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trcsbc.F90 in trunk/NEMO/TOP_SRC/TRP – NEMO

source: trunk/NEMO/TOP_SRC/TRP/trcsbc.F90 @ 1119

Last change on this file since 1119 was 1119, checked in by cetlod, 16 years ago

style of all top namelist has been modified ; update modules to take it into account, see ticket:196

  • Property svn:executable set to *
File size: 5.0 KB
RevLine 
[941]1MODULE trcsbc
2   !!==============================================================================
3   !!                       ***  MODULE  trcsbc  ***
4   !! Ocean passive tracers:  surface boundary condition
5   !!==============================================================================
6#if defined key_top
7   !!----------------------------------------------------------------------
8   !!   'key_top'                                                TOP models
9   !!----------------------------------------------------------------------
10   !!   trc_sbc      : update the tracer trend at ocean surface
11   !!----------------------------------------------------------------------
12   !! * Modules used
13   USE oce_trc             ! ocean dynamics and active tracers variables
[1119]14   USE trp_trc                 ! ocean  passive tracers variables
[941]15   USE prtctl_trc          ! Print control for debbuging
16
17
18   IMPLICIT NONE
19   PRIVATE
20
21   !! * Routine accessibility
22   PUBLIC trc_sbc              ! routine called by step.F90
23
24   !! * Substitutions
25#  include "top_substitute.h90"
26   !!----------------------------------------------------------------------
27   !!   TOP 1.0 , LOCEAN-IPSL (2005)
28   !! $Header: /home/opalod/NEMOCVSROOT/NEMO/TOP_SRC/TRP/trcsbc.F90,v 1.10 2007/10/12 09:26:30 opalod Exp $
29   !! This software is governed by the CeCILL licence see modipsl/doc/NEMO_CeCILL.txt
30   !!----------------------------------------------------------------------
31
32CONTAINS
33
34   SUBROUTINE trc_sbc ( kt )
35      !!----------------------------------------------------------------------
36      !!                  ***  ROUTINE trc_sbc  ***
37      !!                   
38      !! ** Purpose :   Compute the tracer surface boundary condition trend of
39      !!      (concentration/dilution effect) and add it to the general
40      !!       trend of tracer equations.
41      !!
42      !! ** Method :
43      !!      * concentration/dilution effect:
44      !!            The surface freshwater flux modify the ocean volume
45      !!         and thus the concentration of a tracer as :
46      !!            tra = tra + emp * trn / e3t   for k=1
47      !!         where emp, the surface freshwater budget (evaporation minus
48      !!         precipitation minus runoff) given in kg/m2/s is divided
49      !!         by 1000 kg/m3 (density of plain water) to obtain m/s.
50      !!
51      !! ** Action  : - Update the 1st level of tra with the trend associated
52      !!                with the tracer surface boundary condition
53      !!
54      !! History :
55      !!   8.2  !  98-10  (G. Madec, G. Roullet, M. Imbard)  Original code
56      !!   8.2  !  01-02  (D. Ludicone)  sea ice and free surface
57      !!   8.5  !  02-06  (G. Madec)  F90: Free form and module
58      !!   9.0  !  04-03  (C. Ethe)  adapted for passive tracers
59      !!----------------------------------------------------------------------
60      !! * Arguments
61      INTEGER, INTENT( in ) ::   kt          ! ocean time-step index
62
63      !! * Local declarations
64      INTEGER  ::   ji, jj, jn           ! dummy loop indices
65      REAL(wp) ::   ztra, zsrau, zse3t   ! temporary scalars
66      CHARACTER (len=22) :: charout
67      !!----------------------------------------------------------------------
68
69      IF( kt == nittrc000 ) THEN
70         IF(lwp) WRITE(numout,*)
71         IF(lwp) WRITE(numout,*) 'trc_sbc : Passive tracers surface boundary condition'
72         IF(lwp) WRITE(numout,*) '~~~~~~~ '
73      ENDIF
74
75      ! 0. initialization
76      zsrau = 1. / rauw
77      IF( .NOT. ln_sco )  zse3t = 1. / fse3t(1,1,1)
78#if defined key_trc_diatrd
79      DO jn = 1, jptra
80        IF (luttrd(jn)) trtrd(:,:,:,ikeep(jn),jpdiatrc) = 0.0
81      END DO
82#endif
83
84      DO jn = 1, jptra
85         ! 1. Concentration dillution effect on tra
86         DO jj = 2, jpj
87            DO ji = fs_2, fs_jpim1   ! vector opt.
88               IF( ln_sco ) zse3t = 1. / fse3t(ji,jj,1)
89               ! concent./dilut. effect
90               ztra = emps(ji,jj) * zsrau * trn(ji,jj,1,jn) * zse3t * tmask(ji,jj,1)
91               
92               ! add the trend to the general tracer trend
93               tra(ji,jj,1,jn) = tra(ji,jj,1,jn) + ztra
94#if defined key_trc_diatrd
95               IF (luttrd(jn)) trtrd(ji,jj,1,ikeep(jn),jpdiatrc) = trtrd(ji,jj,1,jn,jpdiatrc) + ztra
96#endif
97            END DO
98         END DO
99         
100      END DO
101
102      IF(ln_ctl)   THEN  ! print mean trends (used for debugging)
103         WRITE(charout, FMT="('sbc')")
104         CALL prt_ctl_trc_info(charout)
105         CALL prt_ctl_trc(tab4d=tra, mask=tmask, clinfo=ctrcnm,clinfo2='trd')
106      ENDIF
107
108   END SUBROUTINE trc_sbc
109
110#else
111   !!----------------------------------------------------------------------
112   !!   Dummy module :                      NO passive tracer
113   !!----------------------------------------------------------------------
114CONTAINS
115   SUBROUTINE trc_sbc (kt)              ! Empty routine
116      INTEGER, INTENT(in) :: kt
117      WRITE(*,*) 'trc_sbc: You should not have seen this print! error?', kt
118   END SUBROUTINE trc_sbc
119#endif
120   
121   !!======================================================================
122END MODULE trcsbc
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