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

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Revision 1.37 - (show annotations) (download)
Sun Feb 17 02:24:57 2013 UTC (11 years, 3 months ago) by jmc
Branch: MAIN
CVS Tags: checkpoint64i, checkpoint64h, checkpoint64k, checkpoint64j, checkpoint64e, checkpoint64d, checkpoint64g, checkpoint64f
Changes since 1.36: +3 -1 lines
write to file new projection array for model C-grid velocity

1 C $Header: /u/gcmpack/MITgcm/model/src/write_grid.F,v 1.36 2012/07/06 21:44:39 jmc Exp $
2 C $Name: $
3
4 #include "PACKAGES_CONFIG.h"
5 #include "CPP_OPTIONS.h"
6 #include "AD_CONFIG.h"
7
8 C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
9 CBOP
10 C !ROUTINE: WRITE_GRID
11 C !INTERFACE:
12 SUBROUTINE WRITE_GRID(
13 I myThid )
14
15 C !DESCRIPTION:
16 C Writes the model geometry and grid arrays to file(s) using which
17 C ever I/O package is available/active. This includes horizontal
18 C and vertical grid and finite volume modulating factors (hFacs).
19 C Essentailly, it dumps the contents of GRID.h to disk.
20
21 C !CALLING SEQUENCE:
22 C INITIALIZE_FIXED
23 C |
24 C |-- WRITE_GRID
25
26 C !USES:
27 IMPLICIT NONE
28
29 #include "SIZE.h"
30 #include "EEPARAMS.h"
31 #include "PARAMS.h"
32 #ifdef ALLOW_MNC
33 #include "MNC_PARAMS.h"
34 #endif
35 #include "GRID.h"
36
37 C !INPUT/OUTPUT PARAMETERS:
38 C myThid - Number of this instances
39 INTEGER myThid
40
41 C !LOCAL VARIABLES:
42 C tmpfld :: Temporary array used to compute & write Total Depth ;
43 C loaded in multi-threaded way but written by single (master)
44 C thread => needs to be in common to be shared by all threads
45 C no longer needed since MDSIO now allows (2009/06/07) to write local arrays
46 c COMMON / LOCAL_WRITE_GRID / tmpfld
47 _RS tmpfld(1-OLx:sNx+OLx,1-OLy:sNy+OLy,nSx,nSy)
48 _RS tmpVar(Nr+1)
49 INTEGER i,j,k,bi,bj
50 LOGICAL writegrid_mdsio
51 #ifdef ALLOW_MNC
52 CHARACTER*(4) bfname
53 #endif
54 CEOP
55
56 C Calculate the fluid thickness in R coordinates as seen by the
57 C model. This may differ from what the user specified due to
58 C partial cells, etc.
59 DO bj = myByLo(myThid), myByHi(myThid)
60 DO bi = myBxLo(myThid), myBxHi(myThid)
61 DO j=1-OLy,sNy+OLy
62 DO i=1-OLx,sNx+OLx
63 C Total fluid column thickness (r_unit) :
64 tmpfld(i,j,bi,bj) = Ro_surf(i,j,bi,bj) - R_low(i,j,bi,bj)
65 ENDDO
66 ENDDO
67 ENDDO
68 ENDDO
69 c _BARRIER
70
71 writegrid_mdsio = .TRUE.
72 #ifdef ALLOW_MNC
73 IF ( useMNC ) THEN
74 writegrid_mdsio = outputTypesInclusive .OR. .NOT.writegrid_mnc
75 ENDIF
76 #endif /* ALLOW_MNC */
77
78 IF ( writegrid_mdsio ) THEN
79
80 C Write horizontal grid arrays
81 CALL WRITE_FLD_XY_RS( 'XC',' ',xC,-1,myThid)
82 CALL WRITE_FLD_XY_RS( 'YC',' ',yC,-1,myThid)
83 CALL WRITE_FLD_XY_RS( 'XG',' ',xG,-1,myThid)
84 CALL WRITE_FLD_XY_RS( 'YG',' ',yG,-1,myThid)
85 CALL WRITE_FLD_XY_RS( 'RAC',' ',rA,-1,myThid)
86 CALL WRITE_FLD_XY_RS( 'RAW',' ',rAw,-1,myThid)
87 CALL WRITE_FLD_XY_RS( 'RAS',' ',rAs,-1,myThid)
88 CALL WRITE_FLD_XY_RS( 'RAZ',' ',rAz,-1,myThid)
89 CALL WRITE_FLD_XY_RS( 'DXG',' ',dxG,-1,myThid)
90 CALL WRITE_FLD_XY_RS( 'DYG',' ',dyG,-1,myThid)
91 CALL WRITE_FLD_XY_RS( 'DXC',' ',dxC,-1,myThid)
92 CALL WRITE_FLD_XY_RS( 'DYC',' ',dyC,-1,myThid)
93 IF ( usingCurvilinearGrid .OR. rotateGrid ) THEN
94 CALL WRITE_FLD_XY_RS( 'AngleCS',' ',angleCosC,-1,myThid)
95 CALL WRITE_FLD_XY_RS( 'AngleSN',' ',angleSinC,-1,myThid)
96 CALL WRITE_FLD_XY_RS( 'U2zonDir',' ',u2zonDir,-1,myThid)
97 CALL WRITE_FLD_XY_RS( 'V2zonDir',' ',v2zonDir,-1,myThid)
98 ENDIF
99 C Write 3D geometry arrays
100 CALL WRITE_FLD_XY_RS( 'Depth',' ',tmpfld,-1,myThid)
101 IF ( debugLevel.GE.debLevC ) THEN
102 CALL WRITE_FLD_XY_RS( 'rLowC', ' ', R_low, -1,myThid)
103 CALL WRITE_FLD_XY_RS( 'rLowW', ' ', rLowW, -1,myThid)
104 CALL WRITE_FLD_XY_RS( 'rLowS', ' ', rLowS, -1,myThid)
105 CALL WRITE_FLD_XY_RS( 'rSurfC',' ',Ro_surf,-1,myThid)
106 CALL WRITE_FLD_XY_RS( 'rSurfW',' ',rSurfW, -1,myThid)
107 CALL WRITE_FLD_XY_RS( 'rSurfS',' ',rSurfS, -1,myThid)
108 ENDIF
109 CALL WRITE_FLD_XYZ_RS( 'hFacC',' ',hFacC, 0,myThid)
110 CALL WRITE_FLD_XYZ_RS( 'hFacW',' ',hFacW, 0,myThid)
111 CALL WRITE_FLD_XYZ_RS( 'hFacS',' ',hFacS, 0,myThid)
112 IF ( fluidIsAir )
113 & CALL WRITE_FLD_XY_RS( 'topo_P',' ',Ro_surf,-1,myThid)
114 IF ( useOBCS ) THEN
115 CALL WRITE_FLD_XY_RS( 'maskInC',' ', maskInC, -1, myThid )
116 CALL WRITE_FLD_XY_RS( 'maskInW',' ', maskInW, -1, myThid )
117 CALL WRITE_FLD_XY_RS( 'maskInS',' ', maskInS, -1, myThid )
118 c CALL WRITE_FULLARRAY_RS('maskInC',maskInC,1,0,0,1,-1,myThid)
119 c CALL WRITE_FULLARRAY_RS('maskInW',maskInW,1,0,0,1,-1,myThid)
120 c CALL WRITE_FULLARRAY_RS('maskInS',maskInS,1,0,0,1,-1,myThid)
121 ENDIF
122
123 C Write vertical grid arrays
124 CALL WRITE_GLVEC_RS( 'RC', ' ', rC, Nr, -1, myThid )
125 CALL WRITE_GLVEC_RS( 'RF', ' ', rF, 1+Nr,-1, myThid )
126 CALL WRITE_GLVEC_RS( 'DRC',' ', drC, Nr, -1, myThid )
127 CALL WRITE_GLVEC_RS( 'DRF',' ', drF, Nr, -1, myThid )
128 IF ( selectSigmaCoord.NE.0 ) THEN
129 CALL WRITE_GLVEC_RS( 'AHybSigF',' ',aHybSigmF,1+Nr,-1,myThid )
130 CALL WRITE_GLVEC_RS( 'BHybSigF',' ',bHybSigmF,1+Nr,-1,myThid )
131 CALL WRITE_GLVEC_RS( 'AHybSigC',' ',aHybSigmC, Nr, -1,myThid )
132 CALL WRITE_GLVEC_RS( 'BHybSigC',' ',bHybSigmC, Nr, -1,myThid )
133 CALL WRITE_GLVEC_RS('DAHybSigF',' ',dAHybSigF, Nr, -1,myThid )
134 CALL WRITE_GLVEC_RS('DBHybSigF',' ',dBHybSigF, Nr, -1,myThid )
135 CALL WRITE_GLVEC_RS('DAHybSigC',' ',dAHybSigC,1+Nr,-1,myThid )
136 CALL WRITE_GLVEC_RS('DBHybSigC',' ',dBHybSigC,1+Nr,-1,myThid )
137 ENDIF
138 C-- comment out the "if": also usefull for the Ocean (to get the full Presure)
139 c IF (buoyancyRelation .EQ. 'ATMOSPHERIC') THEN
140 DO k=1,Nr+1
141 tmpVar(k) = phiRef(2*k-1)
142 ENDDO
143 CALL WRITE_GLVEC_RS( 'PHrefF',' ',tmpVar,1+Nr,-1, myThid )
144 DO k=1,Nr
145 tmpVar(k) = phiRef(2*k)
146 ENDDO
147 CALL WRITE_GLVEC_RS( 'PHrefC',' ',tmpVar, Nr, -1, myThid )
148 c ENDIF
149
150 ENDIF
151
152 C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
153
154 #ifdef ALLOW_MNC
155 IF ( useMNC .AND. writegrid_mnc ) THEN
156
157 _BEGIN_MASTER( myThid )
158 bfname='grid'
159
160 C Write the GRID.h variables to a file
161 CALL MNC_CW_SET_UDIM(bfname, 0, myThid)
162 CALL MNC_CW_SET_CITER(bfname, 2, -1, -1, -1, myThid)
163 CALL MNC_CW_SET_UDIM(bfname, 1, myThid)
164 CALL MNC_CW_RS_W('D',bfname,0,0,'RC',rC,myThid)
165 CALL MNC_CW_RS_W('D',bfname,0,0,'RF',rF,myThid)
166 CALL MNC_CW_RS_W('D',bfname,0,0,'RU',rF(2),myThid)
167 CALL MNC_CW_RS_W('D',bfname,0,0,'RL',rF,myThid)
168 CALL MNC_CW_RS_W('D',bfname,0,0,'drC',drC,myThid)
169 CALL MNC_CW_RS_W('D',bfname,0,0,'drF',drF,myThid)
170 CALL MNC_CW_RS_W('D',bfname,0,0,'XC',xC,myThid)
171 CALL MNC_CW_RS_W('D',bfname,0,0,'YC',yC,myThid)
172 c CALL MNC_CW_RS_W('D',bfname,0,0,'XU',xG,myThid)
173 c CALL MNC_CW_RS_W('D',bfname,0,0,'YU',yC,myThid)
174 c CALL MNC_CW_RS_W('D',bfname,0,0,'XV',xC,myThid)
175 c CALL MNC_CW_RS_W('D',bfname,0,0,'YV',yG,myThid)
176 CALL MNC_CW_RS_W('D',bfname,0,0,'XG',xG,myThid)
177 CALL MNC_CW_RS_W('D',bfname,0,0,'YG',yG,myThid)
178 CALL MNC_CW_RS_W('D',bfname,0,0,'dxC',dxC,myThid)
179 CALL MNC_CW_RS_W('D',bfname,0,0,'dyC',dyC,myThid)
180 CALL MNC_CW_RS_W('D',bfname,0,0,'dxF',dxF,myThid)
181 CALL MNC_CW_RS_W('D',bfname,0,0,'dyF',dyF,myThid)
182 CALL MNC_CW_RS_W('D',bfname,0,0,'dxG',dxG,myThid)
183 CALL MNC_CW_RS_W('D',bfname,0,0,'dyG',dyG,myThid)
184 CALL MNC_CW_RS_W('D',bfname,0,0,'dxV',dxV,myThid)
185 CALL MNC_CW_RS_W('D',bfname,0,0,'dyU',dyU,myThid)
186 CALL MNC_CW_RS_W('D',bfname,0,0,'rA',rA,myThid)
187 CALL MNC_CW_RS_W('D',bfname,0,0,'rAw',rAw,myThid)
188 CALL MNC_CW_RS_W('D',bfname,0,0,'rAs',rAs,myThid)
189 CALL MNC_CW_RS_W('D',bfname,0,0,'rAz',rAz,myThid)
190 IF ( usingCurvilinearGrid .OR. rotateGrid ) THEN
191 CALL MNC_CW_RS_W('D',bfname,0,0,'AngleCS',angleCosC,myThid)
192 CALL MNC_CW_RS_W('D',bfname,0,0,'AngleSN',angleSinC,myThid)
193 ENDIF
194 CALL MNC_CW_RS_W('D',bfname,0,0,'fCori',fCori,myThid)
195 CALL MNC_CW_RS_W('D',bfname,0,0,'fCoriG',fCoriG,myThid)
196 CALL MNC_CW_RS_W('D',bfname,0,0,'R_low',R_low,myThid)
197 CALL MNC_CW_RS_W('D',bfname,0,0,'Ro_surf',Ro_surf,myThid)
198 CALL MNC_CW_RS_W('D',bfname,0,0,'Depth',tmpfld,myThid)
199 CALL MNC_CW_RS_W('D',bfname,0,0,'HFacC',HFacC,myThid)
200 CALL MNC_CW_RS_W('D',bfname,0,0,'HFacW',HFacW,myThid)
201 CALL MNC_CW_RS_W('D',bfname,0,0,'HFacS',HFacS,myThid)
202
203 _END_MASTER(myThid)
204
205 ENDIF
206
207 IF ( useMNC .AND. (usingCurvilinearGrid .OR. rotateGrid) ) THEN
208 C If the grid is not simply cartesian, cylindrical or spherical,
209 C include additional coordinate information to the following files
210 IF ( snapshot_mnc .AND.
211 & ( dumpFreq .GT. 0. .OR. dumpInitAndLast ) )
212 & CALL MNC_CW_WRITE_GRID_COORD('state', myThid)
213 #if (defined ALLOW_AUTODIFF) && \
214 (defined (ALLOW_ADJOINT_RUN) || defined (ALLOW_ADMTLM)) && \
215 (defined ALLOW_AUTODIFF_MONITOR)
216 IF ( autodiff_mnc .AND. adjDumpFreq .GT. 0. ) THEN
217 CALL MNC_CW_WRITE_GRID_COORD('adstate', myThid)
218 #ifdef ALLOW_EXF
219 IF (useEXF) CALL MNC_CW_WRITE_GRID_COORD('adexf',myThid)
220 #endif /* ALLOW_EXF */
221 #ifdef ALLOW_SEAICE
222 IF (useSEAICE) CALL MNC_CW_WRITE_GRID_COORD('adseaice',myThid)
223 #endif /* ALLOW_SEAICE */
224 ENDIF
225 #endif /* ALLOW_AUTODIFF */
226 ENDIF
227
228 #endif /* ALLOW_MNC */
229
230 RETURN
231 END

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