97 |
# endif /* CPL_COUPLED */ |
# endif /* CPL_COUPLED */ |
98 |
_END_MASTER( myThid ) |
_END_MASTER( myThid ) |
99 |
|
|
100 |
|
C Send longitude East of center of grid cell |
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) = xC(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( xC, 'xC', 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,xCTag,MPI_COMM_WORLD,mpierr) |
120 |
|
ENDIF |
121 |
|
_END_MASTER( myThid ) |
122 |
|
# endif /* CPL_COUPLED */ |
123 |
|
|
124 |
|
C Send latitude North of center of grid cell |
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) = yC(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( yC, 'yC', 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,yCTag,MPI_COMM_WORLD,mpierr) |
144 |
|
ENDIF |
145 |
|
_END_MASTER( myThid ) |
146 |
|
# endif /* CPL_COUPLED */ |
147 |
|
|
148 |
C Send longitude East of SouthWest corner |
C Send longitude East of SouthWest corner |
149 |
DO bj=1,nSy |
DO bj=1,nSy |
150 |
DO bi=1,nSx |
DO bi=1,nSx |
240 |
ENDIF |
ENDIF |
241 |
_END_MASTER( myThid ) |
_END_MASTER( myThid ) |
242 |
# endif /* CPL_COUPLED */ |
# endif /* CPL_COUPLED */ |
243 |
|
|
244 |
|
C Send cosine(alpha) relative to geographic direction at grid cell center |
245 |
|
DO bj=1,nSy |
246 |
|
DO bi=1,nSx |
247 |
|
DO j=1,sNy |
248 |
|
DO i=1,sNx |
249 |
|
local(i,j,bi,bj) = angleCosC(i,j,bi,bj) |
250 |
|
ENDDO |
251 |
|
ENDDO |
252 |
|
ENDDO |
253 |
|
ENDDO |
254 |
|
CALL GATHER_2D( xfer_array, local, myThid ) |
255 |
|
# ifdef CPL_DEBUG |
256 |
|
CALL PLOT_FIELD_XYRL( angleCosC, 'aCS', myIter, myThid ) |
257 |
|
# endif /* CPL_DEBUG */ |
258 |
|
# ifdef CPL_COUPLED |
259 |
|
_BEGIN_MASTER( myThid ) |
260 |
|
IF ( myworldid .EQ. local_ocean_leader ) THEN |
261 |
|
buffsize = Nx*Ny |
262 |
|
CALL MPI_SEND(xfer_array,buffsize,MPI_DOUBLE_PRECISION, |
263 |
|
& local_ice_leader,aCStag,MPI_COMM_WORLD,mpierr) |
264 |
|
ENDIF |
265 |
|
_END_MASTER( myThid ) |
266 |
|
# endif /* CPL_COUPLED */ |
267 |
|
|
268 |
|
C Send sine(alpha) relative to geographic direction at grid cell center |
269 |
|
DO bj=1,nSy |
270 |
|
DO bi=1,nSx |
271 |
|
DO j=1,sNy |
272 |
|
DO i=1,sNx |
273 |
|
local(i,j,bi,bj) = angleSinC(i,j,bi,bj) |
274 |
|
ENDDO |
275 |
|
ENDDO |
276 |
|
ENDDO |
277 |
|
ENDDO |
278 |
|
CALL GATHER_2D( xfer_array, local, myThid ) |
279 |
|
# ifdef CPL_DEBUG |
280 |
|
CALL PLOT_FIELD_XYRL( angleSinC, 'aSN', myIter, myThid ) |
281 |
|
# endif /* CPL_DEBUG */ |
282 |
|
# ifdef CPL_COUPLED |
283 |
|
_BEGIN_MASTER( myThid ) |
284 |
|
IF ( myworldid .EQ. local_ocean_leader ) THEN |
285 |
|
buffsize = Nx*Ny |
286 |
|
CALL MPI_SEND(xfer_array,buffsize,MPI_DOUBLE_PRECISION, |
287 |
|
& local_ice_leader,aSNtag,MPI_COMM_WORLD,mpierr) |
288 |
|
ENDIF |
289 |
|
_END_MASTER( myThid ) |
290 |
|
# endif /* CPL_COUPLED */ |
291 |
|
|
292 |
C Send landmask of center of grid cell, 0 is land, >0 is ocean |
C Send landmask of center of grid cell, 0 is land, >0 is ocean |
293 |
DO bj=1,nSy |
DO bj=1,nSy |