[941] | 1 | MODULE trcsbc |
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| 2 | !!============================================================================== |
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| 3 | !! *** MODULE trcsbc *** |
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| 4 | !! Ocean passive tracers: surface boundary condition |
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[1175] | 5 | !!====================================================================== |
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[2528] | 6 | !! History : 8.2 ! 1998-10 (G. Madec, G. Roullet, M. Imbard) Original code |
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| 7 | !! 8.2 ! 2001-02 (D. Ludicone) sea ice and free surface |
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| 8 | !! 8.5 ! 2002-06 (G. Madec) F90: Free form and module |
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| 9 | !! 9.0 ! 2004-03 (C. Ethe) adapted for passive tracers |
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| 10 | !! ! 2006-08 (C. Deltel) Diagnose ML trends for passive tracers |
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[941] | 11 | !!============================================================================== |
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| 12 | #if defined key_top |
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| 13 | !!---------------------------------------------------------------------- |
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| 14 | !! 'key_top' TOP models |
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| 15 | !!---------------------------------------------------------------------- |
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| 16 | !! trc_sbc : update the tracer trend at ocean surface |
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| 17 | !!---------------------------------------------------------------------- |
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| 18 | !! * Modules used |
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| 19 | USE oce_trc ! ocean dynamics and active tracers variables |
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[2528] | 20 | USE trc ! ocean passive tracers variables |
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[941] | 21 | USE prtctl_trc ! Print control for debbuging |
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[2528] | 22 | USE trdmod_oce |
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| 23 | USE trdtra |
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[941] | 24 | |
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| 25 | IMPLICIT NONE |
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| 26 | PRIVATE |
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| 27 | |
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| 28 | !! * Routine accessibility |
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| 29 | PUBLIC trc_sbc ! routine called by step.F90 |
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| 30 | |
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| 31 | !! * Substitutions |
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| 32 | # include "top_substitute.h90" |
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| 33 | !!---------------------------------------------------------------------- |
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[2528] | 34 | !! NEMO/TOP 3.3 , NEMO Consortium (2010) |
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[1152] | 35 | !! $Id$ |
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[2528] | 36 | !! Software governed by the CeCILL licence (NEMOGCM/NEMO_CeCILL.txt) |
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[941] | 37 | !!---------------------------------------------------------------------- |
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| 38 | |
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| 39 | CONTAINS |
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| 40 | |
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| 41 | SUBROUTINE trc_sbc ( kt ) |
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| 42 | !!---------------------------------------------------------------------- |
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| 43 | !! *** ROUTINE trc_sbc *** |
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| 44 | !! |
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| 45 | !! ** Purpose : Compute the tracer surface boundary condition trend of |
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| 46 | !! (concentration/dilution effect) and add it to the general |
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| 47 | !! trend of tracer equations. |
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| 48 | !! |
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| 49 | !! ** Method : |
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| 50 | !! * concentration/dilution effect: |
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| 51 | !! The surface freshwater flux modify the ocean volume |
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| 52 | !! and thus the concentration of a tracer as : |
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| 53 | !! tra = tra + emp * trn / e3t for k=1 |
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| 54 | !! where emp, the surface freshwater budget (evaporation minus |
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| 55 | !! precipitation minus runoff) given in kg/m2/s is divided |
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[1739] | 56 | !! by 1035 kg/m3 (density of ocean water) to obtain m/s. |
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[941] | 57 | !! |
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| 58 | !! ** Action : - Update the 1st level of tra with the trend associated |
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| 59 | !! with the tracer surface boundary condition |
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| 60 | !! |
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| 61 | !!---------------------------------------------------------------------- |
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| 62 | !! * Arguments |
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| 63 | INTEGER, INTENT( in ) :: kt ! ocean time-step index |
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| 64 | |
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| 65 | !! * Local declarations |
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| 66 | INTEGER :: ji, jj, jn ! dummy loop indices |
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[2528] | 67 | REAL(wp) :: zsrau, zse3t ! temporary scalars |
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| 68 | REAL(wp), DIMENSION(jpi,jpj) :: zemps ! surface freshwater flux |
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[1175] | 69 | REAL(wp), DIMENSION(:,:,:), ALLOCATABLE :: ztrtrd |
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[941] | 70 | CHARACTER (len=22) :: charout |
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| 71 | !!---------------------------------------------------------------------- |
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| 72 | |
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[2528] | 73 | IF( kt == nit000 ) THEN |
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[941] | 74 | IF(lwp) WRITE(numout,*) |
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| 75 | IF(lwp) WRITE(numout,*) 'trc_sbc : Passive tracers surface boundary condition' |
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| 76 | IF(lwp) WRITE(numout,*) '~~~~~~~ ' |
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| 77 | ENDIF |
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| 78 | |
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[2528] | 79 | |
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[1175] | 80 | IF( l_trdtrc ) ALLOCATE( ztrtrd(jpi,jpj,jpk) ) |
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| 81 | |
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[2528] | 82 | IF( lk_offline ) THEN ! emps in dynamical files contains emps - rnf |
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| 83 | zemps(:,:) = emps(:,:) |
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| 84 | ELSE ! Concentration dilution effect on tracer due to evaporation, precipitation, and river runoff |
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| 85 | IF( lk_vvl ) THEN ! volume variable |
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| 86 | zemps(:,:) = emps(:,:) - emp(:,:) |
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| 87 | !!ch zemps(:,:) = 0. |
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| 88 | ELSE ! linear free surface |
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| 89 | IF( ln_rnf ) THEN ; zemps(:,:) = emps(:,:) - rnf(:,:) ! E-P-R |
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| 90 | ELSE ; zemps(:,:) = emps(:,:) |
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| 91 | ENDIF |
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| 92 | ENDIF |
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| 93 | ENDIF |
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| 94 | |
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[941] | 95 | ! 0. initialization |
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[1739] | 96 | zsrau = 1. / rau0 |
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[941] | 97 | DO jn = 1, jptra |
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[2528] | 98 | ! |
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[1175] | 99 | IF( l_trdtrc ) ztrtrd(:,:,:) = tra(:,:,:,jn) ! save trends |
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[2528] | 100 | ! ! add the trend to the general tracer trend |
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[941] | 101 | DO jj = 2, jpj |
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| 102 | DO ji = fs_2, fs_jpim1 ! vector opt. |
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[2528] | 103 | zse3t = 1. / fse3t(ji,jj,1) |
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| 104 | tra(ji,jj,1,jn) = tra(ji,jj,1,jn) + zemps(ji,jj) * zsrau * trn(ji,jj,1,jn) * zse3t |
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[941] | 105 | END DO |
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| 106 | END DO |
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| 107 | |
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[1175] | 108 | IF( l_trdtrc ) THEN |
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| 109 | ztrtrd(:,:,:) = tra(:,:,:,jn) - ztrtrd(:,:,:) |
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[2528] | 110 | CALL trd_tra( kt, 'TRC', jn, jptra_trd_nsr, ztrtrd ) |
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[1175] | 111 | END IF |
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| 112 | ! ! =========== |
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| 113 | END DO ! tracer loop |
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| 114 | ! ! =========== |
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| 115 | IF( l_trdtrc ) DEALLOCATE( ztrtrd ) |
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| 116 | |
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[2528] | 117 | IF( ln_ctl ) THEN |
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| 118 | WRITE(charout, FMT="('sbc ')") ; CALL prt_ctl_trc_info(charout) |
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| 119 | CALL prt_ctl_trc( tab4d=tra, mask=tmask, clinfo=ctrcnm, clinfo2='trd' ) |
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[941] | 120 | ENDIF |
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| 121 | |
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| 122 | END SUBROUTINE trc_sbc |
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| 123 | |
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| 124 | #else |
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| 125 | !!---------------------------------------------------------------------- |
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| 126 | !! Dummy module : NO passive tracer |
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| 127 | !!---------------------------------------------------------------------- |
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| 128 | CONTAINS |
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| 129 | SUBROUTINE trc_sbc (kt) ! Empty routine |
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| 130 | INTEGER, INTENT(in) :: kt |
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| 131 | WRITE(*,*) 'trc_sbc: You should not have seen this print! error?', kt |
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| 132 | END SUBROUTINE trc_sbc |
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| 133 | #endif |
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| 134 | |
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| 135 | !!====================================================================== |
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| 136 | END MODULE trcsbc |
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