/[MITgcm]/MITgcm_contrib/MPMice/beaufort/code/cpl_mpmice.F
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revision 1.8 by dimitri, Fri Feb 3 18:12:59 2012 UTC revision 1.18 by dimitri, Thu Nov 14 17:17:47 2013 UTC
# Line 1  Line 1 
 #define CPL_DEBUG  
1  #define FIX_FOR_EDGE_WINDS  #define FIX_FOR_EDGE_WINDS
2  #include "PACKAGES_CONFIG.h"  #include "PACKAGES_CONFIG.h"
3  #include "CPP_OPTIONS.h"  #include "CPP_OPTIONS.h"
# Line 23  C     == Global variables == Line 22  C     == Global variables ==
22  #include "PARAMS.h"  #include "PARAMS.h"
23  #include "DYNVARS.h"  #include "DYNVARS.h"
24  #include "GRID.h"  #include "GRID.h"
25    #include "FFIELDS.h"
26    #include "SEAICE_OPTIONS.h"
27    #include "SEAICE_SIZE.h"
28    #include "SEAICE.h"
29  #ifdef ALLOW_EXF  #ifdef ALLOW_EXF
30  # include "EXF_OPTIONS.h"  # include "EXF_OPTIONS.h"
31  # include "EXF_FIELDS.h"  # include "EXF_FIELDS.h"
32  #endif  #endif
 #ifdef ALLOW_SEAICE  
 # include "SEAICE_OPTIONS.h"  
 # include "SEAICE.h"  
 #endif  
33    
34        LOGICAL  DIFFERENT_MULTIPLE        LOGICAL  DIFFERENT_MULTIPLE
35        EXTERNAL DIFFERENT_MULTIPLE        EXTERNAL DIFFERENT_MULTIPLE
# Line 49  CEOP Line 48  CEOP
48        COMMON /CPL_MPI_ID/        COMMON /CPL_MPI_ID/
49       &        myworldid, local_ocean_leader, local_ice_leader       &        myworldid, local_ocean_leader, local_ice_leader
50        integer myworldid, local_ocean_leader, local_ice_leader        integer myworldid, local_ocean_leader, local_ice_leader
51    # ifdef ALLOW_USE_MPI
52        integer mpistatus(MPI_STATUS_SIZE), mpierr        integer mpistatus(MPI_STATUS_SIZE), mpierr
53    # endif /* ALLOW_USE_MPI */
54        integer xfer_gridsize(2)        integer xfer_gridsize(2)
55        integer i, j, bi, bj, buffsize, idx        integer i, j, bi, bj, buffsize, idx
56        Real*8  xfer_scalar        Real*8  xfer_scalar
# Line 58  CEOP Line 59  CEOP
59        Real*8  xfer_bc_veloc(2*(Nx+Ny)-6)        Real*8  xfer_bc_veloc(2*(Nx+Ny)-6)
60        _RL     local(1:sNx,1:sNy,nSx,nSy)        _RL     local(1:sNx,1:sNy,nSx,nSy)
61    
62        COMMON /FFIELDS_tmp/ fu_tmp, fv_tmp, Qnet_tmp, Qsw_tmp, EmPmR_tmp  # ifdef CPL_DEBUG
63        _RS  fu_tmp       (1-OLx:sNx+OLx,1-OLy:sNy+OLy,nSx,nSy)        character*(10) itername
64        _RS  fv_tmp       (1-OLx:sNx+OLx,1-OLy:sNy+OLy,nSx,nSy)        write(itername,'(i10.10)') myIter
65        _RS  Qnet_tmp     (1-OLx:sNx+OLx,1-OLy:sNy+OLy,nSx,nSy)  # endif /* CPL_DEBUG */
       _RS  Qsw_tmp      (1-OLx:sNx+OLx,1-OLy:sNy+OLy,nSx,nSy)  
       _RS  EmPmR_tmp    (1-OLx:sNx+OLx,1-OLy:sNy+OLy,nSx,nSy)  
   
 #ifdef CPL_DEBUG  
       _RL ScatArray(1-OLx:sNx+OLx,1-OLy:sNy+OLy,nSx,nSy)  
       DO bj=1,nSy  
        DO bi=1,nSx  
         DO j=1-OLy,sNy+OLy  
          DO i=1-OLx,sNx+OLx  
           ScatArray(i,j,bi,bj) = 0.0 _d 0  
          ENDDO  
         ENDDO  
        ENDDO  
       ENDDO  
 #endif  
66    
67        IF( myTime .EQ. startTime ) THEN        IF( myTime .EQ. startTime ) THEN
68    
69  C     Send deltatimestep  C     Send deltatimestep
70         _BEGIN_MASTER( myThid )         _BEGIN_MASTER( myThid )
71           xfer_scalar = deltat
72           buffsize = 1
73    # ifdef CPL_DEBUG
74           print*,'MITgcm send TimeInterval', xfer_scalar
75    # endif /* CPL_DEBUG */
76    # ifdef CPL_COUPLED
77         IF ( myworldid .EQ. local_ocean_leader ) THEN         IF ( myworldid .EQ. local_ocean_leader ) THEN
         xfer_scalar = deltat  
         buffsize = 1  
78          CALL MPI_SEND(xfer_scalar,buffsize,MPI_DOUBLE_PRECISION,          CALL MPI_SEND(xfer_scalar,buffsize,MPI_DOUBLE_PRECISION,
79       &     local_ice_leader,TimeIntervalTag,MPI_COMM_WORLD,mpierr)       &     local_ice_leader,TimeIntervalTag,MPI_COMM_WORLD,mpierr)
 #ifdef CPL_DEBUG  
         print*,'MITgcm send TimeInterval', xfer_scalar  
 #endif  
80         ENDIF         ENDIF
81    # endif /* CPL_COUPLED */
82         _END_MASTER( myThid )         _END_MASTER( myThid )
83    
84  C     Send grid dimensions (Nx,Ny)  C     Send grid dimensions (Nx,Ny)
85         _BEGIN_MASTER( myThid )         _BEGIN_MASTER( myThid )
86           xfer_gridsize(1)=Nx
87           xfer_gridsize(2)=Ny
88           buffsize = 2
89    # ifdef CPL_DEBUG
90           print*,'MITgcm send OceanGridsize', xfer_gridsize
91    # endif /* CPL_DEBUG */
92    # ifdef CPL_COUPLED
93         IF ( myworldid .EQ. local_ocean_leader ) THEN         IF ( myworldid .EQ. local_ocean_leader ) THEN
         xfer_gridsize(1)=Nx  
         xfer_gridsize(2)=Ny  
         buffsize = 2  
94          CALL MPI_SEND(xfer_gridsize,buffsize,MPI_INTEGER,          CALL MPI_SEND(xfer_gridsize,buffsize,MPI_INTEGER,
95       &     local_ice_leader,OceanGridsizeTag,MPI_COMM_WORLD,mpierr)       &     local_ice_leader,OceanGridsizeTag,MPI_COMM_WORLD,mpierr)
 #ifdef CPL_DEBUG  
         print*,'MITgcm send OceanGridsize', xfer_gridsize  
 #endif  
96         ENDIF         ENDIF
97    # endif /* CPL_COUPLED */
98         _END_MASTER( myThid )         _END_MASTER( myThid )
99    
100    C     Send longitude East of SouthWest corner
101           DO bj=1,nSy
102            DO bi=1,nSx
103             DO j=1,sNy
104              DO i=1,sNx
105               local(i,j,bi,bj) = xG(i,j,bi,bj)
106              ENDDO
107             ENDDO
108            ENDDO
109           ENDDO
110           CALL GATHER_2D( xfer_array, local, myThid )
111    # ifdef CPL_DEBUG
112           CALL PLOT_FIELD_XYRL( xG, 'xG', myIter, myThid )
113    # endif /* CPL_DEBUG */
114    # ifdef CPL_COUPLED
115           _BEGIN_MASTER( myThid )
116           IF ( myworldid .EQ. local_ocean_leader ) THEN
117            buffsize = Nx*Ny
118            CALL MPI_SEND(xfer_array,buffsize,MPI_DOUBLE_PRECISION,
119         &     local_ice_leader,xGTag,MPI_COMM_WORLD,mpierr)
120           ENDIF
121           _END_MASTER( myThid )
122    # endif /* CPL_COUPLED */
123    
124    C     Send latitude North of SouthWest corner
125           DO bj=1,nSy
126            DO bi=1,nSx
127             DO j=1,sNy
128              DO i=1,sNx
129               local(i,j,bi,bj) = yG(i,j,bi,bj)
130              ENDDO
131             ENDDO
132            ENDDO
133           ENDDO
134           CALL GATHER_2D( xfer_array, local, myThid )
135    # ifdef CPL_DEBUG
136           CALL PLOT_FIELD_XYRL( yG, 'yG', myIter, myThid )
137    # endif /* CPL_DEBUG */
138    # ifdef CPL_COUPLED
139           _BEGIN_MASTER( myThid )
140           IF ( myworldid .EQ. local_ocean_leader ) THEN
141            buffsize = Nx*Ny
142            CALL MPI_SEND(xfer_array,buffsize,MPI_DOUBLE_PRECISION,
143         &     local_ice_leader,yGTag,MPI_COMM_WORLD,mpierr)
144           ENDIF
145           _END_MASTER( myThid )
146    # endif /* CPL_COUPLED */
147    
148    C     Send distance in m between SouthWest and SouthEast corner
149           DO bj=1,nSy
150            DO bi=1,nSx
151             DO j=1,sNy
152              DO i=1,sNx
153               local(i,j,bi,bj) = dxG(i,j,bi,bj)
154              ENDDO
155             ENDDO
156            ENDDO
157           ENDDO
158           CALL GATHER_2D( xfer_array, local, myThid )
159    # ifdef CPL_DEBUG
160           CALL PLOT_FIELD_XYRL( dxG, 'dxG', myIter, myThid )
161    # endif /* CPL_DEBUG */
162    # ifdef CPL_COUPLED
163           _BEGIN_MASTER( myThid )
164           IF ( myworldid .EQ. local_ocean_leader ) THEN
165            buffsize = Nx*Ny
166            CALL MPI_SEND(xfer_array,buffsize,MPI_DOUBLE_PRECISION,
167         &     local_ice_leader,dxGTag,MPI_COMM_WORLD,mpierr)
168           ENDIF
169           _END_MASTER( myThid )
170    # endif /* CPL_COUPLED */
171    
172    C     Send distance in m between SouthWest and NorthEast corner
173           DO bj=1,nSy
174            DO bi=1,nSx
175             DO j=1,sNy
176              DO i=1,sNx
177               local(i,j,bi,bj) = dyG(i,j,bi,bj)
178              ENDDO
179             ENDDO
180            ENDDO
181           ENDDO
182           CALL GATHER_2D( xfer_array, local, myThid )
183    # ifdef CPL_DEBUG
184           CALL PLOT_FIELD_XYRL( dyG, 'dyG', myIter, myThid )
185    # endif /* CPL_DEBUG */
186    # ifdef CPL_COUPLED
187           _BEGIN_MASTER( myThid )
188           IF ( myworldid .EQ. local_ocean_leader ) THEN
189            buffsize = Nx*Ny
190            CALL MPI_SEND(xfer_array,buffsize,MPI_DOUBLE_PRECISION,
191         &     local_ice_leader,dyGTag,MPI_COMM_WORLD,mpierr)
192           ENDIF
193           _END_MASTER( myThid )
194    # endif /* CPL_COUPLED */
195    
196    C     Send landmask of center of grid cell, 0 is land, >0 is ocean
197           DO bj=1,nSy
198            DO bi=1,nSx
199             DO j=1,sNy
200              DO i=1,sNx
201               local(i,j,bi,bj) = hFacC(i,j,1,bi,bj)
202              ENDDO
203             ENDDO
204            ENDDO
205           ENDDO
206           CALL GATHER_2D( xfer_array, local, myThid )
207    # ifdef CPL_DEBUG
208           CALL PLOT_FIELD_XYRL( hFacC, 'hFacC', myIter, myThid )
209    # endif /* CPL_DEBUG */
210    # ifdef CPL_COUPLED
211           _BEGIN_MASTER( myThid )
212           IF ( myworldid .EQ. local_ocean_leader ) THEN
213            buffsize = Nx*Ny
214            CALL MPI_SEND(xfer_array,buffsize,MPI_DOUBLE_PRECISION,
215         &     local_ice_leader,hFacCtag,MPI_COMM_WORLD,mpierr)
216           ENDIF
217           _END_MASTER( myThid )
218    # endif /* CPL_COUPLED */
219    
220  C     Send ice area  C     Send ice area
221         DO bj=1,nSy         DO bj=1,nSy
222          DO bi=1,nSx          DO bi=1,nSx
# Line 118  C     Send ice area Line 228  C     Send ice area
228          ENDDO          ENDDO
229         ENDDO         ENDDO
230         CALL GATHER_2D( xfer_array, local, myThid )         CALL GATHER_2D( xfer_array, local, myThid )
231    # ifdef CPL_DEBUG
232           CALL PLOT_FIELD_XYRL( AREA, 'AREA', myIter, myThid )
233    # endif /* CPL_DEBUG */
234    # ifdef CPL_COUPLED
235         _BEGIN_MASTER( myThid )         _BEGIN_MASTER( myThid )
236         IF ( myworldid .EQ. local_ocean_leader ) THEN         IF ( myworldid .EQ. local_ocean_leader ) THEN
237          buffsize = Nx*Ny          buffsize = Nx*Ny
# Line 125  C     Send ice area Line 239  C     Send ice area
239       &     local_ice_leader,AreaTag,MPI_COMM_WORLD,mpierr)       &     local_ice_leader,AreaTag,MPI_COMM_WORLD,mpierr)
240         ENDIF         ENDIF
241         _END_MASTER( myThid )         _END_MASTER( myThid )
242  #ifdef CPL_DEBUG  # endif /* CPL_COUPLED */
        CALL PLOT_FIELD_XYRL( AREA, 'AREA', myIter, myThid )  
 #endif  
243    
244  C     Send ice thickness  C     Send ice thickness
245         DO bj=1,nSy         DO bj=1,nSy
# Line 140  C     Send ice thickness Line 252  C     Send ice thickness
252          ENDDO          ENDDO
253         ENDDO         ENDDO
254         CALL GATHER_2D( xfer_array, local, myThid )         CALL GATHER_2D( xfer_array, local, myThid )
255    # ifdef CPL_DEBUG
256           CALL PLOT_FIELD_XYRL( HEFF, 'HEFF', myIter, myThid )
257    # endif /* CPL_DEBUG */
258    # ifdef CPL_COUPLED
259         _BEGIN_MASTER( myThid )         _BEGIN_MASTER( myThid )
260         IF ( myworldid .EQ. local_ocean_leader ) THEN         IF ( myworldid .EQ. local_ocean_leader ) THEN
261          buffsize = Nx*Ny          buffsize = Nx*Ny
# Line 147  C     Send ice thickness Line 263  C     Send ice thickness
263       &     local_ice_leader,HeffTag,MPI_COMM_WORLD,mpierr)       &     local_ice_leader,HeffTag,MPI_COMM_WORLD,mpierr)
264         ENDIF         ENDIF
265         _END_MASTER( myThid )         _END_MASTER( myThid )
266  #ifdef CPL_DEBUG  # endif /* CPL_COUPLED */
        CALL PLOT_FIELD_XYRL( HEFF, 'HEFF', myIter, myThid )  
 #endif  
267    
268  C     Send ice salinity  C     Send ice salinity
269         DO bj=1,nSy         DO bj=1,nSy
# Line 162  C     Send ice salinity Line 276  C     Send ice salinity
276          ENDDO          ENDDO
277         ENDDO         ENDDO
278         CALL GATHER_2D( xfer_array, local, myThid )         CALL GATHER_2D( xfer_array, local, myThid )
279    # ifdef CPL_DEBUG
280           CALL PLOT_FIELD_XYRL( HSALT, 'HSALT', myIter, myThid )
281    # endif /* CPL_DEBUG */
282    # ifdef CPL_COUPLED
283         _BEGIN_MASTER( myThid )         _BEGIN_MASTER( myThid )
284         IF ( myworldid .EQ. local_ocean_leader ) THEN         IF ( myworldid .EQ. local_ocean_leader ) THEN
285          buffsize = Nx*Ny          buffsize = Nx*Ny
# Line 169  C     Send ice salinity Line 287  C     Send ice salinity
287       &     local_ice_leader,HsaltTag,MPI_COMM_WORLD,mpierr)       &     local_ice_leader,HsaltTag,MPI_COMM_WORLD,mpierr)
288         ENDIF         ENDIF
289         _END_MASTER( myThid )         _END_MASTER( myThid )
290  #ifdef CPL_DEBUG  # endif /* CPL_COUPLED */
         CALL PLOT_FIELD_XYRL( HSALT, 'HSALT', myIter, myThid )  
 #endif  
291    
292  C     Send snow thickness  C     Send snow thickness
293         DO bj=1,nSy         DO bj=1,nSy
# Line 184  C     Send snow thickness Line 300  C     Send snow thickness
300          ENDDO          ENDDO
301         ENDDO         ENDDO
302         CALL GATHER_2D( xfer_array, local, myThid )         CALL GATHER_2D( xfer_array, local, myThid )
303    # ifdef CPL_DEBUG
304           CALL PLOT_FIELD_XYRL( HSNOW, 'HSNOW', myIter, myThid )
305    # endif /* CPL_DEBUG */
306    # ifdef CPL_COUPLED
307         _BEGIN_MASTER( myThid )         _BEGIN_MASTER( myThid )
308         IF ( myworldid .EQ. local_ocean_leader ) THEN         IF ( myworldid .EQ. local_ocean_leader ) THEN
309          buffsize = Nx*Ny          buffsize = Nx*Ny
# Line 191  C     Send snow thickness Line 311  C     Send snow thickness
311       &     local_ice_leader,HsnowTag,MPI_COMM_WORLD,mpierr)       &     local_ice_leader,HsnowTag,MPI_COMM_WORLD,mpierr)
312         ENDIF         ENDIF
313         _END_MASTER( myThid )         _END_MASTER( myThid )
314  #ifdef CPL_DEBUG  # endif /* CPL_COUPLED */
         CALL PLOT_FIELD_XYRL( HSNOW, 'HSNOW', myIter, myThid )  
 #endif  
315    
316        ENDIF ! ( myTime .EQ. startTime )        ENDIF ! ( myTime .EQ. startTime )
317    
318    C--   Apply ice open boundary conditions
319    #ifdef ALLOW_OBCS
320          IF ( useOBCS ) THEN
321           CALL OBCS_APPLY_SEAICE( myThid )
322           CALL OBCS_APPLY_UVICE( uice, vice, myThid )
323          ENDIF
324    #endif /* ALLOW_OBCS */
325    
326  C     Send ocean model time  C     Send ocean model time
327        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
328          xfer_scalar = myTime
329          buffsize = 1
330    # ifdef CPL_DEBUG
331          print*,'MITgcm send OceanTime', xfer_scalar
332    # endif /* CPL_DEBUG */
333    # ifdef CPL_COUPLED
334        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
        xfer_scalar = myTime  
        buffsize = 1  
335         CALL MPI_SEND(xfer_scalar,buffsize,MPI_DOUBLE_PRECISION,         CALL MPI_SEND(xfer_scalar,buffsize,MPI_DOUBLE_PRECISION,
336       &    local_ice_leader,OceanTimeTag,MPI_COMM_WORLD,mpierr)       &    local_ice_leader,OceanTimeTag,MPI_COMM_WORLD,mpierr)
 #ifdef CPL_DEBUG  
        print*,'MITgcm send OceanTime', xfer_scalar  
 #endif  
337        ENDIF        ENDIF
338    # endif /* CPL_COUPLED */
339        _END_MASTER( myThid )        _END_MASTER( myThid )
340    
341  C     Send boundary ice area  C     Send boundary ice area
# Line 238  C     Send boundary ice area Line 366  C     Send boundary ice area
366         idx = idx + 1         idx = idx + 1
367         xfer_bc_tracer(idx) = xfer_array(1,j)         xfer_bc_tracer(idx) = xfer_array(1,j)
368        ENDDO        ENDDO
369          buffsize = 2*(Nx+Ny)-4
370    # ifdef CPL_DEBUG
371          CALL PLOT_FIELD_XYRL( AREA, 'AREA obcs', myIter, myThid )
372          CALL WRITE_GLVEC_RS ( 'AREAobcs.', itername,
373         &     xfer_bc_tracer, buffsize, myIter, myThid )
374    # endif /* CPL_DEBUG */
375    # ifdef CPL_COUPLED
376        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
377        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
378         buffsize = 2*(Nx+Ny)-4  cdb    print*,'MITgcm is about to send AreaBcTag',buffsize
        print*,'MITgcm is about to send AreaBcTag',buffsize  
379         CALL MPI_SEND(xfer_bc_tracer,buffsize,MPI_DOUBLE_PRECISION,         CALL MPI_SEND(xfer_bc_tracer,buffsize,MPI_DOUBLE_PRECISION,
380       &    local_ice_leader,AreaBcTag,MPI_COMM_WORLD,mpierr)       &    local_ice_leader,AreaBcTag,MPI_COMM_WORLD,mpierr)
381         print*,'MITgcm has sent AreaBcTag',buffsize  cdb    print*,'MITgcm has sent AreaBcTag',buffsize
382        ENDIF        ENDIF
383        _END_MASTER( myThid )        _END_MASTER( myThid )
384    # endif /* CPL_COUPLED */
385    
386  C     Send boundary ice thickness  C     Send boundary ice thickness
387        DO bj=1,nSy        DO bj=1,nSy
# Line 276  C     Send boundary ice thickness Line 411  C     Send boundary ice thickness
411         idx = idx + 1         idx = idx + 1
412         xfer_bc_tracer(idx) = xfer_array(1,j)         xfer_bc_tracer(idx) = xfer_array(1,j)
413        ENDDO        ENDDO
414          buffsize = 2*(Nx+Ny)-4
415    # ifdef CPL_DEBUG
416          CALL PLOT_FIELD_XYRL( HEFF, 'HEFF obcs', myIter, myThid )
417          CALL WRITE_GLVEC_RS ( 'HEFFobcs.', itername,
418         &     xfer_bc_tracer, buffsize, myIter, myThid )
419    # endif /* CPL_DEBUG */
420    # ifdef CPL_COUPLED
421        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
422        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
        buffsize = 2*(Nx+Ny)-4  
423         CALL MPI_SEND(xfer_bc_tracer,buffsize,MPI_DOUBLE_PRECISION,         CALL MPI_SEND(xfer_bc_tracer,buffsize,MPI_DOUBLE_PRECISION,
424       &    local_ice_leader,HeffBcTag,MPI_COMM_WORLD,mpierr)       &    local_ice_leader,HeffBcTag,MPI_COMM_WORLD,mpierr)
425        ENDIF        ENDIF
426        _END_MASTER( myThid )        _END_MASTER( myThid )
427    # endif /* CPL_COUPLED */
428    
429  C     Send boundary ice salinity  C     Send boundary ice salinity
430        DO bj=1,nSy        DO bj=1,nSy
# Line 312  C     Send boundary ice salinity Line 454  C     Send boundary ice salinity
454         idx = idx + 1         idx = idx + 1
455         xfer_bc_tracer(idx) = xfer_array(1,j)         xfer_bc_tracer(idx) = xfer_array(1,j)
456        ENDDO        ENDDO
457          buffsize = 2*(Nx+Ny)-4
458    # ifdef CPL_DEBUG
459          CALL PLOT_FIELD_XYRL( HSALT, 'HSALT obcs', myIter, myThid )
460          CALL WRITE_GLVEC_RS ( 'HSALTobcs.', itername,
461         &     xfer_bc_tracer, buffsize, myIter, myThid )
462    # endif /* CPL_DEBUG */
463    # ifdef CPL_COUPLED
464        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
465        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
        buffsize = 2*(Nx+Ny)-4  
466         CALL MPI_SEND(xfer_bc_tracer,buffsize,MPI_DOUBLE_PRECISION,         CALL MPI_SEND(xfer_bc_tracer,buffsize,MPI_DOUBLE_PRECISION,
467       &    local_ice_leader,HsaltBcTag,MPI_COMM_WORLD,mpierr)       &    local_ice_leader,HsaltBcTag,MPI_COMM_WORLD,mpierr)
468        ENDIF        ENDIF
469        _END_MASTER( myThid )        _END_MASTER( myThid )
470    # endif /* CPL_COUPLED */
471    
472  C     Send boundary snow thickness  C     Send boundary snow thickness
473        DO bj=1,nSy        DO bj=1,nSy
# Line 348  C     Send boundary snow thickness Line 497  C     Send boundary snow thickness
497         idx = idx + 1         idx = idx + 1
498         xfer_bc_tracer(idx) = xfer_array(1,j)         xfer_bc_tracer(idx) = xfer_array(1,j)
499        ENDDO        ENDDO
500          buffsize = 2*(Nx+Ny)-4
501    # ifdef CPL_DEBUG
502          CALL PLOT_FIELD_XYRL( HSNOW, 'HSNOW obcs', myIter, myThid )
503          CALL WRITE_GLVEC_RS ( 'HSNOWobcs.', itername,
504         &     xfer_bc_tracer, buffsize, myIter, myThid )
505    # endif /* CPL_DEBUG */
506    # ifdef CPL_COUPLED
507        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
508        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
        buffsize = 2*(Nx+Ny)-4  
509         CALL MPI_SEND(xfer_bc_tracer,buffsize,MPI_DOUBLE_PRECISION,         CALL MPI_SEND(xfer_bc_tracer,buffsize,MPI_DOUBLE_PRECISION,
510       &    local_ice_leader,HsnowBcTag,MPI_COMM_WORLD,mpierr)       &    local_ice_leader,HsnowBcTag,MPI_COMM_WORLD,mpierr)
511        ENDIF        ENDIF
512        _END_MASTER( myThid )        _END_MASTER( myThid )
513    # endif /* CPL_COUPLED */
514    
515  C     Send boundary u ice  C     Send boundary u ice
516        DO bj=1,nSy        DO bj=1,nSy
# Line 384  C     Send boundary u ice Line 540  C     Send boundary u ice
540         idx = idx + 1         idx = idx + 1
541         xfer_bc_veloc(idx) = xfer_array(2,j)         xfer_bc_veloc(idx) = xfer_array(2,j)
542        ENDDO        ENDDO
543          buffsize = 2*(Nx+Ny)-6
544    # ifdef CPL_DEBUG
545          CALL PLOT_FIELD_XYRL( UICE, 'UICE obcs', myIter, myThid )
546          CALL WRITE_GLVEC_RS ( 'UICEobcs.', itername,
547         &     xfer_bc_veloc, buffsize, myIter, myThid )
548    # endif /* CPL_DEBUG */
549    # ifdef CPL_COUPLED
550        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
551        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
        buffsize = 2*(Nx+Ny)-6  
552         CALL MPI_SEND(xfer_bc_veloc,buffsize,MPI_DOUBLE_PRECISION,         CALL MPI_SEND(xfer_bc_veloc,buffsize,MPI_DOUBLE_PRECISION,
553       &    local_ice_leader,UiceBcTag,MPI_COMM_WORLD,mpierr)       &    local_ice_leader,UiceBcTag,MPI_COMM_WORLD,mpierr)
554        ENDIF        ENDIF
555        _END_MASTER( myThid )        _END_MASTER( myThid )
556    # endif /* CPL_COUPLED */
557    
558  C     Send boundary v ice  C     Send boundary v ice
559        DO bj=1,nSy        DO bj=1,nSy
# Line 420  C     Send boundary v ice Line 583  C     Send boundary v ice
583         idx = idx + 1         idx = idx + 1
584         xfer_bc_veloc(idx) = xfer_array(1,j)         xfer_bc_veloc(idx) = xfer_array(1,j)
585        ENDDO        ENDDO
586          buffsize = 2*(Nx+Ny)-6
587    # ifdef CPL_DEBUG
588          CALL PLOT_FIELD_XYRL( VICE, 'VICE obcs', myIter, myThid )
589          CALL WRITE_GLVEC_RS ( 'VICEobcs.', itername,
590         &     xfer_bc_veloc, buffsize, myIter, myThid )
591    # endif /* CPL_DEBUG */
592    # ifdef CPL_COUPLED
593        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
594        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
        buffsize = 2*(Nx+Ny)-6  
595         CALL MPI_SEND(xfer_bc_veloc,buffsize,MPI_DOUBLE_PRECISION,         CALL MPI_SEND(xfer_bc_veloc,buffsize,MPI_DOUBLE_PRECISION,
596       &    local_ice_leader,ViceBcTag,MPI_COMM_WORLD,mpierr)       &    local_ice_leader,ViceBcTag,MPI_COMM_WORLD,mpierr)
597        ENDIF        ENDIF
598        _END_MASTER( myThid )        _END_MASTER( myThid )
599    # endif /* CPL_COUPLED */
600    
601  C     Send u-wind velocity  C     Send u-wind velocity
602        DO bj=1,nSy        DO bj=1,nSy
# Line 439  C     Send u-wind velocity Line 609  C     Send u-wind velocity
609         ENDDO         ENDDO
610        ENDDO        ENDDO
611        CALL GATHER_2D( xfer_array, local, myThid )        CALL GATHER_2D( xfer_array, local, myThid )
612    # ifdef CPL_DEBUG
613          CALL PLOT_FIELD_XYRL( UWIND, 'UWIND', myIter, myThid )
614    # endif /* CPL_DEBUG */
615    # ifdef CPL_COUPLED
616        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
617        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
618  #ifdef FIX_FOR_EDGE_WINDS  #  ifdef FIX_FOR_EDGE_WINDS
619         DO j=1,Ny         DO j=1,Ny
620          xfer_array(Nx,j)=xfer_array(Nx-1,j)          xfer_array(Nx,j)=xfer_array(Nx-1,j)
621         ENDDO         ENDDO
622  #endif  #  endif /* FIX_FOR_EDGE_WINDS */
623         buffsize = Nx*Ny         buffsize = Nx*Ny
624         CALL MPI_SEND(xfer_array,buffsize,MPI_DOUBLE_PRECISION,         CALL MPI_SEND(xfer_array,buffsize,MPI_DOUBLE_PRECISION,
625       &    local_ice_leader,UwindTag,MPI_COMM_WORLD,mpierr)       &    local_ice_leader,UwindTag,MPI_COMM_WORLD,mpierr)
626        ENDIF        ENDIF
627        _END_MASTER( myThid )        _END_MASTER( myThid )
628    # endif /* CPL_COUPLED */
629    
630  C     Send v-wind velocity  C     Send v-wind velocity
631        DO bj=1,nSy        DO bj=1,nSy
# Line 463  C     Send v-wind velocity Line 638  C     Send v-wind velocity
638         ENDDO         ENDDO
639        ENDDO        ENDDO
640        CALL GATHER_2D( xfer_array, local, myThid )        CALL GATHER_2D( xfer_array, local, myThid )
641    # ifdef CPL_DEBUG
642          CALL PLOT_FIELD_XYRL( VWIND, 'VWIND', myIter, myThid )
643    # endif /* CPL_DEBUG */
644    # ifdef CPL_COUPLED
645        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
646        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
647  #ifdef FIX_FOR_EDGE_WINDS  #  ifdef FIX_FOR_EDGE_WINDS
648         DO i=1,Nx         DO i=1,Nx
649          xfer_array(i,Ny)=xfer_array(i,Ny-1)          xfer_array(i,Ny)=xfer_array(i,Ny-1)
650         ENDDO         ENDDO
651  #endif  #  endif /* FIX_FOR_EDGE_WINDS */
652         buffsize = Nx*Ny         buffsize = Nx*Ny
653         CALL MPI_SEND(xfer_array,buffsize,MPI_DOUBLE_PRECISION,         CALL MPI_SEND(xfer_array,buffsize,MPI_DOUBLE_PRECISION,
654       &    local_ice_leader,VwindTag,MPI_COMM_WORLD,mpierr)       &    local_ice_leader,VwindTag,MPI_COMM_WORLD,mpierr)
655        ENDIF        ENDIF
656        _END_MASTER( myThid )        _END_MASTER( myThid )
657    # endif /* CPL_COUPLED */
658    
659  C     Send downward longwave radiation  C     Send downward longwave radiation
660        DO bj=1,nSy        DO bj=1,nSy
# Line 487  C     Send downward longwave radiation Line 667  C     Send downward longwave radiation
667         ENDDO         ENDDO
668        ENDDO        ENDDO
669        CALL GATHER_2D( xfer_array, local, myThid )        CALL GATHER_2D( xfer_array, local, myThid )
670    # ifdef CPL_DEBUG
671          CALL PLOT_FIELD_XYRL( LWDOWN, 'LWDOWN', myIter, myThid )
672    # endif /* CPL_DEBUG */
673    # ifdef CPL_COUPLED
674        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
675        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
676         buffsize = Nx*Ny         buffsize = Nx*Ny
# Line 494  C     Send downward longwave radiation Line 678  C     Send downward longwave radiation
678       &    local_ice_leader,LwDownTag,MPI_COMM_WORLD,mpierr)       &    local_ice_leader,LwDownTag,MPI_COMM_WORLD,mpierr)
679        ENDIF        ENDIF
680        _END_MASTER( myThid )        _END_MASTER( myThid )
681    # endif /* CPL_COUPLED */
682    
683  C     Send downward shortwave radiation  C     Send downward shortwave radiation
684        DO bj=1,nSy        DO bj=1,nSy
# Line 506  C     Send downward shortwave radiation Line 691  C     Send downward shortwave radiation
691         ENDDO         ENDDO
692        ENDDO        ENDDO
693        CALL GATHER_2D( xfer_array, local, myThid )        CALL GATHER_2D( xfer_array, local, myThid )
694    # ifdef CPL_DEBUG
695          CALL PLOT_FIELD_XYRL( SWDOWN, 'SWDOWN', myIter, myThid )
696    # endif /* CPL_DEBUG */
697    # ifdef CPL_COUPLED
698        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
699        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
700         buffsize = Nx*Ny         buffsize = Nx*Ny
# Line 513  C     Send downward shortwave radiation Line 702  C     Send downward shortwave radiation
702       &    local_ice_leader,SwDownTag,MPI_COMM_WORLD,mpierr)       &    local_ice_leader,SwDownTag,MPI_COMM_WORLD,mpierr)
703        ENDIF        ENDIF
704        _END_MASTER( myThid )        _END_MASTER( myThid )
705    # endif /* CPL_COUPLED */
706    
707  C     Send air temperature  C     Send air temperature
708        DO bj=1,nSy        DO bj=1,nSy
# Line 525  C     Send air temperature Line 715  C     Send air temperature
715         ENDDO         ENDDO
716        ENDDO        ENDDO
717        CALL GATHER_2D( xfer_array, local, myThid )        CALL GATHER_2D( xfer_array, local, myThid )
718    # ifdef CPL_DEBUG
719          CALL PLOT_FIELD_XYRL( ATEMP, 'ATEMP', myIter, myThid )
720    # endif /* CPL_DEBUG */
721    # ifdef CPL_COUPLED
722        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
723        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
724         buffsize = Nx*Ny         buffsize = Nx*Ny
# Line 532  C     Send air temperature Line 726  C     Send air temperature
726       &    local_ice_leader,AtempTag,MPI_COMM_WORLD,mpierr)       &    local_ice_leader,AtempTag,MPI_COMM_WORLD,mpierr)
727        ENDIF        ENDIF
728        _END_MASTER( myThid )        _END_MASTER( myThid )
729    # endif /* CPL_COUPLED */
730    
731  C     Send humidity  C     Send humidity
732        DO bj=1,nSy        DO bj=1,nSy
# Line 544  C     Send humidity Line 739  C     Send humidity
739         ENDDO         ENDDO
740        ENDDO        ENDDO
741        CALL GATHER_2D( xfer_array, local, myThid )        CALL GATHER_2D( xfer_array, local, myThid )
742    # ifdef CPL_DEBUG
743          CALL PLOT_FIELD_XYRL( AQH, 'AQH', myIter, myThid )
744    # endif /* CPL_DEBUG */
745    # ifdef CPL_COUPLED
746        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
747        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
748         buffsize = Nx*Ny         buffsize = Nx*Ny
# Line 551  C     Send humidity Line 750  C     Send humidity
750       &    local_ice_leader,AqhTag,MPI_COMM_WORLD,mpierr)       &    local_ice_leader,AqhTag,MPI_COMM_WORLD,mpierr)
751        ENDIF        ENDIF
752        _END_MASTER( myThid )        _END_MASTER( myThid )
753    # endif /* CPL_COUPLED */
754    
755  C     Send precipitation  C     Send precipitation
756        DO bj=1,nSy        DO bj=1,nSy
# Line 563  C     Send precipitation Line 763  C     Send precipitation
763         ENDDO         ENDDO
764        ENDDO        ENDDO
765        CALL GATHER_2D( xfer_array, local, myThid )        CALL GATHER_2D( xfer_array, local, myThid )
766    # ifdef CPL_DEBUG
767          CALL PLOT_FIELD_XYRL( PRECIP, 'PRECIP', myIter, myThid )
768    # endif /* CPL_DEBUG */
769    # ifdef CPL_COUPLED
770        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
771        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
772         buffsize = Nx*Ny         buffsize = Nx*Ny
# Line 570  C     Send precipitation Line 774  C     Send precipitation
774       &    local_ice_leader,PrecipTag,MPI_COMM_WORLD,mpierr)       &    local_ice_leader,PrecipTag,MPI_COMM_WORLD,mpierr)
775        ENDIF        ENDIF
776        _END_MASTER( myThid )        _END_MASTER( myThid )
777    # endif /* CPL_COUPLED */
778    
779  C     Send ocean surface temperature  C     Send ocean surface temperature
780        DO bj=1,nSy        DO bj=1,nSy
# Line 582  C     Send ocean surface temperature Line 787  C     Send ocean surface temperature
787         ENDDO         ENDDO
788        ENDDO        ENDDO
789        CALL GATHER_2D( xfer_array, local, myThid )        CALL GATHER_2D( xfer_array, local, myThid )
790    # ifdef CPL_DEBUG
791          CALL PLOT_FIELD_XYZRL( THETA, 'SST', 1, myIter, myThid )
792    # endif /* CPL_DEBUG */
793    # ifdef CPL_COUPLED
794        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
795        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
796         buffsize = Nx*Ny         buffsize = Nx*Ny
# Line 589  C     Send ocean surface temperature Line 798  C     Send ocean surface temperature
798       &    local_ice_leader,SstTag,MPI_COMM_WORLD,mpierr)       &    local_ice_leader,SstTag,MPI_COMM_WORLD,mpierr)
799        ENDIF        ENDIF
800        _END_MASTER( myThid )        _END_MASTER( myThid )
801    # endif /* CPL_COUPLED */
802    
803  C     Send ocean surface salinity  C     Send ocean surface salinity
804        DO bj=1,nSy        DO bj=1,nSy
# Line 601  C     Send ocean surface salinity Line 811  C     Send ocean surface salinity
811         ENDDO         ENDDO
812        ENDDO        ENDDO
813        CALL GATHER_2D( xfer_array, local, myThid )        CALL GATHER_2D( xfer_array, local, myThid )
814    # ifdef CPL_DEBUG
815          CALL PLOT_FIELD_XYZRL( SALT, 'SSS', 1, myIter, myThid )
816    # endif /* CPL_DEBUG */
817    # ifdef CPL_COUPLED
818        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
819        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
820         buffsize = Nx*Ny         buffsize = Nx*Ny
# Line 608  C     Send ocean surface salinity Line 822  C     Send ocean surface salinity
822       &    local_ice_leader,SssTag,MPI_COMM_WORLD,mpierr)       &    local_ice_leader,SssTag,MPI_COMM_WORLD,mpierr)
823        ENDIF        ENDIF
824        _END_MASTER( myThid )        _END_MASTER( myThid )
825    # endif /* CPL_COUPLED */
826    
827  C     Send surface u current  C     Send surface u current
828        DO bj=1,nSy        DO bj=1,nSy
# Line 620  C     Send surface u current Line 835  C     Send surface u current
835         ENDDO         ENDDO
836        ENDDO        ENDDO
837        CALL GATHER_2D( xfer_array, local, myThid )        CALL GATHER_2D( xfer_array, local, myThid )
838    # ifdef CPL_DEBUG
839          CALL PLOT_FIELD_XYZRL( uVel, 'uVel(k=1)', 1, myIter, myThid )
840    # endif /* CPL_DEBUG */
841    # ifdef CPL_COUPLED
842        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
843        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
844         buffsize = Nx*Ny         buffsize = Nx*Ny
# Line 627  C     Send surface u current Line 846  C     Send surface u current
846       &    local_ice_leader,UvelTag,MPI_COMM_WORLD,mpierr)       &    local_ice_leader,UvelTag,MPI_COMM_WORLD,mpierr)
847        ENDIF        ENDIF
848        _END_MASTER( myThid )        _END_MASTER( myThid )
849    # endif /* CPL_COUPLED */
850    
851  C     Send surface v current  C     Send surface v current
852        DO bj=1,nSy        DO bj=1,nSy
# Line 639  C     Send surface v current Line 859  C     Send surface v current
859         ENDDO         ENDDO
860        ENDDO        ENDDO
861        CALL GATHER_2D( xfer_array, local, myThid )        CALL GATHER_2D( xfer_array, local, myThid )
862    # ifdef CPL_DEBUG
863          CALL PLOT_FIELD_XYZRL( vVel, 'vVel(k=1)', 1, myIter, myThid )
864    # endif /* CPL_DEBUG */
865    # ifdef CPL_COUPLED
866        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
867        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
868         buffsize = Nx*Ny         buffsize = Nx*Ny
# Line 646  C     Send surface v current Line 870  C     Send surface v current
870       &    local_ice_leader,VvelTag,MPI_COMM_WORLD,mpierr)       &    local_ice_leader,VvelTag,MPI_COMM_WORLD,mpierr)
871        ENDIF        ENDIF
872        _END_MASTER( myThid )        _END_MASTER( myThid )
873  #ifdef CPL_DEBUG  # endif /* CPL_COUPLED */
         CALL PLOT_FIELD_XYZRL( vVel, 'vVel(k=1)', 1, myIter, myThid )  
 #endif  
874    
875  C     Receive ice model time  C     Receive ice model time
876        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
877    # ifdef CPL_DEBUG
878           print*,'MITgcm receive IceTime'
879    # endif /* CPL_DEBUG */
880    # ifdef CPL_COUPLED
881        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
882         buffsize = 1         buffsize = 1
883         CALL MPI_RECV(xfer_scalar,1,MPI_DOUBLE_PRECISION,         CALL MPI_RECV(xfer_scalar,1,MPI_DOUBLE_PRECISION,
884       &    local_ice_leader,IceTimeTag,MPI_COMM_WORLD,mpistatus,mpierr)       &    local_ice_leader,IceTimeTag,MPI_COMM_WORLD,mpistatus,mpierr)
 #ifdef CPL_DEBUG  
        print*,'MITgcm receive IceTime', xfer_scalar  
 #endif  
885        ENDIF        ENDIF
886    # endif /* CPL_COUPLED */
887        _END_MASTER( myThid )        _END_MASTER( myThid )
888    
889  C     Receive ice area                     Nx*Ny       Real*8    C     Receive ice area                     Nx*Ny       Real*8  
890    # ifdef CPL_COUPLED
891        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
892        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
893         buffsize = Nx*Ny         buffsize = Nx*Ny
# Line 680  C     Receive ice area Line 905  C     Receive ice area
905          ENDDO          ENDDO
906         ENDDO         ENDDO
907        ENDDO        ENDDO
908        # endif /* CPL_COUPLED */
909  #ifdef CPL_DEBUG  # ifdef CPL_DEBUG
910        DO bj=1,nSy        CALL PLOT_FIELD_XYRL( AREA, 'ice area', myIter, myThid )
911         DO bi=1,nSx  # endif /* CPL_DEBUG */
         DO j=1,sNy  
          DO i=1,sNx  
           ScatArray(i,j,bi,bj) = local(i,j,bi,bj)  
          ENDDO  
         ENDDO  
        ENDDO  
       ENDDO  
       CALL PLOT_FIELD_XYRL( ScatArray, 'ice area', myIter, myThid )  
 #endif  
912    
913  C     Receive ice thickness  C     Receive ice thickness
914    # ifdef CPL_COUPLED
915        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
916        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
917         buffsize = Nx*Ny         buffsize = Nx*Ny
# Line 712  C     Receive ice thickness Line 929  C     Receive ice thickness
929          ENDDO          ENDDO
930         ENDDO         ENDDO
931        ENDDO        ENDDO
932  #ifdef CPL_DEBUG  # endif /* CPL_COUPLED */
933        DO bj=1,nSy  # ifdef CPL_DEBUG
934         DO bi=1,nSx        CALL PLOT_FIELD_XYRL( HEFF, 'ice thickness', myIter, myThid )
935          DO j=1,sNy  # endif /* CPL_DEBUG */
          DO i=1,sNx  
           ScatArray(i,j,bi,bj) = local(i,j,bi,bj)  
          ENDDO  
         ENDDO  
        ENDDO  
       ENDDO  
       CALL PLOT_FIELD_XYRL( ScatArray, 'ice thickness', myIter, myThid )  
 #endif  
936    
937  C     Receive ice salinity  C     Receive ice salinity
938    # ifdef CPL_COUPLED
939        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
940        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
941         buffsize = Nx*Ny         buffsize = Nx*Ny
# Line 743  C     Receive ice salinity Line 953  C     Receive ice salinity
953          ENDDO          ENDDO
954         ENDDO         ENDDO
955        ENDDO        ENDDO
956  #ifdef CPL_DEBUG  # endif /* CPL_COUPLED */
957        DO bj=1,nSy  # ifdef CPL_DEBUG
958         DO bi=1,nSx        CALL PLOT_FIELD_XYRL( HSALT, 'ice salinity', myIter, myThid )
959          DO j=1,sNy  # endif /* CPL_DEBUG */
          DO i=1,sNx  
           ScatArray(i,j,bi,bj) = local(i,j,bi,bj)  
          ENDDO  
         ENDDO  
        ENDDO  
       ENDDO  
       CALL PLOT_FIELD_XYRL( ScatArray, 'ice salinity', myIter, myThid )  
 #endif  
960    
961  C     Receive snow thickness  C     Receive snow thickness
962    # ifdef CPL_COUPLED
963        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
964        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
965         buffsize = Nx*Ny         buffsize = Nx*Ny
# Line 774  C     Receive snow thickness Line 977  C     Receive snow thickness
977          ENDDO          ENDDO
978         ENDDO         ENDDO
979        ENDDO        ENDDO
980  #ifdef CPL_DEBUG  # endif /* CPL_COUPLED */
981    # ifdef CPL_DEBUG
982          CALL PLOT_FIELD_XYRL( HSNOW, 'snow thickness', myIter, myThid )
983    # endif /* CPL_DEBUG */
984    
985    C     Receive u ice velocity
986    # ifdef CPL_COUPLED
987          _BEGIN_MASTER( myThid )
988          IF ( myworldid .EQ. local_ocean_leader ) THEN
989           buffsize = Nx*Ny
990           CALL MPI_RECV(xfer_array,buffsize,MPI_DOUBLE_PRECISION,
991         &    local_ice_leader,UiceTag,MPI_COMM_WORLD,mpistatus,mpierr)
992          ENDIF
993          _END_MASTER( myThid )
994          CALL SCATTER_2D( xfer_array, local, myThid )
995        DO bj=1,nSy        DO bj=1,nSy
996         DO bi=1,nSx         DO bi=1,nSx
997          DO j=1,sNy          DO j=1,sNy
998           DO i=1,sNx           DO i=1,sNx
999            ScatArray(i,j,bi,bj) = local(i,j,bi,bj)            UICE(i,j,bi,bj) = local(i,j,bi,bj)
1000           ENDDO           ENDDO
1001          ENDDO          ENDDO
1002         ENDDO         ENDDO
1003        ENDDO        ENDDO
1004        CALL PLOT_FIELD_XYRL( ScatArray, 'ice thickness', myIter, myThid )  #  ifdef CPL_DEBUG
1005  #endif        CALL PLOT_FIELD_XYRL( local, 'uice', myIter, myThid )
1006    #  endif /* CPL_DEBUG */
1007    # endif /* CPL_COUPLED */
1008    # ifdef CPL_DEBUG
1009          CALL PLOT_FIELD_XYRL( UICE, 'uice', myIter, myThid )
1010    # endif /* CPL_DEBUG */
1011    
1012  C     Receive u surface stress  C     Receive v ice velocity
1013    # ifdef CPL_COUPLED
1014        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
1015        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
1016         buffsize = Nx*Ny         buffsize = Nx*Ny
1017         CALL MPI_RECV(xfer_array,buffsize,MPI_DOUBLE_PRECISION,         CALL MPI_RECV(xfer_array,buffsize,MPI_DOUBLE_PRECISION,
1018       &    local_ice_leader,UstressTag,MPI_COMM_WORLD,mpistatus,mpierr)       &    local_ice_leader,ViceTag,MPI_COMM_WORLD,mpistatus,mpierr)
1019        ENDIF        ENDIF
1020        _END_MASTER( myThid )        _END_MASTER( myThid )
1021        CALL SCATTER_2D( xfer_array, local, myThid )        CALL SCATTER_2D( xfer_array, local, myThid )
# Line 800  C     Receive u surface stress Line 1023  C     Receive u surface stress
1023         DO bi=1,nSx         DO bi=1,nSx
1024          DO j=1,sNy          DO j=1,sNy
1025           DO i=1,sNx           DO i=1,sNx
1026            fu(i,j,bi,bj) = AREA(i,j,bi,bj) * local(i,j,bi,bj) +            VICE(i,j,bi,bj) = local(i,j,bi,bj)
      &                (1.-AREA(i,j,bi,bj)) * fu_tmp(i,j,bi,bj)  
1027           ENDDO           ENDDO
1028          ENDDO          ENDDO
1029         ENDDO         ENDDO
1030        ENDDO        ENDDO
1031  #ifdef CPL_DEBUG  #  ifdef CPL_DEBUG
1032          CALL PLOT_FIELD_XYRL( local, 'vice', myIter, myThid )
1033    #  endif /* CPL_DEBUG */
1034    # endif /* CPL_COUPLED */
1035    # ifdef CPL_DEBUG
1036          CALL PLOT_FIELD_XYRL( VICE, 'vice', myIter, myThid )
1037    # endif /* CPL_DEBUG */
1038    
1039    C     Receive u surface stress
1040    # ifdef CPL_COUPLED
1041          _BEGIN_MASTER( myThid )
1042          IF ( myworldid .EQ. local_ocean_leader ) THEN
1043           buffsize = Nx*Ny
1044           CALL MPI_RECV(xfer_array,buffsize,MPI_DOUBLE_PRECISION,
1045         &    local_ice_leader,UstressTag,MPI_COMM_WORLD,mpistatus,mpierr)
1046          ENDIF
1047          _END_MASTER( myThid )
1048          CALL SCATTER_2D( xfer_array, local, myThid )
1049        DO bj=1,nSy        DO bj=1,nSy
1050         DO bi=1,nSx         DO bi=1,nSx
1051          DO j=1,sNy          DO j=1,sNy
1052           DO i=1,sNx           DO i=1,sNx
1053            ScatArray(i,j,bi,bj) = local(i,j,bi,bj)            fu(i,j,bi,bj) = AREA(i,j,bi,bj)  * local(i,j,bi,bj) +
1054         &                (1.-AREA(i,j,bi,bj)) * fu   (i,j,bi,bj)
1055           ENDDO           ENDDO
1056          ENDDO          ENDDO
1057         ENDDO         ENDDO
1058        ENDDO        ENDDO
1059        CALL PLOT_FIELD_XYRL( ScatArray, 'u stress', myIter, myThid )  #  ifdef CPL_DEBUG
1060  #endif        CALL PLOT_FIELD_XYRL( local, 'mpm u stress', myIter, myThid )
1061    #  endif /* CPL_DEBUG */
1062    # endif /* CPL_COUPLED */
1063    # ifdef CPL_DEBUG
1064          CALL PLOT_FIELD_XYRL( fu, 'u stress', myIter, myThid )
1065    # endif /* CPL_DEBUG */
1066    
1067  C     Receive v surface stress  C     Receive v surface stress
1068    # ifdef CPL_COUPLED
1069        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
1070        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
1071         buffsize = Nx*Ny         buffsize = Nx*Ny
# Line 832  C     Receive v surface stress Line 1078  C     Receive v surface stress
1078         DO bi=1,nSx         DO bi=1,nSx
1079          DO j=1,sNy          DO j=1,sNy
1080           DO i=1,sNx           DO i=1,sNx
1081            fv(i,j,bi,bj) = AREA(i,j,bi,bj) * local(i,j,bi,bj) +            fv(i,j,bi,bj) = AREA(i,j,bi,bj)  * local(i,j,bi,bj) +
1082       &                (1.-AREA(i,j,bi,bj)) * fv_tmp(i,j,bi,bj)       &                (1.-AREA(i,j,bi,bj)) * fv   (i,j,bi,bj)
          ENDDO  
         ENDDO  
        ENDDO  
       ENDDO  
 #ifdef CPL_DEBUG  
       DO bj=1,nSy  
        DO bi=1,nSx  
         DO j=1,sNy  
          DO i=1,sNx  
           ScatArray(i,j,bi,bj) = local(i,j,bi,bj)  
1083           ENDDO           ENDDO
1084          ENDDO          ENDDO
1085         ENDDO         ENDDO
1086        ENDDO        ENDDO
1087        CALL PLOT_FIELD_XYRL( ScatArray, 'v stress', myIter, myThid )  #  ifdef CPL_DEBUG
1088  #endif        CALL PLOT_FIELD_XYRL( local, 'mpm v stress', myIter, myThid )
1089    #  endif /* CPL_DEBUG */
1090    # endif /* CPL_COUPLED */
1091    # ifdef CPL_DEBUG
1092          CALL PLOT_FIELD_XYRL( fv, 'v stress', myIter, myThid )
1093    # endif /* CPL_DEBUG */
1094    
1095  C     Receive residual shortwave  C     Receive residual shortwave
1096    # ifdef CPL_COUPLED
1097        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
1098        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
1099         buffsize = Nx*Ny         buffsize = Nx*Ny
# Line 864  C     Receive residual shortwave Line 1106  C     Receive residual shortwave
1106         DO bi=1,nSx         DO bi=1,nSx
1107          DO j=1,sNy          DO j=1,sNy
1108           DO i=1,sNx           DO i=1,sNx
1109            Qsw(i,j,bi,bj) = -AREA(i,j,bi,bj) * local(i,j,bi,bj) +            Qsw(i,j,bi,bj) = -AREA(i,j,bi,bj)  * local(i,j,bi,bj) +
1110       &                  (1.-AREA(i,j,bi,bj)) * Qsw_tmp(i,j,bi,bj)       &                  (1.-AREA(i,j,bi,bj)) *   Qsw(i,j,bi,bj)
          ENDDO  
         ENDDO  
        ENDDO  
       ENDDO  
 #ifdef CPL_DEBUG  
       DO bj=1,nSy  
        DO bi=1,nSx  
         DO j=1,sNy  
          DO i=1,sNx  
           ScatArray(i,j,bi,bj) = local(i,j,bi,bj)  
1111           ENDDO           ENDDO
1112          ENDDO          ENDDO
1113         ENDDO         ENDDO
1114        ENDDO        ENDDO
1115        CALL PLOT_FIELD_XYRL( ScatArray, 'shortwave', myIter, myThid )  #  ifdef CPL_DEBUG
1116  #endif        CALL PLOT_FIELD_XYRL( local, 'mpm shortwave', myIter, myThid )
1117    #  endif /* CPL_DEBUG */
1118    # endif /* CPL_COUPLED */
1119    # ifdef CPL_DEBUG
1120          CALL PLOT_FIELD_XYRL( Qsw, 'shortwave', myIter, myThid )
1121    # endif /* CPL_DEBUG */
1122    
1123  C     Receive heat flux  C     Receive heat flux
1124    # ifdef CPL_COUPLED
1125        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
1126        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
1127         buffsize = Nx*Ny         buffsize = Nx*Ny
# Line 896  C     Receive heat flux Line 1134  C     Receive heat flux
1134         DO bi=1,nSx         DO bi=1,nSx
1135          DO j=1,sNy          DO j=1,sNy
1136           DO i=1,sNx           DO i=1,sNx
1137            fv(i,j,bi,bj) = Qsw(i,j,bi,bj) -            Qnet(i,j,bi,bj) = Qsw(i,j,bi,bj) -
1138       &                   AREA(i,j,bi,bj) * local(i,j,bi,bj) +       &                   AREA(i,j,bi,bj)  * local(i,j,bi,bj) +
1139       &               (1.-AREA(i,j,bi,bj)) * Qnet_tmp(i,j,bi,bj)       &               (1.-AREA(i,j,bi,bj)) *  Qnet(i,j,bi,bj)
          ENDDO  
         ENDDO  
        ENDDO  
       ENDDO  
 #ifdef CPL_DEBUG  
       DO bj=1,nSy  
        DO bi=1,nSx  
         DO j=1,sNy  
          DO i=1,sNx  
           ScatArray(i,j,bi,bj) = local(i,j,bi,bj)  
1140           ENDDO           ENDDO
1141          ENDDO          ENDDO
1142         ENDDO         ENDDO
1143        ENDDO        ENDDO
1144        CALL PLOT_FIELD_XYRL( ScatArray, 'heat flux', myIter, myThid )  #  ifdef CPL_DEBUG
1145  #endif        CALL PLOT_FIELD_XYRL( local, 'mpm heat flux', myIter, myThid )
1146    #  endif /* CPL_DEBUG */
1147    # endif /* CPL_COUPLED */
1148    # ifdef CPL_DEBUG
1149          CALL PLOT_FIELD_XYRL( Qnet, 'heat flux', myIter, myThid )
1150    # endif /* CPL_DEBUG */
1151    
1152  C     Receive freshwater flux  C     Receive freshwater flux
1153    # ifdef CPL_COUPLED
1154        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
1155        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
1156         buffsize = Nx*Ny         buffsize = Nx*Ny
# Line 929  C     Receive freshwater flux Line 1163  C     Receive freshwater flux
1163         DO bi=1,nSx         DO bi=1,nSx
1164          DO j=1,sNy          DO j=1,sNy
1165           DO i=1,sNx           DO i=1,sNx
1166            EmPmR(i,j,bi,bj) = - rhoConstFresh *            EmPmR(i,j,bi,bj) = - AREA(i,j,bi,bj)  * local(i,j,bi,bj) +
1167       &                    AREA(i,j,bi,bj) * local(i,j,bi,bj) +       &                  ( 1. - AREA(i,j,bi,bj)) * EmPmR(i,j,bi,bj)
      &                (1.-AREA(i,j,bi,bj)) * EmPmR_tmp(i,j,bi,bj)  
1168           ENDDO           ENDDO
1169          ENDDO          ENDDO
1170         ENDDO         ENDDO
1171        ENDDO        ENDDO
1172  #ifdef CPL_DEBUG  #  ifdef CPL_DEBUG
1173        DO bj=1,nSy        CALL PLOT_FIELD_XYRL( local, 'mpm freshwater', myIter, myThid )
1174         DO bi=1,nSx  #  endif /* CPL_DEBUG */
1175          DO j=1,sNy  # endif /* CPL_COUPLED */
1176           DO i=1,sNx  # ifdef CPL_DEBUG
1177            ScatArray(i,j,bi,bj) = local(i,j,bi,bj)        CALL PLOT_FIELD_XYRL( EmPmR, 'freshwater', myIter, myThid )
1178           ENDDO  # endif /* CPL_DEBUG */
         ENDDO  
        ENDDO  
       ENDDO  
       CALL PLOT_FIELD_XYRL( ScatArray, 'freshwater', myIter, myThid )  
 #endif  
1179    
1180  C     Receive salt flux  C     Receive salt flux
1181    # ifdef CPL_COUPLED
1182        _BEGIN_MASTER( myThid )        _BEGIN_MASTER( myThid )
1183        IF ( myworldid .EQ. local_ocean_leader ) THEN        IF ( myworldid .EQ. local_ocean_leader ) THEN
1184         buffsize = Nx*Ny         buffsize = Nx*Ny
# Line 967  C     Receive salt flux Line 1196  C     Receive salt flux
1196          ENDDO          ENDDO
1197         ENDDO         ENDDO
1198        ENDDO        ENDDO
1199  #ifdef CPL_DEBUG  #  ifdef CPL_DEBUG
1200        DO bj=1,nSy        CALL PLOT_FIELD_XYRL( local, 'mpm salt flux', myIter, myThid )
1201         DO bi=1,nSx  #  endif /* CPL_DEBUG */
1202          DO j=1,sNy  # endif /* CPL_COUPLED */
1203           DO i=1,sNx  # ifdef CPL_DEBUG
1204            ScatArray(i,j,bi,bj) = local(i,j,bi,bj)        CALL PLOT_FIELD_XYRL( saltFlux, 'salt flux', myIter, myThid )
1205           ENDDO  # endif /* CPL_DEBUG */
         ENDDO  
        ENDDO  
       ENDDO  
       CALL PLOT_FIELD_XYRL( ScatArray, 'salt flux', myIter, myThid )  
 #endif  
1206    
1207  #endif /* ALLOW_CPL_MPMICE */  #endif /* ALLOW_CPL_MPMICE */
1208    

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