/[MITgcm]/MITgcm/model/src/external_forcing.F
ViewVC logotype

Annotation of /MITgcm/model/src/external_forcing.F

Parent Directory Parent Directory | Revision Log Revision Log | View Revision Graph Revision Graph


Revision 1.57 - (hide annotations) (download)
Mon Apr 26 20:37:02 2010 UTC (14 years ago) by dimitri
Branch: MAIN
CVS Tags: checkpoint62v, checkpoint62u, checkpoint62t, checkpoint62s, checkpoint62r, checkpoint62q, checkpoint62p, checkpoint62g, checkpoint62f, checkpoint62k, checkpoint62j, checkpoint62i, checkpoint62h, checkpoint62o, checkpoint62n, checkpoint62m, checkpoint62l, checkpoint62w, checkpoint62x
Changes since 1.56: +7 -9 lines
Adding parameters to specify temperature and salinity of addMass array
separately from temp_EvPrRn and salt_EvPrRn

1 dimitri 1.57 C $Header: /u/gcmpack/MITgcm/model/src/external_forcing.F,v 1.56 2010/02/16 21:25:22 dimitri Exp $
2 adcroft 1.12 C $Name: $
3 cnh 1.1
4 edhill 1.20 #include "PACKAGES_CONFIG.h"
5 cnh 1.1 #include "CPP_OPTIONS.h"
6    
7 cnh 1.13 CBOP
8     C !ROUTINE: EXTERNAL_FORCING_U
9     C !INTERFACE:
10 cnh 1.1 SUBROUTINE EXTERNAL_FORCING_U(
11 jmc 1.31 I iMin,iMax, jMin,jMax, bi,bj, kLev,
12     I myTime, myThid )
13 cnh 1.13 C !DESCRIPTION: \bv
14     C *==========================================================*
15 jmc 1.31 C | S/R EXTERNAL_FORCING_U
16     C | o Contains problem specific forcing for zonal velocity.
17 cnh 1.13 C *==========================================================*
18 jmc 1.31 C | Adds terms to gU for forcing by external sources
19     C | e.g. wind stress, bottom friction etc ...
20 cnh 1.13 C *==========================================================*
21     C \ev
22    
23     C !USES:
24 cnh 1.2 IMPLICIT NONE
25 cnh 1.1 C == Global data ==
26     #include "SIZE.h"
27     #include "EEPARAMS.h"
28     #include "PARAMS.h"
29     #include "GRID.h"
30     #include "DYNVARS.h"
31 cnh 1.2 #include "FFIELDS.h"
32 cnh 1.13
33     C !INPUT/OUTPUT PARAMETERS:
34 cnh 1.1 C == Routine arguments ==
35 jmc 1.31 C iMin,iMax :: Working range of x-index for applying forcing.
36     C jMin,jMax :: Working range of y-index for applying forcing.
37     C bi,bj :: Current tile indices
38     C kLev :: Current vertical level index
39     C myTime :: Current time in simulation
40     C myThid :: Thread Id number
41 cnh 1.1 INTEGER iMin, iMax, jMin, jMax, kLev, bi, bj
42 jmc 1.31 _RL myTime
43 adcroft 1.4 INTEGER myThid
44 cnh 1.1
45 cnh 1.13 C !LOCAL VARIABLES:
46 cnh 1.2 C == Local variables ==
47 jmc 1.31 C i,j :: Loop counters
48     C kSurface :: index of surface layer
49     INTEGER i, j
50 mlosch 1.17 INTEGER kSurface
51 cnh 1.13 CEOP
52 cnh 1.2
53 jmc 1.28 IF ( fluidIsAir ) THEN
54 jmc 1.21 kSurface = 0
55 jmc 1.28 ELSEIF ( usingPCoords ) THEN
56 mlosch 1.17 kSurface = Nr
57 jmc 1.28 ELSE
58 mlosch 1.17 kSurface = 1
59 jmc 1.28 ENDIF
60 mlosch 1.17
61 cnh 1.2 C-- Forcing term
62 jmc 1.21 #ifdef ALLOW_AIM
63     IF ( useAIM ) CALL AIM_TENDENCY_APPLY_U(
64     & iMin,iMax, jMin,jMax, bi,bj, kLev,
65 jmc 1.31 & myTime, myThid )
66 jmc 1.21 #endif /* ALLOW_AIM */
67 jmc 1.31
68 molod 1.23 #ifdef ALLOW_FIZHI
69     IF ( useFIZHI ) CALL FIZHI_TENDENCY_APPLY_U(
70     & iMin,iMax, jMin,jMax, bi,bj, kLev,
71 jmc 1.31 & myTime, myThid )
72 molod 1.23 #endif /* ALLOW_FIZHI */
73 jmc 1.21
74 cnh 1.2 C Add windstress momentum impulse into the top-layer
75 mlosch 1.17 IF ( kLev .EQ. kSurface ) THEN
76 jmc 1.32 c DO j=1,sNy
77     C-jmc: Without CD-scheme, this is OK ; but with CD-scheme, needs to cover [0:sNy+1]
78     DO j=0,sNy+1
79 jmc 1.31 DO i=1,sNx+1
80 cnh 1.2 gU(i,j,kLev,bi,bj) = gU(i,j,kLev,bi,bj)
81 jmc 1.26 & +foFacMom*surfaceForcingU(i,j,bi,bj)
82 heimbach 1.38 & *recip_drF(kLev)*_recip_hFacW(i,j,kLev,bi,bj)
83 cnh 1.2 ENDDO
84     ENDDO
85     ENDIF
86    
87 gforget 1.53 #ifdef ALLOW_EDDYPSI
88 heimbach 1.29 CALL TAUEDDY_EXTERNAL_FORCING_U(
89 jmc 1.31 I iMin,iMax, jMin,jMax, bi,bj, kLev,
90     I myTime, myThid )
91 heimbach 1.29 #endif
92    
93 jmc 1.31 #ifdef ALLOW_OBCS
94 heimbach 1.16 IF (useOBCS) THEN
95     CALL OBCS_SPONGE_U(
96 jmc 1.31 I iMin,iMax, jMin,jMax, bi,bj, kLev,
97     I myTime, myThid )
98 heimbach 1.16 ENDIF
99 heimbach 1.14 #endif
100    
101 jmc 1.52 #ifdef ALLOW_MYPACKAGE
102     IF ( useMYPACKAGE ) CALL MYPACKAGE_TENDENCY_APPLY_U(
103     & iMin,iMax, jMin,jMax, bi,bj, kLev,
104     & myTime, myThid )
105     #endif /* ALLOW_MYPACKAGE */
106    
107 cnh 1.1 RETURN
108     END
109 jmc 1.31
110     C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
111 cnh 1.13 CBOP
112     C !ROUTINE: EXTERNAL_FORCING_V
113     C !INTERFACE:
114 cnh 1.1 SUBROUTINE EXTERNAL_FORCING_V(
115 jmc 1.31 I iMin,iMax, jMin,jMax, bi,bj, kLev,
116     I myTime, myThid )
117 cnh 1.13 C !DESCRIPTION: \bv
118     C *==========================================================*
119 jmc 1.31 C | S/R EXTERNAL_FORCING_V
120     C | o Contains problem specific forcing for merid velocity.
121 cnh 1.13 C *==========================================================*
122 jmc 1.31 C | Adds terms to gV for forcing by external sources
123     C | e.g. wind stress, bottom friction etc ...
124 cnh 1.13 C *==========================================================*
125     C \ev
126    
127     C !USES:
128 cnh 1.2 IMPLICIT NONE
129 cnh 1.1 C == Global data ==
130     #include "SIZE.h"
131     #include "EEPARAMS.h"
132     #include "PARAMS.h"
133     #include "GRID.h"
134     #include "DYNVARS.h"
135 cnh 1.2 #include "FFIELDS.h"
136    
137 cnh 1.13 C !INPUT/OUTPUT PARAMETERS:
138 cnh 1.1 C == Routine arguments ==
139 jmc 1.31 C iMin,iMax :: Working range of x-index for applying forcing.
140     C jMin,jMax :: Working range of y-index for applying forcing.
141     C bi,bj :: Current tile indices
142     C kLev :: Current vertical level index
143     C myTime :: Current time in simulation
144     C myThid :: Thread Id number
145 cnh 1.1 INTEGER iMin, iMax, jMin, jMax, kLev, bi, bj
146 jmc 1.31 _RL myTime
147 adcroft 1.4 INTEGER myThid
148 cnh 1.13
149     C !LOCAL VARIABLES:
150 cnh 1.2 C == Local variables ==
151 jmc 1.31 C i,j :: Loop counters
152     C kSurface :: index of surface layer
153     INTEGER i, j
154 mlosch 1.17 INTEGER kSurface
155 cnh 1.13 CEOP
156 cnh 1.2
157 jmc 1.28 IF ( fluidIsAir ) THEN
158 jmc 1.21 kSurface = 0
159 jmc 1.28 ELSEIF ( usingPCoords ) THEN
160 mlosch 1.17 kSurface = Nr
161 jmc 1.28 ELSE
162 mlosch 1.17 kSurface = 1
163 jmc 1.28 ENDIF
164 mlosch 1.17
165 cnh 1.2 C-- Forcing term
166 jmc 1.21 #ifdef ALLOW_AIM
167     IF ( useAIM ) CALL AIM_TENDENCY_APPLY_V(
168     & iMin,iMax, jMin,jMax, bi,bj, kLev,
169 jmc 1.31 & myTime, myThid )
170 jmc 1.21 #endif /* ALLOW_AIM */
171    
172 molod 1.23 #ifdef ALLOW_FIZHI
173     IF ( useFIZHI ) CALL FIZHI_TENDENCY_APPLY_V(
174     & iMin,iMax, jMin,jMax, bi,bj, kLev,
175 jmc 1.31 & myTime, myThid )
176 molod 1.23 #endif /* ALLOW_FIZHI */
177 jmc 1.31
178 cnh 1.2 C Add windstress momentum impulse into the top-layer
179 mlosch 1.17 IF ( kLev .EQ. kSurface ) THEN
180 jmc 1.31 DO j=1,sNy+1
181 jmc 1.32 c DO i=1,sNx
182     C-jmc: Without CD-scheme, this is OK ; but with CD-scheme, needs to cover [0:sNx+1]
183     DO i=0,sNx+1
184 cnh 1.2 gV(i,j,kLev,bi,bj) = gV(i,j,kLev,bi,bj)
185 jmc 1.26 & +foFacMom*surfaceForcingV(i,j,bi,bj)
186 heimbach 1.38 & *recip_drF(kLev)*_recip_hFacS(i,j,kLev,bi,bj)
187 cnh 1.2 ENDDO
188     ENDDO
189     ENDIF
190 cnh 1.1
191 gforget 1.53 #ifdef ALLOW_EDDYPSI
192 heimbach 1.29 CALL TAUEDDY_EXTERNAL_FORCING_V(
193 jmc 1.31 I iMin,iMax, jMin,jMax, bi,bj, kLev,
194     I myTime, myThid )
195 heimbach 1.29 #endif
196    
197 jmc 1.31 #ifdef ALLOW_OBCS
198 heimbach 1.16 IF (useOBCS) THEN
199     CALL OBCS_SPONGE_V(
200 jmc 1.31 I iMin,iMax, jMin,jMax, bi,bj, kLev,
201     I myTime, myThid )
202 heimbach 1.16 ENDIF
203 heimbach 1.14 #endif
204    
205 jmc 1.52 #ifdef ALLOW_MYPACKAGE
206     IF ( useMYPACKAGE ) CALL MYPACKAGE_TENDENCY_APPLY_V(
207     & iMin,iMax, jMin,jMax, bi,bj, kLev,
208     & myTime, myThid )
209     #endif /* ALLOW_MYPACKAGE */
210    
211 cnh 1.1 RETURN
212     END
213 jmc 1.31
214     C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
215 cnh 1.13 CBOP
216     C !ROUTINE: EXTERNAL_FORCING_T
217     C !INTERFACE:
218 cnh 1.1 SUBROUTINE EXTERNAL_FORCING_T(
219 jmc 1.31 I iMin,iMax, jMin,jMax, bi,bj, kLev,
220     I myTime, myThid )
221 cnh 1.13 C !DESCRIPTION: \bv
222     C *==========================================================*
223 jmc 1.31 C | S/R EXTERNAL_FORCING_T
224     C | o Contains problem specific forcing for temperature.
225 cnh 1.13 C *==========================================================*
226 jmc 1.31 C | Adds terms to gT for forcing by external sources
227     C | e.g. heat flux, climatalogical relaxation, etc ...
228 cnh 1.13 C *==========================================================*
229     C \ev
230    
231     C !USES:
232 cnh 1.2 IMPLICIT NONE
233 cnh 1.1 C == Global data ==
234     #include "SIZE.h"
235     #include "EEPARAMS.h"
236     #include "PARAMS.h"
237     #include "GRID.h"
238     #include "DYNVARS.h"
239     #include "FFIELDS.h"
240 dfer 1.40 #include "SURFACE.h"
241 heimbach 1.7
242 cnh 1.13 C !INPUT/OUTPUT PARAMETERS:
243 cnh 1.1 C == Routine arguments ==
244 jmc 1.31 C iMin,iMax :: Working range of x-index for applying forcing.
245     C jMin,jMax :: Working range of y-index for applying forcing.
246     C bi,bj :: Current tile indices
247     C kLev :: Current vertical level index
248     C myTime :: Current time in simulation
249     C myThid :: Thread Id number
250 cnh 1.1 INTEGER iMin, iMax, jMin, jMax, kLev, bi, bj
251 jmc 1.31 _RL myTime
252 adcroft 1.4 INTEGER myThid
253 cnh 1.1
254 cnh 1.13 C !LOCAL VARIABLES:
255 cnh 1.2 C == Local variables ==
256 jmc 1.31 C i,j :: Loop counters
257     C kSurface :: index of surface layer
258     INTEGER i, j
259 mlosch 1.17 INTEGER kSurface
260 jmc 1.31 CEOP
261 jmc 1.24 #ifdef SHORTWAVE_HEATING
262     integer two
263     _RL minusone
264     parameter (two=2,minusone=-1.)
265     _RL swfracb(two)
266     INTEGER kp1
267     #endif
268 cnh 1.2
269 jmc 1.28 IF ( fluidIsAir ) THEN
270 jmc 1.21 kSurface = 0
271 jmc 1.28 ELSEIF ( usingPCoords ) THEN
272 mlosch 1.17 kSurface = Nr
273 jmc 1.28 ELSE
274 mlosch 1.17 kSurface = 1
275 jmc 1.28 ENDIF
276 mlosch 1.17
277 cnh 1.2 C-- Forcing term
278 jmc 1.21 #ifdef ALLOW_AIM
279     IF ( useAIM ) CALL AIM_TENDENCY_APPLY_T(
280     & iMin,iMax, jMin,jMax, bi,bj, kLev,
281 jmc 1.31 & myTime, myThid )
282 jmc 1.21 #endif /* ALLOW_AIM */
283    
284 molod 1.23 #ifdef ALLOW_FIZHI
285     IF ( useFIZHI ) CALL FIZHI_TENDENCY_APPLY_T(
286     & iMin,iMax, jMin,jMax, bi,bj, kLev,
287 jmc 1.31 & myTime, myThid )
288 molod 1.23 #endif /* ALLOW_FIZHI */
289 heimbach 1.25
290 jmc 1.54 #ifdef ALLOW_ADDFLUID
291 dimitri 1.57 IF ( selectAddFluid.NE.0 .AND. temp_addMass.NE.UNSET_RL ) THEN
292 jmc 1.54 IF ( ( selectAddFluid.GE.1 .AND. nonlinFreeSurf.GT.0 )
293     & .OR. convertFW2Salt.EQ.-1. _d 0 ) THEN
294     DO j=1,sNy
295     DO i=1,sNx
296     gT(i,j,kLev,bi,bj) = gT(i,j,kLev,bi,bj)
297     & + addMass(i,j,kLev,bi,bj)*mass2rUnit
298 dimitri 1.57 & *( temp_addMass - theta(i,j,kLev,bi,bj) )
299 jmc 1.54 & *recip_rA(i,j,bi,bj)
300     & *recip_drF(kLev)*_recip_hFacC(i,j,kLev,bi,bj)
301     C & *recip_deepFac2C(kLev)*recip_rhoFacC(kLev)
302     ENDDO
303     ENDDO
304     ELSE
305     DO j=1,sNy
306     DO i=1,sNx
307     gT(i,j,kLev,bi,bj) = gT(i,j,kLev,bi,bj)
308     & + addMass(i,j,kLev,bi,bj)*mass2rUnit
309 dimitri 1.57 & *( temp_addMass - tRef(kLev) )
310 jmc 1.54 & *recip_rA(i,j,bi,bj)
311     & *recip_drF(kLev)*_recip_hFacC(i,j,kLev,bi,bj)
312     C & *recip_deepFac2C(kLev)*recip_rhoFacC(kLev)
313     ENDDO
314     ENDDO
315     ENDIF
316     ENDIF
317     #endif /* ALLOW_ADDFLUID */
318    
319 cnh 1.2 C Add heat in top-layer
320 mlosch 1.17 IF ( kLev .EQ. kSurface ) THEN
321 jmc 1.31 DO j=1,sNy
322     DO i=1,sNx
323 cnh 1.2 gT(i,j,kLev,bi,bj)=gT(i,j,kLev,bi,bj)
324 jmc 1.26 & +surfaceForcingT(i,j,bi,bj)
325 heimbach 1.38 & *recip_drF(kLev)*_recip_hFacC(i,j,kLev,bi,bj)
326 cnh 1.2 ENDDO
327     ENDDO
328     ENDIF
329 adcroft 1.5
330 dfer 1.40 IF (linFSConserveTr) THEN
331     DO j=1,sNy
332     DO i=1,sNx
333     IF (kLev .EQ. ksurfC(i,j,bi,bj)) THEN
334     gT(i,j,kLev,bi,bj)=gT(i,j,kLev,bi,bj)
335     & +TsurfCor*recip_drF(kLev)*_recip_hFacC(i,j,kLev,bi,bj)
336     ENDIF
337     ENDDO
338     ENDDO
339     ENDIF
340    
341 mlosch 1.37 #ifdef ALLOW_SHELFICE
342     IF ( useShelfIce )
343     & CALL SHELFICE_FORCING_T(
344     I iMin,iMax, jMin,jMax, bi,bj, kLev,
345     I myTime, myThid )
346     #endif /* ALLOW_SHELFICE */
347    
348 dimitri 1.55 #ifdef ALLOW_ICEFRONT
349 dimitri 1.56 IF ( useICEFRONT )
350     & CALL ICEFRONT_TENDENCY_APPLY_T(
351     & bi,bj, kLev, myTime, myThid )
352 dimitri 1.55 #endif /* ALLOW_ICEFRONT */
353    
354 adcroft 1.5 #ifdef SHORTWAVE_HEATING
355     C Penetrating SW radiation
356 jmc 1.31 c IF ( usePenetratingSW ) THEN
357     swfracb(1)=abs(rF(klev))
358     swfracb(2)=abs(rF(klev+1))
359     CALL SWFRAC(
360 jmc 1.42 I two, minusone,
361     U swfracb,
362     I myTime, 1, myThid )
363 jmc 1.31 kp1 = klev+1
364     IF (klev.EQ.Nr) THEN
365 jmc 1.24 kp1 = klev
366     swfracb(2)=0. _d 0
367 jmc 1.31 ENDIF
368     DO j=1,sNy
369     DO i=1,sNx
370     gT(i,j,klev,bi,bj) = gT(i,j,klev,bi,bj)
371 jmc 1.24 & -Qsw(i,j,bi,bj)*(swfracb(1)*maskC(i,j,klev,bi,bj)
372     & -swfracb(2)*maskC(i,j,kp1, bi,bj))
373 jmc 1.47 & *recip_Cp*mass2rUnit
374 heimbach 1.38 & *recip_drF(klev)*_recip_hFacC(i,j,kLev,bi,bj)
375 jmc 1.31 ENDDO
376 adcroft 1.5 ENDDO
377 jmc 1.31 c ENDIF
378 adcroft 1.5 #endif
379 heimbach 1.14
380 stephd 1.35 #ifdef ALLOW_RBCS
381 jmc 1.47 IF (useRBCS) THEN
382     CALL RBCS_ADD_TENDENCY(bi,bj,klev, 1,
383 stephd 1.35 & myTime, myThid )
384 jmc 1.47 ENDIF
385 stephd 1.35 #endif
386    
387 jmc 1.31 #ifdef ALLOW_OBCS
388 heimbach 1.16 IF (useOBCS) THEN
389     CALL OBCS_SPONGE_T(
390 jmc 1.31 I iMin,iMax, jMin,jMax, bi,bj, kLev,
391     I myTime, myThid )
392 heimbach 1.16 ENDIF
393 heimbach 1.14 #endif
394    
395 jmc 1.52 #ifdef ALLOW_MYPACKAGE
396     IF ( useMYPACKAGE ) CALL MYPACKAGE_TENDENCY_APPLY_T(
397     & iMin,iMax, jMin,jMax, bi,bj, kLev,
398     & myTime, myThid )
399     #endif /* ALLOW_MYPACKAGE */
400    
401 cnh 1.1 RETURN
402     END
403 jmc 1.31
404     C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
405 cnh 1.13 CBOP
406     C !ROUTINE: EXTERNAL_FORCING_S
407     C !INTERFACE:
408 cnh 1.1 SUBROUTINE EXTERNAL_FORCING_S(
409 jmc 1.31 I iMin,iMax, jMin,jMax, bi,bj, kLev,
410     I myTime, myThid )
411 cnh 1.13
412     C !DESCRIPTION: \bv
413     C *==========================================================*
414 jmc 1.31 C | S/R EXTERNAL_FORCING_S
415     C | o Contains problem specific forcing for merid velocity.
416 cnh 1.13 C *==========================================================*
417 jmc 1.31 C | Adds terms to gS for forcing by external sources
418     C | e.g. fresh-water flux, climatalogical relaxation, etc ...
419 cnh 1.13 C *==========================================================*
420     C \ev
421    
422     C !USES:
423 cnh 1.2 IMPLICIT NONE
424 cnh 1.1 C == Global data ==
425     #include "SIZE.h"
426     #include "EEPARAMS.h"
427     #include "PARAMS.h"
428     #include "GRID.h"
429     #include "DYNVARS.h"
430 cnh 1.2 #include "FFIELDS.h"
431 dfer 1.40 #include "SURFACE.h"
432 cnh 1.1
433 cnh 1.13 C !INPUT/OUTPUT PARAMETERS:
434 cnh 1.1 C == Routine arguments ==
435 jmc 1.31 C iMin,iMax :: Working range of x-index for applying forcing.
436     C jMin,jMax :: Working range of y-index for applying forcing.
437     C bi,bj :: Current tile indices
438     C kLev :: Current vertical level index
439     C myTime :: Current time in simulation
440     C myThid :: Thread Id number
441 cnh 1.1 INTEGER iMin, iMax, jMin, jMax, kLev, bi, bj
442 jmc 1.31 _RL myTime
443 adcroft 1.4 INTEGER myThid
444 cnh 1.2
445 cnh 1.13 C !LOCAL VARIABLES:
446 cnh 1.2 C == Local variables ==
447 jmc 1.31 C i,j :: Loop counters
448     C kSurface :: index of surface layer
449     INTEGER i, j
450 mlosch 1.17 INTEGER kSurface
451 cnh 1.13 CEOP
452 cnh 1.2
453 jmc 1.28 IF ( fluidIsAir ) THEN
454 jmc 1.21 kSurface = 0
455 jmc 1.28 ELSEIF ( usingPCoords ) THEN
456 mlosch 1.17 kSurface = Nr
457 jmc 1.28 ELSE
458 mlosch 1.17 kSurface = 1
459 jmc 1.28 ENDIF
460 mlosch 1.17
461 cnh 1.2 C-- Forcing term
462 jmc 1.21 #ifdef ALLOW_AIM
463     IF ( useAIM ) CALL AIM_TENDENCY_APPLY_S(
464     & iMin,iMax, jMin,jMax, bi,bj, kLev,
465 jmc 1.31 & myTime, myThid )
466 jmc 1.21 #endif /* ALLOW_AIM */
467    
468 molod 1.23 #ifdef ALLOW_FIZHI
469     IF ( useFIZHI ) CALL FIZHI_TENDENCY_APPLY_S(
470     & iMin,iMax, jMin,jMax, bi,bj, kLev,
471 jmc 1.31 & myTime, myThid )
472 molod 1.23 #endif /* ALLOW_FIZHI */
473 heimbach 1.25
474 jmc 1.54 #ifdef ALLOW_ADDFLUID
475 dimitri 1.57 IF ( selectAddFluid.NE.0 .AND. salt_addMass.NE.UNSET_RL ) THEN
476 jmc 1.54 IF ( ( selectAddFluid.GE.1 .AND. nonlinFreeSurf.GT.0 )
477     & .OR. convertFW2Salt.EQ.-1. _d 0 ) THEN
478     DO j=1,sNy
479     DO i=1,sNx
480     gS(i,j,kLev,bi,bj) = gS(i,j,kLev,bi,bj)
481     & + addMass(i,j,kLev,bi,bj)*mass2rUnit
482 dimitri 1.57 & *( salt_addMass - salt(i,j,kLev,bi,bj) )
483 jmc 1.54 & *recip_rA(i,j,bi,bj)
484     & *recip_drF(kLev)*_recip_hFacC(i,j,kLev,bi,bj)
485     C & *recip_deepFac2C(kLev)*recip_rhoFacC(kLev)
486     ENDDO
487     ENDDO
488     ELSE
489     DO j=1,sNy
490     DO i=1,sNx
491     gS(i,j,kLev,bi,bj) = gS(i,j,kLev,bi,bj)
492     & + addMass(i,j,kLev,bi,bj)*mass2rUnit
493 dimitri 1.57 & *( salt_addMass - sRef(kLev) )
494 jmc 1.54 & *recip_rA(i,j,bi,bj)
495     & *recip_drF(kLev)*_recip_hFacC(i,j,kLev,bi,bj)
496     C & *recip_deepFac2C(kLev)*recip_rhoFacC(kLev)
497     ENDDO
498     ENDDO
499     ENDIF
500     ENDIF
501     #endif /* ALLOW_ADDFLUID */
502    
503 cnh 1.2 C Add fresh-water in top-layer
504 mlosch 1.17 IF ( kLev .EQ. kSurface ) THEN
505 jmc 1.31 DO j=1,sNy
506     DO i=1,sNx
507 cnh 1.2 gS(i,j,kLev,bi,bj)=gS(i,j,kLev,bi,bj)
508 jmc 1.26 & +surfaceForcingS(i,j,bi,bj)
509 heimbach 1.38 & *recip_drF(kLev)*_recip_hFacC(i,j,kLev,bi,bj)
510 cnh 1.2 ENDDO
511     ENDDO
512     ENDIF
513 heimbach 1.14
514 dfer 1.40 IF (linFSConserveTr) THEN
515     DO j=1,sNy
516     DO i=1,sNx
517     IF (kLev .EQ. ksurfC(i,j,bi,bj)) THEN
518     gS(i,j,kLev,bi,bj)=gS(i,j,kLev,bi,bj)
519     & +SsurfCor*recip_drF(kLev)*_recip_hFacC(i,j,kLev,bi,bj)
520     ENDIF
521     ENDDO
522     ENDDO
523     ENDIF
524    
525 mlosch 1.37 #ifdef ALLOW_SHELFICE
526     IF ( useShelfIce )
527     & CALL SHELFICE_FORCING_S(
528     I iMin,iMax, jMin,jMax, bi,bj, kLev,
529     I myTime, myThid )
530     #endif /* ALLOW_SHELFICE */
531    
532 dimitri 1.55 #ifdef ALLOW_ICEFRONT
533 dimitri 1.56 IF ( useICEFRONT )
534     & CALL ICEFRONT_TENDENCY_APPLY_S(
535     & bi,bj, kLev, myTime, myThid )
536 dimitri 1.55 #endif /* ALLOW_ICEFRONT */
537    
538 dimitri 1.43 #ifdef ALLOW_SALT_PLUME
539 dimitri 1.51 IF ( useSALT_PLUME )
540 dimitri 1.50 & CALL SALT_PLUME_TENDENCY_APPLY_S(
541     I iMin,iMax, jMin,jMax, bi,bj, kLev,
542     I myTime, myThid )
543 dimitri 1.43 #endif /* ALLOW_SALT_PLUME */
544    
545 stephd 1.35 #ifdef ALLOW_RBCS
546 jmc 1.47 IF (useRBCS) THEN
547     CALL RBCS_ADD_TENDENCY(bi,bj,klev, 2,
548 stephd 1.35 & myTime, myThid )
549 jmc 1.47 ENDIF
550 dimitri 1.43 #endif /* ALLOW_RBCS */
551 stephd 1.35
552 jmc 1.31 #ifdef ALLOW_OBCS
553 heimbach 1.16 IF (useOBCS) THEN
554     CALL OBCS_SPONGE_S(
555 jmc 1.31 I iMin,iMax, jMin,jMax, bi,bj, kLev,
556     I myTime, myThid )
557 heimbach 1.16 ENDIF
558 dimitri 1.43 #endif /* ALLOW_OBCS */
559 cnh 1.1
560 jmc 1.52 #ifdef ALLOW_MYPACKAGE
561     IF ( useMYPACKAGE ) CALL MYPACKAGE_TENDENCY_APPLY_S(
562     & iMin,iMax, jMin,jMax, bi,bj, kLev,
563     & myTime, myThid )
564     #endif /* ALLOW_MYPACKAGE */
565    
566 cnh 1.1 RETURN
567     END

  ViewVC Help
Powered by ViewVC 1.1.22