Max. Y spins = 0
4015 (PID.TID 0000.0001) // Min. Y spins = 1000000000
4016 (PID.TID 0000.0001) // Total. Y spins = 0
4017 (PID.TID 0000.0001) // Avg. Y spins = 0.00E+00
4018 (PID.TID 0000.0001) // o Tile number: 000011
4019 (PID.TID 0000.0001) // No. X exchanges = 0
4020 (PID.TID 0000.0001) // Max. X spins = 0
4021 (PID.TID 0000.0001) // Min. X spins = 1000000000
4022 (PID.TID 0000.0001) // Total. X spins = 0
4023 (PID.TID 0000.0001) // Avg. X spins = 0.00E+00
4024 (PID.TID 0000.0001) // No. Y exchanges = 0
4025 (PID.TID 0000.0001) // Max. Y spins = 0
4026 (PID.TID 0000.0001) // Min. Y spins = 1000000000
4027 (PID.TID 0000.0001) // Total. Y spins = 0
4028 (PID.TID 0000.0001) // Avg. Y spins = 0.00E+00
4029 (PID.TID 0000.0001) // o Tile number: 000012
4030 (PID.TID 0000.0001) // No. X exchanges = 0
4031 (PID.TID 0000.0001) // Max. X spins = 0
4032 (PID.TID 0000.0001) // Min. X spins = 1000000000
4033 (PID.TID 0000.0001) // Total. X spins = 0
4034 (PID.TID 0000.0001) // Avg. X spins = 0.00E+00
4035 (PID.TID 0000.0001) // No. Y exchanges = 0
4036 (PID.TID 0000.0001) // Max. Y spins = 0
4037 (PID.TID 0000.0001) // Min. Y spins = 1000000000
4038 (PID.TID 0000.0001) // Total. Y spins = 0
4039 (PID.TID 0000.0001) // Avg. Y spins = 0.00E+00
4040 (PID.TID 0000.0001) // o Thread number: 000001
4041 (PID.TID 0000.0001) // No. barriers = 24998
4042 (PID.TID 0000.0001) // Max. barrier spins = 1
4043 (PID.TID 0000.0001) // Min. barrier spins = 1
4044 (PID.TID 0000.0001) // Total barrier spins = 24998
4045 (PID.TID 0000.0001) // Avg. barrier spins = 1.00E+00
4046 PROGRAM MAIN: Execution ended Normally

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