/[MITgcm]/MITgcm/pkg/mom_vecinv/mom_vecinv.F
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Revision 1.57 - (hide annotations) (download)
Thu Mar 30 19:51:31 2006 UTC (18 years, 1 month ago) by jmc
Branch: MAIN
CVS Tags: checkpoint58f_post, checkpoint58d_post, checkpoint58e_post, checkpoint58k_post, checkpoint58l_post, checkpoint58g_post, checkpoint58h_post, checkpoint58j_post, checkpoint58i_post
Changes since 1.56: +40 -30 lines
add NHMTerms and 3.D Coriolis (NH) terms.

1 jmc 1.57 C $Header: /u/gcmpack/MITgcm/pkg/mom_vecinv/mom_vecinv.F,v 1.56 2006/02/07 11:46:17 mlosch Exp $
2 adcroft 1.2 C $Name: $
3 adcroft 1.1
4 adcroft 1.21 #include "MOM_VECINV_OPTIONS.h"
5 adcroft 1.1
6 jmc 1.57 SUBROUTINE MOM_VECINV(
7 adcroft 1.1 I bi,bj,iMin,iMax,jMin,jMax,k,kUp,kDown,
8 jmc 1.43 I KappaRU, KappaRV,
9 adcroft 1.1 U fVerU, fVerV,
10 jmc 1.31 O guDiss, gvDiss,
11 jmc 1.15 I myTime, myIter, myThid)
12 adcroft 1.1 C /==========================================================\
13     C | S/R MOM_VECINV |
14     C | o Form the right hand-side of the momentum equation. |
15     C |==========================================================|
16     C | Terms are evaluated one layer at a time working from |
17     C | the bottom to the top. The vertically integrated |
18     C | barotropic flow tendency term is evluated by summing the |
19     C | tendencies. |
20     C | Notes: |
21     C | We have not sorted out an entirely satisfactory formula |
22     C | for the diffusion equation bc with lopping. The present |
23     C | form produces a diffusive flux that does not scale with |
24     C | open-area. Need to do something to solidfy this and to |
25     C | deal "properly" with thin walls. |
26     C \==========================================================/
27     IMPLICIT NONE
28    
29     C == Global variables ==
30     #include "SIZE.h"
31     #include "DYNVARS.h"
32     #include "EEPARAMS.h"
33     #include "PARAMS.h"
34 edhill 1.27 #ifdef ALLOW_MNC
35     #include "MNC_PARAMS.h"
36     #endif
37 adcroft 1.1 #include "GRID.h"
38 jmc 1.7 #ifdef ALLOW_TIMEAVE
39     #include "TIMEAVE_STATV.h"
40     #endif
41 adcroft 1.1
42     C == Routine arguments ==
43 jmc 1.31 C fVerU :: Flux of momentum in the vertical direction, out of the upper
44     C fVerV :: face of a cell K ( flux into the cell above ).
45     C guDiss :: dissipation tendency (all explicit terms), u component
46     C gvDiss :: dissipation tendency (all explicit terms), v component
47 adcroft 1.1 C bi, bj, iMin, iMax, jMin, jMax - Range of points for which calculation
48     C results will be set.
49     C kUp, kDown - Index for upper and lower layers.
50 jmc 1.54 C myThid :: my Thread Id number
51 adcroft 1.1 _RL KappaRU(1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr)
52     _RL KappaRV(1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr)
53     _RL fVerU(1-OLx:sNx+OLx,1-OLy:sNy+OLy,2)
54     _RL fVerV(1-OLx:sNx+OLx,1-OLy:sNy+OLy,2)
55 jmc 1.31 _RL guDiss(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
56     _RL gvDiss(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
57 adcroft 1.1 INTEGER kUp,kDown
58 jmc 1.15 _RL myTime
59 adcroft 1.2 INTEGER myIter
60 adcroft 1.1 INTEGER myThid
61     INTEGER bi,bj,iMin,iMax,jMin,jMax
62    
63 edhill 1.11 #ifdef ALLOW_MOM_VECINV
64 jmc 1.7
65 adcroft 1.2 C == Functions ==
66 jmc 1.38 LOGICAL DIFFERENT_MULTIPLE
67     EXTERNAL DIFFERENT_MULTIPLE
68 adcroft 1.2
69 adcroft 1.1 C == Local variables ==
70     _RL vF (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
71 jmc 1.54 _RL vrF(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
72     _RL uCf(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
73     _RL vCf(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
74     _RS hFacZ (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
75     _RS r_hFacZ (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
76     _RL uFld (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
77     _RL vFld (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
78     _RL del2u (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
79     _RL del2v (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
80     _RL dStar (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
81     _RL zStar (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
82     _RL tension (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
83     _RL strain (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
84     _RL KE (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
85     _RL omega3 (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
86     _RL vort3 (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
87     _RL hDiv (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
88     _RL viscAh_Z(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
89     _RL viscAh_D(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
90     _RL viscA4_Z(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
91     _RL viscA4_D(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
92     C i,j,k :: Loop counters
93 adcroft 1.1 INTEGER i,j,k
94     C xxxFac - On-off tracer parameters used for switching terms off.
95     _RL ArDudrFac
96     _RL ArDvdrFac
97 jmc 1.54 _RL sideMaskFac
98 adcroft 1.1 LOGICAL bottomDragTerms
99 jmc 1.15 LOGICAL writeDiag
100 baylor 1.50 LOGICAL harmonic,biharmonic,useVariableViscosity
101 adcroft 1.1
102 edhill 1.25 #ifdef ALLOW_MNC
103     INTEGER offsets(9)
104 edhill 1.53 CHARACTER*(1) pf
105 edhill 1.25 #endif
106    
107 heimbach 1.9 #ifdef ALLOW_AUTODIFF_TAMC
108     C-- only the kDown part of fverU/V is set in this subroutine
109     C-- the kUp is still required
110     C-- In the case of mom_fluxform Kup is set as well
111     C-- (at least in part)
112     fVerU(1,1,kUp) = fVerU(1,1,kUp)
113     fVerV(1,1,kUp) = fVerV(1,1,kUp)
114     #endif
115    
116 jmc 1.38 writeDiag = DIFFERENT_MULTIPLE(diagFreq, myTime, deltaTClock)
117 adcroft 1.1
118 edhill 1.24 #ifdef ALLOW_MNC
119     IF (useMNC .AND. snapshot_mnc .AND. writeDiag) THEN
120 edhill 1.53 IF ( writeBinaryPrec .EQ. precFloat64 ) THEN
121     pf(1:1) = 'D'
122     ELSE
123     pf(1:1) = 'R'
124     ENDIF
125 edhill 1.25 IF ((bi .EQ. 1).AND.(bj .EQ. 1).AND.(k .EQ. 1)) THEN
126     CALL MNC_CW_SET_UDIM('mom_vi', -1, myThid)
127 edhill 1.39 CALL MNC_CW_RL_W_S('D','mom_vi',0,0,'T',myTime,myThid)
128 edhill 1.25 CALL MNC_CW_SET_UDIM('mom_vi', 0, myThid)
129 edhill 1.39 CALL MNC_CW_I_W_S('I','mom_vi',0,0,'iter',myIter,myThid)
130 edhill 1.25 ENDIF
131     DO i = 1,9
132     offsets(i) = 0
133     ENDDO
134     offsets(3) = k
135     C write(*,*) 'offsets = ',(offsets(i),i=1,9)
136 edhill 1.24 ENDIF
137     #endif /* ALLOW_MNC */
138    
139 adcroft 1.1 C Initialise intermediate terms
140     DO J=1-OLy,sNy+OLy
141     DO I=1-OLx,sNx+OLx
142 jmc 1.31 vF(i,j) = 0.
143     vrF(i,j) = 0.
144 adcroft 1.1 uCf(i,j) = 0.
145     vCf(i,j) = 0.
146     del2u(i,j) = 0.
147     del2v(i,j) = 0.
148     dStar(i,j) = 0.
149     zStar(i,j) = 0.
150 jmc 1.31 guDiss(i,j)= 0.
151     gvDiss(i,j)= 0.
152 adcroft 1.1 vort3(i,j) = 0.
153 jmc 1.31 omega3(i,j)= 0.
154 jmc 1.54 KE(i,j) = 0.
155 baylor 1.50 viscAh_Z(i,j) = 0.
156     viscAh_D(i,j) = 0.
157     viscA4_Z(i,j) = 0.
158     viscA4_D(i,j) = 0.
159    
160 heimbach 1.8 #ifdef ALLOW_AUTODIFF_TAMC
161     strain(i,j) = 0. _d 0
162     tension(i,j) = 0. _d 0
163 heimbach 1.55 hFacZ(i,j) = 0. _d 0
164 heimbach 1.8 #endif
165 adcroft 1.1 ENDDO
166     ENDDO
167    
168     C-- Term by term tracer parmeters
169     C o U momentum equation
170     ArDudrFac = vfFacMom*1.
171     C o V momentum equation
172     ArDvdrFac = vfFacMom*1.
173    
174 jmc 1.54 C note: using standard stencil (no mask) results in under-estimating
175     C vorticity at a no-slip boundary by a factor of 2 = sideDragFactor
176     IF ( no_slip_sides ) THEN
177     sideMaskFac = sideDragFactor
178     ELSE
179     sideMaskFac = 0. _d 0
180     ENDIF
181    
182 adcroft 1.1 IF ( no_slip_bottom
183     & .OR. bottomDragQuadratic.NE.0.
184     & .OR. bottomDragLinear.NE.0.) THEN
185     bottomDragTerms=.TRUE.
186     ELSE
187     bottomDragTerms=.FALSE.
188     ENDIF
189    
190     C-- Calculate open water fraction at vorticity points
191     CALL MOM_CALC_HFACZ(bi,bj,k,hFacZ,r_hFacZ,myThid)
192    
193     C Make local copies of horizontal flow field
194     DO j=1-OLy,sNy+OLy
195     DO i=1-OLx,sNx+OLx
196     uFld(i,j) = uVel(i,j,k,bi,bj)
197     vFld(i,j) = vVel(i,j,k,bi,bj)
198     ENDDO
199     ENDDO
200    
201 jmc 1.7 C note (jmc) : Dissipation and Vort3 advection do not necesary
202     C use the same maskZ (and hFacZ) => needs 2 call(s)
203     c CALL MOM_VI_HFACZ_DISS(bi,bj,k,hFacZ,r_hFacZ,myThid)
204    
205 jmc 1.52 CALL MOM_CALC_KE(bi,bj,k,selectKEscheme,uFld,vFld,KE,myThid)
206 adcroft 1.1
207 jmc 1.54 CALL MOM_CALC_RELVORT3(bi,bj,k,uFld,vFld,hFacZ,vort3,myThid)
208 adcroft 1.1
209 jmc 1.54 IF (momViscosity) THEN
210 jmc 1.57 C-- For viscous term, compute horizontal divergence, tension & strain
211 jmc 1.54 C and mask relative vorticity (free-slip case):
212 adcroft 1.1
213 jmc 1.54 CALL MOM_CALC_HDIV(bi,bj,k,2,uFld,vFld,hDiv,myThid)
214 adcroft 1.1
215 jmc 1.52 CALL MOM_CALC_TENSION(bi,bj,k,uFld,vFld,tension,myThid)
216    
217     CALL MOM_CALC_STRAIN(bi,bj,k,uFld,vFld,hFacZ,strain,myThid)
218    
219 jmc 1.54 C- account for no-slip / free-slip BC:
220     DO j=1-Oly,sNy+Oly
221     DO i=1-Olx,sNx+Olx
222     IF ( hFacZ(i,j).EQ.0. ) THEN
223     vort3(i,j) = sideMaskFac*vort3(i,j)
224     strain(i,j) = sideMaskFac*strain(i,j)
225     ENDIF
226     ENDDO
227     ENDDO
228    
229     C-- Calculate Viscosities
230 jmc 1.52 CALL MOM_CALC_VISC(
231 baylor 1.50 I bi,bj,k,
232     O viscAh_Z,viscAh_D,viscA4_Z,viscA4_D,
233     O harmonic,biharmonic,useVariableViscosity,
234     I hDiv,vort3,tension,strain,KE,hfacZ,
235     I myThid)
236    
237 adcroft 1.1 C Calculate del^2 u and del^2 v for bi-harmonic term
238 baylor 1.50 IF (biharmonic) THEN
239 adcroft 1.2 CALL MOM_VI_DEL2UV(bi,bj,k,hDiv,vort3,hFacZ,
240     O del2u,del2v,
241     & myThid)
242 jmc 1.48 CALL MOM_CALC_HDIV(bi,bj,k,2,del2u,del2v,dStar,myThid)
243     CALL MOM_CALC_RELVORT3(bi,bj,k,
244     & del2u,del2v,hFacZ,zStar,myThid)
245 adcroft 1.2 ENDIF
246 baylor 1.47
247 jmc 1.54 C- Strain diagnostics:
248     IF ( writeDiag ) THEN
249     IF (snapshot_mdsio) THEN
250     CALL WRITE_LOCAL_RL('Ds','I10',1,strain,bi,bj,k,myIter,myThid)
251     ENDIF
252     #ifdef ALLOW_MNC
253     IF (useMNC .AND. snapshot_mnc) THEN
254     CALL MNC_CW_RL_W_OFFSET(pf,'mom_vi',bi,bj,'Ds',strain,
255     & offsets, myThid)
256     ENDIF
257     #endif /* ALLOW_MNC */
258     ENDIF
259     #ifdef ALLOW_DIAGNOSTICS
260     IF ( useDiagnostics ) THEN
261     CALL DIAGNOSTICS_FILL(strain, 'Strain ',k,1,2,bi,bj,myThid)
262     ENDIF
263     #endif /* ALLOW_DIAGNOSTICS */
264    
265     C--- Calculate dissipation terms for U and V equations
266 baylor 1.47
267     C in terms of tension and strain
268     IF (useStrainTensionVisc) THEN
269 jmc 1.54 C mask strain as if free-slip since side-drag is computed separately
270     DO j=1-Oly,sNy+Oly
271     DO i=1-Olx,sNx+Olx
272     IF ( hFacZ(i,j).EQ.0. ) strain(i,j) = 0. _d 0
273     ENDDO
274     ENDDO
275 baylor 1.47 CALL MOM_HDISSIP(bi,bj,k,hDiv,vort3,tension,strain,KE,
276     I hFacZ,
277 baylor 1.50 I viscAh_Z,viscAh_D,viscA4_Z,viscA4_D,
278     I harmonic,biharmonic,useVariableViscosity,
279 baylor 1.47 O guDiss,gvDiss,
280     I myThid)
281     ELSE
282 adcroft 1.2 C in terms of vorticity and divergence
283 baylor 1.47 CALL MOM_VI_HDISSIP(bi,bj,k,hDiv,vort3,tension,strain,KE,
284     I hFacZ,dStar,zStar,
285 baylor 1.50 I viscAh_Z,viscAh_D,viscA4_Z,viscA4_D,
286     I harmonic,biharmonic,useVariableViscosity,
287 jmc 1.31 O guDiss,gvDiss,
288 jmc 1.57 & myThid)
289 adcroft 1.3 ENDIF
290 jmc 1.54 C-- if (momViscosity) end of block.
291 adcroft 1.1 ENDIF
292    
293 jmc 1.7 C- Return to standard hfacZ (min-4) and mask vort3 accordingly:
294     c CALL MOM_VI_MASK_VORT3(bi,bj,k,hFacZ,r_hFacZ,vort3,myThid)
295    
296 jmc 1.54 C--- Other dissipation terms in Zonal momentum equation
297 adcroft 1.1
298     C-- Vertical flux (fVer is at upper face of "u" cell)
299    
300     C Eddy component of vertical flux (interior component only) -> vrF
301 jmc 1.31 IF (momViscosity.AND..NOT.implicitViscosity) THEN
302 jmc 1.44 CALL MOM_U_RVISCFLUX(bi,bj,k+1,uVel,KappaRU,vrF,myThid)
303 adcroft 1.1
304     C Combine fluxes
305 jmc 1.31 DO j=jMin,jMax
306     DO i=iMin,iMax
307     fVerU(i,j,kDown) = ArDudrFac*vrF(i,j)
308     ENDDO
309 adcroft 1.1 ENDDO
310    
311 jmc 1.31 C-- Tendency is minus divergence of the fluxes
312     DO j=2-Oly,sNy+Oly-1
313     DO i=2-Olx,sNx+Olx-1
314     guDiss(i,j) = guDiss(i,j)
315 adcroft 1.1 & -_recip_hFacW(i,j,k,bi,bj)*recip_drF(k)
316     & *recip_rAw(i,j,bi,bj)
317     & *(
318 jmc 1.42 & fVerU(i,j,kDown) - fVerU(i,j,kUp)
319     & )*rkSign
320 jmc 1.31 ENDDO
321 adcroft 1.1 ENDDO
322 jmc 1.31 ENDIF
323 adcroft 1.1
324 jmc 1.57 C-- No-slip and drag BCs appear as body forces in cell abutting topography
325 adcroft 1.1 IF (momViscosity.AND.no_slip_sides) THEN
326     C- No-slip BCs impose a drag at walls...
327 baylor 1.50 CALL MOM_U_SIDEDRAG(
328     I bi,bj,k,
329     I uFld, del2u, hFacZ,
330     I viscAh_Z,viscA4_Z,
331     I harmonic,biharmonic,useVariableViscosity,
332     O vF,
333     I myThid)
334 adcroft 1.1 DO j=jMin,jMax
335     DO i=iMin,iMax
336 jmc 1.31 guDiss(i,j) = guDiss(i,j)+vF(i,j)
337 adcroft 1.1 ENDDO
338     ENDDO
339     ENDIF
340     C- No-slip BCs impose a drag at bottom
341     IF (momViscosity.AND.bottomDragTerms) THEN
342     CALL MOM_U_BOTTOMDRAG(bi,bj,k,uFld,KE,KappaRU,vF,myThid)
343     DO j=jMin,jMax
344     DO i=iMin,iMax
345 jmc 1.31 guDiss(i,j) = guDiss(i,j)+vF(i,j)
346 adcroft 1.1 ENDDO
347     ENDDO
348     ENDIF
349 mlosch 1.56 #ifdef ALLOW_SHELFICE
350     IF (useShelfIce.AND.momViscosity.AND.bottomDragTerms) THEN
351     CALL SHELFICE_U_DRAG(bi,bj,k,uFld,KE,KappaRU,vF,myThid)
352     DO j=jMin,jMax
353     DO i=iMin,iMax
354     guDiss(i,j) = guDiss(i,j) + vF(i,j)
355     ENDDO
356     ENDDO
357     ENDIF
358     #endif /* ALLOW_SHELFICE */
359    
360 adcroft 1.1
361 jmc 1.54 C--- Other dissipation terms in Meridional momentum equation
362 adcroft 1.1
363     C-- Vertical flux (fVer is at upper face of "v" cell)
364    
365     C Eddy component of vertical flux (interior component only) -> vrF
366 jmc 1.31 IF (momViscosity.AND..NOT.implicitViscosity) THEN
367 jmc 1.44 CALL MOM_V_RVISCFLUX(bi,bj,k+1,vVel,KappaRV,vrF,myThid)
368 adcroft 1.1
369     C Combine fluxes -> fVerV
370 jmc 1.31 DO j=jMin,jMax
371     DO i=iMin,iMax
372     fVerV(i,j,kDown) = ArDvdrFac*vrF(i,j)
373     ENDDO
374 adcroft 1.1 ENDDO
375    
376 jmc 1.31 C-- Tendency is minus divergence of the fluxes
377     DO j=jMin,jMax
378     DO i=iMin,iMax
379     gvDiss(i,j) = gvDiss(i,j)
380 adcroft 1.1 & -_recip_hFacS(i,j,k,bi,bj)*recip_drF(k)
381     & *recip_rAs(i,j,bi,bj)
382     & *(
383 jmc 1.42 & fVerV(i,j,kDown) - fVerV(i,j,kUp)
384     & )*rkSign
385 jmc 1.31 ENDDO
386 adcroft 1.1 ENDDO
387 jmc 1.31 ENDIF
388 adcroft 1.1
389 jmc 1.57 C-- No-slip and drag BCs appear as body forces in cell abutting topography
390 adcroft 1.1 IF (momViscosity.AND.no_slip_sides) THEN
391     C- No-slip BCs impose a drag at walls...
392 baylor 1.50 CALL MOM_V_SIDEDRAG(
393     I bi,bj,k,
394     I vFld, del2v, hFacZ,
395     I viscAh_Z,viscA4_Z,
396     I harmonic,biharmonic,useVariableViscosity,
397     O vF,
398     I myThid)
399 adcroft 1.1 DO j=jMin,jMax
400     DO i=iMin,iMax
401 jmc 1.31 gvDiss(i,j) = gvDiss(i,j)+vF(i,j)
402 adcroft 1.1 ENDDO
403     ENDDO
404     ENDIF
405     C- No-slip BCs impose a drag at bottom
406     IF (momViscosity.AND.bottomDragTerms) THEN
407     CALL MOM_V_BOTTOMDRAG(bi,bj,k,vFld,KE,KappaRV,vF,myThid)
408     DO j=jMin,jMax
409     DO i=iMin,iMax
410 jmc 1.31 gvDiss(i,j) = gvDiss(i,j)+vF(i,j)
411 adcroft 1.1 ENDDO
412     ENDDO
413     ENDIF
414 mlosch 1.56 #ifdef ALLOW_SHELFICE
415     IF (useShelfIce.AND.momViscosity.AND.bottomDragTerms) THEN
416     CALL SHELFICE_V_DRAG(bi,bj,k,vFld,KE,KappaRU,vF,myThid)
417     DO j=jMin,jMax
418     DO i=iMin,iMax
419     gvDiss(i,j) = gvDiss(i,j) + vF(i,j)
420     ENDDO
421     ENDDO
422     ENDIF
423     #endif /* ALLOW_SHELFICE */
424    
425 adcroft 1.1
426 jmc 1.54 C- Vorticity diagnostics:
427     IF ( writeDiag ) THEN
428     IF (snapshot_mdsio) THEN
429     CALL WRITE_LOCAL_RL('Z3','I10',1,vort3, bi,bj,k,myIter,myThid)
430     ENDIF
431     #ifdef ALLOW_MNC
432     IF (useMNC .AND. snapshot_mnc) THEN
433     CALL MNC_CW_RL_W_OFFSET(pf,'mom_vi',bi,bj,'Z3',vort3,
434     & offsets, myThid)
435     ENDIF
436     #endif /* ALLOW_MNC */
437     ENDIF
438     #ifdef ALLOW_DIAGNOSTICS
439     IF ( useDiagnostics ) THEN
440     CALL DIAGNOSTICS_FILL(vort3, 'momVort3',k,1,2,bi,bj,myThid)
441     ENDIF
442     #endif /* ALLOW_DIAGNOSTICS */
443    
444     C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
445    
446     C--- Prepare for Advection & Coriolis terms:
447     C- Mask relative vorticity and calculate absolute vorticity
448     DO j=1-Oly,sNy+Oly
449     DO i=1-Olx,sNx+Olx
450     IF ( hFacZ(i,j).EQ.0. ) vort3(i,j) = 0.
451     ENDDO
452     ENDDO
453     IF (useAbsVorticity)
454     & CALL MOM_CALC_ABSVORT3(bi,bj,k,vort3,omega3,myThid)
455 adcroft 1.1
456 jmc 1.5 C-- Horizontal Coriolis terms
457 jmc 1.37 c IF (useCoriolis .AND. .NOT.useCDscheme
458     c & .AND. .NOT. useAbsVorticity) THEN
459     C- jmc: change it to keep the Coriolis terms when useAbsVorticity=T & momAdvection=F
460 jmc 1.46 IF ( useCoriolis .AND.
461 jmc 1.37 & .NOT.( useCDscheme .OR. useAbsVorticity.AND.momAdvection )
462     & ) THEN
463     IF (useAbsVorticity) THEN
464     CALL MOM_VI_U_CORIOLIS(bi,bj,K,vFld,omega3,hFacZ,r_hFacZ,
465     & uCf,myThid)
466     CALL MOM_VI_V_CORIOLIS(bi,bj,K,uFld,omega3,hFacZ,r_hFacZ,
467     & vCf,myThid)
468     ELSE
469     CALL MOM_VI_CORIOLIS(bi,bj,k,uFld,vFld,hFacZ,r_hFacZ,
470     & uCf,vCf,myThid)
471     ENDIF
472 jmc 1.5 DO j=jMin,jMax
473     DO i=iMin,iMax
474 jmc 1.43 gU(i,j,k,bi,bj) = uCf(i,j)
475     gV(i,j,k,bi,bj) = vCf(i,j)
476 jmc 1.5 ENDDO
477 adcroft 1.1 ENDDO
478 jmc 1.15 IF ( writeDiag ) THEN
479 edhill 1.24 IF (snapshot_mdsio) THEN
480     CALL WRITE_LOCAL_RL('fV','I10',1,uCf,bi,bj,k,myIter,myThid)
481     CALL WRITE_LOCAL_RL('fU','I10',1,vCf,bi,bj,k,myIter,myThid)
482     ENDIF
483     #ifdef ALLOW_MNC
484     IF (useMNC .AND. snapshot_mnc) THEN
485 edhill 1.53 CALL MNC_CW_RL_W_OFFSET(pf,'mom_vi',bi,bj, 'fV', uCf,
486 edhill 1.25 & offsets, myThid)
487 edhill 1.53 CALL MNC_CW_RL_W_OFFSET(pf,'mom_vi',bi,bj, 'fU', vCf,
488 edhill 1.25 & offsets, myThid)
489 edhill 1.24 ENDIF
490     #endif /* ALLOW_MNC */
491 jmc 1.15 ENDIF
492 jmc 1.46 #ifdef ALLOW_DIAGNOSTICS
493     IF ( useDiagnostics ) THEN
494     CALL DIAGNOSTICS_FILL(uCf,'Um_Cori ',k,1,2,bi,bj,myThid)
495     CALL DIAGNOSTICS_FILL(vCf,'Vm_Cori ',k,1,2,bi,bj,myThid)
496     ENDIF
497     #endif /* ALLOW_DIAGNOSTICS */
498 jmc 1.31 ELSE
499     DO j=jMin,jMax
500     DO i=iMin,iMax
501 jmc 1.43 gU(i,j,k,bi,bj) = 0. _d 0
502     gV(i,j,k,bi,bj) = 0. _d 0
503 jmc 1.31 ENDDO
504     ENDDO
505 jmc 1.5 ENDIF
506 adcroft 1.1
507 jmc 1.5 IF (momAdvection) THEN
508 jmc 1.41 C-- Horizontal advection of relative (or absolute) vorticity
509     IF (highOrderVorticity.AND.useAbsVorticity) THEN
510     CALL MOM_VI_U_CORIOLIS_C4(bi,bj,k,vFld,omega3,r_hFacZ,
511 adcroft 1.20 & uCf,myThid)
512 jmc 1.40 ELSEIF (highOrderVorticity) THEN
513 jmc 1.41 CALL MOM_VI_U_CORIOLIS_C4(bi,bj,k,vFld,vort3, r_hFacZ,
514     & uCf,myThid)
515     ELSEIF (useAbsVorticity) THEN
516     CALL MOM_VI_U_CORIOLIS(bi,bj,K,vFld,omega3,hFacZ,r_hFacZ,
517 jmc 1.40 & uCf,myThid)
518 adcroft 1.20 ELSE
519 jmc 1.41 CALL MOM_VI_U_CORIOLIS(bi,bj,k,vFld,vort3, hFacZ,r_hFacZ,
520 adcroft 1.20 & uCf,myThid)
521     ENDIF
522 jmc 1.5 DO j=jMin,jMax
523     DO i=iMin,iMax
524     gU(i,j,k,bi,bj) = gU(i,j,k,bi,bj)+uCf(i,j)
525     ENDDO
526 adcroft 1.1 ENDDO
527 jmc 1.41 IF (highOrderVorticity.AND.useAbsVorticity) THEN
528     CALL MOM_VI_V_CORIOLIS_C4(bi,bj,K,uFld,omega3,r_hFacZ,
529 adcroft 1.20 & vCf,myThid)
530 jmc 1.40 ELSEIF (highOrderVorticity) THEN
531 jmc 1.41 CALL MOM_VI_V_CORIOLIS_C4(bi,bj,K,uFld,vort3, r_hFacZ,
532     & vCf,myThid)
533     ELSEIF (useAbsVorticity) THEN
534     CALL MOM_VI_V_CORIOLIS(bi,bj,K,uFld,omega3,hFacZ,r_hFacZ,
535 jmc 1.40 & vCf,myThid)
536 adcroft 1.20 ELSE
537 jmc 1.41 CALL MOM_VI_V_CORIOLIS(bi,bj,k,uFld,vort3, hFacZ,r_hFacZ,
538 adcroft 1.20 & vCf,myThid)
539     ENDIF
540 jmc 1.5 DO j=jMin,jMax
541     DO i=iMin,iMax
542     gV(i,j,k,bi,bj) = gV(i,j,k,bi,bj)+vCf(i,j)
543     ENDDO
544 adcroft 1.1 ENDDO
545    
546 jmc 1.15 IF ( writeDiag ) THEN
547 edhill 1.24 IF (snapshot_mdsio) THEN
548     CALL WRITE_LOCAL_RL('zV','I10',1,uCf,bi,bj,k,myIter,myThid)
549     CALL WRITE_LOCAL_RL('zU','I10',1,vCf,bi,bj,k,myIter,myThid)
550     ENDIF
551     #ifdef ALLOW_MNC
552     IF (useMNC .AND. snapshot_mnc) THEN
553 edhill 1.53 CALL MNC_CW_RL_W_OFFSET(pf,'mom_vi',bi,bj, 'zV', uCf,
554 edhill 1.25 & offsets, myThid)
555 edhill 1.53 CALL MNC_CW_RL_W_OFFSET(pf,'mom_vi',bi,bj, 'zU', vCf,
556 edhill 1.25 & offsets, myThid)
557 edhill 1.24 ENDIF
558     #endif /* ALLOW_MNC */
559 jmc 1.15 ENDIF
560 edhill 1.24
561 jmc 1.7 #ifdef ALLOW_TIMEAVE
562     IF (taveFreq.GT.0.) THEN
563     CALL TIMEAVE_CUMUL_1K1T(uZetatave,vCf,deltaTClock,
564     & Nr, k, bi, bj, myThid)
565     CALL TIMEAVE_CUMUL_1K1T(vZetatave,uCf,deltaTClock,
566     & Nr, k, bi, bj, myThid)
567     ENDIF
568 dimitri 1.13 #endif /* ALLOW_TIMEAVE */
569 jmc 1.46 #ifdef ALLOW_DIAGNOSTICS
570     IF ( useDiagnostics ) THEN
571     CALL DIAGNOSTICS_FILL(uCf,'Um_AdvZ3',k,1,2,bi,bj,myThid)
572     CALL DIAGNOSTICS_FILL(vCf,'Vm_AdvZ3',k,1,2,bi,bj,myThid)
573     ENDIF
574     #endif /* ALLOW_DIAGNOSTICS */
575 jmc 1.7
576 jmc 1.5 C-- Vertical shear terms (-w*du/dr & -w*dv/dr)
577 jmc 1.12 IF ( .NOT. momImplVertAdv ) THEN
578     CALL MOM_VI_U_VERTSHEAR(bi,bj,K,uVel,wVel,uCf,myThid)
579     DO j=jMin,jMax
580     DO i=iMin,iMax
581     gU(i,j,k,bi,bj) = gU(i,j,k,bi,bj)+uCf(i,j)
582     ENDDO
583 jmc 1.5 ENDDO
584 jmc 1.12 CALL MOM_VI_V_VERTSHEAR(bi,bj,K,vVel,wVel,vCf,myThid)
585     DO j=jMin,jMax
586     DO i=iMin,iMax
587     gV(i,j,k,bi,bj) = gV(i,j,k,bi,bj)+vCf(i,j)
588     ENDDO
589 jmc 1.5 ENDDO
590 jmc 1.46 #ifdef ALLOW_DIAGNOSTICS
591     IF ( useDiagnostics ) THEN
592     CALL DIAGNOSTICS_FILL(uCf,'Um_AdvRe',k,1,2,bi,bj,myThid)
593     CALL DIAGNOSTICS_FILL(vCf,'Vm_AdvRe',k,1,2,bi,bj,myThid)
594     ENDIF
595     #endif /* ALLOW_DIAGNOSTICS */
596 jmc 1.12 ENDIF
597 adcroft 1.1
598     C-- Bernoulli term
599 jmc 1.5 CALL MOM_VI_U_GRAD_KE(bi,bj,K,KE,uCf,myThid)
600     DO j=jMin,jMax
601     DO i=iMin,iMax
602     gU(i,j,k,bi,bj) = gU(i,j,k,bi,bj)+uCf(i,j)
603     ENDDO
604     ENDDO
605     CALL MOM_VI_V_GRAD_KE(bi,bj,K,KE,vCf,myThid)
606     DO j=jMin,jMax
607     DO i=iMin,iMax
608     gV(i,j,k,bi,bj) = gV(i,j,k,bi,bj)+vCf(i,j)
609     ENDDO
610 adcroft 1.1 ENDDO
611 jmc 1.15 IF ( writeDiag ) THEN
612 edhill 1.24 IF (snapshot_mdsio) THEN
613     CALL WRITE_LOCAL_RL('KEx','I10',1,uCf,bi,bj,k,myIter,myThid)
614     CALL WRITE_LOCAL_RL('KEy','I10',1,vCf,bi,bj,k,myIter,myThid)
615     ENDIF
616     #ifdef ALLOW_MNC
617     IF (useMNC .AND. snapshot_mnc) THEN
618 edhill 1.53 CALL MNC_CW_RL_W_OFFSET(pf,'mom_vi',bi,bj, 'KEx', uCf,
619 edhill 1.25 & offsets, myThid)
620 edhill 1.53 CALL MNC_CW_RL_W_OFFSET(pf,'mom_vi',bi,bj, 'KEy', vCf,
621 edhill 1.25 & offsets, myThid)
622 jmc 1.54 ENDIF
623 edhill 1.24 #endif /* ALLOW_MNC */
624 jmc 1.15 ENDIF
625    
626 jmc 1.5 C-- end if momAdvection
627     ENDIF
628    
629 jmc 1.57 C-- 3.D Coriolis term (horizontal momentum, Eastward component: -f'*w)
630     IF ( nonHydrostatic.OR.quasiHydrostatic ) THEN
631     CALL MOM_U_CORIOLIS_NH(bi,bj,k,wVel,uCf,myThid)
632     DO j=jMin,jMax
633     DO i=iMin,iMax
634     gU(i,j,k,bi,bj) = gU(i,j,k,bi,bj)+uCf(i,j)
635     ENDDO
636     ENDDO
637     IF ( usingCurvilinearGrid ) THEN
638     C- presently, non zero angleSinC array only supported with Curvilinear-Grid
639     CALL MOM_V_CORIOLIS_NH(bi,bj,k,wVel,vCf,myThid)
640     DO j=jMin,jMax
641     DO i=iMin,iMax
642     gV(i,j,k,bi,bj) = gV(i,j,k,bi,bj)+vCf(i,j)
643     ENDDO
644     ENDDO
645     ENDIF
646     ENDIF
647    
648     C-- Non-Hydrostatic (spherical) metric terms
649     IF ( useNHMTerms ) THEN
650     CALL MOM_U_METRIC_NH(bi,bj,k,uFld,wVel,uCf,myThid)
651     DO j=jMin,jMax
652     DO i=iMin,iMax
653     gU(i,j,k,bi,bj) = gU(i,j,k,bi,bj)+uCf(i,j)
654     ENDDO
655     ENDDO
656     CALL MOM_V_METRIC_NH(bi,bj,k,vFld,wVel,vCf,myThid)
657     DO j=jMin,jMax
658     DO i=iMin,iMax
659     gV(i,j,k,bi,bj) = gV(i,j,k,bi,bj)+vCf(i,j)
660     ENDDO
661     ENDDO
662     ENDIF
663 jmc 1.54
664 jmc 1.5 C-- Set du/dt & dv/dt on boundaries to zero
665 adcroft 1.1 DO j=jMin,jMax
666     DO i=iMin,iMax
667 jmc 1.5 gU(i,j,k,bi,bj) = gU(i,j,k,bi,bj)*_maskW(i,j,k,bi,bj)
668     gV(i,j,k,bi,bj) = gV(i,j,k,bi,bj)*_maskS(i,j,k,bi,bj)
669 adcroft 1.1 ENDDO
670     ENDDO
671 jmc 1.5
672 jmc 1.22 #ifdef ALLOW_DEBUG
673     IF ( debugLevel .GE. debLevB
674     & .AND. k.EQ.4 .AND. myIter.EQ.nIter0
675     & .AND. nPx.EQ.1 .AND. nPy.EQ.1
676     & .AND. useCubedSphereExchange ) THEN
677 jmc 1.23 CALL DEBUG_CS_CORNER_UV( ' uDiss,vDiss from MOM_VECINV',
678 jmc 1.31 & guDiss,gvDiss, k, standardMessageUnit,bi,bj,myThid )
679 jmc 1.22 ENDIF
680     #endif /* ALLOW_DEBUG */
681 adcroft 1.2
682 jmc 1.15 IF ( writeDiag ) THEN
683 edhill 1.24 IF (snapshot_mdsio) THEN
684 jmc 1.54 CALL WRITE_LOCAL_RL('W3','I10',1,omega3, bi,bj,k,myIter,myThid)
685     CALL WRITE_LOCAL_RL('KE','I10',1,KE, bi,bj,k,myIter,myThid)
686     CALL WRITE_LOCAL_RL('D', 'I10',1,hDiv, bi,bj,k,myIter,myThid)
687     CALL WRITE_LOCAL_RL('Dt','I10',1,tension,bi,bj,k,myIter,myThid)
688     CALL WRITE_LOCAL_RL('Du','I10',1,guDiss, bi,bj,k,myIter,myThid)
689     CALL WRITE_LOCAL_RL('Dv','I10',1,gvDiss, bi,bj,k,myIter,myThid)
690 edhill 1.24 ENDIF
691     #ifdef ALLOW_MNC
692     IF (useMNC .AND. snapshot_mnc) THEN
693 jmc 1.54 CALL MNC_CW_RL_W_OFFSET(pf,'mom_vi',bi,bj,'W3',omega3,
694     & offsets, myThid)
695     CALL MNC_CW_RL_W_OFFSET(pf,'mom_vi',bi,bj,'KE',KE,
696     & offsets, myThid)
697     CALL MNC_CW_RL_W_OFFSET(pf,'mom_vi',bi,bj,'D', hDiv,
698 edhill 1.25 & offsets, myThid)
699 edhill 1.53 CALL MNC_CW_RL_W_OFFSET(pf,'mom_vi',bi,bj,'Dt',tension,
700 edhill 1.25 & offsets, myThid)
701 edhill 1.53 CALL MNC_CW_RL_W_OFFSET(pf,'mom_vi',bi,bj,'Du',guDiss,
702 edhill 1.25 & offsets, myThid)
703 edhill 1.53 CALL MNC_CW_RL_W_OFFSET(pf,'mom_vi',bi,bj,'Dv',gvDiss,
704 edhill 1.25 & offsets, myThid)
705 edhill 1.24 ENDIF
706     #endif /* ALLOW_MNC */
707 adcroft 1.1 ENDIF
708 jmc 1.41
709 jmc 1.46 #ifdef ALLOW_DIAGNOSTICS
710     IF ( useDiagnostics ) THEN
711 jmc 1.54 CALL DIAGNOSTICS_FILL(KE, 'momKE ',k,1,2,bi,bj,myThid)
712 jmc 1.46 IF (momViscosity) THEN
713 jmc 1.54 CALL DIAGNOSTICS_FILL(hDiv, 'momHDiv ',k,1,2,bi,bj,myThid)
714 jmc 1.52 CALL DIAGNOSTICS_FILL(tension,'Tension ',k,1,2,bi,bj,myThid)
715 jmc 1.54 CALL DIAGNOSTICS_FILL(guDiss, 'Um_Diss ',k,1,2,bi,bj,myThid)
716     CALL DIAGNOSTICS_FILL(gvDiss, 'Vm_Diss ',k,1,2,bi,bj,myThid)
717 jmc 1.46 ENDIF
718 jmc 1.54 CALL DIAGNOSTICS_FILL(gU(1-Olx,1-Oly,k,bi,bj),
719     & 'Um_Advec',k,1,2,bi,bj,myThid)
720     CALL DIAGNOSTICS_FILL(gV(1-Olx,1-Oly,k,bi,bj),
721     & 'Vm_Advec',k,1,2,bi,bj,myThid)
722 jmc 1.46 ENDIF
723     #endif /* ALLOW_DIAGNOSTICS */
724    
725 edhill 1.11 #endif /* ALLOW_MOM_VECINV */
726 adcroft 1.1
727     RETURN
728     END

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