/[MITgcm]/MITgcm/model/src/config_summary.F
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Contents of /MITgcm/model/src/config_summary.F

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Revision 1.64 - (show annotations) (download)
Tue Nov 2 00:38:46 2004 UTC (19 years, 7 months ago) by jmc
Branch: MAIN
Changes since 1.63: +2 -2 lines
fix typo error

1 C $Header: /u/gcmpack/MITgcm/model/src/config_summary.F,v 1.63 2004/10/29 16:30:11 jmc Exp $
2 C $Name: $
3
4 #include "CPP_OPTIONS.h"
5
6 C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
7 CBOP
8 C !ROUTINE: CONFIG_SUMMARY
9
10 C !INTERFACE:
11 SUBROUTINE CONFIG_SUMMARY( myThid )
12
13 C !DESCRIPTION:
14 C This routine summarizes the model parameter settings by writing a
15 C tabulated list of the kernel model configuration variables. It
16 C describes all the parameter settings in force and the meaning and
17 C units of those parameters. Individal packages report a similar
18 C table for each package using the same format as employed here. If
19 C parameters are missing or incorrectly described or dimensioned
20 C please contact <MITgcm-support@mitgcm.org>
21
22 C !USES:
23 IMPLICIT NONE
24 #include "SIZE.h"
25 #include "EEPARAMS.h"
26 #include "PARAMS.h"
27 #ifdef ALLOW_MNC
28 #include "MNC_PARAMS.h"
29 #endif
30 #include "EOS.h"
31 #include "GRID.h"
32 #include "DYNVARS.h"
33
34 C !INPUT/OUTPUT PARAMETERS:
35 C myThid :: Number of this instance of CONFIG_SUMMARY
36 INTEGER myThid
37 CEOP
38
39 C !LOCAL VARIABLES:
40 C msgBuf :: Temp. for building output string.
41 C I,J,K :: Loop counters.
42 C bi,bj :: Tile loop counters.
43 C xcoord :: Temps. for building lists of values for uni-dimensionally
44 C ycoord :: varying parameters.
45 C zcoord ::
46 CHARACTER*(MAX_LEN_MBUF) msgBuf
47 INTEGER I,J,K
48 INTEGER bi, bj
49 _RL xcoord(Nx)
50 _RL ycoord(Ny)
51 _RL rcoord(Nr+1)
52 INTEGER coordLine
53 INTEGER tileLine
54
55
56 _BARRIER
57 _BEGIN_MASTER(myThid)
58
59 WRITE(msgBuf,'(A)')
60 &'// ======================================================='
61 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
62 & SQUEEZE_RIGHT , 1)
63 WRITE(msgBuf,'(A)') '// Model configuration'
64 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
65 & SQUEEZE_RIGHT , 1)
66 WRITE(msgBuf,'(A)')
67 &'// ======================================================='
68 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
69 & SQUEEZE_RIGHT , 1)
70
71 WRITE(msgBuf,'(A)') '// '
72 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
73 & SQUEEZE_RIGHT , 1)
74 WRITE(msgBuf,'(A)')
75 & '// "Physical" paramters ( PARM01 in namelist ) '
76 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
77 & SQUEEZE_RIGHT , 1)
78 WRITE(msgBuf,'(A)') '// '
79 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
80 & SQUEEZE_RIGHT , 1)
81 WRITE(msgBuf,'(A,A40)') 'buoyancyRelation = ', buoyancyRelation
82 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
83 & SQUEEZE_RIGHT , 1)
84 CALL WRITE_0D_L( fluidIsAir, INDEX_NONE,
85 & 'fluidIsAir =', ' /* fluid major constituent is Air */')
86 CALL WRITE_0D_L( fluidIsWater, INDEX_NONE,
87 & 'fluidIsWater=', ' /* fuild major constituent is Water */')
88 CALL WRITE_0D_L( usingPCoords, INDEX_NONE,
89 & 'usingPCoords =', ' /* use p (or p*) vertical coordinate */')
90 CALL WRITE_0D_L( usingZCoords, INDEX_NONE,
91 & 'usingZCoords =', ' /* use z (or z*) vertical coordinate */')
92 CALL WRITE_1D_R8( tRef, Nr, INDEX_K,'tRef =',
93 &' /* Reference temperature profile ( oC or oK ) */')
94 CALL WRITE_1D_R8( sRef, Nr, INDEX_K,'sRef =',
95 &' /* Reference salinity profile ( ppt ) */')
96 CALL WRITE_0D_R8( viscAh, INDEX_NONE,'viscAh =',
97 &' /* Lateral eddy viscosity ( m^2/s ) */')
98 IF ( viscAhD.NE.viscAh )
99 & CALL WRITE_0D_R8( viscAhD, INDEX_NONE,'viscAhD =',
100 & ' /* Lateral eddy viscosity (Divergence)( m^2/s ) */')
101 IF ( viscAhZ.NE.viscAh )
102 & CALL WRITE_0D_R8( viscAhZ, INDEX_NONE,'viscAhZ =',
103 & ' /* Lateral eddy viscosity (Vorticity) ( m^2/s ) */')
104 CALL WRITE_0D_R8( viscAhMax, INDEX_NONE,'viscAhMax =',
105 &' /* Maximum lateral eddy viscosity ( m^2/s ) */')
106 CALL WRITE_0D_R8( viscAhGrid, INDEX_NONE,'viscAhGrid =',
107 &' /* Grid dependent lateral eddy viscosity ( non-dim. ) */')
108 CALL WRITE_0D_R8( viscC2leith, INDEX_NONE,'viscC2leith =',
109 &' /* Leith harmonic viscosity factor ( non-dom. ) */')
110 CALL WRITE_0D_R8( viscA4, INDEX_NONE,'viscA4 =',
111 &' /* Lateral biharmonic viscosity ( m^4/s ) */')
112 IF ( viscA4D.NE.viscA4 )
113 & CALL WRITE_0D_R8( viscA4D, INDEX_NONE,'viscA4D =',
114 & ' /* Lateral biharmonic viscosity (Divergence)( m^4/s ) */')
115 IF ( viscA4Z.NE.viscA4 )
116 & CALL WRITE_0D_R8( viscA4Z, INDEX_NONE,'viscA4Z =',
117 & ' /* Lateral biharmonic viscosity (Vorticity) ( m^4/s ) */')
118 CALL WRITE_0D_R8( viscA4Max, INDEX_NONE,'viscA4Max =',
119 &' /* Maximum biharmonic viscosity ( m^2/s ) */')
120 CALL WRITE_0D_R8( viscA4Grid, INDEX_NONE,'viscA4Grid =',
121 &' /* Grid dependent biharmonic viscosity ( non-dim. ) */')
122 CALL WRITE_0D_R8( viscC4leith, INDEX_NONE,'viscC4leith =',
123 &' /* Leith biharmonic viscosity factor ( non-dom. ) */')
124 CALL WRITE_0D_L( no_slip_sides, INDEX_NONE,
125 & 'no_slip_sides =', ' /* Viscous BCs: No-slip sides */')
126 CALL WRITE_0D_R8( viscAr, INDEX_NONE,'viscAr =',
127 &' /* Vertical eddy viscosity ( units of r^2/s ) */')
128 CALL WRITE_0D_L( no_slip_bottom, INDEX_NONE,
129 & 'no_slip_bottom =', ' /* Viscous BCs: No-slip bottom */')
130 CALL WRITE_0D_R8( diffKhT, INDEX_NONE,'diffKhT =',
131 &' /* Laplacian diffusion of heat laterally ( m^2/s ) */')
132 CALL WRITE_0D_R8( diffK4T, INDEX_NONE,'diffK4T =',
133 &' /* Bihaarmonic diffusion of heat laterally ( m^4/s ) */')
134 CALL WRITE_0D_R8( diffKhS, INDEX_NONE,'diffKhS =',
135 &' /* Laplacian diffusion of salt laterally ( m^2/s ) */')
136 CALL WRITE_0D_R8( diffK4S, INDEX_NONE,'diffK4S =',
137 &' /* Bihaarmonic diffusion of salt laterally ( m^4/s ) */')
138 CALL WRITE_1D_R8( diffKrNrT, Nr, INDEX_K,'diffKrNrT =',
139 & ' /* vertical profile of vertical diffusion of Temp ( m^2/s )*/')
140 CALL WRITE_1D_R8( diffKrNrS, Nr, INDEX_K,'diffKrNrS =',
141 & ' /* vertical profile of vertical diffusion of Salt ( m^2/s )*/')
142 CALL WRITE_0D_R8( diffKrBL79surf, INDEX_NONE,'diffKrBL79surf =',
143 &' /* Surface diffusion for Bryan and Lewis 1979 ( m^2/s ) */')
144 CALL WRITE_0D_R8( diffKrBL79deep, INDEX_NONE,'diffKrBL79deep =',
145 &' /* Deep diffusion for Bryan and Lewis 1979 ( m^2/s ) */')
146 CALL WRITE_0D_R8( diffKrBL79scl, INDEX_NONE,'diffKrBL79scl =',
147 &' /* Depth scale for Bryan and Lewis 1979 ( m ) */')
148 CALL WRITE_0D_R8( diffKrBL79Ho, INDEX_NONE,'diffKrBL79Ho =',
149 &' /* Turning depth for Bryan and Lewis 1979 ( m ) */')
150 WRITE(msgBuf,'(2A)') ' Equation of State : eosType = ', eosType
151 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
152 & SQUEEZE_RIGHT , 1)
153 CALL WRITE_0D_R8( tAlpha, INDEX_NONE,'tAlpha =',
154 &' /* Linear EOS thermal expansion coefficient ( 1/degree ) */')
155 CALL WRITE_0D_R8( sBeta, INDEX_NONE,'sBeta =',
156 &' /* Linear EOS haline contraction coefficient ( 1/ppt ) */')
157 IF ( eosType .EQ. 'POLY3' ) THEN
158 WRITE(msgBuf,'(A)')
159 & '// Polynomial EQS parameters ( from POLY3.COEFFS ) '
160 DO K = 1, Nr
161 WRITE(msgBuf,'(I3,13F8.3)')
162 & K,eosRefT(K),eosRefS(K),eosSig0(K), (eosC(I,K),I=1,9)
163 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
164 & SQUEEZE_RIGHT , 1)
165 ENDDO
166 ENDIF
167 IF ( fluidIsAir ) THEN
168 CALL WRITE_0D_R8( atm_Rd, INDEX_NONE, 'atm_Rd =',
169 & ' /* gas constant for dry air ( J/kg/K ) */')
170 CALL WRITE_0D_R8( atm_Cp, INDEX_NONE, 'atm_Cp =',
171 & ' /* specific heat (Cp) of dry air ( J/kg/K ) */')
172 CALL WRITE_0D_R8( atm_kappa, INDEX_NONE, 'atm_kappa =',
173 & ' /* kappa (=Rd/Cp ) of dry air */')
174 CALL WRITE_0D_R8( atm_Rq, INDEX_NONE, 'atm_Rq =',
175 & ' /* water vap. specific vol. anomaly relative to dry air */')
176 CALL WRITE_0D_R8( atm_Po, INDEX_NONE, 'atm_Po =',
177 & ' /* standard reference pressure ( Pa ) */')
178 CALL WRITE_0D_I( integr_GeoPot, INDEX_NONE, 'integr_GeoPot =',
179 & ' /* select how the geopotential is integrated */')
180 CALL WRITE_0D_I( selectFindRoSurf, INDEX_NONE,
181 & 'selectFindRoSurf=',
182 & ' /* select how Surf.Ref. pressure is defined */')
183 ENDIF
184 CALL WRITE_0D_R8( rhonil, INDEX_NONE,'rhonil =',
185 &' /* Reference density ( kg/m^3 ) */')
186 CALL WRITE_0D_R8( rhoConst, INDEX_NONE,'rhoConst =',
187 &' /* Reference density ( kg/m^3 ) */')
188 CALL WRITE_0D_R8( rhoConstFresh, INDEX_NONE,'rhoConstFresh =',
189 &' /* Reference density ( kg/m^3 ) */')
190 CALL WRITE_0D_R8( gravity, INDEX_NONE,'gravity =',
191 &' /* Gravitational acceleration ( m/s^2 ) */')
192 CALL WRITE_0D_R8( gBaro, INDEX_NONE,'gBaro =',
193 &' /* Barotropic gravity ( m/s^2 ) */')
194 CALL WRITE_0D_R8(rotationPeriod,INDEX_NONE,'rotationPeriod =',
195 &' /* Rotation Period ( s ) */')
196 CALL WRITE_0D_R8( omega, INDEX_NONE,'omega =',
197 &' /* Angular velocity ( rad/s ) */')
198 CALL WRITE_0D_R8( f0, INDEX_NONE,'f0 =',
199 &' /* Reference coriolis parameter ( 1/s ) */')
200 CALL WRITE_0D_R8( beta, INDEX_NONE,'beta =',
201 &' /* Beta ( 1/(m.s) ) */')
202
203 CALL WRITE_0D_R8( freeSurfFac, INDEX_NONE,'freeSurfFac =',
204 &' /* Implicit free surface factor */')
205 CALL WRITE_0D_L( implicitFreeSurface, INDEX_NONE,
206 & 'implicitFreeSurface =',
207 &' /* Implicit free surface on/off flag */')
208 CALL WRITE_0D_L( rigidLid, INDEX_NONE,
209 & 'rigidLid =',
210 &' /* Rigid lid on/off flag */')
211 CALL WRITE_0D_R8( implicSurfPress, INDEX_NONE,
212 &'implicSurfPress =',
213 &' /* Surface Pressure implicit factor (0-1)*/')
214 CALL WRITE_0D_R8( implicDiv2Dflow, INDEX_NONE,
215 &'implicDiv2Dflow =',
216 &' /* Barot. Flow Div. implicit factor (0-1)*/')
217 CALL WRITE_0D_L( exactConserv, INDEX_NONE,
218 &'exactConserv =',
219 &' /* Exact Volume Conservation on/off flag*/')
220 CALL WRITE_0D_L( uniformLin_PhiSurf, INDEX_NONE,
221 &'uniformLin_PhiSurf =',
222 &' /* use uniform Bo_surf on/off flag*/')
223 CALL WRITE_0D_I( nonlinFreeSurf, INDEX_NONE,
224 &'nonlinFreeSurf =',
225 &' /* Non-linear Free Surf. options (-1,0,1,2,3)*/')
226 WRITE(msgBuf,'(2A)') ' -1,0= Off ; 1,2,3= On,',
227 & ' 2=+rescale gU,gV, 3=+update cg2d solv.'
228 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
229 & SQUEEZE_RIGHT , 1)
230 CALL WRITE_0D_R8( hFacInf, INDEX_NONE,
231 &'hFacInf =',
232 &' /* lower threshold for hFac (nonlinFreeSurf only)*/')
233 CALL WRITE_0D_R8( hFacSup, INDEX_NONE,
234 &'hFacSup =',
235 &' /* upper threshold for hFac (nonlinFreeSurf only)*/')
236 CALL WRITE_0D_I( select_rStar, INDEX_NONE,
237 &'select_rStar =',
238 &' /* r* Coordinate options (not yet implemented)*/')
239 CALL WRITE_0D_L( useRealFreshWaterFlux, INDEX_NONE,
240 &'useRealFreshWaterFlux =',
241 &' /* Real Fresh Water Flux on/off flag*/')
242 IF (useRealFreshWaterFlux .AND. nonlinFreeSurf.GT.0) THEN
243 CALL WRITE_0D_R8( temp_EvPrRn, INDEX_NONE,
244 &'temp_EvPrRn =',
245 &' /* Temp. of Evap/Prec/R (UNSET=use local T)(oC)*/')
246 CALL WRITE_0D_R8( salt_EvPrRn, INDEX_NONE,
247 &'salt_EvPrRn =',
248 &' /* Salin. of Evap/Prec/R (UNSET=use local S)(ppt)*/')
249 CALL WRITE_0D_R8( trac_EvPrRn, INDEX_NONE,
250 &'trac_EvPrRn =',
251 &' /* Tracer in Evap/Prec/R (UNSET=use local Tr)*/')
252 ELSE
253 CALL WRITE_0D_R8( convertFW2Salt, INDEX_NONE,
254 &'convertFW2Salt =',
255 &' /* convert F.W. Flux to Salt Flux (-1=use local S)(ppt)*/')
256 ENDIF
257
258 CALL WRITE_0D_L( nonHydrostatic, INDEX_NONE,
259 & 'nonHydrostatic =', ' /* Non-Hydrostatic on/off flag */')
260 CALL WRITE_0D_L( momStepping, INDEX_NONE,
261 & 'momStepping =', ' /* Momentum equation on/off flag */')
262 CALL WRITE_0D_L( momAdvection, INDEX_NONE,
263 & 'momAdvection =', ' /* Momentum advection on/off flag */')
264 CALL WRITE_0D_L( momViscosity, INDEX_NONE,
265 & 'momViscosity =', ' /* Momentum viscosity on/off flag */')
266 CALL WRITE_0D_L( momImplVertAdv, INDEX_NONE, 'momImplVertAdv =',
267 & '/* Momentum implicit vert. advection on/off*/')
268 CALL WRITE_0D_L( implicitViscosity, INDEX_NONE,
269 & 'implicitViscosity =', ' /* Implicit viscosity on/off flag */')
270 CALL WRITE_0D_L( useCoriolis, INDEX_NONE,
271 & 'useCoriolis =', ' /* Coriolis on/off flag */')
272 CALL WRITE_0D_L( useCDscheme, INDEX_NONE,
273 & 'useCDscheme =', ' /* CD scheme on/off flag */')
274 CALL WRITE_0D_L( useJamartWetPoints, INDEX_NONE,
275 & 'useJamartWetPoints=',' /* Coriolis WetPoints method flag */')
276 CALL WRITE_0D_L( useJamartMomAdv, INDEX_NONE,
277 & 'useJamartMomAdv=',' /* V.I. Non-linear terms Jamart flag */')
278 CALL WRITE_0D_L( SadournyCoriolis, INDEX_NONE,
279 & 'SadournyCoriolis=',' /* Sadourny Coriolis discr. flag */')
280 CALL WRITE_0D_L( upwindVorticity, INDEX_NONE,
281 & 'upwindVorticity=',' /* Upwind bias vorticity flag */')
282 CALL WRITE_0D_L( useAbsVorticity, INDEX_NONE,
283 & 'useAbsVorticity=',' /* Work with f+zeta in Coriolis */')
284 CALL WRITE_0D_L( highOrderVorticity, INDEX_NONE,
285 & 'highOrderVorticity=',' /* High order interp. of vort. flag */')
286 CALL WRITE_0D_L( momForcing, INDEX_NONE,
287 & 'momForcing =', ' /* Momentum forcing on/off flag */')
288 CALL WRITE_0D_L( momPressureForcing, INDEX_NONE,
289 & 'momPressureForcing =',
290 & ' /* Momentum pressure term on/off flag */')
291 CALL WRITE_0D_L( staggerTimeStep, INDEX_NONE,
292 & 'staggerTimeStep =',
293 &' /* Stagger time stepping on/off flag */')
294 CALL WRITE_0D_L( multiDimAdvection, INDEX_NONE,
295 & 'multiDimAdvection =',
296 &' /* enable/disable Multi-Dim Advection */')
297 CALL WRITE_0D_L( useMultiDimAdvec, INDEX_NONE,
298 & 'useMultiDimAdvec =',
299 &' /* Multi-Dim Advection is/is-not used */')
300 CALL WRITE_0D_L( implicitDiffusion, INDEX_NONE,
301 & 'implicitDiffusion =','/* Implicit Diffusion on/off flag */')
302 CALL WRITE_0D_L( tempStepping, INDEX_NONE,
303 & 'tempStepping =', ' /* Temperature equation on/off flag */')
304 CALL WRITE_0D_L( tempAdvection, INDEX_NONE,
305 & 'tempAdvection=', ' /* Temperature advection on/off flag */')
306 CALL WRITE_0D_L( tempImplVertAdv,INDEX_NONE,'tempImplVertAdv =',
307 & '/* Temp. implicit vert. advection on/off */')
308 CALL WRITE_0D_L( tempForcing, INDEX_NONE,
309 & 'tempForcing =', ' /* Temperature forcing on/off flag */')
310 CALL WRITE_0D_L( saltStepping, INDEX_NONE,
311 & 'saltStepping =', ' /* Salinity equation on/off flag */')
312 CALL WRITE_0D_L( saltAdvection, INDEX_NONE,
313 & 'saltAdvection=', ' /* Salinity advection on/off flag */')
314 CALL WRITE_0D_L( saltImplVertAdv,INDEX_NONE,'saltImplVertAdv =',
315 & '/* Sali. implicit vert. advection on/off */')
316 CALL WRITE_0D_L( saltForcing, INDEX_NONE,
317 & 'saltForcing =', ' /* Salinity forcing on/off flag */')
318 WRITE(msgBuf,'(A)') '// '
319 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
320 & SQUEEZE_RIGHT , 1)
321
322 WRITE(msgBuf,'(A)')
323 & '// Elliptic solver(s) paramters ( PARM02 in namelist ) '
324 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
325 & SQUEEZE_RIGHT , 1)
326 WRITE(msgBuf,'(A)') '// '
327 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
328 & SQUEEZE_RIGHT , 1)
329 CALL WRITE_0D_I( cg2dMaxIters, INDEX_NONE,'cg2dMaxIters =',
330 &' /* Upper limit on 2d con. grad iterations */')
331 CALL WRITE_0D_I( cg2dChkResFreq, INDEX_NONE,'cg2dChkResFreq =',
332 &' /* 2d con. grad convergence test frequency */')
333 CALL WRITE_0D_R8( cg2dTargetResidual, INDEX_NONE,
334 & 'cg2dTargetResidual =',
335 &' /* 2d con. grad target residual */')
336 CALL WRITE_0D_R8( cg2dTargetResWunit, INDEX_NONE,
337 & 'cg2dTargetResWunit =',
338 &' /* CG2d target residual [W units] */')
339 CALL WRITE_0D_I( cg2dPreCondFreq, INDEX_NONE,'cg2dPreCondFreq =',
340 &' /* Freq. for updating cg2d preconditioner */')
341
342 WRITE(msgBuf,'(A)') '// '
343 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
344 & SQUEEZE_RIGHT , 1)
345 WRITE(msgBuf,'(A)')
346 & '// Time stepping paramters ( PARM03 in namelist ) '
347 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
348 & SQUEEZE_RIGHT , 1)
349 WRITE(msgBuf,'(A)') '// '
350 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
351 & SQUEEZE_RIGHT , 1)
352 CALL WRITE_0D_I( nIter0, INDEX_NONE,'nIter0 =',
353 &' /* Base timestep number */')
354 CALL WRITE_0D_I( nTimeSteps, INDEX_NONE,'nTimeSteps =',
355 &' /* Number of timesteps */')
356 CALL WRITE_0D_R8( deltaTmom, INDEX_NONE,'deltatTmom =',
357 &' /* Momentum equation timestep ( s ) */')
358 CALL WRITE_0D_R8( deltaTfreesurf,INDEX_NONE,'deltaTfreesurf =',
359 &' /* FreeSurface equation timestep ( s ) */')
360 CALL WRITE_0D_R8( deltaTtracer, INDEX_NONE,'deltatTtracer =',
361 &' /* Tracer equation timestep ( s ) */')
362 CALL WRITE_0D_R8( deltaTClock, INDEX_NONE,'deltatTClock =',
363 &' /* Model clock timestep ( s ) */')
364 CALL WRITE_0D_R8( cAdjFreq, INDEX_NONE,'cAdjFreq =',
365 &' /* Convective adjustment interval ( s ) */')
366 CALL WRITE_0D_L( forcing_In_AB,INDEX_NONE,'forcing_In_AB =',
367 &' /* put T,S Forcing in Adams-Bash. stepping */')
368 CALL WRITE_0D_R8( abeps, INDEX_NONE,'abeps =',
369 &' /* Adams-Bashforth stabilizing weight */')
370 IF (useCDscheme) THEN
371 CALL WRITE_0D_R8( tauCD, INDEX_NONE,'tauCD =',
372 &' /* CD coupling time-scale ( s ) */')
373 CALL WRITE_0D_R8( rCD, INDEX_NONE,'rCD =',
374 &' /* Normalised CD coupling parameter */')
375 ENDIF
376 CALL WRITE_0D_R8( startTime, INDEX_NONE,'startTime =',
377 &' /* Run start time ( s ). */')
378 CALL WRITE_0D_R8( endTime, INDEX_NONE,'endTime =',
379 &' /* Integration ending time ( s ). */')
380 CALL WRITE_0D_R8( pChkPtFreq, INDEX_NONE,'pChkPtFreq =',
381 &' /* Permanent restart/checkpoint file interval ( s ). */')
382 CALL WRITE_0D_R8( chkPtFreq, INDEX_NONE,'chkPtFreq =',
383 &' /* Rolling restart/checkpoint file interval ( s ). */')
384 CALL WRITE_0D_L(pickup_write_mdsio,INDEX_NONE,
385 & 'pickup_write_mdsio =', ' /* Model IO flag. */')
386 CALL WRITE_0D_L(pickup_read_mdsio,INDEX_NONE,
387 & 'pickup_read_mdsio =', ' /* Model IO flag. */')
388 #ifdef ALLOW_MNC
389 CALL WRITE_0D_L(pickup_write_mnc,INDEX_NONE,
390 & 'pickup_write_mnc =', ' /* Model IO flag. */')
391 CALL WRITE_0D_L(pickup_read_mnc,INDEX_NONE,
392 & 'pickup_read_mnc =', ' /* Model IO flag. */')
393 #endif
394 CALL WRITE_0D_L(pickup_write_immed,INDEX_NONE,
395 & 'pickup_write_immed =',' /* Model IO flag. */')
396 CALL WRITE_0D_R8( dumpFreq, INDEX_NONE,'dumpFreq =',
397 &' /* Model state write out interval ( s ). */')
398 CALL WRITE_0D_L(snapshot_mdsio,INDEX_NONE,
399 & 'snapshot_mdsio =', ' /* Model IO flag. */')
400 #ifdef ALLOW_MNC
401 CALL WRITE_0D_L(snapshot_mnc,INDEX_NONE,
402 & 'snapshot_mnc =', ' /* Model IO flag. */')
403 #endif
404 CALL WRITE_0D_R8( monitorFreq, INDEX_NONE,'monitorFreq =',
405 &' /* Monitor output interval ( s ). */')
406 CALL WRITE_0D_L(monitor_stdio,INDEX_NONE,
407 & 'monitor_stdio =', ' /* Model IO flag. */')
408 #ifdef ALLOW_MNC
409 CALL WRITE_0D_L(monitor_mnc,INDEX_NONE,
410 & 'monitor_mnc =', ' /* Model IO flag. */')
411 #endif
412 CALL WRITE_0D_R8( externForcingPeriod, INDEX_NONE,
413 & 'externForcingPeriod =', ' /* forcing period (s) */')
414 CALL WRITE_0D_R8( externForcingCycle, INDEX_NONE,
415 & 'externForcingCycle =', ' /* period of the cyle (s). */')
416 CALL WRITE_0D_R8( tauThetaClimRelax, INDEX_NONE,
417 & 'tauThetaClimRelax =', ' /* relaxation time scale (s) */')
418 CALL WRITE_0D_R8( tauSaltClimRelax, INDEX_NONE,
419 & 'tauSaltClimRelax =', ' /* relaxation time scale (s) */')
420 CALL WRITE_0D_R8( latBandClimRelax, INDEX_NONE,
421 & 'latBandClimRelax =', ' /* max. Lat. where relaxation */')
422 WRITE(msgBuf,'(A)') '// '
423 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
424 & SQUEEZE_RIGHT , 1)
425 WRITE(msgBuf,'(A)')
426 & '// Gridding paramters ( PARM04 in namelist ) '
427 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
428 & SQUEEZE_RIGHT , 1)
429 WRITE(msgBuf,'(A)') '// '
430 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
431 & SQUEEZE_RIGHT , 1)
432 CALL WRITE_0D_L( usingCartesianGrid, INDEX_NONE,
433 & 'usingCartesianGrid =',
434 &' /* Cartesian coordinates flag ( True / False ) */')
435 CALL WRITE_0D_L( usingSphericalPolarGrid, INDEX_NONE,
436 & 'usingSphericalPolarGrid =',
437 &' /* Spherical coordinates flag ( True / False ) */')
438 CALL WRITE_0D_L( usingCylindricalGrid, INDEX_NONE,
439 & 'usingCylindricalGrid =',
440 &' /* Spherical coordinates flag ( True / False ) */')
441 CALL WRITE_0D_L( groundAtK1, INDEX_NONE, 'groundAtK1 =',
442 &' /* Lower Boundary (ground) at the surface(k=1) ( T / F ) */')
443 CALL WRITE_0D_R8( Ro_SeaLevel, INDEX_NONE,'Ro_SeaLevel =',
444 &' /* r(1) ( units of r ) */')
445 CALL WRITE_0D_R8( rkFac, INDEX_NONE,'rkFac =',
446 &' /* minus Vertical index orientation */')
447 CALL WRITE_0D_R8( horiVertRatio, INDEX_NONE,'horiVertRatio =',
448 &' /* Ratio on units : Horiz - Vertical */')
449 c CALL WRITE_1D_R8( delZ,Nr, INDEX_K,'delZ = ',
450 c &' /* W spacing ( m ) */')
451 c CALL WRITE_1D_R8( delP,Nr, INDEX_K,'delP = ',
452 c &' /* W spacing ( Pa ) */')
453 c CALL WRITE_1D_R8( delR,Nr, INDEX_K,'delR = ',
454 c &' /* W spacing ( units of r ) */')
455 CALL WRITE_1D_R8( drC,Nr, INDEX_K,'drC = ',
456 &' /* C spacing ( units of r ) */')
457 CALL WRITE_1D_R8( drF,Nr, INDEX_K,'drF = ',
458 &' /* W spacing ( units of r ) */')
459 CALL WRITE_1D_R8( delX, Nx, INDEX_I,'delX = ',
460 &' /* U spacing ( m - cartesian, degrees - spherical ) */')
461 CALL WRITE_1D_R8( delY, Ny, INDEX_J,'delY = ',
462 &' /* V spacing ( m - cartesian, degrees - spherical ) */')
463 CALL WRITE_0D_R8( phiMin, INDEX_NONE,'phiMin = ',
464 &' /* South edge (ignored - cartesian, degrees - spherical ) */')
465 CALL WRITE_0D_R8( thetaMin, INDEX_NONE,'thetaMin = ',
466 &' /* West edge ( ignored - cartesian, degrees - spherical ) */')
467 CALL WRITE_0D_R8( rSphere, INDEX_NONE,'rSphere = ',
468 &' /* Radius ( ignored - cartesian, m - spherical ) */')
469 DO bi=1,nSx
470 DO I=1,sNx
471 xcoord((bi-1)*sNx+I) = xC(I,1,bi,1)
472 ENDDO
473 ENDDO
474 CALL WRITE_1D_R8( xcoord, sNx*nSx, INDEX_I,'xcoord = ',
475 &' /* P-point X coord ( m - cartesian, degrees - spherical ) */')
476 DO bj=1,nSy
477 DO J=1,sNy
478 ycoord((bj-1)*sNy+J) = yC(1,J,1,bj)
479 ENDDO
480 ENDDO
481 CALL WRITE_1D_R8( ycoord, sNy*nSy, INDEX_J,'ycoord = ',
482 &' /* P-point Y coord ( m - cartesian, degrees - spherical ) */')
483 DO K=1,Nr
484 rcoord(K) = rC(K)
485 ENDDO
486 CALL WRITE_1D_R8( rcoord, Nr, INDEX_K,'rcoord = ',
487 &' /* P-point R coordinate ( units of r ) */')
488 DO K=1,Nr+1
489 rcoord(K) = rF(K)
490 ENDDO
491 CALL WRITE_1D_R8( rcoord, Nr+1, INDEX_K,'rF = ',
492 &' /* W-Interf. R coordinate ( units of r ) */')
493
494 C Grid along selected grid lines
495 coordLine = 1
496 tileLine = 1
497 CALL WRITE_XY_XLINE_RS( dxF, coordLine, tileLine,
498 I 'dxF','( m - cartesian, degrees - spherical )')
499 CALL WRITE_XY_YLINE_RS( dxF, coordLine, tileLine,
500 I 'dxF','( m - cartesian, degrees - spherical )')
501 CALL WRITE_XY_XLINE_RS( dyF, coordLine, tileLine,
502 I 'dyF','( m - cartesian, degrees - spherical )')
503 CALL WRITE_XY_YLINE_RS( dyF, coordLine, tileLine,
504 I 'dyF','( m - cartesian, degrees - spherical )')
505 CALL WRITE_XY_XLINE_RS( dxG, coordLine, tileLine,
506 I 'dxG','( m - cartesian, degrees - spherical )')
507 CALL WRITE_XY_YLINE_RS( dxG, coordLine, tileLine,
508 I 'dxG','( m - cartesian, degrees - spherical )')
509 CALL WRITE_XY_XLINE_RS( dyG, coordLine, tileLine,
510 I 'dyG','( m - cartesian, degrees - spherical )')
511 CALL WRITE_XY_YLINE_RS( dyG, coordLine, tileLine,
512 I 'dyG','( m - cartesian, degrees - spherical )')
513 CALL WRITE_XY_XLINE_RS( dxC, coordLine, tileLine,
514 I 'dxC','( m - cartesian, degrees - spherical )')
515 CALL WRITE_XY_YLINE_RS( dxC, coordLine, tileLine,
516 I 'dxC','( m - cartesian, degrees - spherical )')
517 CALL WRITE_XY_XLINE_RS( dyC, coordLine, tileLine,
518 I 'dyC','( m - cartesian, degrees - spherical )')
519 CALL WRITE_XY_YLINE_RS( dyC, coordLine, tileLine,
520 I 'dyC','( m - cartesian, degrees - spherical )')
521 CALL WRITE_XY_XLINE_RS( dxV, coordLine, tileLine,
522 I 'dxV','( m - cartesian, degrees - spherical )')
523 CALL WRITE_XY_YLINE_RS( dxV, coordLine, tileLine,
524 I 'dxV','( m - cartesian, degrees - spherical )')
525 CALL WRITE_XY_XLINE_RS( dyU, coordLine, tileLine,
526 I 'dyU','( m - cartesian, degrees - spherical )')
527 CALL WRITE_XY_YLINE_RS( dyU, coordLine, tileLine,
528 I 'dyU','( m - cartesian, degrees - spherical )')
529 CALL WRITE_XY_XLINE_RS( rA, coordLine, tileLine,
530 I 'rA','( m - cartesian, degrees - spherical )')
531 CALL WRITE_XY_YLINE_RS( rA, coordLine, tileLine,
532 I 'rA','( m - cartesian, degrees - spherical )')
533 CALL WRITE_XY_XLINE_RS( rAw, coordLine, tileLine,
534 I 'rAw','( m - cartesian, degrees - spherical )')
535 CALL WRITE_XY_YLINE_RS( rAw, coordLine, tileLine,
536 I 'rAw','( m - cartesian, degrees - spherical )')
537 CALL WRITE_XY_XLINE_RS( rAs, coordLine, tileLine,
538 I 'rAs','( m - cartesian, degrees - spherical )')
539 CALL WRITE_XY_YLINE_RS( rAs, coordLine, tileLine,
540 I 'rAs','( m - cartesian, degrees - spherical )')
541
542 WRITE(msgBuf,'(A)') ' '
543 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
544 & SQUEEZE_RIGHT , 1)
545
546 _END_MASTER(myThid)
547 _BARRIER
548
549
550 RETURN
551 100 FORMAT(A,
552 &' '
553 &)
554 END
555

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