/[MITgcm]/MITgcm/model/src/config_summary.F
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Revision 1.14 - (hide annotations) (download)
Mon Aug 24 00:24:44 1998 UTC (25 years, 9 months ago) by cnh
Branch: MAIN
Changes since 1.13: +3 -1 lines
Consistent isomorphism changes

1 cnh 1.14 C $Header: /u/gcmpack/models/MITgcmUV/model/src/config_summary.F,v 1.13 1998/08/22 17:51:07 cnh Exp $
2 cnh 1.1
3     #include "CPP_EEOPTIONS.h"
4    
5     CStartOfInterface
6     SUBROUTINE CONFIG_SUMMARY( myThid )
7     C /==========================================================\
8     C | SUBROUTINE CONFIG_SUMMARY |
9     C | o Summarize model prognostic variables. |
10     C |==========================================================|
11     C | This routine writes a tabulated summary of the model |
12     C | configuration. |
13     C | Note |
14     C | 1. Under multi-process parallelism the summary |
15     C | is only given for the per-process data. |
16     C | 2. Under multi-threading the summary is produced by |
17     C | the master thread. This threads reads data managed by|
18     C | other threads. |
19     C \==========================================================/
20    
21     C === Global variables ===
22     #include "SIZE.h"
23     #include "EEPARAMS.h"
24     #include "PARAMS.h"
25     #include "GRID.h"
26     #include "DYNVARS.h"
27    
28     C == Routine arguments ==
29     C myThid - Number of this instance of CONFIG_SUMMARY
30     INTEGER myThid
31     CEndOfInterface
32    
33     C == Local variables ==
34     CHARACTER*(MAX_LEN_MBUF) msgBuf
35 cnh 1.5 INTEGER I,J,K
36 cnh 1.6 INTEGER bi, bj
37     REAL xcoord(Nx)
38     REAL ycoord(Ny)
39 cnh 1.13 REAL rcoord(Nr)
40 cnh 1.5
41 cnh 1.1
42     _BARRIER
43 cnh 1.5 _BEGIN_MASTER(myThid)
44 cnh 1.1
45     WRITE(msgBuf,'(A)')
46     &'// ======================================================='
47     CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)
48     WRITE(msgBuf,'(A)') '// Model configuration'
49     CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)
50     WRITE(msgBuf,'(A)')
51     &'// ======================================================='
52     CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
53     & SQUEEZE_RIGHT , 1)
54 cnh 1.5
55 cnh 1.6 WRITE(msgBuf,'(A)') '// '
56     CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)
57     WRITE(msgBuf,'(A)') '// "Physical" paramters ( PARM01 in namelist ) '
58     CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)
59     WRITE(msgBuf,'(A)') '// '
60     CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)
61 cnh 1.13 CALL WRITE_1D_R8( tRef, Nr, INDEX_K,'tRef =',
62 cnh 1.5 &' /* Reference temperature profile ( oC or oK ) */')
63 cnh 1.13 CALL WRITE_1D_R8( sRef, Nr, INDEX_K,'sRef =',
64 cnh 1.6 &' /* Reference salinity profile ( ppt ) */')
65 cnh 1.5 CALL WRITE_1D_R8( viscAh, 1, INDEX_NONE,'viscAh =',
66     &' /* Lateral eddy viscosity ( m^2/s ) */')
67 cnh 1.14 CALL WRITE_1D_R8( viscA4, 1, INDEX_NONE,'viscAh =',
68     &' /* Lateral biharmonic viscosity ( m^4/s ) */')
69 cnh 1.5 CALL WRITE_1D_R8( viscAz, 1, INDEX_NONE,'viscAz =',
70     &' /* Vertical eddy viscosity ( m^2/s ) */')
71     CALL WRITE_1D_R8( diffKhT, 1, INDEX_NONE,'diffKhT =',
72     &' /* Laplacian diffusion of heat laterally ( m^2/s ) */')
73     CALL WRITE_1D_R8( diffKzT, 1, INDEX_NONE,'diffKzT =',
74     &' /* Laplacian diffusion of heat vertically ( m^2/s ) */')
75     CALL WRITE_1D_R8( diffK4T, 1, INDEX_NONE,'diffK4T =',
76     &' /* Bihaarmonic diffusion of heat laterally ( m^4/s ) */')
77     CALL WRITE_1D_R8( diffKhS, 1, INDEX_NONE,'diffKhS =',
78     &' /* Laplacian diffusion of salt laterally ( m^2/s ) */')
79     CALL WRITE_1D_R8( diffKzS, 1, INDEX_NONE,'diffKzS =',
80     &' /* Laplacian diffusion of salt vertically ( m^2/s ) */')
81     CALL WRITE_1D_R8( diffK4S, 1, INDEX_NONE,'diffK4S =',
82     &' /* Bihaarmonic diffusion of salt laterally ( m^4/s ) */')
83 cnh 1.6 CALL WRITE_1D_R8( tAlpha,1, INDEX_NONE,'tAlpha =',
84     &' /* Linear EOS thermal expansion coefficient ( 1/degree ) */')
85     CALL WRITE_1D_R8( sBeta, 1, INDEX_NONE,'sBeta =',
86     &' /* Linear EOS haline contraction coefficient ( 1/ppt ) */')
87     CALL WRITE_1D_R8( rhonil,1, INDEX_NONE,'rhonil =',
88     &' /* Reference density ( kg/m^3 ) */')
89     CALL WRITE_1D_R8( gravity,1, INDEX_NONE,'gravity =',
90     &' /* Gravitational acceleration ( m/s^2 ) */')
91 cnh 1.8 CALL WRITE_1D_R8( gBaro,1, INDEX_NONE,'gBaro =',
92     &' /* Barotropic gravity ( m/s^2 ) */')
93 cnh 1.6 CALL WRITE_1D_R8( f0,1, INDEX_NONE,'f0 =',
94     &' /* Reference coriolis parameter ( 1/s ) */')
95     CALL WRITE_1D_R8( beta,1, INDEX_NONE,'beta =',
96     &' /* Beta ( 1/(m.s) ) */')
97 cnh 1.8 CALL WRITE_1D_R8( freeSurfFac,1, INDEX_NONE,'freeSurfFac =',
98     &' /* Implcit free surface factor */')
99     CALL WRITE_1D_L( implicitFreeSurface,1, INDEX_NONE,
100     & 'implicitFreeSurface =',
101     &' /* Implicit free surface on/off flag */')
102     CALL WRITE_1D_L( rigidLid,1, INDEX_NONE,
103     & 'rigidLid =',
104     &' /* Rigid lid on/off flag */')
105 cnh 1.10 CALL WRITE_1D_L( momStepping,1, INDEX_NONE,
106     & 'momStepping =', ' /* Momentum equation on/off flag */')
107 cnh 1.9 CALL WRITE_1D_L( momAdvection,1, INDEX_NONE,
108 cnh 1.10 & 'momAdvection =', ' /* Momentum advection on/off flag */')
109 cnh 1.9 CALL WRITE_1D_L( momViscosity,1, INDEX_NONE,
110     & 'momViscosity =', ' /* Momentum viscosity on/off flag */')
111     CALL WRITE_1D_L( useCoriolis,1, INDEX_NONE,
112     & 'useCoriolis =', ' /* Coriolis on/off flag */')
113     CALL WRITE_1D_L( momForcing,1, INDEX_NONE,
114     & 'momForcing =', ' /* Momentum forcing on/off flag */')
115     CALL WRITE_1D_L( momPressureForcing,1, INDEX_NONE,
116     & 'momPressureForcing =', ' /* Momentum pressure term on/off flag */')
117 cnh 1.10 CALL WRITE_1D_L( tempStepping,1, INDEX_NONE,
118     & 'tempStepping =', ' /* Temperature equation on/off flag */')
119 cnh 1.8 CALL WRITE_1D_R8( GMMaxSlope,1, INDEX_NONE,'GMMaxSlope =',
120     &' /* Max. slope allowed in GM/Redi tensor */')
121     CALL WRITE_1D_R8( GMLength,1, INDEX_NONE,'GMLength =',
122     &' /* Length to use in Visbeck et al. formula for K (m) */')
123     CALL WRITE_1D_R8( GMAlpha,1, INDEX_NONE,'GMAlpha =',
124     &' /* alpha to use in Visbeck et al. formula for K */')
125     CALL WRITE_1D_R8( GMdepth,1, INDEX_NONE,'GMdepth =',
126     &' /* Depth to integrate for Visbeck et. al Richardson # (m) */')
127     CALL WRITE_1D_R8( GMkbackground,1, INDEX_NONE,'GMkbackground =',
128     &' /* background value of GM/Redi coefficient m^2/s */')
129 cnh 1.6 WRITE(msgBuf,'(A)') '// '
130     CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)
131 cnh 1.9
132 cnh 1.6 WRITE(msgBuf,'(A)') '// Elliptic solver(s) paramters ( PARM02 in namelist ) '
133     CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)
134     WRITE(msgBuf,'(A)') '// '
135     CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)
136     CALL WRITE_1D_I( cg2dMaxIters,1, INDEX_NONE,'cg2dMaxIters =',
137     &' /* Upper limit on 2d con. grad iterations */')
138     CALL WRITE_1D_I( cg2dChkResFreq,1, INDEX_NONE,'cg2dChkResFreq =',
139     &' /* 2d con. grad convergence test frequency */')
140     CALL WRITE_1D_R8( cg2dTargetResidual,1, INDEX_NONE,'cg2dTargetResidual =',
141     &' /* 2d con. grad target residual */')
142    
143     WRITE(msgBuf,'(A)') '// '
144     CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)
145     WRITE(msgBuf,'(A)') '// Time stepping paramters ( PARM03 in namelist ) '
146     CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)
147     WRITE(msgBuf,'(A)') '// '
148     CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)
149     CALL WRITE_1D_I( nIter0,1, INDEX_NONE,'nIter0 =',
150     &' /* Base timestep number */')
151     CALL WRITE_1D_I( nTimeSteps,1, INDEX_NONE,'nTimeSteps =',
152     &' /* Number of timesteps */')
153     CALL WRITE_1D_R8( deltaTmom,1, INDEX_NONE,'deltatTmom =',
154     &' /* Momentum equation timestep ( s ) */')
155     CALL WRITE_1D_R8( deltaTtracer,1, INDEX_NONE,'deltatTtracer =',
156     &' /* Tracer equation timestep ( s ) */')
157 cnh 1.12 CALL WRITE_1D_R8( deltaTClock ,1, INDEX_NONE,'deltatTClock =',
158     &' /* Model clock timestep ( s ) */')
159 cnh 1.9 CALL WRITE_1D_R8( cAdjFreq,1, INDEX_NONE,'cAdjFreq =',
160     &' /* Convective adjustment interval ( s ) */')
161 cnh 1.6 CALL WRITE_1D_R8( abEps,1, INDEX_NONE,'abEps =',
162     &' /* Adams-Bashforth stabilizing weight */')
163     CALL WRITE_1D_R8( tauCD,1, INDEX_NONE,'tauCD =',
164     &' /* CD coupling time-scale ( s ) */')
165     CALL WRITE_1D_R8( rCD,1, INDEX_NONE,'rCD =',
166     &' /* Normalised CD coupling parameter */')
167     CALL WRITE_1D_R8( startTime,1, INDEX_NONE,'startTime =',
168     &' /* Run start time ( s ). */')
169     CALL WRITE_1D_R8( endTime,1, INDEX_NONE,'endTime =',
170     &' /* Integration ending time ( s ). */')
171 cnh 1.7 CALL WRITE_1D_R8( pChkPtFreq,1, INDEX_NONE,'pChkPtFreq =',
172     &' /* Permanent restart/checkpoint file interval ( s ). */')
173 cnh 1.6 CALL WRITE_1D_R8( chkPtFreq,1, INDEX_NONE,'chkPtFreq =',
174 cnh 1.7 &' /* Rolling restart/checkpoint file interval ( s ). */')
175 cnh 1.6 CALL WRITE_1D_R8( dumpFreq,1, INDEX_NONE,'dumpFreq =',
176     &' /* Model state write out interval ( s ). */')
177    
178     WRITE(msgBuf,'(A)') '// '
179     CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)
180     WRITE(msgBuf,'(A)') '// Gridding paramters ( PARM04 in namelist ) '
181     CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)
182     WRITE(msgBuf,'(A)') '// '
183     CALL PRINT_MESSAGE( msgBuf, standardMessageUnit, SQUEEZE_RIGHT , 1)
184     CALL WRITE_1D_L( usingCartesianGrid,1, INDEX_NONE,'usingCartesianGrid =',
185     &' /* Cartesian coordinates flag ( True / False ) */')
186     CALL WRITE_1D_L( usingSphericalPolarGrid,1, INDEX_NONE,'usingSphericalPolarGrid =',
187     &' /* Spherical coordinates flag ( True / False ) */')
188 cnh 1.13 CALL WRITE_1D_R8( delZ,Nr, INDEX_K,'delZ = ',
189 cnh 1.6 &' /* W spacing ( m ) */')
190     CALL WRITE_1D_R8( delX, Nx, INDEX_I,'delX = ',
191     &' /* U spacing ( m - cartesian, degrees - spherical ) */')
192     CALL WRITE_1D_R8( delY, Ny, INDEX_J,'delY = ',
193     &' /* V spacing ( m - cartesian, degrees - spherical ) */')
194     CALL WRITE_1D_R8( phiMin, 1, INDEX_NONE,'phiMin = ',
195     &' /* Southern boundary ( ignored - cartesian, degrees - spherical ) */')
196     CALL WRITE_1D_R8( thetaMin, 1, INDEX_NONE,'thetaMin = ',
197     &' /* Western boundary ( ignored - cartesian, degrees - spherical ) */')
198     CALL WRITE_1D_R8( rSphere, 1, INDEX_NONE,'rSphere = ',
199     &' /* Radius ( ignored - cartesian, m - spherical ) */')
200     DO bi=1,nSx
201     DO I=1,sNx
202     xcoord((bi-1)*sNx+I) = xc(I,1,bi,1)
203     ENDDO
204     ENDDO
205 cnh 1.11 CALL WRITE_1D_R8( xcoord, sNx*nSx, INDEX_I,'xcoord = ',
206 cnh 1.6 &' /* P-point X coordinate ( m - cartesian, degrees - spherical ) */')
207     DO bj=1,nSy
208     DO J=1,sNy
209     ycoord((bj-1)*sNy+J) = yc(1,J,1,bj)
210     ENDDO
211     ENDDO
212 cnh 1.11 CALL WRITE_1D_R8( ycoord, sNy*nSy, INDEX_J,'ycoord = ',
213 cnh 1.6 &' /* P-point Y coordinate ( m - cartesian, degrees - spherical ) */')
214 cnh 1.13 DO K=1,Nr
215     rcoord(K) = rc(K)
216 cnh 1.6 ENDDO
217 cnh 1.13 CALL WRITE_1D_R8( rcoord, Nr, INDEX_K,'rcoord = ',
218     &' /* P-point R coordinate ( units of r ) */')
219 cnh 1.6
220 cnh 1.5
221    
222 cnh 1.1 WRITE(msgBuf,'(A)') ' '
223     CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
224     & SQUEEZE_RIGHT , 1)
225 cnh 1.5
226 cnh 1.1 _END_MASTER(myThid)
227     _BARRIER
228    
229    
230     RETURN
231     100 FORMAT(A,
232 cnh 1.4 &' '
233 cnh 1.1 &)
234     END
235    

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