/[MITgcm]/MITgcm/model/src/config_summary.F
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revision 1.10 by cnh, Mon May 25 21:29:44 1998 UTC revision 1.89 by jmc, Fri Mar 24 16:25:49 2006 UTC
# Line 1  Line 1 
1  C $Header$  C $Header$
2    C $Name$
3    
4  #include "CPP_EEOPTIONS.h"  #include "PACKAGES_CONFIG.h"
5    #include "CPP_OPTIONS.h"
6    
7  CStartOfInterface  C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
8    CBOP
9    C     !ROUTINE: CONFIG_SUMMARY
10    
11    C     !INTERFACE:
12        SUBROUTINE CONFIG_SUMMARY( myThid )        SUBROUTINE CONFIG_SUMMARY( myThid )
 C     /==========================================================\  
 C     | SUBROUTINE CONFIG_SUMMARY                                |  
 C     | o Summarize model prognostic variables.                  |  
 C     |==========================================================|  
 C     | This routine writes a tabulated summary of the model     |  
 C     | configuration.                                           |  
 C     | Note                                                     |  
 C     |  1. Under multi-process parallelism the summary          |  
 C     |     is only given for the per-process data.              |  
 C     |  2. Under multi-threading the summary is produced by     |  
 C     |     the master thread. This threads reads data managed by|  
 C     |     other threads.                                       |  
 C     \==========================================================/  
13    
14  C     === Global variables ===  C     !DESCRIPTION:
15    C     This routine summarizes the model parameter settings by writing a
16    C     tabulated list of the kernel model configuration variables.  It
17    C     describes all the parameter settings in force and the meaning and
18    C     units of those parameters. Individal packages report a similar
19    C     table for each package using the same format as employed here. If
20    C     parameters are missing or incorrectly described or dimensioned
21    C     please contact <MITgcm-support@mitgcm.org>
22    
23    C     !USES:
24          IMPLICIT NONE
25  #include "SIZE.h"  #include "SIZE.h"
26  #include "EEPARAMS.h"  #include "EEPARAMS.h"
27  #include "PARAMS.h"  #include "PARAMS.h"
28    #include "EOS.h"
29  #include "GRID.h"  #include "GRID.h"
30  #include "DYNVARS.h"  #include "DYNVARS.h"
31    #ifdef ALLOW_MNC
32    #include "MNC_PARAMS.h"
33    #endif
34    
35  C     == Routine arguments ==  C     !INPUT/OUTPUT PARAMETERS:
36  C     myThid -  Number of this instance of CONFIG_SUMMARY  C     myThid ::  Number of this instance of CONFIG_SUMMARY
37        INTEGER myThid        INTEGER myThid
38  CEndOfInterface  CEOP
39    
40  C     == Local variables ==  C     !LOCAL VARIABLES:
41    C     msgBuf :: Temp. for building output string.
42    C     I,J,K  :: Loop counters.
43    C     bi,bj  :: Tile loop counters.
44    C     xcoord :: Temps. for building lists of values for uni-dimensionally
45    C     ycoord :: varying parameters.
46    C     zcoord ::
47        CHARACTER*(MAX_LEN_MBUF) msgBuf        CHARACTER*(MAX_LEN_MBUF) msgBuf
48        INTEGER                  I,J,K        INTEGER                  I,J,K
49        INTEGER                  bi, bj        INTEGER                  bi, bj
50        REAL                     xcoord(Nx)        _RL                     xcoord(Nx)
51        REAL                     ycoord(Ny)        _RL                     ycoord(Ny)
52        REAL                     zcoord(Nz)        _RL                     rcoord(Nr+1)
53          INTEGER coordLine
54          INTEGER tileLine
55    
56    
57        _BARRIER        _BARRIER
# Line 44  C     == Local variables == Line 59  C     == Local variables ==
59    
60        WRITE(msgBuf,'(A)')        WRITE(msgBuf,'(A)')
61       &'// ======================================================='       &'// ======================================================='
62        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
63         &                    SQUEEZE_RIGHT , 1)
64        WRITE(msgBuf,'(A)') '// Model configuration'        WRITE(msgBuf,'(A)') '// Model configuration'
65        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
66         &                    SQUEEZE_RIGHT , 1)
67        WRITE(msgBuf,'(A)')        WRITE(msgBuf,'(A)')
68       &'// ======================================================='       &'// ======================================================='
69        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
70       &  SQUEEZE_RIGHT , 1)       &  SQUEEZE_RIGHT , 1)
71    
72        WRITE(msgBuf,'(A)') '//  '        WRITE(msgBuf,'(A)') '//  '
73        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
74        WRITE(msgBuf,'(A)') '// "Physical" paramters ( PARM01 in namelist ) '       &                    SQUEEZE_RIGHT , 1)
75        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)        WRITE(msgBuf,'(A)')
76        WRITE(msgBuf,'(A)') '//  '       & '// "Physical" paramters ( PARM01 in namelist ) '
77        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
78        CALL WRITE_1D_R8( tRef, Nz, INDEX_K,'tRef =',       &                    SQUEEZE_RIGHT , 1)
79       &'   /* Reference temperature profile ( oC or oK ) */')        WRITE(msgBuf,'(A)') '//  '
80        CALL WRITE_1D_R8( sRef, Nz, INDEX_K,'sRef =',        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
81       &'   /* Reference salinity profile ( ppt ) */')       &                    SQUEEZE_RIGHT , 1)
82        CALL WRITE_1D_R8( viscAh, 1, INDEX_NONE,'viscAh =',        WRITE(msgBuf,'(A,A40)') 'buoyancyRelation = ', buoyancyRelation
83          CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
84         &                    SQUEEZE_RIGHT , 1)
85          CALL WRITE_0D_L( fluidIsAir,   INDEX_NONE,
86         & 'fluidIsAir  =', '  /* fluid major constituent is Air */')
87          CALL WRITE_0D_L( fluidIsWater, INDEX_NONE,
88         & 'fluidIsWater=', '  /* fuild major constituent is Water */')
89          CALL WRITE_0D_L( usingPCoords, INDEX_NONE,
90         & 'usingPCoords =', '  /* use p (or p*) vertical coordinate */')
91          CALL WRITE_0D_L( usingZCoords, INDEX_NONE,
92         & 'usingZCoords =', '  /* use z (or z*) vertical coordinate */')
93          CALL WRITE_1D_R8( tRef, Nr, INDEX_K,'tRef =',
94         &'   /* Reference temperature profile ( oC or K ) */')
95          CALL WRITE_1D_R8( sRef, Nr, INDEX_K,'sRef =',
96         &'   /* Reference salinity profile ( psu ) */')
97          CALL WRITE_0D_R8( viscAh, INDEX_NONE,'viscAh =',
98       &'   /* Lateral eddy viscosity ( m^2/s ) */')       &'   /* Lateral eddy viscosity ( m^2/s ) */')
99        CALL WRITE_1D_R8( viscAz, 1, INDEX_NONE,'viscAz =',        IF ( viscAhD.NE.viscAh )
100       &'   /* Vertical eddy viscosity ( m^2/s ) */')       & CALL WRITE_0D_R8( viscAhD, INDEX_NONE,'viscAhD =',
101        CALL WRITE_1D_R8( diffKhT, 1, INDEX_NONE,'diffKhT =',       & '  /* Lateral eddy viscosity (Divergence)( m^2/s ) */')
102          IF ( viscAhZ.NE.viscAh )
103         & CALL WRITE_0D_R8( viscAhZ, INDEX_NONE,'viscAhZ =',
104         & '  /* Lateral eddy viscosity (Vorticity) ( m^2/s ) */')
105          CALL WRITE_0D_R8( viscAhMax, INDEX_NONE,'viscAhMax =',
106         &'   /* Maximum lateral eddy viscosity ( m^2/s ) */')
107          CALL WRITE_0D_R8( viscAhGrid, INDEX_NONE,'viscAhGrid =',
108         &'   /* Grid dependent lateral eddy viscosity ( non-dim. ) */')
109          CALL WRITE_0D_L( useFullLeith, INDEX_NONE,
110         &'useFullLeith =',
111         &'   /* Use Full Form of Leith Viscosity on/off flag*/')
112          CALL WRITE_0D_L( useStrainTensionVisc, INDEX_NONE,
113         &'useStrainTensionVisc =',
114         &'   /* Use StrainTension Form of Viscous Operator on/off flag*/')
115          CALL WRITE_0D_L( useAreaViscLength, INDEX_NONE,
116         &'useAreaViscLength =',
117         &'   /* Use area for visc length instead of geom. mean*/')
118          CALL WRITE_0D_R8( viscC2leith, INDEX_NONE,'viscC2leith =',
119         &' /* Leith harmonic visc. factor (on grad(vort),non-dim.) */')
120          CALL WRITE_0D_R8( viscC2leithD, INDEX_NONE,'viscC2leithD =',
121         &' /* Leith harmonic viscosity factor (on grad(div),non-dim.) */')
122          CALL WRITE_0D_R8( viscC2smag, INDEX_NONE,'viscC2smag =',
123         &'   /* Smagorinsky harmonic viscosity factor (non-dim.) */')
124          CALL WRITE_0D_R8( viscA4, INDEX_NONE,'viscA4 =',
125         &'   /* Lateral biharmonic viscosity ( m^4/s ) */')
126          IF ( viscA4D.NE.viscA4 )
127         & CALL WRITE_0D_R8( viscA4D, INDEX_NONE,'viscA4D =',
128         & '  /* Lateral biharmonic viscosity (Divergence)( m^4/s ) */')
129          IF ( viscA4Z.NE.viscA4 )
130         & CALL WRITE_0D_R8( viscA4Z, INDEX_NONE,'viscA4Z =',
131         & '  /* Lateral biharmonic viscosity (Vorticity) ( m^4/s ) */')
132          CALL WRITE_0D_R8( viscA4Max, INDEX_NONE,'viscA4Max =',
133         &'   /* Maximum biharmonic viscosity ( m^2/s ) */')
134          CALL WRITE_0D_R8( viscA4Grid, INDEX_NONE,'viscA4Grid =',
135         &'   /* Grid dependent biharmonic viscosity ( non-dim. ) */')
136          CALL WRITE_0D_R8( viscC4leith, INDEX_NONE,'viscC4leith =',
137         &' /* Leith biharm viscosity factor (on grad(vort), non-dim.) */')
138          CALL WRITE_0D_R8( viscC4leithD, INDEX_NONE,'viscC4leithD =',
139         &' /* Leith biharm viscosity factor (on grad(div), non-dim.) */')
140          CALL WRITE_0D_R8( viscC4Smag, INDEX_NONE,'viscC4Smag =',
141         &' /* Smagorinsky biharm viscosity factor (non-dim) */')
142          CALL WRITE_0D_L( no_slip_sides, INDEX_NONE,
143         & 'no_slip_sides =', '  /* Viscous BCs: No-slip sides */')
144          CALL WRITE_0D_R8( sideDragFactor, INDEX_NONE, 'sideDragFactor =',
145         & ' /* side-drag scaling factor (non-dim) */')
146          CALL WRITE_0D_R8( viscAr,  INDEX_NONE,'viscAr =',
147         &'   /* Vertical eddy viscosity ( units of r^2/s ) */')
148          CALL WRITE_0D_L( no_slip_bottom, INDEX_NONE,
149         & 'no_slip_bottom =', '  /* Viscous BCs: No-slip bottom */')
150          CALL WRITE_0D_R8( bottomDragLinear, INDEX_NONE,
151         & 'bottomDragLinear =',
152         & ' /* linear bottom-drag coefficient ( 1/s ) */')
153          CALL WRITE_0D_R8( bottomDragQuadratic, INDEX_NONE,
154         & 'bottomDragQuadratic =',
155         & ' /* quadratic bottom-drag coeff. ( 1/m ) */')
156          CALL WRITE_0D_R8( diffKhT, INDEX_NONE,'diffKhT =',
157       &'   /* Laplacian diffusion of heat laterally ( m^2/s ) */')       &'   /* Laplacian diffusion of heat laterally ( m^2/s ) */')
158        CALL WRITE_1D_R8( diffKzT, 1, INDEX_NONE,'diffKzT =',        CALL WRITE_0D_R8( diffK4T, INDEX_NONE,'diffK4T =',
      &'   /* Laplacian diffusion of heat vertically ( m^2/s ) */')  
       CALL WRITE_1D_R8( diffK4T, 1, INDEX_NONE,'diffK4T =',  
159       &'   /* Bihaarmonic diffusion of heat laterally ( m^4/s ) */')       &'   /* Bihaarmonic diffusion of heat laterally ( m^4/s ) */')
160        CALL WRITE_1D_R8( diffKhS, 1, INDEX_NONE,'diffKhS =',        CALL WRITE_0D_R8( diffKhS, INDEX_NONE,'diffKhS =',
161       &'   /* Laplacian diffusion of salt laterally ( m^2/s ) */')       &'   /* Laplacian diffusion of salt laterally ( m^2/s ) */')
162        CALL WRITE_1D_R8( diffKzS, 1, INDEX_NONE,'diffKzS =',        CALL WRITE_0D_R8( diffK4S, INDEX_NONE,'diffK4S =',
      &'   /* Laplacian diffusion of salt vertically ( m^2/s ) */')  
       CALL WRITE_1D_R8( diffK4S, 1, INDEX_NONE,'diffK4S =',  
163       &'   /* Bihaarmonic diffusion of salt laterally ( m^4/s ) */')       &'   /* Bihaarmonic diffusion of salt laterally ( m^4/s ) */')
164        CALL WRITE_1D_R8( tAlpha,1, INDEX_NONE,'tAlpha =',        CALL WRITE_1D_R8( diffKrNrT, Nr, INDEX_K,'diffKrNrT =',
165       &'   /* Linear EOS thermal expansion coefficient ( 1/degree ) */')       & ' /* vertical profile of vertical diffusion of Temp ( m^2/s )*/')
166        CALL WRITE_1D_R8( sBeta, 1, INDEX_NONE,'sBeta =',        CALL WRITE_1D_R8( diffKrNrS, Nr, INDEX_K,'diffKrNrS =',
167       &'   /* Linear EOS haline contraction coefficient ( 1/ppt ) */')       & ' /* vertical profile of vertical diffusion of Salt ( m^2/s )*/')
168        CALL WRITE_1D_R8( rhonil,1, INDEX_NONE,'rhonil =',        CALL WRITE_0D_R8( diffKrBL79surf, INDEX_NONE,'diffKrBL79surf =',
169         &'   /* Surface diffusion for Bryan and Lewis 1979 ( m^2/s ) */')
170          CALL WRITE_0D_R8( diffKrBL79deep, INDEX_NONE,'diffKrBL79deep =',
171         &'   /* Deep diffusion for Bryan and Lewis 1979 ( m^2/s ) */')
172          CALL WRITE_0D_R8( diffKrBL79scl, INDEX_NONE,'diffKrBL79scl =',
173         &'   /* Depth scale for Bryan and Lewis 1979 ( m ) */')
174          CALL WRITE_0D_R8( diffKrBL79Ho, INDEX_NONE,'diffKrBL79Ho =',
175         &'   /* Turning depth for Bryan and Lewis 1979 ( m ) */')
176    c     WRITE(msgBuf,'(2A)') ' Equation of State : eosType = ', eosType
177          WRITE(msgBuf,'(4A)') 'Equation of State : ',
178         &                     'eosType = ', eosType, ' ;'
179          CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
180         &                    SQUEEZE_RIGHT , 1)
181          CALL WRITE_0D_R8( tAlpha,  INDEX_NONE,'tAlpha =',
182         &'   /* Linear EOS thermal expansion coefficient ( 1/oC ) */')
183          CALL WRITE_0D_R8( sBeta,   INDEX_NONE,'sBeta =',
184         &'   /* Linear EOS haline contraction coefficient ( 1/psu ) */')
185          IF ( eosType .EQ. 'POLY3' ) THEN
186            WRITE(msgBuf,'(A)')
187         &   '// Polynomial EQS parameters ( from POLY3.COEFFS ) '
188            DO K = 1, Nr
189             WRITE(msgBuf,'(I3,13F8.3)')
190         &   K,eosRefT(K),eosRefS(K),eosSig0(K), (eosC(I,K),I=1,9)
191             CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
192         &                    SQUEEZE_RIGHT , 1)
193            ENDDO
194          ENDIF
195          IF ( fluidIsAir ) THEN
196           CALL WRITE_0D_R8( atm_Rd, INDEX_NONE, 'atm_Rd =',
197         & '  /* gas constant for dry air ( J/kg/K ) */')
198          CALL WRITE_0D_R8( atm_Cp, INDEX_NONE, 'atm_Cp =',
199         & '  /* specific heat (Cp) of dry air ( J/kg/K ) */')
200          CALL WRITE_0D_R8( atm_kappa, INDEX_NONE, 'atm_kappa =',
201         & '  /* kappa (=Rd/Cp ) of dry air */')
202           CALL WRITE_0D_R8( atm_Rq, INDEX_NONE, 'atm_Rq =',
203         &  ' /* water vap. specific vol. anomaly relative to dry air */')
204          CALL WRITE_0D_R8( atm_Po, INDEX_NONE, 'atm_Po =',
205         & '  /* standard reference pressure ( Pa ) */')
206          CALL WRITE_0D_I( integr_GeoPot, INDEX_NONE, 'integr_GeoPot =',
207         & '  /* select how the geopotential is integrated */')
208          CALL WRITE_0D_I( selectFindRoSurf, INDEX_NONE,
209         & 'selectFindRoSurf=',
210         & '  /* select how Surf.Ref. pressure is defined */')
211          ENDIF
212          CALL WRITE_0D_R8( rhonil,  INDEX_NONE,'rhonil =',
213         &'   /* Reference density ( kg/m^3 ) */')
214          CALL WRITE_0D_R8( rhoConst, INDEX_NONE,'rhoConst =',
215         &'   /* Reference density ( kg/m^3 ) */')
216          CALL WRITE_0D_R8( rhoConstFresh, INDEX_NONE,'rhoConstFresh =',
217       &'   /* Reference density ( kg/m^3 ) */')       &'   /* Reference density ( kg/m^3 ) */')
218        CALL WRITE_1D_R8( gravity,1, INDEX_NONE,'gravity =',        CALL WRITE_0D_R8( gravity, INDEX_NONE,'gravity =',
219       &'   /* Gravitational acceleration ( m/s^2 ) */')       &'   /* Gravitational acceleration ( m/s^2 ) */')
220        CALL WRITE_1D_R8( gBaro,1, INDEX_NONE,'gBaro =',        CALL WRITE_0D_R8( gBaro,   INDEX_NONE,'gBaro =',
221       &'   /* Barotropic gravity ( m/s^2 ) */')       &'   /* Barotropic gravity ( m/s^2 ) */')
222        CALL WRITE_1D_R8( f0,1, INDEX_NONE,'f0 =',        CALL WRITE_0D_R8(rotationPeriod,INDEX_NONE,'rotationPeriod =',
223         &'   /* Rotation Period ( s ) */')
224          CALL WRITE_0D_R8( omega,   INDEX_NONE,'omega =',
225         &'   /* Angular velocity ( rad/s ) */')
226          CALL WRITE_0D_R8( f0,      INDEX_NONE,'f0 =',
227       &'   /* Reference coriolis parameter ( 1/s ) */')       &'   /* Reference coriolis parameter ( 1/s ) */')
228        CALL WRITE_1D_R8( beta,1, INDEX_NONE,'beta =',        CALL WRITE_0D_R8( beta,    INDEX_NONE,'beta =',
229       &'   /* Beta ( 1/(m.s) ) */')       &'   /* Beta ( 1/(m.s) ) */')
230        CALL WRITE_1D_R8( freeSurfFac,1, INDEX_NONE,'freeSurfFac =',        CALL WRITE_0D_R8( freeSurfFac, INDEX_NONE,'freeSurfFac =',
231       &'   /* Implcit free surface factor */')       &'   /* Implicit free surface factor */')
232        CALL WRITE_1D_L( implicitFreeSurface,1, INDEX_NONE,        CALL WRITE_0D_L( implicitFreeSurface, INDEX_NONE,
233       &                 'implicitFreeSurface =',       &                 'implicitFreeSurface =',
234       &'   /* Implicit free surface on/off flag */')       &'   /* Implicit free surface on/off flag */')
235        CALL WRITE_1D_L( rigidLid,1, INDEX_NONE,        CALL WRITE_0D_L( rigidLid, INDEX_NONE,
236       &                 'rigidLid =',       &                 'rigidLid =',
237       &'   /* Rigid lid on/off flag */')       &'   /* Rigid lid on/off flag */')
238        CALL WRITE_1D_L( momStepping,1, INDEX_NONE,        CALL WRITE_0D_R8( implicSurfPress, INDEX_NONE,
239         &'implicSurfPress =',
240         &'   /* Surface Pressure implicit factor (0-1)*/')
241          CALL WRITE_0D_R8( implicDiv2Dflow, INDEX_NONE,
242         &'implicDiv2Dflow =',
243         &'   /* Barot. Flow Div. implicit factor (0-1)*/')
244          CALL WRITE_0D_L( exactConserv, INDEX_NONE,
245         &'exactConserv =',
246         &'   /* Exact Volume Conservation on/off flag*/')
247          CALL WRITE_0D_L( uniformLin_PhiSurf, INDEX_NONE,
248         &'uniformLin_PhiSurf =',
249         &'   /* use uniform Bo_surf on/off flag*/')
250          CALL WRITE_0D_I( nonlinFreeSurf, INDEX_NONE,
251         &'nonlinFreeSurf =',
252         &'   /* Non-linear Free Surf. options (-1,0,1,2,3)*/')
253          WRITE(msgBuf,'(2A)') '     -1,0= Off ; 1,2,3= On,',
254         &  ' 2=+rescale gU,gV, 3=+update cg2d solv.'
255          CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
256         &                    SQUEEZE_RIGHT , 1)
257          CALL WRITE_0D_R8( hFacInf, INDEX_NONE,
258         &'hFacInf =',
259         &'   /* lower threshold for hFac (nonlinFreeSurf only)*/')
260          CALL WRITE_0D_R8( hFacSup, INDEX_NONE,
261         &'hFacSup =',
262         &'   /* upper threshold for hFac (nonlinFreeSurf only)*/')
263          CALL WRITE_0D_I( select_rStar, INDEX_NONE,
264         &'select_rStar =',
265         &'   /* r* Coordinate options (not yet implemented)*/')
266          CALL WRITE_0D_L( useRealFreshWaterFlux, INDEX_NONE,
267         &'useRealFreshWaterFlux =',
268         &'   /* Real Fresh Water Flux on/off flag*/')
269          IF (useRealFreshWaterFlux .AND. nonlinFreeSurf.GT.0) THEN
270          CALL WRITE_0D_R8( temp_EvPrRn, INDEX_NONE,
271         &'temp_EvPrRn =',
272         &' /* Temp. of Evap/Prec/R (UNSET=use local T)(oC)*/')
273          CALL WRITE_0D_R8( salt_EvPrRn, INDEX_NONE,
274         &'salt_EvPrRn =',
275         &' /* Salin. of Evap/Prec/R (UNSET=use local S)(ppt)*/')
276          ELSE
277          CALL WRITE_0D_R8( convertFW2Salt, INDEX_NONE,
278         &'convertFW2Salt =',
279         &' /* convert F.W. Flux to Salt Flux (-1=use local S)(ppt)*/')
280          ENDIF
281    
282          CALL WRITE_0D_L( use3Dsolver, INDEX_NONE,
283         & 'use3Dsolver =', ' /* use 3-D pressure solver on/off flag */')
284          CALL WRITE_0D_L( nonHydrostatic, INDEX_NONE,
285         & 'nonHydrostatic =', '  /* Non-Hydrostatic on/off flag */')
286          CALL WRITE_0D_R8( nh_Am2, INDEX_NONE, 'nh_Am2 =',
287         & ' /* Non-Hydrostatic terms scaling factor */')
288          CALL WRITE_0D_L( quasiHydrostatic, INDEX_NONE,
289         & 'quasiHydrostatic =', ' /* Quasi-Hydrostatic on/off flag */')
290          CALL WRITE_0D_L( momStepping,  INDEX_NONE,
291       & 'momStepping =', '  /* Momentum equation on/off flag */')       & 'momStepping =', '  /* Momentum equation on/off flag */')
292        CALL WRITE_1D_L( momAdvection,1, INDEX_NONE,        CALL WRITE_0D_L( vectorInvariantMomentum,  INDEX_NONE,
293         & 'vectorInvariantMomentum=',
294         & ' /* Vector-Invariant Momentum on/off */')
295          CALL WRITE_0D_L( momAdvection, INDEX_NONE,
296       & 'momAdvection =', '  /* Momentum advection on/off flag */')       & 'momAdvection =', '  /* Momentum advection on/off flag */')
297        CALL WRITE_1D_L( momViscosity,1, INDEX_NONE,        CALL WRITE_0D_L( momViscosity, INDEX_NONE,
298       & 'momViscosity =', '  /* Momentum viscosity on/off flag */')       & 'momViscosity =', '  /* Momentum viscosity on/off flag */')
299        CALL WRITE_1D_L( useCoriolis,1, INDEX_NONE,        CALL WRITE_0D_L( momImplVertAdv, INDEX_NONE, 'momImplVertAdv =',
300         &                '/* Momentum implicit vert. advection on/off*/')
301          CALL WRITE_0D_L( implicitViscosity, INDEX_NONE,
302         & 'implicitViscosity =', ' /* Implicit viscosity on/off flag */')
303          CALL WRITE_0D_L( metricTerms,  INDEX_NONE, 'metricTerms =',
304         &                '  /* metric-Terms on/off flag */')
305          CALL WRITE_0D_L( useNHMTerms,  INDEX_NONE, 'useNHMTerms =',
306         &              ' /* Non-Hydrostatic Metric-Terms on/off */')
307          CALL WRITE_0D_L( useCoriolis,  INDEX_NONE,
308       & 'useCoriolis =', '  /* Coriolis on/off flag */')       & 'useCoriolis =', '  /* Coriolis on/off flag */')
309        CALL WRITE_1D_L( momForcing,1, INDEX_NONE,        CALL WRITE_0D_L( useCDscheme,  INDEX_NONE,
310         & 'useCDscheme =', '  /* CD scheme on/off flag */')
311          CALL WRITE_0D_L( useJamartWetPoints,  INDEX_NONE,
312         & 'useJamartWetPoints=',' /* Coriolis WetPoints method flag */')
313          CALL WRITE_0D_L( useJamartMomAdv,  INDEX_NONE,
314         & 'useJamartMomAdv=',' /* V.I. Non-linear terms Jamart flag */')
315          CALL WRITE_0D_L( SadournyCoriolis,  INDEX_NONE,
316         & 'SadournyCoriolis=',' /* Sadourny Coriolis discr. flag */')
317          CALL WRITE_0D_L( upwindVorticity,  INDEX_NONE,
318         & 'upwindVorticity=',' /* Upwind bias vorticity flag */')
319          CALL WRITE_0D_L( useAbsVorticity,  INDEX_NONE,
320         & 'useAbsVorticity=',' /* Work with f+zeta in Coriolis */')
321          CALL WRITE_0D_L( highOrderVorticity,  INDEX_NONE,
322         & 'highOrderVorticity=',' /* High order interp. of vort. flag */')
323          CALL WRITE_0D_L( upwindShear,  INDEX_NONE,
324         & 'upwindShear=', ' /* Upwind vertical Shear advection flag */')
325          CALL WRITE_0D_I( selectKEscheme, INDEX_NONE,
326         & 'selectKEscheme=', ' /* Kinetic Energy scheme selector */')
327          CALL WRITE_0D_L( momForcing,   INDEX_NONE,
328       & 'momForcing =', '  /* Momentum forcing on/off flag */')       & 'momForcing =', '  /* Momentum forcing on/off flag */')
329        CALL WRITE_1D_L( momPressureForcing,1, INDEX_NONE,        CALL WRITE_0D_L( momPressureForcing, INDEX_NONE,
330       & 'momPressureForcing =', '  /* Momentum pressure term on/off flag */')       & 'momPressureForcing =',  
331        CALL WRITE_1D_L( tempStepping,1, INDEX_NONE,       & '  /* Momentum pressure term on/off flag */')
332          CALL WRITE_0D_L( implicitIntGravWave, INDEX_NONE,
333         &  'implicitIntGravWave=',
334         &  ' /* Implicit Internal Gravity Wave flag */')
335          CALL WRITE_0D_L( staggerTimeStep, INDEX_NONE,
336         &                 'staggerTimeStep =',
337         &'   /* Stagger time stepping on/off flag */')
338          CALL WRITE_0D_L( multiDimAdvection, INDEX_NONE,
339         & 'multiDimAdvection =',
340         &'   /* enable/disable Multi-Dim Advection */')
341          CALL WRITE_0D_L( useMultiDimAdvec, INDEX_NONE,
342         & 'useMultiDimAdvec =',
343         &'   /* Multi-Dim Advection is/is-not used */')
344          CALL WRITE_0D_L( implicitDiffusion, INDEX_NONE,
345         & 'implicitDiffusion =','/* Implicit Diffusion on/off flag */')
346          CALL WRITE_0D_L( tempStepping,  INDEX_NONE,
347       & 'tempStepping =', '  /* Temperature equation on/off flag */')       & 'tempStepping =', '  /* Temperature equation on/off flag */')
348        CALL WRITE_1D_R8( GMMaxSlope,1, INDEX_NONE,'GMMaxSlope =',        CALL WRITE_0D_L( tempAdvection,  INDEX_NONE,
349       &'   /* Max. slope allowed in GM/Redi tensor */')       & 'tempAdvection=', '  /* Temperature advection on/off flag */')
350        CALL WRITE_1D_R8( GMLength,1, INDEX_NONE,'GMLength =',        CALL WRITE_0D_L( tempImplVertAdv,INDEX_NONE,'tempImplVertAdv =',
351       &'   /* Length to use in Visbeck et al. formula for K (m) */')       &                '/* Temp. implicit vert. advection on/off */')
352        CALL WRITE_1D_R8( GMAlpha,1, INDEX_NONE,'GMAlpha =',        CALL WRITE_0D_L( tempForcing,  INDEX_NONE,
353       &'   /* alpha to use in Visbeck et al. formula for K */')       & 'tempForcing  =', '  /* Temperature forcing on/off flag */')
354        CALL WRITE_1D_R8( GMdepth,1, INDEX_NONE,'GMdepth =',        CALL WRITE_0D_L( saltStepping,  INDEX_NONE,
355       &'   /* Depth to integrate for Visbeck et. al Richardson # (m) */')       & 'saltStepping =', '  /* Salinity equation on/off flag */')
356        CALL WRITE_1D_R8( GMkbackground,1, INDEX_NONE,'GMkbackground =',        CALL WRITE_0D_L( saltAdvection,  INDEX_NONE,
357       &'   /* background value of GM/Redi coefficient m^2/s */')       & 'saltAdvection=', '  /* Salinity advection on/off flag */')
358          CALL WRITE_0D_L( saltImplVertAdv,INDEX_NONE,'saltImplVertAdv =',
359         &                '/* Sali. implicit vert. advection on/off */')
360          CALL WRITE_0D_L( saltForcing,  INDEX_NONE,
361         & 'saltForcing  =', '  /* Salinity forcing on/off flag */')
362          CALL WRITE_0D_I( readBinaryPrec, INDEX_NONE, ' readBinaryPrec =',
363         &  ' /* Precision used for reading binary files */')
364          CALL WRITE_0D_I(writeBinaryPrec, INDEX_NONE, 'writeBinaryPrec =',
365         &  ' /* Precision used for writing binary files */')
366          CALL WRITE_0D_L( globalFiles,  INDEX_NONE,
367         & ' globalFiles =',' /* write "global" (=not per tile) files */')
368          CALL WRITE_0D_L( useSingleCpuIO,  INDEX_NONE,
369         & ' useSingleCpuIO =', ' /* only master MPI process does I/O */')
370          CALL WRITE_0D_L( debugMode,  INDEX_NONE,
371         & ' debugMode  =', '  /* Debug Mode on/off flag */')
372          CALL WRITE_0D_I( debLevA, INDEX_NONE,
373         & '   debLevA  =', '  /* 1rst level of debugging */')
374          CALL WRITE_0D_I( debLevB, INDEX_NONE,
375         & '   debLevB  =', '  /* 2nd  level of debugging */')
376          CALL WRITE_0D_I( debugLevel, INDEX_NONE,
377         & ' debugLevel =', '  /* select debugging level */')
378        WRITE(msgBuf,'(A)') '//  '        WRITE(msgBuf,'(A)') '//  '
379        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
380         &                    SQUEEZE_RIGHT , 1)
381    
382        WRITE(msgBuf,'(A)') '// Elliptic solver(s) paramters ( PARM02 in namelist ) '        WRITE(msgBuf,'(A)')
383        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)       & '// Elliptic solver(s) paramters ( PARM02 in namelist ) '
384          CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
385         &                    SQUEEZE_RIGHT , 1)
386        WRITE(msgBuf,'(A)') '//  '        WRITE(msgBuf,'(A)') '//  '
387        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
388        CALL WRITE_1D_I( cg2dMaxIters,1, INDEX_NONE,'cg2dMaxIters =',       &                    SQUEEZE_RIGHT , 1)
389          CALL WRITE_0D_I( cg2dMaxIters,   INDEX_NONE,'cg2dMaxIters =',
390       &'   /* Upper limit on 2d con. grad iterations  */')       &'   /* Upper limit on 2d con. grad iterations  */')
391        CALL WRITE_1D_I( cg2dChkResFreq,1, INDEX_NONE,'cg2dChkResFreq =',        CALL WRITE_0D_I( cg2dChkResFreq, INDEX_NONE,'cg2dChkResFreq =',
392       &'   /* 2d con. grad convergence test frequency */')       &'   /* 2d con. grad convergence test frequency */')
393        CALL WRITE_1D_R8( cg2dTargetResidual,1, INDEX_NONE,'cg2dTargetResidual =',        CALL WRITE_0D_R8( cg2dTargetResidual, INDEX_NONE,
394         & 'cg2dTargetResidual =',
395       &'   /* 2d con. grad target residual  */')       &'   /* 2d con. grad target residual  */')
396          CALL WRITE_0D_R8( cg2dTargetResWunit, INDEX_NONE,
397         & 'cg2dTargetResWunit =',
398         &'   /* CG2d target residual [W units] */')
399          CALL WRITE_0D_I( cg2dPreCondFreq, INDEX_NONE,'cg2dPreCondFreq =',
400         &'   /* Freq. for updating cg2d preconditioner */')
401    
402        WRITE(msgBuf,'(A)') '//  '        WRITE(msgBuf,'(A)') '//  '
403        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
404        WRITE(msgBuf,'(A)') '// Time stepping paramters ( PARM03 in namelist ) '       &                    SQUEEZE_RIGHT , 1)
405        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)        WRITE(msgBuf,'(A)')
406        WRITE(msgBuf,'(A)') '//  '       & '// Time stepping paramters ( PARM03 in namelist ) '
407        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
408        CALL WRITE_1D_I( nIter0,1, INDEX_NONE,'nIter0 =',       &                    SQUEEZE_RIGHT , 1)
409       &'   /* Base timestep number  */')        WRITE(msgBuf,'(A)') '//  '
410        CALL WRITE_1D_I( nTimeSteps,1, INDEX_NONE,'nTimeSteps =',        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
411         &                    SQUEEZE_RIGHT , 1)
412          CALL WRITE_0D_I( nIter0, INDEX_NONE,'nIter0 =',
413         &'   /* Run starting timestep number  */')
414          CALL WRITE_0D_I( nTimeSteps, INDEX_NONE,'nTimeSteps =',
415       &'   /* Number of timesteps */')       &'   /* Number of timesteps */')
416        CALL WRITE_1D_R8( deltaTmom,1, INDEX_NONE,'deltatTmom =',        CALL WRITE_0D_R8( deltaTmom, INDEX_NONE,'deltatTmom =',
417       &'   /* Momentum equation timestep ( s ) */')       &'   /* Momentum equation timestep ( s ) */')
418        CALL WRITE_1D_R8( deltaTtracer,1, INDEX_NONE,'deltatTtracer =',        CALL WRITE_0D_R8( deltaTfreesurf,INDEX_NONE,'deltaTfreesurf =',
419         &'   /* FreeSurface equation timestep ( s ) */')
420          CALL WRITE_1D_R8( dTtracerLev, Nr, INDEX_K, 'dTtracerLev =',
421       &'   /* Tracer equation timestep ( s ) */')       &'   /* Tracer equation timestep ( s ) */')
422        CALL WRITE_1D_R8( cAdjFreq,1, INDEX_NONE,'cAdjFreq =',        CALL WRITE_0D_R8( deltaTClock, INDEX_NONE,'deltatTClock  =',
423         &'   /* Model clock timestep ( s ) */')
424          CALL WRITE_0D_R8( cAdjFreq, INDEX_NONE,'cAdjFreq =',
425       &'   /* Convective adjustment interval ( s ) */')       &'   /* Convective adjustment interval ( s ) */')
426        CALL WRITE_1D_R8( abEps,1, INDEX_NONE,'abEps =',        CALL WRITE_0D_I( momForcingOutAB, INDEX_NONE, 'momForcingOutAB =',
427       &'   /* Adams-Bashforth stabilizing weight */')       & ' /* =1: take Momentum Forcing out of Adams-Bash. stepping */')
428        CALL WRITE_1D_R8( tauCD,1, INDEX_NONE,'tauCD =',        CALL WRITE_0D_I( tracForcingOutAB, INDEX_NONE,
429         & 'tracForcingOutAB =',
430         & ' /* =1: take T,S,pTr Forcing out of Adams-Bash. stepping */')
431          CALL WRITE_0D_L( momDissip_In_AB,INDEX_NONE,'momDissip_In_AB =',
432         & ' /* put Dissipation Tendency in Adams-Bash. stepping */')
433          CALL WRITE_0D_L( doAB_onGtGs, INDEX_NONE, 'doAB_onGtGs =',
434         &  ' /* apply AB on Tendencies (rather than on T,S)*/')
435          CALL WRITE_0D_R8( abEps, INDEX_NONE,'abEps =',
436         &'   /* Adams-Bashforth-2 stabilizing weight */')
437    #ifdef ALLOW_ADAMSBASHFORTH_3
438          CALL WRITE_0D_R8( alph_AB, INDEX_NONE,'alph_AB =',
439         &'   /* Adams-Bashforth-3 primary factor */')
440          CALL WRITE_0D_R8( beta_AB, INDEX_NONE,'beta_AB =',
441         &'   /* Adams-Bashforth-3 secondary factor */')
442          CALL WRITE_0D_L( startFromPickupAB2, INDEX_NONE,
443         & 'startFromPickupAB2=',' /* start from AB-2 pickup */')
444    #endif
445          IF (useCDscheme) THEN
446          CALL WRITE_0D_R8( tauCD, INDEX_NONE,'tauCD =',
447       &'   /* CD coupling time-scale ( s ) */')       &'   /* CD coupling time-scale ( s ) */')
448        CALL WRITE_1D_R8( rCD,1, INDEX_NONE,'rCD =',        CALL WRITE_0D_R8( rCD, INDEX_NONE,'rCD =',
449       &'   /* Normalised CD coupling parameter */')       &'   /* Normalised CD coupling parameter */')
450        CALL WRITE_1D_R8( startTime,1, INDEX_NONE,'startTime =',        ENDIF
451          CALL WRITE_0D_R8( baseTime, INDEX_NONE,'baseTime =',
452         &'   /* Model base time ( s ). */')
453          CALL WRITE_0D_R8( startTime, INDEX_NONE,'startTime =',
454       &'   /* Run start time ( s ). */')       &'   /* Run start time ( s ). */')
455        CALL WRITE_1D_R8( endTime,1, INDEX_NONE,'endTime =',        CALL WRITE_0D_R8( endTime, INDEX_NONE,'endTime =',
456       &'   /* Integration ending time ( s ). */')       &'   /* Integration ending time ( s ). */')
457        CALL WRITE_1D_R8( pChkPtFreq,1, INDEX_NONE,'pChkPtFreq =',        CALL WRITE_0D_R8( pChkPtFreq, INDEX_NONE,'pChkPtFreq =',
458       &'   /* Permanent restart/checkpoint file interval ( s ). */')       &'   /* Permanent restart/checkpoint file interval ( s ). */')
459        CALL WRITE_1D_R8( chkPtFreq,1, INDEX_NONE,'chkPtFreq =',        CALL WRITE_0D_R8( chkPtFreq, INDEX_NONE,'chkPtFreq =',
460       &'   /* Rolling restart/checkpoint file interval ( s ). */')       &'   /* Rolling restart/checkpoint file interval ( s ). */')
461        CALL WRITE_1D_R8( dumpFreq,1, INDEX_NONE,'dumpFreq =',        CALL WRITE_0D_L(pickup_write_mdsio,INDEX_NONE,
462         &     'pickup_write_mdsio =', '   /* Model IO flag. */')
463          CALL WRITE_0D_L(pickup_read_mdsio,INDEX_NONE,
464         &     'pickup_read_mdsio =', '   /* Model IO flag. */')
465    #ifdef ALLOW_MNC
466          CALL WRITE_0D_L(pickup_write_mnc,INDEX_NONE,
467         &     'pickup_write_mnc =', '   /* Model IO flag. */')
468          CALL WRITE_0D_L(pickup_read_mnc,INDEX_NONE,
469         &     'pickup_read_mnc =', '   /* Model IO flag. */')
470    #endif
471          CALL WRITE_0D_L(pickup_write_immed,INDEX_NONE,
472         &     'pickup_write_immed =','   /* Model IO flag. */')
473          CALL WRITE_0D_R8( dumpFreq, INDEX_NONE,'dumpFreq =',
474       &'   /* Model state write out interval ( s ). */')       &'   /* Model state write out interval ( s ). */')
475          CALL WRITE_0D_L(dumpInitAndLast,INDEX_NONE,'dumpInitAndLast=',
476         &  ' /* write out Initial & Last iter. model state */')
477          CALL WRITE_0D_L(snapshot_mdsio,INDEX_NONE,
478         &     'snapshot_mdsio =', '   /* Model IO flag. */')
479    #ifdef ALLOW_MNC
480          CALL WRITE_0D_L(snapshot_mnc,INDEX_NONE,
481         &     'snapshot_mnc =', '   /* Model IO flag. */')
482    #endif
483          CALL WRITE_0D_R8( monitorFreq, INDEX_NONE,'monitorFreq =',
484         &'   /* Monitor output interval ( s ). */')
485          CALL WRITE_0D_L(monitor_stdio,INDEX_NONE,
486         &     'monitor_stdio =', '   /* Model IO flag. */')
487    #ifdef ALLOW_MNC
488          CALL WRITE_0D_L(monitor_mnc,INDEX_NONE,
489         &     'monitor_mnc =', '   /* Model IO flag. */')
490    #endif
491          CALL WRITE_0D_R8( externForcingPeriod, INDEX_NONE,
492         &   'externForcingPeriod =', '   /* forcing period (s) */')
493          CALL WRITE_0D_R8( externForcingCycle, INDEX_NONE,
494         &   'externForcingCycle =', '   /* period of the cyle (s). */')
495          CALL WRITE_0D_R8( tauThetaClimRelax, INDEX_NONE,
496         &   'tauThetaClimRelax =', '   /* relaxation time scale (s) */')
497          CALL WRITE_0D_R8( tauSaltClimRelax, INDEX_NONE,
498         &   'tauSaltClimRelax =',  '   /* relaxation time scale (s) */')
499          CALL WRITE_0D_R8( latBandClimRelax, INDEX_NONE,
500         &   'latBandClimRelax =', '   /* max. Lat. where relaxation */')
501        WRITE(msgBuf,'(A)') '//  '        WRITE(msgBuf,'(A)') '//  '
502        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
503        WRITE(msgBuf,'(A)') '// Gridding paramters ( PARM04 in namelist ) '       &                    SQUEEZE_RIGHT , 1)
504        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)        WRITE(msgBuf,'(A)')
505         & '// Gridding paramters ( PARM04 in namelist ) '
506          CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
507         &                    SQUEEZE_RIGHT , 1)
508        WRITE(msgBuf,'(A)') '//  '        WRITE(msgBuf,'(A)') '//  '
509        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
510        CALL WRITE_1D_L( usingCartesianGrid,1, INDEX_NONE,'usingCartesianGrid =',       &                    SQUEEZE_RIGHT , 1)
511          CALL WRITE_0D_L( usingCartesianGrid, INDEX_NONE,
512         & 'usingCartesianGrid =',
513       &'   /* Cartesian coordinates flag ( True / False ) */')       &'   /* Cartesian coordinates flag ( True / False ) */')
514        CALL WRITE_1D_L( usingSphericalPolarGrid,1, INDEX_NONE,'usingSphericalPolarGrid =',        CALL WRITE_0D_L( usingSphericalPolarGrid, INDEX_NONE,
515         & 'usingSphericalPolarGrid =',
516       &'   /* Spherical coordinates flag ( True / False ) */')       &'   /* Spherical coordinates flag ( True / False ) */')
517        CALL WRITE_1D_R8( delZ,Nz, INDEX_K,'delZ = ',        CALL WRITE_0D_L( usingCylindricalGrid, INDEX_NONE,
518       &'   /* W spacing ( m ) */')       & 'usingCylindricalGrid =',
519         &'   /* Spherical coordinates flag ( True / False ) */')
520          CALL WRITE_0D_R8( Ro_SeaLevel, INDEX_NONE,'Ro_SeaLevel =',
521         &'   /* r(1) ( units of r ) */')
522          CALL WRITE_0D_R8( rkSign, INDEX_NONE,'rkSign =',
523         &'   /* index orientation relative to vertical coordinate */')
524          CALL WRITE_0D_R8( horiVertRatio, INDEX_NONE,'horiVertRatio =',
525         &'   /* Ratio on units : Horiz - Vertical */')
526    c     CALL WRITE_1D_R8( delZ,Nr, INDEX_K,'delZ = ',
527    c    &'   /* W spacing ( m ) */')
528    c     CALL WRITE_1D_R8( delP,Nr, INDEX_K,'delP = ',
529    c    &'   /* W spacing ( Pa ) */')
530    c     CALL WRITE_1D_R8( delR,Nr, INDEX_K,'delR = ',
531    c    &'   /* W spacing ( units of r ) */')
532          CALL WRITE_1D_R8( drC,Nr, INDEX_K,'drC = ',
533         &'   /* C spacing ( units of r ) */')
534          CALL WRITE_1D_R8( drF,Nr, INDEX_K,'drF = ',
535         &'   /* W spacing ( units of r ) */')
536        CALL WRITE_1D_R8( delX, Nx, INDEX_I,'delX = ',        CALL WRITE_1D_R8( delX, Nx, INDEX_I,'delX = ',
537       &'   /* U spacing ( m - cartesian, degrees - spherical ) */')       &'   /* U spacing ( m - cartesian, degrees - spherical ) */')
538        CALL WRITE_1D_R8( delY, Ny, INDEX_J,'delY = ',        CALL WRITE_1D_R8( delY, Ny, INDEX_J,'delY = ',
539       &'   /* V spacing ( m - cartesian, degrees - spherical ) */')       &'   /* V spacing ( m - cartesian, degrees - spherical ) */')
540        CALL WRITE_1D_R8( phiMin, 1, INDEX_NONE,'phiMin = ',        CALL WRITE_0D_R8( phiMin, INDEX_NONE,'phiMin = ',
541       &'   /* Southern boundary ( ignored - cartesian, degrees - spherical ) */')       &'   /* South edge (ignored - cartesian, degrees - spherical ) */')
542        CALL WRITE_1D_R8( thetaMin, 1, INDEX_NONE,'thetaMin = ',        CALL WRITE_0D_R8( thetaMin, INDEX_NONE,'thetaMin = ',
543       &'   /* Western boundary ( ignored - cartesian, degrees - spherical ) */')       &'   /* West edge ( ignored - cartesian, degrees - spherical ) */')
544        CALL WRITE_1D_R8( rSphere, 1, INDEX_NONE,'rSphere = ',        CALL WRITE_0D_R8( rSphere, INDEX_NONE,'rSphere = ',
545       &'   /* Radius ( ignored - cartesian, m - spherical ) */')       &'   /* Radius ( ignored - cartesian, m - spherical ) */')
546        DO bi=1,nSx        DO bi=1,nSx
547         DO I=1,sNx         DO I=1,sNx
548          xcoord((bi-1)*sNx+I) = xc(I,1,bi,1)          xcoord((bi-1)*sNx+I) = xC(I,1,bi,1)
549         ENDDO         ENDDO
550        ENDDO        ENDDO
551        CALL WRITE_1D_R8( xcoord, Nx, INDEX_I,'xcoord = ',        CALL WRITE_1D_R8( xcoord, sNx*nSx, INDEX_I,'xcoord = ',
552       &'   /* P-point X coordinate (  m - cartesian, degrees - spherical ) */')       &'   /* P-point X coord ( m - cartesian, degrees - spherical ) */')
553        DO bj=1,nSy        DO bj=1,nSy
554         DO J=1,sNy         DO J=1,sNy
555          ycoord((bj-1)*sNy+J) = yc(1,J,1,bj)          ycoord((bj-1)*sNy+J) = yC(1,J,1,bj)
556         ENDDO         ENDDO
557        ENDDO        ENDDO
558        CALL WRITE_1D_R8( ycoord, Ny, INDEX_J,'ycoord = ',        CALL WRITE_1D_R8( ycoord, sNy*nSy, INDEX_J,'ycoord = ',
559       &'   /* P-point Y coordinate (  m - cartesian, degrees - spherical ) */')       &'   /* P-point Y coord ( m - cartesian, degrees - spherical ) */')
560        DO K=1,Nz        DO K=1,Nr
561         zcoord(K) = zc(K)         rcoord(K) = rC(K)
562        ENDDO        ENDDO
563        CALL WRITE_1D_R8( zcoord, Nz, INDEX_K,'zcoord = ',        CALL WRITE_1D_R8( rcoord, Nr, INDEX_K,'rcoord = ',
564       &'   /* P-point Z coordinate (  m ) */')       &'   /* P-point R coordinate (  units of r ) */')
565          DO K=1,Nr+1
566           rcoord(K) = rF(K)
567          ENDDO
568          CALL WRITE_1D_R8( rcoord, Nr+1, INDEX_K,'rF = ',
569         &'   /* W-Interf. R coordinate (  units of r ) */')
570          CALL WRITE_1D_R8( dBdrRef, Nr, INDEX_K,'dBdrRef = ',
571         & ' /* Vertical gradient of reference boyancy [(m/s/r)^2)] */')
572    
573    C     Grid along selected grid lines
574          coordLine = 1
575          tileLine  = 1
576          CALL WRITE_XY_XLINE_RS( dxF, coordLine, tileLine,
577         I 'dxF','( m - cartesian, degrees - spherical )')
578          CALL WRITE_XY_YLINE_RS( dxF, coordLine, tileLine,
579         I 'dxF','( m - cartesian, degrees - spherical )')
580          CALL WRITE_XY_XLINE_RS( dyF, coordLine, tileLine,
581         I 'dyF','( m - cartesian, degrees - spherical )')
582          CALL WRITE_XY_YLINE_RS( dyF, coordLine, tileLine,
583         I 'dyF','( m - cartesian, degrees - spherical )')
584          CALL WRITE_XY_XLINE_RS( dxG, coordLine, tileLine,
585         I 'dxG','( m - cartesian, degrees - spherical )')
586          CALL WRITE_XY_YLINE_RS( dxG, coordLine, tileLine,
587         I 'dxG','( m - cartesian, degrees - spherical )')
588          CALL WRITE_XY_XLINE_RS( dyG, coordLine, tileLine,
589         I 'dyG','( m - cartesian, degrees - spherical )')
590          CALL WRITE_XY_YLINE_RS( dyG, coordLine, tileLine,
591         I 'dyG','( m - cartesian, degrees - spherical )')
592          CALL WRITE_XY_XLINE_RS( dxC, coordLine, tileLine,
593         I 'dxC','( m - cartesian, degrees - spherical )')
594          CALL WRITE_XY_YLINE_RS( dxC, coordLine, tileLine,
595         I 'dxC','( m - cartesian, degrees - spherical )')
596          CALL WRITE_XY_XLINE_RS( dyC, coordLine, tileLine,
597         I 'dyC','( m - cartesian, degrees - spherical )')
598          CALL WRITE_XY_YLINE_RS( dyC, coordLine, tileLine,
599         I 'dyC','( m - cartesian, degrees - spherical )')
600          CALL WRITE_XY_XLINE_RS( dxV, coordLine, tileLine,
601         I 'dxV','( m - cartesian, degrees - spherical )')
602          CALL WRITE_XY_YLINE_RS( dxV, coordLine, tileLine,
603         I 'dxV','( m - cartesian, degrees - spherical )')
604          CALL WRITE_XY_XLINE_RS( dyU, coordLine, tileLine,
605         I 'dyU','( m - cartesian, degrees - spherical )')
606          CALL WRITE_XY_YLINE_RS( dyU, coordLine, tileLine,
607         I 'dyU','( m - cartesian, degrees - spherical )')
608          CALL WRITE_XY_XLINE_RS( rA, coordLine, tileLine,
609         I 'rA','( m - cartesian, degrees - spherical )')
610          CALL WRITE_XY_YLINE_RS( rA, coordLine, tileLine,
611         I 'rA','( m - cartesian, degrees - spherical )')
612          CALL WRITE_XY_XLINE_RS( rAw, coordLine, tileLine,
613         I 'rAw','( m - cartesian, degrees - spherical )')
614          CALL WRITE_XY_YLINE_RS( rAw, coordLine, tileLine,
615         I 'rAw','( m - cartesian, degrees - spherical )')
616          CALL WRITE_XY_XLINE_RS( rAs, coordLine, tileLine,
617         I 'rAs','( m - cartesian, degrees - spherical )')
618          CALL WRITE_XY_YLINE_RS( rAs, coordLine, tileLine,
619         I 'rAs','( m - cartesian, degrees - spherical )')
620    
621          WRITE(msgBuf,'(A)')
622         &'// ======================================================='
623          CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
624         &                    SQUEEZE_RIGHT , 1)
625          WRITE(msgBuf,'(A)') '// End of Model config. summary'
626          CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
627         &                    SQUEEZE_RIGHT , 1)
628          WRITE(msgBuf,'(A)')
629         &'// ======================================================='
630          CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
631         &  SQUEEZE_RIGHT , 1)
632        WRITE(msgBuf,'(A)') ' '        WRITE(msgBuf,'(A)') ' '
633        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,        CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
634       &  SQUEEZE_RIGHT , 1)       &  SQUEEZE_RIGHT , 1)
# Line 224  C     == Local variables == Line 638  C     == Local variables ==
638    
639    
640        RETURN        RETURN
   100 FORMAT(A,  
      &' '  
      &)  
641        END        END
   

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