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C $Header: /u/gcmpack/MITgcm_contrib/jscott/code_changed/do_oceanic_phys.F,v 1.1 2006/08/11 19:29:22 jscott Exp $ |
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C $Name: $ |
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|
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#include "PACKAGES_CONFIG.h" |
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#include "CPP_OPTIONS.h" |
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|
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#ifdef ALLOW_AUTODIFF_TAMC |
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# ifdef ALLOW_GMREDI |
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# include "GMREDI_OPTIONS.h" |
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# endif |
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# ifdef ALLOW_KPP |
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# include "KPP_OPTIONS.h" |
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# endif |
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# ifdef ALLOW_SEAICE |
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# include "SEAICE_OPTIONS.h" |
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# endif |
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#endif /* ALLOW_AUTODIFF_TAMC */ |
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|
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CBOP |
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C !ROUTINE: DO_OCEANIC_PHYS |
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C !INTERFACE: |
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SUBROUTINE DO_OCEANIC_PHYS(myTime, myIter, myThid) |
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C !DESCRIPTION: \bv |
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C *==========================================================* |
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C | SUBROUTINE DO_OCEANIC_PHYS |
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C | o Controlling routine for oceanic physics and |
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C | parameterization |
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C *==========================================================* |
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C | o originally, part of S/R thermodynamics |
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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 |
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C == Global variables === |
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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 "DYNVARS.h" |
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#include "GRID.h" |
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#ifdef ALLOW_TIMEAVE |
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#include "TIMEAVE_STATV.h" |
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#endif |
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#if defined (ALLOW_BALANCE_FLUXES) && !(defined ALLOW_AUTODIFF_TAMC) |
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#include "FFIELDS.h" |
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#endif |
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|
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#ifdef ALLOW_AUTODIFF_TAMC |
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# include "tamc.h" |
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# include "tamc_keys.h" |
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# include "FFIELDS.h" |
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# include "EOS.h" |
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# ifdef ALLOW_KPP |
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# include "KPP.h" |
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# endif |
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# ifdef ALLOW_GMREDI |
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# include "GMREDI.h" |
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# endif |
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# ifdef ALLOW_EBM |
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# include "EBM.h" |
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# endif |
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# ifdef EXACT_CONSERV |
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# include "SURFACE.h" |
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# endif |
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# ifdef ALLOW_EXF |
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# include "ctrl.h" |
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# include "exf_fields.h" |
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# include "exf_clim_fields.h" |
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# ifdef ALLOW_BULKFORMULAE |
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# include "exf_constants.h" |
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# endif |
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# endif |
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# ifdef ALLOW_SEAICE |
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# include "SEAICE.h" |
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# endif |
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#endif /* ALLOW_AUTODIFF_TAMC */ |
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|
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C !INPUT/OUTPUT PARAMETERS: |
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C == Routine arguments == |
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C myTime :: Current time in simulation |
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C myIter :: Current iteration number in simulation |
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C myThid :: Thread number for this instance of the routine. |
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_RL myTime |
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INTEGER myIter |
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INTEGER myThid |
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|
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C !LOCAL VARIABLES: |
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C == Local variables |
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C rhoK, rhoKM1 :: Density at current level, and level above |
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C iMin, iMax :: Ranges and sub-block indices on which calculations |
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C jMin, jMax are applied. |
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C bi, bj :: tile indices |
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C i,j,k :: loop indices |
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_RL rhokm1 (1-OLx:sNx+OLx,1-OLy:sNy+OLy) |
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_RL rhok (1-OLx:sNx+OLx,1-OLy:sNy+OLy) |
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_RL sigmaX (1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr) |
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_RL sigmaY (1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr) |
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_RL sigmaR (1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr) |
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INTEGER iMin, iMax |
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INTEGER jMin, jMax |
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INTEGER bi, bj |
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INTEGER i, j, k |
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INTEGER doDiagsRho |
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#ifdef ALLOW_DIAGNOSTICS |
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LOGICAL DIAGNOSTICS_IS_ON |
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EXTERNAL DIAGNOSTICS_IS_ON |
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#endif /* ALLOW_DIAGNOSTICS */ |
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|
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CEOP |
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|
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#ifdef ALLOW_AUTODIFF_TAMC |
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C-- dummy statement to end declaration part |
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itdkey = 1 |
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#endif /* ALLOW_AUTODIFF_TAMC */ |
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|
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#ifdef ALLOW_DEBUG |
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IF ( debugLevel .GE. debLevB ) |
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& CALL DEBUG_ENTER('DO_OCEANIC_PHYS',myThid) |
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#endif |
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|
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doDiagsRho = 0 |
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#ifdef ALLOW_DIAGNOSTICS |
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IF ( useDiagnostics .AND. fluidIsWater ) THEN |
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IF ( DIAGNOSTICS_IS_ON('DRHODR ',myThid) ) doDiagsRho = 1 |
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IF ( DIAGNOSTICS_IS_ON('RHOANOSQ',myThid) .OR. |
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& DIAGNOSTICS_IS_ON('URHOMASS',myThid) .OR. |
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& DIAGNOSTICS_IS_ON('VRHOMASS',myThid) .OR. |
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& DIAGNOSTICS_IS_ON('WRHOMASS',myThid) .OR. |
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& DIAGNOSTICS_IS_ON('WRHOMASS',myThid) ) doDiagsRho = 2 |
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ENDIF |
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#endif /* ALLOW_DIAGNOSTICS */ |
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|
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#ifdef ALLOW_SEAICE |
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C-- Call sea ice model to compute forcing/external data fields. In |
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C addition to computing prognostic sea-ice variables and diagnosing the |
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C forcing/external data fields that drive the ocean model, SEAICE_MODEL |
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C also sets theta to the freezing point under sea-ice. The implied |
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C surface heat flux is then stored in variable surfaceTendencyTice, |
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C which is needed by KPP package (kpp_calc.F and kpp_transport_t.F) |
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C to diagnose surface buoyancy fluxes and for the non-local transport |
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C term. Because this call precedes model thermodynamics, temperature |
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C under sea-ice may not be "exactly" at the freezing point by the time |
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C theta is dumped or time-averaged. |
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IF ( useSEAICE ) THEN |
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#ifdef ALLOW_AUTODIFF_TAMC |
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CADJ STORE aqh,precip,swdown = comlev1, key = ikey_dynamics |
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CADJ STORE theta = comlev1, key = ikey_dynamics |
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# ifdef SEAICE_ALLOW_DYNAMICS |
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CADJ STORE uvel,vvel = comlev1, key = ikey_dynamics |
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# endif |
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#endif |
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#ifdef ALLOW_DEBUG |
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IF ( debugLevel .GE. debLevB ) |
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& CALL DEBUG_CALL('SEAICE_MODEL',myThid) |
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#endif |
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CALL TIMER_START('SEAICE_MODEL [DO_OCEANIC_PHYS]', myThid) |
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CALL SEAICE_MODEL( myTime, myIter, myThid ) |
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CALL TIMER_STOP ('SEAICE_MODEL [DO_OCEANIC_PHYS]', myThid) |
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#ifdef ALLOW_COST_ICE |
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CALL COST_ICE_TEST ( myTime, myIter, myThid ) |
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#endif |
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ENDIF |
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#endif /* ALLOW_SEAICE */ |
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|
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#if (defined ALLOW_THSICE) && !(defined ALLOW_ATM2D) |
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IF ( useThSIce .AND. fluidIsWater ) THEN |
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#ifdef ALLOW_DEBUG |
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IF ( debugLevel .GE. debLevB ) |
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& CALL DEBUG_CALL('THSICE_MAIN',myThid) |
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#endif |
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C-- Step forward Therm.Sea-Ice variables |
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C and modify forcing terms including effects from ice |
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CALL TIMER_START('THSICE_MAIN [DO_OCEANIC_PHYS]', myThid) |
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CALL THSICE_MAIN( myTime, myIter, myThid ) |
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CALL TIMER_STOP( 'THSICE_MAIN [DO_OCEANIC_PHYS]', myThid) |
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ENDIF |
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#endif /* ALLOW_THSICE */ |
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|
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#ifdef ALLOW_SHELFICE |
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IF ( useShelfIce .AND. fluidIsWater ) THEN |
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#ifdef ALLOW_DEBUG |
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IF ( debugLevel .GE. debLevB ) |
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& CALL DEBUG_CALL('SHELFICE_THERMODYNAMICS',myThid) |
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#endif |
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C compute temperature and (virtual) salt flux at the |
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C shelf-ice ocean interface |
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CALL TIMER_START('SHELFICE_THERMODYNAMICS [DO_OCEANIC_PHYS]', |
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& myThid) |
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CALL SHELFICE_THERMODYNAMICS( myTime, myIter, myThid ) |
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CALL TIMER_STOP( 'SHELFICE_THERMODYNAMICS [DO_OCEANIC_PHYS]', |
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& myThid) |
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ENDIF |
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#endif /* ALLOW_SHELFICE */ |
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|
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C-- Freeze water at the surface |
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#ifdef ALLOW_AUTODIFF_TAMC |
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CADJ STORE theta = comlev1, key = ikey_dynamics |
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#endif |
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IF ( allowFreezing |
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& .AND. .NOT. useSEAICE |
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& .AND. .NOT. useThSIce ) THEN |
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CALL FREEZE_SURFACE( myTime, myIter, myThid ) |
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ENDIF |
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|
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#ifdef ALLOW_OCN_COMPON_INTERF |
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C-- Apply imported data (from coupled interface) to forcing fields |
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C jmc: do not know precisely where to put this call (bf or af thSIce ?) |
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IF ( useCoupler ) THEN |
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CALL OCN_APPLY_IMPORT( .TRUE., myTime, myIter, myThid ) |
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ENDIF |
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#endif /* ALLOW_OCN_COMPON_INTERF */ |
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|
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#ifdef ALLOW_BALANCE_FLUXES |
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C balance fluxes |
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IF ( balanceEmPmR ) |
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& CALL REMOVE_MEAN_RS( 1, EmPmR, maskH, maskH, rA, drF, |
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& 'EmPmR', myTime, myThid ) |
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IF ( balanceQnet ) |
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& CALL REMOVE_MEAN_RS( 1, Qnet, maskH, maskH, rA, drF, |
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& 'Qnet ', myTime, myThid ) |
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#endif /* ALLOW_BALANCE_FLUXES */ |
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|
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#ifdef ALLOW_AUTODIFF_TAMC |
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C-- HPF directive to help TAMC |
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CHPF$ INDEPENDENT |
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#endif /* ALLOW_AUTODIFF_TAMC */ |
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DO bj=myByLo(myThid),myByHi(myThid) |
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#ifdef ALLOW_AUTODIFF_TAMC |
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C-- HPF directive to help TAMC |
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CHPF$ INDEPENDENT |
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#endif /* ALLOW_AUTODIFF_TAMC */ |
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DO bi=myBxLo(myThid),myBxHi(myThid) |
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|
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#ifdef ALLOW_AUTODIFF_TAMC |
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act1 = bi - myBxLo(myThid) |
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max1 = myBxHi(myThid) - myBxLo(myThid) + 1 |
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act2 = bj - myByLo(myThid) |
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max2 = myByHi(myThid) - myByLo(myThid) + 1 |
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act3 = myThid - 1 |
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max3 = nTx*nTy |
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act4 = ikey_dynamics - 1 |
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itdkey = (act1 + 1) + act2*max1 |
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& + act3*max1*max2 |
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& + act4*max1*max2*max3 |
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#endif /* ALLOW_AUTODIFF_TAMC */ |
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|
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C-- Set up work arrays with valid (i.e. not NaN) values |
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C These inital values do not alter the numerical results. They |
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C just ensure that all memory references are to valid floating |
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C point numbers. This prevents spurious hardware signals due to |
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C uninitialised but inert locations. |
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|
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DO j=1-OLy,sNy+OLy |
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DO i=1-OLx,sNx+OLx |
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rhok (i,j) = 0. _d 0 |
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rhoKM1 (i,j) = 0. _d 0 |
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ENDDO |
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ENDDO |
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|
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DO k=1,Nr |
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DO j=1-OLy,sNy+OLy |
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DO i=1-OLx,sNx+OLx |
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C This is currently also used by IVDC and Diagnostics |
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sigmaX(i,j,k) = 0. _d 0 |
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sigmaY(i,j,k) = 0. _d 0 |
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sigmaR(i,j,k) = 0. _d 0 |
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#ifdef ALLOW_AUTODIFF_TAMC |
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cph all the following init. are necessary for TAF |
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cph although some of these are re-initialised later. |
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IVDConvCount(i,j,k,bi,bj) = 0. |
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# ifdef ALLOW_GMREDI |
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Kwx(i,j,k,bi,bj) = 0. _d 0 |
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Kwy(i,j,k,bi,bj) = 0. _d 0 |
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Kwz(i,j,k,bi,bj) = 0. _d 0 |
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# ifdef GM_NON_UNITY_DIAGONAL |
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Kux(i,j,k,bi,bj) = 0. _d 0 |
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Kvy(i,j,k,bi,bj) = 0. _d 0 |
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# endif |
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# ifdef GM_EXTRA_DIAGONAL |
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Kuz(i,j,k,bi,bj) = 0. _d 0 |
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Kvz(i,j,k,bi,bj) = 0. _d 0 |
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# endif |
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# ifdef GM_BOLUS_ADVEC |
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GM_PsiX(i,j,k,bi,bj) = 0. _d 0 |
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GM_PsiY(i,j,k,bi,bj) = 0. _d 0 |
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# endif |
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# ifdef GM_VISBECK_VARIABLE_K |
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VisbeckK(i,j,bi,bj) = 0. _d 0 |
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# endif |
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# endif /* ALLOW_GMREDI */ |
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#endif /* ALLOW_AUTODIFF_TAMC */ |
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ENDDO |
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ENDDO |
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ENDDO |
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|
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iMin = 1-OLx |
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iMax = sNx+OLx |
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jMin = 1-OLy |
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jMax = sNy+OLy |
| 300 |
|
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#ifdef ALLOW_AUTODIFF_TAMC |
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CADJ STORE theta(:,:,:,bi,bj) = comlev1_bibj, key=itdkey, byte=isbyte |
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CADJ STORE salt (:,:,:,bi,bj) = comlev1_bibj, key=itdkey, byte=isbyte |
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CADJ STORE totphihyd(:,:,:,bi,bj) |
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CADJ & = comlev1_bibj, key=itdkey, byte=isbyte |
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# ifdef ALLOW_KPP |
| 307 |
CADJ STORE uvel (:,:,:,bi,bj) = comlev1_bibj, key=itdkey, byte=isbyte |
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CADJ STORE vvel (:,:,:,bi,bj) = comlev1_bibj, key=itdkey, byte=isbyte |
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# endif |
| 310 |
#endif /* ALLOW_AUTODIFF_TAMC */ |
| 311 |
|
| 312 |
#ifdef ALLOW_DEBUG |
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IF ( debugLevel .GE. debLevB ) |
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& CALL DEBUG_MSG('ENTERING UPWARD K LOOP',myThid) |
| 315 |
#endif |
| 316 |
|
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C-- Start of diagnostic loop |
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DO k=Nr,1,-1 |
| 319 |
|
| 320 |
#ifdef ALLOW_AUTODIFF_TAMC |
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C? Patrick, is this formula correct now that we change the loop range? |
| 322 |
C? Do we still need this? |
| 323 |
cph kkey formula corrected. |
| 324 |
cph Needed for rhok, rhokm1, in the case useGMREDI. |
| 325 |
kkey = (itdkey-1)*Nr + k |
| 326 |
#endif /* ALLOW_AUTODIFF_TAMC */ |
| 327 |
|
| 328 |
C-- Calculate gradients of potential density for isoneutral |
| 329 |
C slope terms (e.g. GM/Redi tensor or IVDC diffusivity) |
| 330 |
c IF ( k.GT.1 .AND. (useGMRedi.OR.ivdc_kappa.NE.0.) ) THEN |
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IF ( useGMRedi .OR. (k.GT.1 .AND. ivdc_kappa.NE.0.) |
| 332 |
& .OR. doDiagsRho.GE.1 ) THEN |
| 333 |
#ifdef ALLOW_DEBUG |
| 334 |
IF ( debugLevel .GE. debLevB ) |
| 335 |
& CALL DEBUG_CALL('FIND_RHO',myThid) |
| 336 |
#endif |
| 337 |
#ifdef ALLOW_AUTODIFF_TAMC |
| 338 |
CADJ STORE theta(:,:,k,bi,bj) = comlev1_bibj_k, key=kkey, byte=isbyte |
| 339 |
CADJ STORE salt (:,:,k,bi,bj) = comlev1_bibj_k, key=kkey, byte=isbyte |
| 340 |
#endif /* ALLOW_AUTODIFF_TAMC */ |
| 341 |
CALL FIND_RHO( |
| 342 |
I bi, bj, iMin, iMax, jMin, jMax, k, k, |
| 343 |
I theta, salt, |
| 344 |
O rhoK, |
| 345 |
I myThid ) |
| 346 |
|
| 347 |
IF (k.GT.1) THEN |
| 348 |
#ifdef ALLOW_AUTODIFF_TAMC |
| 349 |
CADJ STORE theta(:,:,k-1,bi,bj) = comlev1_bibj_k, key=kkey, byte=isbyte |
| 350 |
CADJ STORE salt (:,:,k-1,bi,bj) = comlev1_bibj_k, key=kkey, byte=isbyte |
| 351 |
#endif /* ALLOW_AUTODIFF_TAMC */ |
| 352 |
CALL FIND_RHO( |
| 353 |
I bi, bj, iMin, iMax, jMin, jMax, k-1, k, |
| 354 |
I theta, salt, |
| 355 |
O rhoKm1, |
| 356 |
I myThid ) |
| 357 |
ENDIF |
| 358 |
#ifdef ALLOW_DEBUG |
| 359 |
IF ( debugLevel .GE. debLevB ) |
| 360 |
& CALL DEBUG_CALL('GRAD_SIGMA',myThid) |
| 361 |
#endif |
| 362 |
CALL GRAD_SIGMA( |
| 363 |
I bi, bj, iMin, iMax, jMin, jMax, k, |
| 364 |
I rhoK, rhoKm1, rhoK, |
| 365 |
O sigmaX, sigmaY, sigmaR, |
| 366 |
I myThid ) |
| 367 |
ENDIF |
| 368 |
|
| 369 |
#ifdef ALLOW_AUTODIFF_TAMC |
| 370 |
ctest# ifndef GM_EXCLUDE_CLIPPING |
| 371 |
CADJ STORE rhok (:,:) = comlev1_bibj_k , key=kkey, byte=isbyte |
| 372 |
ctest# endif |
| 373 |
CADJ STORE rhokm1 (:,:) = comlev1_bibj_k , key=kkey, byte=isbyte |
| 374 |
#endif /* ALLOW_AUTODIFF_TAMC */ |
| 375 |
C-- Implicit Vertical Diffusion for Convection |
| 376 |
c ==> should use sigmaR !!! |
| 377 |
IF (k.GT.1 .AND. ivdc_kappa.NE.0.) THEN |
| 378 |
#ifdef ALLOW_DEBUG |
| 379 |
IF ( debugLevel .GE. debLevB ) |
| 380 |
& CALL DEBUG_CALL('CALC_IVDC',myThid) |
| 381 |
#endif |
| 382 |
CALL CALC_IVDC( |
| 383 |
I bi, bj, iMin, iMax, jMin, jMax, k, |
| 384 |
I rhoKm1, rhoK, |
| 385 |
I myTime, myIter, myThid) |
| 386 |
ENDIF |
| 387 |
|
| 388 |
#ifdef ALLOW_DIAGNOSTICS |
| 389 |
IF ( doDiagsRho.GE.2 ) THEN |
| 390 |
CALL DIAGS_RHO( k, bi, bj, |
| 391 |
I rhoK, rhoKm1, |
| 392 |
I myTime, myIter, myThid) |
| 393 |
ENDIF |
| 394 |
#endif |
| 395 |
|
| 396 |
C-- end of diagnostic k loop (Nr:1) |
| 397 |
ENDDO |
| 398 |
|
| 399 |
#ifdef ALLOW_DIAGNOSTICS |
| 400 |
c IF ( useDiagnostics .AND. |
| 401 |
c & (useGMRedi .OR. ivdc_kappa.NE.0.) ) THEN |
| 402 |
IF ( doDiagsRho.GE.1 ) THEN |
| 403 |
CALL DIAGNOSTICS_FILL (sigmaR, 'DRHODR ', 0, Nr, |
| 404 |
& 2, bi, bj, myThid) |
| 405 |
ENDIF |
| 406 |
#endif |
| 407 |
|
| 408 |
#ifdef ALLOW_OBCS |
| 409 |
C-- Calculate future values on open boundaries |
| 410 |
IF (useOBCS) THEN |
| 411 |
#ifdef ALLOW_DEBUG |
| 412 |
IF ( debugLevel .GE. debLevB ) |
| 413 |
& CALL DEBUG_CALL('OBCS_CALC',myThid) |
| 414 |
#endif |
| 415 |
CALL OBCS_CALC( bi, bj, myTime+deltaTclock, myIter+1, |
| 416 |
I uVel, vVel, wVel, theta, salt, |
| 417 |
I myThid ) |
| 418 |
ENDIF |
| 419 |
#endif /* ALLOW_OBCS */ |
| 420 |
|
| 421 |
#ifndef ALLOW_AUTODIFF_TAMC |
| 422 |
IF ( fluidIsWater ) THEN |
| 423 |
#endif |
| 424 |
C-- Determines forcing terms based on external fields |
| 425 |
C relaxation terms, etc. |
| 426 |
#ifdef ALLOW_DEBUG |
| 427 |
IF ( debugLevel .GE. debLevB ) |
| 428 |
& CALL DEBUG_CALL('EXTERNAL_FORCING_SURF',myThid) |
| 429 |
#endif |
| 430 |
#ifdef ALLOW_AUTODIFF_TAMC |
| 431 |
CADJ STORE EmPmR(:,:,bi,bj) |
| 432 |
CADJ & = comlev1_bibj, key=itdkey, byte=isbyte |
| 433 |
# ifdef EXACT_CONSERV |
| 434 |
CADJ STORE PmEpR(:,:,bi,bj) |
| 435 |
CADJ & = comlev1_bibj, key=itdkey, byte=isbyte |
| 436 |
# endif |
| 437 |
# ifdef NONLIN_FRSURF |
| 438 |
CADJ STORE hFac_surfC(:,:,bi,bj) |
| 439 |
CADJ & = comlev1_bibj, key=itdkey, byte=isbyte |
| 440 |
CADJ STORE recip_hFacC(:,:,:,bi,bj) |
| 441 |
CADJ & = comlev1_bibj, key=itdkey, byte=isbyte |
| 442 |
# endif |
| 443 |
#endif |
| 444 |
CALL EXTERNAL_FORCING_SURF( |
| 445 |
I bi, bj, iMin, iMax, jMin, jMax, |
| 446 |
I myTime, myIter, myThid ) |
| 447 |
#ifndef ALLOW_AUTODIFF_TAMC |
| 448 |
ENDIF |
| 449 |
#endif |
| 450 |
#ifdef ALLOW_AUTODIFF_TAMC |
| 451 |
# ifdef EXACT_CONSERV |
| 452 |
cph-test |
| 453 |
cphCADJ STORE PmEpR(:,:,bi,bj) |
| 454 |
cphCADJ & = comlev1_bibj, key=itdkey, byte=isbyte |
| 455 |
# endif |
| 456 |
#endif |
| 457 |
|
| 458 |
#ifdef ALLOW_AUTODIFF_TAMC |
| 459 |
cph needed for KPP |
| 460 |
CADJ STORE surfaceForcingU(:,:,bi,bj) |
| 461 |
CADJ & = comlev1_bibj, key=itdkey, byte=isbyte |
| 462 |
CADJ STORE surfaceForcingV(:,:,bi,bj) |
| 463 |
CADJ & = comlev1_bibj, key=itdkey, byte=isbyte |
| 464 |
CADJ STORE surfaceForcingS(:,:,bi,bj) |
| 465 |
CADJ & = comlev1_bibj, key=itdkey, byte=isbyte |
| 466 |
CADJ STORE surfaceForcingT(:,:,bi,bj) |
| 467 |
CADJ & = comlev1_bibj, key=itdkey, byte=isbyte |
| 468 |
CADJ STORE surfaceForcingTice(:,:,bi,bj) |
| 469 |
CADJ & = comlev1_bibj, key=itdkey, byte=isbyte |
| 470 |
#endif /* ALLOW_AUTODIFF_TAMC */ |
| 471 |
|
| 472 |
#ifdef ALLOW_GMREDI |
| 473 |
|
| 474 |
#ifdef ALLOW_AUTODIFF_TAMC |
| 475 |
# ifndef GM_EXCLUDE_CLIPPING |
| 476 |
cph storing here is needed only for one GMREDI_OPTIONS: |
| 477 |
cph define GM_BOLUS_ADVEC |
| 478 |
cph keep it although TAF says you dont need to. |
| 479 |
cph but I've avoided the #ifdef for now, in case more things change |
| 480 |
CADJ STORE sigmaX(:,:,:) = comlev1_bibj, key=itdkey, byte=isbyte |
| 481 |
CADJ STORE sigmaY(:,:,:) = comlev1_bibj, key=itdkey, byte=isbyte |
| 482 |
CADJ STORE sigmaR(:,:,:) = comlev1_bibj, key=itdkey, byte=isbyte |
| 483 |
# endif |
| 484 |
#endif /* ALLOW_AUTODIFF_TAMC */ |
| 485 |
|
| 486 |
C-- Calculate iso-neutral slopes for the GM/Redi parameterisation |
| 487 |
IF (useGMRedi) THEN |
| 488 |
#ifdef ALLOW_DEBUG |
| 489 |
IF ( debugLevel .GE. debLevB ) |
| 490 |
& CALL DEBUG_CALL('GMREDI_CALC_TENSOR',myThid) |
| 491 |
#endif |
| 492 |
CALL GMREDI_CALC_TENSOR( |
| 493 |
I bi, bj, iMin, iMax, jMin, jMax, |
| 494 |
I sigmaX, sigmaY, sigmaR, |
| 495 |
I myThid ) |
| 496 |
#ifdef ALLOW_AUTODIFF_TAMC |
| 497 |
ELSE |
| 498 |
CALL GMREDI_CALC_TENSOR_DUMMY( |
| 499 |
I bi, bj, iMin, iMax, jMin, jMax, |
| 500 |
I sigmaX, sigmaY, sigmaR, |
| 501 |
I myThid ) |
| 502 |
#endif /* ALLOW_AUTODIFF_TAMC */ |
| 503 |
ENDIF |
| 504 |
|
| 505 |
#endif /* ALLOW_GMREDI */ |
| 506 |
|
| 507 |
#ifdef ALLOW_KPP |
| 508 |
C-- Compute KPP mixing coefficients |
| 509 |
IF (useKPP) THEN |
| 510 |
#ifdef ALLOW_DEBUG |
| 511 |
IF ( debugLevel .GE. debLevB ) |
| 512 |
& CALL DEBUG_CALL('KPP_CALC',myThid) |
| 513 |
#endif |
| 514 |
CALL KPP_CALC( |
| 515 |
I bi, bj, myTime, myThid ) |
| 516 |
#ifdef ALLOW_AUTODIFF_TAMC |
| 517 |
ELSE |
| 518 |
CALL KPP_CALC_DUMMY( |
| 519 |
I bi, bj, myTime, myThid ) |
| 520 |
#endif /* ALLOW_AUTODIFF_TAMC */ |
| 521 |
ENDIF |
| 522 |
|
| 523 |
#endif /* ALLOW_KPP */ |
| 524 |
|
| 525 |
#ifdef ALLOW_PP81 |
| 526 |
C-- Compute PP81 mixing coefficients |
| 527 |
IF (usePP81) THEN |
| 528 |
#ifdef ALLOW_DEBUG |
| 529 |
IF ( debugLevel .GE. debLevB ) |
| 530 |
& CALL DEBUG_CALL('PP81_CALC',myThid) |
| 531 |
#endif |
| 532 |
CALL PP81_CALC( |
| 533 |
I bi, bj, myTime, myThid ) |
| 534 |
ENDIF |
| 535 |
#endif /* ALLOW_PP81 */ |
| 536 |
|
| 537 |
#ifdef ALLOW_MY82 |
| 538 |
C-- Compute MY82 mixing coefficients |
| 539 |
IF (useMY82) THEN |
| 540 |
#ifdef ALLOW_DEBUG |
| 541 |
IF ( debugLevel .GE. debLevB ) |
| 542 |
& CALL DEBUG_CALL('MY82_CALC',myThid) |
| 543 |
#endif |
| 544 |
CALL MY82_CALC( |
| 545 |
I bi, bj, myTime, myThid ) |
| 546 |
ENDIF |
| 547 |
#endif /* ALLOW_MY82 */ |
| 548 |
|
| 549 |
#ifdef ALLOW_GGL90 |
| 550 |
C-- Compute GGL90 mixing coefficients |
| 551 |
IF (useGGL90) THEN |
| 552 |
#ifdef ALLOW_DEBUG |
| 553 |
IF ( debugLevel .GE. debLevB ) |
| 554 |
& CALL DEBUG_CALL('GGL90_CALC',myThid) |
| 555 |
#endif |
| 556 |
CALL GGL90_CALC( |
| 557 |
I bi, bj, myTime, myThid ) |
| 558 |
ENDIF |
| 559 |
#endif /* ALLOW_GGL90 */ |
| 560 |
|
| 561 |
#ifdef ALLOW_TIMEAVE |
| 562 |
IF ( taveFreq.GT. 0. _d 0 .AND. fluidIsWater ) THEN |
| 563 |
CALL TIMEAVE_SURF_FLUX( bi, bj, myTime, myIter, myThid) |
| 564 |
ENDIF |
| 565 |
IF (taveFreq.GT.0. .AND. ivdc_kappa.NE.0.) THEN |
| 566 |
CALL TIMEAVE_CUMULATE(ConvectCountTave, IVDConvCount, |
| 567 |
I Nr, deltaTclock, bi, bj, myThid) |
| 568 |
ENDIF |
| 569 |
#endif /* ALLOW_TIMEAVE */ |
| 570 |
|
| 571 |
C-- end bi,bj loops. |
| 572 |
ENDDO |
| 573 |
ENDDO |
| 574 |
|
| 575 |
#ifdef ALLOW_DIAGNOSTICS |
| 576 |
IF ( fluidIsWater .AND. useDiagnostics ) THEN |
| 577 |
CALL DIAGS_OCEANIC_SURF_FLUX( myTime, myIter, myThid ) |
| 578 |
ENDIF |
| 579 |
IF ( ivdc_kappa.NE.0 .AND. useDiagnostics ) THEN |
| 580 |
CALL DIAGNOSTICS_FILL( IVDConvCount,'CONVADJ ', |
| 581 |
& 0, Nr, 0, 1, 1, myThid ) |
| 582 |
ENDIF |
| 583 |
#endif |
| 584 |
|
| 585 |
#ifdef ALLOW_DEBUG |
| 586 |
IF ( debugLevel .GE. debLevB ) |
| 587 |
& CALL DEBUG_LEAVE('DO_OCEANIC_PHYS',myThid) |
| 588 |
#endif |
| 589 |
|
| 590 |
RETURN |
| 591 |
END |
| 592 |
|