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#include "CPP_OPTIONS.h" |
#include "CPP_OPTIONS.h" |
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SUBROUTINE MON_KE( |
SUBROUTINE MON_KE( |
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I myThid ) |
I myIter, myThid ) |
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C /==========================================================\ |
C /==========================================================\ |
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C | SUBROUTINE MON_KE | |
C | SUBROUTINE MON_KE | |
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C | o Calculates stats for Kinetic energy | |
C | o Calculates stats for Kinetic energy | |
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#include "DYNVARS.h" |
#include "DYNVARS.h" |
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#include "MONITOR.h" |
#include "MONITOR.h" |
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#include "GRID.h" |
#include "GRID.h" |
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#include "SURFACE.h" |
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C === Routine arguments === |
C === Routine arguments === |
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INTEGER myThid |
INTEGER myIter, myThid |
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C === Local variables ==== |
C === Local variables ==== |
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INTEGER bi,bj,I,J,K |
INTEGER bi,bj,I,J,K |
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_RL tmpVal,tmpVol,theMax,theMean,theVolMean,theVol |
_RL numPnts,theVol,tmpVal,tmpVol |
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INTEGER numPnts |
_RL theMax,theMean,theVolMean,potEnMean |
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numPnts=0. |
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theVol=0. |
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theMax=0. |
theMax=0. |
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numPnts=0 |
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theMean=0. |
theMean=0. |
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theVolMean=0. |
theVolMean=0. |
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theVol=0. |
potEnMean =0. |
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DO bj=myByLo(myThid),myByHi(myThid) |
DO bj=myByLo(myThid),myByHi(myThid) |
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DO bi=myBxLo(myThid),myBxHi(myThid) |
DO bi=myBxLo(myThid),myBxHi(myThid) |
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theMax=max(theMax,tmpVal) |
theMax=max(theMax,tmpVal) |
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IF (tmpVal.NE.0.) THEN |
IF (tmpVal.NE.0.) THEN |
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theMean=theMean+tmpVal |
theMean=theMean+tmpVal |
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numPnts=numPnts+1 |
numPnts=numPnts+1. |
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ENDIF |
ENDIF |
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ENDDO |
ENDDO |
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ENDDO |
ENDDO |
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ENDDO |
ENDDO |
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C- Potential Energy (external mode): |
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DO J=1,sNy |
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DO I=1,sNx |
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tmpVal = 0.5 _d 0*Bo_surf(i,j,bi,bj) |
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& *etaN(i,j,bi,bj)*etaN(i,j,bi,bj) |
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C- jmc: if geoid not flat (phi0surf), needs to add this term. |
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C not sure for atmos/ocean in P ; or atmos. loading in ocean-Z |
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tmpVal = tmpVal |
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& + phi0surf(i,j,bi,bj)*etaN(i,j,bi,bj) |
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potEnMean = potEnMean |
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& + tmpVal*rA(i,j,bi,bj)*maskH(i,j,bi,bj) |
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c tmpVal = etaN(i,j,bi,bj) |
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c & + phi0surf(i,j,bi,bj)*recip_Bo(i,j,bi,bj) |
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c potEnMean = potEnMean |
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c & + 0.5 _d 0*Bo_surf(i,j,bi,bj)*tmpVal*tmpVal |
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c & *rA(i,j,bi,bj)*maskH(i,j,bi,bj) |
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ENDDO |
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ENDDO |
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C- end bi,bj loops |
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ENDDO |
ENDDO |
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ENDDO |
ENDDO |
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_GLOBAL_SUM_R8(numPnts,myThid) |
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_GLOBAL_MAX_R8(theMax,myThid) |
_GLOBAL_MAX_R8(theMax,myThid) |
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_GLOBAL_SUM_R8(theMean,myThid) |
_GLOBAL_SUM_R8(theMean,myThid) |
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tmpVal=float(numPnts) |
IF (numPnts.NE.0.) theMean=theMean/numPnts |
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_GLOBAL_SUM_R8(tmpVal,myThid) |
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IF (tmpVal.NE.0.) theMean=theMean/tmpVal |
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_GLOBAL_SUM_R8(theVol,myThid) |
_GLOBAL_SUM_R8(theVol,myThid) |
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_GLOBAL_SUM_R8(theVolMean,myThid) |
_GLOBAL_SUM_R8(theVolMean,myThid) |
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_GLOBAL_SUM_R8(potEnMean, myThid) |
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IF (theVol.NE.0.) THEN |
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theVolMean=theVolMean/theVol |
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potEnMean = potEnMean/theVol |
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ENDIF |
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C-- Print stats for (barotropic) Potential Energy: |
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CALL MON_SET_PREF('pe_b',myThid) |
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CALL MON_OUT_RL(mon_string_none,potEnMean, |
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& mon_foot_mean,myThid) |
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C-- Print stats for KE |
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CALL MON_SET_PREF('ke',myThid) |
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CALL MON_OUT_RL(mon_string_none,theMax,mon_foot_max,myThid) |
CALL MON_OUT_RL(mon_string_none,theMax,mon_foot_max,myThid) |
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CALL MON_OUT_RL(mon_string_none,theMean,mon_foot_mean,myThid) |
c CALL MON_OUT_RL(mon_string_none,theMean,mon_foot_mean,myThid) |
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CALL MON_OUT_RL(mon_string_none,theVolMean, |
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& mon_foot_volint,myThid) |
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IF (theVol.NE.0.) theVolMean=theVolMean/theVol |
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CALL MON_OUT_RL(mon_string_none,theVolMean, |
CALL MON_OUT_RL(mon_string_none,theVolMean, |
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& mon_foot_volmean,myThid) |
& mon_foot_mean,myThid) |
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CALL MON_OUT_RL(mon_string_none,theVol, |
CALL MON_OUT_RL(mon_string_none,theVol, |
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& mon_foot_vol,myThid) |
& mon_foot_vol,myThid) |
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