| 1 | C $Header:  $ | 
| 2 | C $Name:  $ | 
| 3 |  | 
| 4 | #include "LAYERS_OPTIONS.h" | 
| 5 |  | 
| 6 | SUBROUTINE LAYERS_OUTPUT( myTime, myIter, myThid ) | 
| 7 |  | 
| 8 | C     !DESCRIPTION: \bv | 
| 9 | C     *==========================================================* | 
| 10 | C     | SUBROUTINE LAYERS_OUTPUT | 
| 11 | C     | o general routine for LAYERS output | 
| 12 | C     *==========================================================* | 
| 13 | C     |   write time-average & snap-shot output | 
| 14 | C     *==========================================================* | 
| 15 | C     \ev | 
| 16 |  | 
| 17 | C     !USES: | 
| 18 | IMPLICIT NONE | 
| 19 |  | 
| 20 | C     === Global variables === | 
| 21 | #include "SIZE.h" | 
| 22 | #include "EEPARAMS.h" | 
| 23 | #include "PARAMS.h" | 
| 24 | #include "LAYERS_SIZE.h" | 
| 25 | #include "LAYERS.h" | 
| 26 |  | 
| 27 | C     !INPUT PARAMETERS: | 
| 28 | C     == Routine arguments == | 
| 29 | C     myTime :: Current time of simulation ( s ) | 
| 30 | C     myIter :: Iteration number | 
| 31 | C     myThid :: my Thread Id number | 
| 32 | _RL     myTime | 
| 33 | INTEGER myIter | 
| 34 | INTEGER myThid | 
| 35 | CEOP | 
| 36 |  | 
| 37 | #ifdef ALLOW_LAYERS | 
| 38 |  | 
| 39 | C     !LOCAL VARIABLES: | 
| 40 | C     == Local variables == | 
| 41 | LOGICAL  DIFFERENT_MULTIPLE | 
| 42 | EXTERNAL DIFFERENT_MULTIPLE | 
| 43 | INTEGER bi, bj, K | 
| 44 | CHARACTER*(MAX_LEN_MBUF) suff | 
| 45 | CHARACTER*(1) pf | 
| 46 |  | 
| 47 | IF ( writeBinaryPrec .EQ. precFloat64 ) THEN | 
| 48 | pf(1:1) = 'D' | 
| 49 | ELSE | 
| 50 | pf(1:1) = 'R' | 
| 51 | ENDIF | 
| 52 |  | 
| 53 | IF ( DIFFERENT_MULTIPLE(dumpFreq,myTime,deltaTClock) | 
| 54 | &   ) THEN | 
| 55 |  | 
| 56 | IF ( layers_MDSIO ) THEN | 
| 57 | WRITE(suff,'(I10.10)') myIter | 
| 58 | #ifdef LAYERS_UFLUX | 
| 59 | CALL WRITE_FLD_XYG_RL( | 
| 60 | &       'layers_UFlux.',suff,layers_UFlux,myIter,myThid) | 
| 61 | #ifdef LAYERS_THICKNESS | 
| 62 | CALL WRITE_FLD_XYG_RL( | 
| 63 | &       'layers_HU.',suff,layers_HU,myIter,myThid) | 
| 64 | #endif /* LAYERS_THICKNESS */ | 
| 65 | #endif /* LAYESR_UFLUX */ | 
| 66 | #ifdef LAYERS_VFLUX | 
| 67 | CALL WRITE_FLD_XYG_RL( | 
| 68 | &       'layers_VFlux.',suff,layers_VFlux,myIter,myThid) | 
| 69 | #ifdef LAYERS_THICKNESS | 
| 70 | CALL WRITE_FLD_XYG_RL( | 
| 71 | &       'layers_HV.',suff,layers_HV,myIter,myThid) | 
| 72 | #endif /* LAYERS_THICKNESS */ | 
| 73 | #endif /* LAYESR_VFLUX */ | 
| 74 | ENDIF | 
| 75 | ENDIF | 
| 76 |  | 
| 77 | #ifdef ALLOW_MNC | 
| 78 | #ifdef LAYERS_MNC | 
| 79 | IF ( layers_MNC) THEN | 
| 80 | C           Do MNC output... | 
| 81 | C           But how? | 
| 82 | ENDIF | 
| 83 | #endif /* LAYERS_MNC */ | 
| 84 | #endif /* ALLOW_MNC */ | 
| 85 |  | 
| 86 | #ifdef ALLOW_TIMEAVE | 
| 87 |  | 
| 88 | C     Dump files and restart average computation if needed | 
| 89 | IF ( DIFFERENT_MULTIPLE(taveFreq,myTime,deltaTClock) | 
| 90 | &     ) THEN | 
| 91 |  | 
| 92 | C      Normalize by integrated time | 
| 93 | DO bj = myByLo(myThid), myByHi(myThid) | 
| 94 | DO bi = myBxLo(myThid), myBxHi(myThid) | 
| 95 |  | 
| 96 | #ifdef LAYERS_UFLUX | 
| 97 | CALL TIMEAVE_NORMALIZ(layers_UFlux_T,layers_timeave,Nlayers, | 
| 98 | &                 bi,bj,myThid) | 
| 99 | #ifdef LAYERS_THICKNESS | 
| 100 | CALL TIMEAVE_NORMALIZ(layers_HU_T,layers_timeave,Nlayers, | 
| 101 | &                 bi,bj,myThid) | 
| 102 | #endif /* LAYERS_THICKNESS */ | 
| 103 | #endif /* LAYERS_UFLUX */ | 
| 104 |  | 
| 105 | #ifdef LAYERS_VFLUX | 
| 106 | CALL TIMEAVE_NORMALIZ(layers_VFlux_T,layers_timeave,Nlayers, | 
| 107 | &                 bi,bj,myThid) | 
| 108 | #ifdef LAYERS_THICKNESS | 
| 109 | CALL TIMEAVE_NORMALIZ(layers_HV_T,layers_timeave,Nlayers, | 
| 110 | &                 bi,bj,myThid) | 
| 111 | #endif /* LAYERS_THICKNESS */ | 
| 112 | #endif /* LAYERS_VFLUX */ | 
| 113 |  | 
| 114 | ENDDO | 
| 115 | ENDDO | 
| 116 |  | 
| 117 | IF ( layers_MDSIO ) THEN | 
| 118 | WRITE(suff,'(I10.10)') myIter | 
| 119 | #ifdef LAYERS_UFLUX | 
| 120 | CALL WRITE_FLD_XYG_RL( | 
| 121 | &    'layers_UFlux-tave.',suff,layers_UFlux_T,myIter,myThid) | 
| 122 | #ifdef LAYERS_THICKNESS | 
| 123 | CALL WRITE_FLD_XYG_RL( | 
| 124 | &    'layers_HU-tave.',suff,layers_HU_T,myIter,myThid) | 
| 125 | #endif /* LAYERS_THICKNESS */ | 
| 126 | #endif /* LAYERS_UFLUX */ | 
| 127 | #ifdef LAYERS_VFLUX | 
| 128 | CALL WRITE_FLD_XYG_RL( | 
| 129 | &    'layers_VFlux-tave.',suff,layers_VFlux_T,myIter,myThid) | 
| 130 | #ifdef LAYERS_THICKNESS | 
| 131 | CALL WRITE_FLD_XYG_RL( | 
| 132 | &    'layers_HV-tave.',suff,layers_HV_T,myIter,myThid) | 
| 133 | #endif /* LAYERS_THICKNESS */ | 
| 134 | #endif /* LAYERS_VFLUX */ | 
| 135 | ENDIF | 
| 136 |  | 
| 137 | #ifdef ALLOW_MNC | 
| 138 | C     Do MNC output. | 
| 139 | #endif | 
| 140 |  | 
| 141 | C      Reset averages to zero | 
| 142 | DO bj = myByLo(myThid), myByHi(myThid) | 
| 143 | DO bi = myBxLo(myThid), myBxHi(myThid) | 
| 144 | #ifdef LAYERS_UFLUX | 
| 145 | CALL TIMEAVE_RESET(layers_UFlux_T,Nlayers,bi,bj,myThid) | 
| 146 | #ifdef LAYERS_THICKNESS | 
| 147 | CALL TIMEAVE_RESET(layers_HU_T,Nlayers,bi,bj,myThid) | 
| 148 | #endif /* LAYERS_THICKNESS */ | 
| 149 | #endif /* LAYERS_UFLUX */ | 
| 150 |  | 
| 151 | #ifdef LAYERS_VFLUX | 
| 152 | CALL TIMEAVE_RESET(layers_VFlux_T,Nlayers,bi,bj,myThid) | 
| 153 | #ifdef LAYERS_THICKNESS | 
| 154 | CALL TIMEAVE_RESET(layers_HV_T,Nlayers,bi,bj,myThid) | 
| 155 | #endif /* LAYERS_THICKNESS */ | 
| 156 | #endif /* LAYERS_VFLUX */ | 
| 157 | DO k=1,Nlayers | 
| 158 | layers_TimeAve(k,bi,bj)=0. | 
| 159 | ENDDO | 
| 160 | ENDDO | 
| 161 | ENDDO | 
| 162 |  | 
| 163 | ENDIF | 
| 164 |  | 
| 165 |  | 
| 166 | #endif /* ALLOW_TIMEAVE */ | 
| 167 |  | 
| 168 | #endif /* ALLOW_LAYERS */ | 
| 169 |  | 
| 170 | RETURN | 
| 171 | END |