/[MITgcm]/MITgcm/pkg/mom_vecinv/mom_vecinv.F
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revision 1.8 by heimbach, Fri Oct 10 23:00:01 2003 UTC revision 1.17 by adcroft, Mon May 24 18:41:05 2004 UTC
# Line 1  Line 1 
1  C $Header$  C $Header$
2  C $Name$  C $Name$
3    
4    #include "PACKAGES_CONFIG.h"
5  #include "CPP_OPTIONS.h"  #include "CPP_OPTIONS.h"
6    
7        SUBROUTINE MOM_VECINV(        SUBROUTINE MOM_VECINV(
8       I        bi,bj,iMin,iMax,jMin,jMax,k,kUp,kDown,       I        bi,bj,iMin,iMax,jMin,jMax,k,kUp,kDown,
9       I        dPhiHydX,dPhiHydY,KappaRU,KappaRV,       I        dPhiHydX,dPhiHydY,KappaRU,KappaRV,
10       U        fVerU, fVerV,       U        fVerU, fVerV,
11       I        myCurrentTime, myIter, myThid)       I        myTime, myIter, myThid)
12  C     /==========================================================\  C     /==========================================================\
13  C     | S/R MOM_VECINV                                           |  C     | S/R MOM_VECINV                                           |
14  C     | o Form the right hand-side of the momentum equation.     |  C     | o Form the right hand-side of the momentum equation.     |
# Line 51  C     myThid - Instance number for this Line 52  C     myThid - Instance number for this
52        _RL fVerU(1-OLx:sNx+OLx,1-OLy:sNy+OLy,2)        _RL fVerU(1-OLx:sNx+OLx,1-OLy:sNy+OLy,2)
53        _RL fVerV(1-OLx:sNx+OLx,1-OLy:sNy+OLy,2)        _RL fVerV(1-OLx:sNx+OLx,1-OLy:sNy+OLy,2)
54        INTEGER kUp,kDown        INTEGER kUp,kDown
55        _RL     myCurrentTime        _RL     myTime
56        INTEGER myIter        INTEGER myIter
57        INTEGER myThid        INTEGER myThid
58        INTEGER bi,bj,iMin,iMax,jMin,jMax        INTEGER bi,bj,iMin,iMax,jMin,jMax
59    
60  #ifndef DISABLE_MOM_VECINV  #ifdef ALLOW_MOM_VECINV
61    
62  C     == Functions ==  C     == Functions ==
63        LOGICAL  DIFFERENT_MULTIPLE        LOGICAL  DIFFERENT_MULTIPLE
# Line 115  C     xxxFac - On-off tracer parameters Line 116  C     xxxFac - On-off tracer parameters
116        _RL  phyFac        _RL  phyFac
117        _RL  vForcFac        _RL  vForcFac
118        _RL  mtFacV        _RL  mtFacV
       INTEGER km1,kp1  
119        _RL wVelBottomOverride        _RL wVelBottomOverride
120        LOGICAL bottomDragTerms        LOGICAL bottomDragTerms
121          LOGICAL writeDiag
122        _RL KE(1-OLx:sNx+OLx,1-OLy:sNy+OLy)        _RL KE(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
123        _RL omega3(1-OLx:sNx+OLx,1-OLy:sNy+OLy)        _RL omega3(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
124        _RL vort3(1-OLx:sNx+OLx,1-OLy:sNy+OLy)        _RL vort3(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
125        _RL hDiv(1-OLx:sNx+OLx,1-OLy:sNy+OLy)        _RL hDiv(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
126    
127        km1=MAX(1,k-1)  #ifdef ALLOW_AUTODIFF_TAMC
128        kp1=MIN(Nr,k+1)  C--   only the kDown part of fverU/V is set in this subroutine
129    C--   the kUp is still required
130    C--   In the case of mom_fluxform Kup is set as well
131    C--   (at least in part)
132          fVerU(1,1,kUp) = fVerU(1,1,kUp)
133          fVerV(1,1,kUp) = fVerV(1,1,kUp)
134    #endif
135    
136        rVelMaskOverride=1.        rVelMaskOverride=1.
137        IF ( k .EQ. 1 ) rVelMaskOverride=freeSurfFac        IF ( k .EQ. 1 ) rVelMaskOverride=freeSurfFac
138        wVelBottomOverride=1.        wVelBottomOverride=1.
139        IF (k.EQ.Nr) wVelBottomOverride=0.        IF (k.EQ.Nr) wVelBottomOverride=0.
140          writeDiag = DIFFERENT_MULTIPLE(diagFreq, myTime,
141         &                                         myTime-deltaTClock)
142    
143  C     Initialise intermediate terms  C     Initialise intermediate terms
144        DO J=1-OLy,sNy+OLy        DO J=1-OLy,sNy+OLy
# Line 152  C     Initialise intermediate terms Line 162  C     Initialise intermediate terms
162  #ifdef ALLOW_AUTODIFF_TAMC  #ifdef ALLOW_AUTODIFF_TAMC
163          strain(i,j)  = 0. _d 0          strain(i,j)  = 0. _d 0
164          tension(i,j) = 0. _d 0          tension(i,j) = 0. _d 0
         fVerU(i,j,1) = 0. _d 0  
         fVerU(i,j,2) = 0. _d 0  
         fVerV(i,j,1) = 0. _d 0  
         fVerV(i,j,2) = 0. _d 0  
165  #endif  #endif
166         ENDDO         ENDDO
167        ENDDO        ENDDO
# Line 227  C note (jmc) : Dissipation and Vort3 adv Line 233  C note (jmc) : Dissipation and Vort3 adv
233  C              use the same maskZ (and hFacZ)  => needs 2 call(s)  C              use the same maskZ (and hFacZ)  => needs 2 call(s)
234  c     CALL MOM_VI_HFACZ_DISS(bi,bj,k,hFacZ,r_hFacZ,myThid)  c     CALL MOM_VI_HFACZ_DISS(bi,bj,k,hFacZ,r_hFacZ,myThid)
235    
236        CALL MOM_VI_CALC_KE(bi,bj,k,uFld,vFld,KE,myThid)        CALL MOM_CALC_KE(bi,bj,k,2,uFld,vFld,KE,myThid)
237    
238        CALL MOM_VI_CALC_HDIV(bi,bj,k,uFld,vFld,hDiv,myThid)        CALL MOM_CALC_HDIV(bi,bj,k,2,uFld,vFld,hDiv,myThid)
239    
240        CALL MOM_VI_CALC_RELVORT3(bi,bj,k,uFld,vFld,hFacZ,vort3,myThid)        CALL MOM_VI_CALC_RELVORT3(bi,bj,k,uFld,vFld,hFacZ,vort3,myThid)
241    
# Line 237  c     CALL MOM_VI_CALC_ABSVORT3(bi,bj,k, Line 243  c     CALL MOM_VI_CALC_ABSVORT3(bi,bj,k,
243    
244        IF (momViscosity) THEN        IF (momViscosity) THEN
245  C      Calculate del^2 u and del^2 v for bi-harmonic term  C      Calculate del^2 u and del^2 v for bi-harmonic term
246         IF (viscA4.NE.0.) THEN         IF (viscA4.NE.0. .OR. viscA4Grid.NE.0.) THEN
247           CALL MOM_VI_DEL2UV(bi,bj,k,hDiv,vort3,hFacZ,           CALL MOM_VI_DEL2UV(bi,bj,k,hDiv,vort3,hFacZ,
248       O                      del2u,del2v,       O                      del2u,del2v,
249       &                      myThid)       &                      myThid)
250           CALL MOM_VI_CALC_HDIV(bi,bj,k,del2u,del2v,dStar,myThid)           CALL MOM_CALC_HDIV(bi,bj,k,2,del2u,del2v,dStar,myThid)
251           CALL MOM_VI_CALC_RELVORT3(           CALL MOM_VI_CALC_RELVORT3(
252       &                         bi,bj,k,del2u,del2v,hFacZ,zStar,myThid)       &                         bi,bj,k,del2u,del2v,hFacZ,zStar,myThid)
253         ENDIF         ENDIF
254  C      Calculate dissipation terms for U and V equations  C      Calculate dissipation terms for U and V equations
255  C      in terms of vorticity and divergence  C      in terms of vorticity and divergence
256         IF (viscAh.NE.0. .OR. viscA4.NE.0.) THEN         IF (viscAh.NE.0. .OR. viscA4.NE.0. .OR.
257         &      viscAhGrid.NE.0. .OR. viscA4Grid.NE.0. ) THEN
258           CALL MOM_VI_HDISSIP(bi,bj,k,hDiv,vort3,hFacZ,dStar,zStar,           CALL MOM_VI_HDISSIP(bi,bj,k,hDiv,vort3,hFacZ,dStar,zStar,
259       O                       uDiss,vDiss,       O                       uDiss,vDiss,
260       &                       myThid)       &                       myThid)
# Line 399  C--   Horizontal Coriolis terms Line 406  C--   Horizontal Coriolis terms
406           gV(i,j,k,bi,bj) = gV(i,j,k,bi,bj)+vCf(i,j)           gV(i,j,k,bi,bj) = gV(i,j,k,bi,bj)+vCf(i,j)
407          ENDDO          ENDDO
408         ENDDO         ENDDO
409           IF ( writeDiag ) THEN
410            CALL WRITE_LOCAL_RL('fV','I10',1,uCf,bi,bj,k,myIter,myThid)
411            CALL WRITE_LOCAL_RL('fU','I10',1,vCf,bi,bj,k,myIter,myThid)
412           ENDIF
413        ENDIF        ENDIF
414    
415        IF (momAdvection) THEN        IF (momAdvection) THEN
# Line 422  c      CALL MOM_VI_V_CORIOLIS_C4(bi,bj,K Line 433  c      CALL MOM_VI_V_CORIOLIS_C4(bi,bj,K
433          ENDDO          ENDDO
434         ENDDO         ENDDO
435    
436           IF ( writeDiag ) THEN
437            CALL WRITE_LOCAL_RL('zV','I10',1,uCf,bi,bj,k,myIter,myThid)
438            CALL WRITE_LOCAL_RL('zU','I10',1,vCf,bi,bj,k,myIter,myThid)
439           ENDIF
440  #ifdef ALLOW_TIMEAVE  #ifdef ALLOW_TIMEAVE
441    #ifndef HRCUBE
442         IF (taveFreq.GT.0.) THEN         IF (taveFreq.GT.0.) THEN
443           CALL TIMEAVE_CUMUL_1K1T(uZetatave,vCf,deltaTClock,           CALL TIMEAVE_CUMUL_1K1T(uZetatave,vCf,deltaTClock,
444       &                           Nr, k, bi, bj, myThid)       &                           Nr, k, bi, bj, myThid)
445           CALL TIMEAVE_CUMUL_1K1T(vZetatave,uCf,deltaTClock,           CALL TIMEAVE_CUMUL_1K1T(vZetatave,uCf,deltaTClock,
446       &                           Nr, k, bi, bj, myThid)       &                           Nr, k, bi, bj, myThid)
447         ENDIF         ENDIF
448  #endif  #endif /* ALLOW_TIMEAVE */
449    #endif /* ndef HRCUBE */
450    
451  C--   Vertical shear terms (-w*du/dr & -w*dv/dr)  C--   Vertical shear terms (-w*du/dr & -w*dv/dr)
452         CALL MOM_VI_U_VERTSHEAR(bi,bj,K,uVel,wVel,uCf,myThid)         IF ( .NOT. momImplVertAdv ) THEN
453         DO j=jMin,jMax          CALL MOM_VI_U_VERTSHEAR(bi,bj,K,uVel,wVel,uCf,myThid)
454          DO i=iMin,iMax          DO j=jMin,jMax
455           gU(i,j,k,bi,bj) = gU(i,j,k,bi,bj)+uCf(i,j)           DO i=iMin,iMax
456              gU(i,j,k,bi,bj) = gU(i,j,k,bi,bj)+uCf(i,j)
457             ENDDO
458            ENDDO
459            CALL MOM_VI_V_VERTSHEAR(bi,bj,K,vVel,wVel,vCf,myThid)
460            DO j=jMin,jMax
461             DO i=iMin,iMax
462              gV(i,j,k,bi,bj) = gV(i,j,k,bi,bj)+vCf(i,j)
463             ENDDO
464          ENDDO          ENDDO
465         ENDDO         ENDIF
        CALL MOM_VI_V_VERTSHEAR(bi,bj,K,vVel,wVel,vCf,myThid)  
        DO j=jMin,jMax  
         DO i=iMin,iMax  
          gV(i,j,k,bi,bj) = gV(i,j,k,bi,bj)+vCf(i,j)  
         ENDDO  
        ENDDO  
466    
467  C--   Bernoulli term  C--   Bernoulli term
468         CALL MOM_VI_U_GRAD_KE(bi,bj,K,KE,uCf,myThid)         CALL MOM_VI_U_GRAD_KE(bi,bj,K,KE,uCf,myThid)
# Line 458  C--   Bernoulli term Line 477  C--   Bernoulli term
477           gV(i,j,k,bi,bj) = gV(i,j,k,bi,bj)+vCf(i,j)           gV(i,j,k,bi,bj) = gV(i,j,k,bi,bj)+vCf(i,j)
478          ENDDO          ENDDO
479         ENDDO         ENDDO
480           IF ( writeDiag ) THEN
481            CALL WRITE_LOCAL_RL('KEx','I10',1,uCf,bi,bj,k,myIter,myThid)
482            CALL WRITE_LOCAL_RL('KEy','I10',1,vCf,bi,bj,k,myIter,myThid)
483           ENDIF
484    
485  C--   end if momAdvection  C--   end if momAdvection
486        ENDIF        ENDIF
487    
# Line 470  C--   Set du/dt & dv/dt on boundaries to Line 494  C--   Set du/dt & dv/dt on boundaries to
494        ENDDO        ENDDO
495    
496    
497        IF (        IF ( writeDiag ) THEN
      &  DIFFERENT_MULTIPLE(diagFreq,myCurrentTime,  
      &                     myCurrentTime-deltaTClock)  
      & ) THEN  
498         CALL WRITE_LOCAL_RL('Ds','I10',1,strain,bi,bj,k,myIter,myThid)         CALL WRITE_LOCAL_RL('Ds','I10',1,strain,bi,bj,k,myIter,myThid)
499         CALL WRITE_LOCAL_RL('Dt','I10',1,tension,bi,bj,k,myIter,myThid)         CALL WRITE_LOCAL_RL('Dt','I10',1,tension,bi,bj,k,myIter,myThid)
        CALL WRITE_LOCAL_RL('fV','I10',1,uCf,bi,bj,k,myIter,myThid)  
        CALL WRITE_LOCAL_RL('fU','I10',1,vCf,bi,bj,k,myIter,myThid)  
500         CALL WRITE_LOCAL_RL('Du','I10',1,uDiss,bi,bj,k,myIter,myThid)         CALL WRITE_LOCAL_RL('Du','I10',1,uDiss,bi,bj,k,myIter,myThid)
501         CALL WRITE_LOCAL_RL('Dv','I10',1,vDiss,bi,bj,k,myIter,myThid)         CALL WRITE_LOCAL_RL('Dv','I10',1,vDiss,bi,bj,k,myIter,myThid)
502         CALL WRITE_LOCAL_RL('Z3','I10',1,vort3,bi,bj,k,myIter,myThid)         CALL WRITE_LOCAL_RL('Z3','I10',1,vort3,bi,bj,k,myIter,myThid)
# Line 486  c      CALL WRITE_LOCAL_RL('W3','I10',1, Line 505  c      CALL WRITE_LOCAL_RL('W3','I10',1,
505         CALL WRITE_LOCAL_RL('D','I10',1,hdiv,bi,bj,k,myIter,myThid)         CALL WRITE_LOCAL_RL('D','I10',1,hdiv,bi,bj,k,myIter,myThid)
506        ENDIF        ENDIF
507    
508  #endif /* DISABLE_MOM_VECINV */  #endif /* ALLOW_MOM_VECINV */
509    
510        RETURN        RETURN
511        END        END

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