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molod | 
1.1 | 
C $Header: /u/gcmpack/MITgcm/model/src/external_forcing.F,v 1.24 2004/04/08 04:04:24 jmc Exp $ | 
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C $Name:  $ | 
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#include "PACKAGES_CONFIG.h" | 
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#include "CPP_OPTIONS.h" | 
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#ifdef ALLOW_OBCS | 
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# include "OBCS_OPTIONS.h" | 
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#endif | 
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CBOP | 
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C     !ROUTINE: EXTERNAL_FORCING_U | 
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C     !INTERFACE: | 
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      SUBROUTINE EXTERNAL_FORCING_U( | 
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     I           iMin, iMax, jMin, jMax,bi,bj,kLev, | 
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     I           myCurrentTime,myThid) | 
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C     !DESCRIPTION: \bv | 
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C     *==========================================================* | 
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C     | S/R EXTERNAL_FORCING_U                                     | 
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C     | o Contains problem specific forcing for zonal velocity.    | 
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C     *==========================================================* | 
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C     | Adds terms to gU for forcing by external sources           | 
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C     | e.g. wind stress, bottom friction etc..................    | 
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C     *==========================================================* | 
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C     \ev | 
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C     !USES: | 
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      IMPLICIT NONE | 
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C     == Global data == | 
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#include "SIZE.h" | 
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#include "EEPARAMS.h" | 
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#include "PARAMS.h" | 
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#include "GRID.h" | 
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#include "DYNVARS.h" | 
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#include "FFIELDS.h" | 
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C     !INPUT/OUTPUT PARAMETERS: | 
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C     == Routine arguments == | 
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C     iMin - Working range of tile for applying forcing. | 
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C     iMax | 
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C     jMin | 
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C     jMax | 
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C     kLev | 
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      INTEGER iMin, iMax, jMin, jMax, kLev, bi, bj | 
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      _RL myCurrentTime | 
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      INTEGER myThid | 
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C     !LOCAL VARIABLES: | 
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C     == Local variables == | 
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C     Loop counters | 
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      INTEGER I, J | 
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C     number of surface interface layer | 
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      INTEGER kSurface | 
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CEOP | 
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 | 
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      if ( buoyancyRelation .eq. 'ATMOSPHERIC' ) then | 
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       kSurface = 0 | 
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      elseif ( buoyancyRelation .eq. 'OCEANICP' ) then | 
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       kSurface = Nr | 
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      else | 
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       kSurface = 1 | 
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      endif | 
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C--   Forcing term | 
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#ifdef ALLOW_AIM | 
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      IF ( useAIM ) CALL AIM_TENDENCY_APPLY_U( | 
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     &                      iMin,iMax, jMin,jMax, bi,bj, kLev, | 
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     &                      myCurrentTime, myThid ) | 
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#endif /* ALLOW_AIM */ | 
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C AMM | 
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#ifdef ALLOW_FIZHI | 
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      IF ( useFIZHI ) CALL FIZHI_TENDENCY_APPLY_U( | 
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     &                      iMin,iMax, jMin,jMax, bi,bj, kLev, | 
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     &                      myCurrentTime, myThid ) | 
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#endif /* ALLOW_FIZHI */ | 
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C AMM | 
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 | 
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C     Add windstress momentum impulse into the top-layer | 
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      IF ( kLev .EQ. kSurface ) THEN | 
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       DO j=jMin,jMax | 
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        DO i=iMin,iMax | 
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         gU(i,j,kLev,bi,bj) = gU(i,j,kLev,bi,bj) | 
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     &   +foFacMom*surfaceTendencyU(i,j,bi,bj) | 
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     &   *_maskW(i,j,kLev,bi,bj) | 
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        ENDDO | 
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       ENDDO | 
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      ENDIF | 
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 | 
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#if (defined (ALLOW_OBCS) && defined (ALLOW_OBCS_SPONGE)) | 
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      IF (useOBCS) THEN | 
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       CALL OBCS_SPONGE_U( | 
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     I           iMin, iMax, jMin, jMax,bi,bj,kLev, | 
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     I           myCurrentTime,myThid) | 
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      ENDIF | 
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#endif | 
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      RETURN | 
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      END | 
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CBOP | 
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C     !ROUTINE: EXTERNAL_FORCING_V | 
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C     !INTERFACE: | 
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      SUBROUTINE EXTERNAL_FORCING_V( | 
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     I           iMin, iMax, jMin, jMax,bi,bj,kLev, | 
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     I           myCurrentTime,myThid) | 
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C     !DESCRIPTION: \bv | 
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C     *==========================================================* | 
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C     | S/R EXTERNAL_FORCING_V                                     | 
| 107 | 
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C     | o Contains problem specific forcing for merid velocity.    | 
| 108 | 
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C     *==========================================================* | 
| 109 | 
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C     | Adds terms to gV for forcing by external sources           | 
| 110 | 
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C     | e.g. wind stress, bottom friction etc..................    | 
| 111 | 
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C     *==========================================================* | 
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C     \ev | 
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 | 
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C     !USES: | 
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      IMPLICIT NONE | 
| 116 | 
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C     == Global data == | 
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#include "SIZE.h" | 
| 118 | 
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#include "EEPARAMS.h" | 
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#include "PARAMS.h" | 
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#include "GRID.h" | 
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#include "DYNVARS.h" | 
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#include "FFIELDS.h" | 
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 | 
| 124 | 
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C     !INPUT/OUTPUT PARAMETERS: | 
| 125 | 
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C     == Routine arguments == | 
| 126 | 
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C     iMin - Working range of tile for applying forcing. | 
| 127 | 
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C     iMax | 
| 128 | 
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C     jMin | 
| 129 | 
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C     jMax | 
| 130 | 
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C     kLev | 
| 131 | 
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      INTEGER iMin, iMax, jMin, jMax, kLev, bi, bj | 
| 132 | 
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      _RL myCurrentTime | 
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      INTEGER myThid | 
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 | 
| 135 | 
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C     !LOCAL VARIABLES: | 
| 136 | 
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C     == Local variables == | 
| 137 | 
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C     Loop counters | 
| 138 | 
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      INTEGER I, J | 
| 139 | 
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C     number of surface interface layer | 
| 140 | 
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      INTEGER kSurface | 
| 141 | 
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CEOP | 
| 142 | 
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 | 
| 143 | 
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      if ( buoyancyRelation .eq. 'ATMOSPHERIC' ) then | 
| 144 | 
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       kSurface = 0 | 
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      elseif ( buoyancyRelation .eq. 'OCEANICP' ) then | 
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       kSurface = Nr | 
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      else | 
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       kSurface = 1 | 
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      endif | 
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 | 
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C--   Forcing term | 
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#ifdef ALLOW_AIM | 
| 153 | 
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      IF ( useAIM ) CALL AIM_TENDENCY_APPLY_V( | 
| 154 | 
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     &                      iMin,iMax, jMin,jMax, bi,bj, kLev, | 
| 155 | 
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     &                      myCurrentTime, myThid ) | 
| 156 | 
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#endif /* ALLOW_AIM */ | 
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| 158 | 
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C AMM | 
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#ifdef ALLOW_FIZHI | 
| 160 | 
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      IF ( useFIZHI ) CALL FIZHI_TENDENCY_APPLY_V( | 
| 161 | 
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     &                      iMin,iMax, jMin,jMax, bi,bj, kLev, | 
| 162 | 
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     &                      myCurrentTime, myThid ) | 
| 163 | 
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#endif /* ALLOW_FIZHI */ | 
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C AMM | 
| 165 | 
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C     Add windstress momentum impulse into the top-layer | 
| 166 | 
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      IF ( kLev .EQ. kSurface ) THEN | 
| 167 | 
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       DO j=jMin,jMax | 
| 168 | 
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        DO i=iMin,iMax | 
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         gV(i,j,kLev,bi,bj) = gV(i,j,kLev,bi,bj) | 
| 170 | 
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     &   +foFacMom*surfaceTendencyV(i,j,bi,bj) | 
| 171 | 
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     &   *_maskS(i,j,kLev,bi,bj) | 
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        ENDDO | 
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       ENDDO | 
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      ENDIF | 
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 | 
| 176 | 
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#if (defined (ALLOW_OBCS) && defined (ALLOW_OBCS_SPONGE)) | 
| 177 | 
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      IF (useOBCS) THEN | 
| 178 | 
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       CALL OBCS_SPONGE_V( | 
| 179 | 
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     I           iMin, iMax, jMin, jMax,bi,bj,kLev, | 
| 180 | 
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     I           myCurrentTime,myThid) | 
| 181 | 
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      ENDIF | 
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#endif | 
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 | 
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      RETURN | 
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      END | 
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CBOP | 
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C     !ROUTINE: EXTERNAL_FORCING_T | 
| 188 | 
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C     !INTERFACE: | 
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      SUBROUTINE EXTERNAL_FORCING_T( | 
| 190 | 
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     I           iMin, iMax, jMin, jMax,bi,bj,kLev, | 
| 191 | 
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     I           myCurrentTime,myThid) | 
| 192 | 
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C     !DESCRIPTION: \bv | 
| 193 | 
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C     *==========================================================* | 
| 194 | 
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C     | S/R EXTERNAL_FORCING_T                                     | 
| 195 | 
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C     | o Contains problem specific forcing for temperature.       | 
| 196 | 
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C     *==========================================================* | 
| 197 | 
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C     | Adds terms to gT for forcing by external sources           | 
| 198 | 
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C     | e.g. heat flux, climatalogical relaxation..............    | 
| 199 | 
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C     *==========================================================* | 
| 200 | 
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C     \ev | 
| 201 | 
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 | 
| 202 | 
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C     !USES: | 
| 203 | 
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  | 
      IMPLICIT NONE | 
| 204 | 
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C     == Global data == | 
| 205 | 
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#include "SIZE.h" | 
| 206 | 
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#include "EEPARAMS.h" | 
| 207 | 
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#include "PARAMS.h" | 
| 208 | 
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#include "GRID.h" | 
| 209 | 
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#include "DYNVARS.h" | 
| 210 | 
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#include "FFIELDS.h" | 
| 211 | 
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 | 
| 212 | 
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C     !INPUT/OUTPUT PARAMETERS: | 
| 213 | 
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C     == Routine arguments == | 
| 214 | 
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C     iMin - Working range of tile for applying forcing. | 
| 215 | 
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C     iMax | 
| 216 | 
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C     jMin | 
| 217 | 
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C     jMax | 
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C     kLev | 
| 219 | 
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      INTEGER iMin, iMax, jMin, jMax, kLev, bi, bj | 
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      _RL myCurrentTime | 
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      INTEGER myThid | 
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CEndOfInterface | 
| 223 | 
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 | 
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C     !LOCAL VARIABLES: | 
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C     == Local variables == | 
| 226 | 
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C     Loop counters | 
| 227 | 
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      INTEGER I, J | 
| 228 | 
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C     number of surface interface layer | 
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      INTEGER kSurface | 
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#ifdef SHORTWAVE_HEATING | 
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      integer two | 
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      _RL minusone | 
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      parameter (two=2,minusone=-1.) | 
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      _RL swfracb(two) | 
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      INTEGER kp1 | 
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#endif | 
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CEOP | 
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 | 
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      if ( buoyancyRelation .eq. 'ATMOSPHERIC' ) then | 
| 240 | 
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       kSurface = 0 | 
| 241 | 
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      elseif ( buoyancyRelation .eq. 'OCEANICP' ) then | 
| 242 | 
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       kSurface = Nr | 
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      else | 
| 244 | 
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       kSurface = 1 | 
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      endif | 
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 | 
| 247 | 
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C--   Forcing term | 
| 248 | 
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#ifdef ALLOW_AIM | 
| 249 | 
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      IF ( useAIM ) CALL AIM_TENDENCY_APPLY_T( | 
| 250 | 
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     &                      iMin,iMax, jMin,jMax, bi,bj, kLev, | 
| 251 | 
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     &                      myCurrentTime, myThid ) | 
| 252 | 
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#endif /* ALLOW_AIM */ | 
| 253 | 
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 | 
| 254 | 
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C AMM | 
| 255 | 
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#ifdef ALLOW_FIZHI | 
| 256 | 
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      IF ( useFIZHI ) CALL FIZHI_TENDENCY_APPLY_T( | 
| 257 | 
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  | 
     &                      iMin,iMax, jMin,jMax, bi,bj, kLev, | 
| 258 | 
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  | 
     &                      myCurrentTime, myThid ) | 
| 259 | 
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#endif /* ALLOW_FIZHI */ | 
| 260 | 
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C AMM | 
| 261 | 
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C     Add heat in top-layer | 
| 262 | 
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      IF ( kLev .EQ. kSurface ) THEN | 
| 263 | 
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       DO j=jMin,jMax | 
| 264 | 
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        DO i=iMin,iMax | 
| 265 | 
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         gT(i,j,kLev,bi,bj)=gT(i,j,kLev,bi,bj) | 
| 266 | 
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     &     +maskC(i,j,kLev,bi,bj)*surfaceTendencyT(i,j,bi,bj) | 
| 267 | 
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        ENDDO | 
| 268 | 
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       ENDDO | 
| 269 | 
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      ENDIF | 
| 270 | 
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 | 
| 271 | 
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#ifdef SHORTWAVE_HEATING | 
| 272 | 
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C Penetrating SW radiation | 
| 273 | 
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      kp1 = klev+1 | 
| 274 | 
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      swfracb(1)=abs(rF(klev)) | 
| 275 | 
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      swfracb(2)=abs(rF(klev+1)) | 
| 276 | 
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      CALL SWFRAC( | 
| 277 | 
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     I     two,minusone, | 
| 278 | 
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     I     myCurrentTime,myThid, | 
| 279 | 
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     U     swfracb) | 
| 280 | 
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      IF (klev.EQ.Nr) THEN | 
| 281 | 
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        kp1 = klev | 
| 282 | 
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        swfracb(2)=0. _d 0 | 
| 283 | 
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      ENDIF | 
| 284 | 
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      DO j=jMin,jMax | 
| 285 | 
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       DO i=iMin,iMax | 
| 286 | 
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        gT(i,j,klev,bi,bj) = gT(i,j,klev,bi,bj)  | 
| 287 | 
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     &   -Qsw(i,j,bi,bj)*(swfracb(1)*maskC(i,j,klev,bi,bj) | 
| 288 | 
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     &                   -swfracb(2)*maskC(i,j,kp1, bi,bj)) | 
| 289 | 
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     &    *recip_Cp*recip_rhoConst*recip_drF(klev) | 
| 290 | 
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       ENDDO | 
| 291 | 
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      ENDDO | 
| 292 | 
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#endif | 
| 293 | 
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 | 
| 294 | 
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  | 
#if (defined (ALLOW_OBCS) && defined (ALLOW_OBCS_SPONGE)) | 
| 295 | 
  | 
  | 
      IF (useOBCS) THEN | 
| 296 | 
  | 
  | 
       CALL OBCS_SPONGE_T( | 
| 297 | 
  | 
  | 
     I           iMin, iMax, jMin, jMax,bi,bj,kLev, | 
| 298 | 
  | 
  | 
     I           myCurrentTime,myThid) | 
| 299 | 
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  | 
      ENDIF | 
| 300 | 
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#endif | 
| 301 | 
  | 
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 | 
| 302 | 
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  | 
      RETURN | 
| 303 | 
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      END | 
| 304 | 
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  | 
CBOP | 
| 305 | 
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  | 
C     !ROUTINE: EXTERNAL_FORCING_S | 
| 306 | 
  | 
  | 
C     !INTERFACE: | 
| 307 | 
  | 
  | 
      SUBROUTINE EXTERNAL_FORCING_S( | 
| 308 | 
  | 
  | 
     I           iMin, iMax, jMin, jMax,bi,bj,kLev, | 
| 309 | 
  | 
  | 
     I           myCurrentTime,myThid) | 
| 310 | 
  | 
  | 
 | 
| 311 | 
  | 
  | 
C     !DESCRIPTION: \bv | 
| 312 | 
  | 
  | 
C     *==========================================================* | 
| 313 | 
  | 
  | 
C     | S/R EXTERNAL_FORCING_S                                     | 
| 314 | 
  | 
  | 
C     | o Contains problem specific forcing for merid velocity.    | 
| 315 | 
  | 
  | 
C     *==========================================================* | 
| 316 | 
  | 
  | 
C     | Adds terms to gS for forcing by external sources           | 
| 317 | 
  | 
  | 
C     | e.g. fresh-water flux, climatalogical relaxation.......    | 
| 318 | 
  | 
  | 
C     *==========================================================* | 
| 319 | 
  | 
  | 
C     \ev | 
| 320 | 
  | 
  | 
 | 
| 321 | 
  | 
  | 
C     !USES: | 
| 322 | 
  | 
  | 
      IMPLICIT NONE | 
| 323 | 
  | 
  | 
C     == Global data == | 
| 324 | 
  | 
  | 
#include "SIZE.h" | 
| 325 | 
  | 
  | 
#include "EEPARAMS.h" | 
| 326 | 
  | 
  | 
#include "PARAMS.h" | 
| 327 | 
  | 
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#include "GRID.h" | 
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#include "DYNVARS.h" | 
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#include "FFIELDS.h" | 
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C     !INPUT/OUTPUT PARAMETERS: | 
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C     == Routine arguments == | 
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C     iMin - Working range of tile for applying forcing. | 
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C     iMax | 
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C     jMin | 
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C     jMax | 
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C     kLev | 
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      INTEGER iMin, iMax, jMin, jMax, kLev, bi, bj | 
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      _RL myCurrentTime | 
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      INTEGER myThid | 
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C     !LOCAL VARIABLES: | 
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C     == Local variables == | 
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C     Loop counters | 
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      INTEGER I, J | 
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C     number of surface interface layer | 
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      INTEGER kSurface | 
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CEOP | 
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      if ( buoyancyRelation .eq. 'ATMOSPHERIC' ) then | 
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       kSurface = 0 | 
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      elseif ( buoyancyRelation .eq. 'OCEANICP' ) then | 
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       kSurface = Nr | 
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      else | 
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       kSurface = 1 | 
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      endif | 
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C--   Forcing term | 
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#ifdef ALLOW_AIM | 
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      IF ( useAIM ) CALL AIM_TENDENCY_APPLY_S( | 
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     &                      iMin,iMax, jMin,jMax, bi,bj, kLev, | 
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     &                      myCurrentTime, myThid ) | 
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#endif /* ALLOW_AIM */ | 
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C AMM | 
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#ifdef ALLOW_FIZHI | 
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      IF ( useFIZHI ) CALL FIZHI_TENDENCY_APPLY_S( | 
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     &                      iMin,iMax, jMin,jMax, bi,bj, kLev, | 
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     &                      myCurrentTime, myThid ) | 
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#endif /* ALLOW_FIZHI */ | 
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C AMM | 
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C     Add fresh-water in top-layer | 
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      IF ( kLev .EQ. kSurface ) THEN | 
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       DO j=jMin,jMax | 
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        DO i=iMin,iMax | 
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         gS(i,j,kLev,bi,bj)=gS(i,j,kLev,bi,bj) | 
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     &   +maskC(i,j,kLev,bi,bj)*surfaceTendencyS(i,j,bi,bj) | 
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        ENDDO | 
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       ENDDO | 
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      ENDIF | 
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#if (defined (ALLOW_OBCS) && defined (ALLOW_OBCS_SPONGE)) | 
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      IF (useOBCS) THEN | 
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       CALL OBCS_SPONGE_S( | 
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     I           iMin, iMax, jMin, jMax,bi,bj,kLev, | 
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     I           myCurrentTime,myThid) | 
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      ENDIF | 
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#endif | 
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      RETURN | 
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      END |