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zdfmxl.F90 in branches/2011/DEV_r2739_STFC_dCSE/NEMOGCM/NEMO/OPA_SRC/ZDF – NEMO

source: branches/2011/DEV_r2739_STFC_dCSE/NEMOGCM/NEMO/OPA_SRC/ZDF/zdfmxl.F90 @ 3211

Last change on this file since 3211 was 3211, checked in by spickles2, 12 years ago

Stephen Pickles, 11 Dec 2011

Commit to bring the rest of the DCSE NEMO development branch
in line with the latest development version. This includes
array index re-ordering of all OPA_SRC/.

  • Property svn:keywords set to Id
File size: 6.3 KB
Line 
1MODULE zdfmxl
2   !!======================================================================
3   !!                       ***  MODULE  zdfmxl  ***
4   !! Ocean physics: mixed layer depth
5   !!======================================================================
6   !! History :  1.0  ! 2003-08  (G. Madec)  original code
7   !!            3.2  ! 2009-07  (S. Masson, G. Madec)  IOM + merge of DO-loop
8   !!----------------------------------------------------------------------
9   !!   zdf_mxl      : Compute the turbocline and mixed layer depths.
10   !!----------------------------------------------------------------------
11   USE oce             ! ocean dynamics and tracers variables
12   USE dom_oce         ! ocean space and time domain variables
13   USE zdf_oce         ! ocean vertical physics
14   USE in_out_manager  ! I/O manager
15   USE prtctl          ! Print control
16   USE iom             ! I/O library
17   USE lib_mpp         ! MPP library
18
19   IMPLICIT NONE
20   PRIVATE
21
22   PUBLIC   zdf_mxl       ! called by step.F90
23
24   INTEGER , PUBLIC, ALLOCATABLE, SAVE, DIMENSION(:,:) ::   nmln    !: number of level in the mixed layer (used by TOP)
25   REAL(wp), PUBLIC, ALLOCATABLE, SAVE, DIMENSION(:,:) ::   hmld    !: mixing layer depth (turbocline)      [m]
26   REAL(wp), PUBLIC, ALLOCATABLE, SAVE, DIMENSION(:,:) ::   hmlp    !: mixed layer depth  (rho=rho0+zdcrit) [m]
27   REAL(wp), PUBLIC, ALLOCATABLE, SAVE, DIMENSION(:,:) ::   hmlpt   !: mixed layer depth at t-points        [m]
28
29   !! * Control permutation of array indices
30#  include "oce_ftrans.h90"
31#  include "dom_oce_ftrans.h90"
32#  include "zdf_oce_ftrans.h90"
33
34   !! * Substitutions
35#  include "domzgr_substitute.h90"
36   !!----------------------------------------------------------------------
37   !! NEMO/OPA 4.0 , NEMO Consortium (2011)
38   !! $Id$
39   !! Software governed by the CeCILL licence     (NEMOGCM/NEMO_CeCILL.txt)
40   !!----------------------------------------------------------------------
41CONTAINS
42
43   INTEGER FUNCTION zdf_mxl_alloc()
44      !!----------------------------------------------------------------------
45      !!               ***  FUNCTION zdf_mxl_alloc  ***
46      !!----------------------------------------------------------------------
47      ALLOCATE( nmln(jpi,jpj), hmld(jpi,jpj), hmlp(jpi,jpj), hmlpt(jpi,jpj), STAT= zdf_mxl_alloc )
48      !
49      IF( lk_mpp             )   CALL mpp_sum ( zdf_mxl_alloc )
50      IF( zdf_mxl_alloc /= 0 )   CALL ctl_warn('zdf_mxl_alloc: failed to allocate arrays.')
51   END FUNCTION zdf_mxl_alloc
52
53
54   SUBROUTINE zdf_mxl( kt )
55      !!----------------------------------------------------------------------
56      !!                  ***  ROUTINE zdfmxl  ***
57      !!                   
58      !! ** Purpose :   Compute the turbocline depth and the mixed layer depth
59      !!              with density criteria.
60      !!
61      !! ** Method  :   The mixed layer depth is the shallowest W depth with
62      !!      the density of the corresponding T point (just bellow) bellow a
63      !!      given value defined locally as rho(10m) + zrho_c
64      !!               The turbocline depth is the depth at which the vertical
65      !!      eddy diffusivity coefficient (resulting from the vertical physics
66      !!      alone, not the isopycnal part, see trazdf.F) fall below a given
67      !!      value defined locally (avt_c here taken equal to 5 cm/s2)
68      !!
69      !! ** Action  :   nmln, hmld, hmlp, hmlpt
70      !!----------------------------------------------------------------------
71      USE wrk_nemo, ONLY:   iwrk_in_use, iwrk_not_released
72      USE wrk_nemo, ONLY:   imld => iwrk_2d_1    ! 2D integer workspace
73      !!
74      INTEGER, INTENT(in) ::   kt   ! ocean time-step index
75      !!
76      INTEGER  ::   ji, jj, jk          ! dummy loop indices
77      INTEGER  ::   iikn, iiki          ! temporary integer within a do loop
78      REAL(wp) ::   zrho_c = 0.01_wp    ! density criterion for mixed layer depth
79      REAL(wp) ::   zavt_c = 5.e-4_wp   ! Kz criterion for the turbocline depth
80      !!----------------------------------------------------------------------
81
82      IF( iwrk_in_use(2, 1) ) THEN
83         CALL ctl_stop('zdf_mxl : requested workspace array unavailable')   ;   RETURN
84      ENDIF
85
86      IF( kt == nit000 ) THEN
87         IF(lwp) WRITE(numout,*)
88         IF(lwp) WRITE(numout,*) 'zdf_mxl : mixed layer depth'
89         IF(lwp) WRITE(numout,*) '~~~~~~~ '
90         !                             ! allocate zdfmxl arrays
91         IF( zdf_mxl_alloc() /= 0 )   CALL ctl_stop( 'STOP', 'zdf_mxl : unable to allocate arrays' )
92      ENDIF
93
94      ! w-level of the mixing and mixed layers
95      nmln(:,:) = mbkt(:,:) + 1        ! Initialization to the number of w ocean point
96      imld(:,:) = mbkt(:,:) + 1
97#if defined key_z_first
98      DO jj = 1, jpj
99         DO ji = 1, jpi
100            DO jk = jpkm1, nlb10, -1   ! from the bottom to nlb10
101#else
102      DO jk = jpkm1, nlb10, -1         ! from the bottom to nlb10
103         DO jj = 1, jpj
104            DO ji = 1, jpi
105#endif
106               IF( rhop(ji,jj,jk) > rhop(ji,jj,nla10) + zrho_c )   nmln(ji,jj) = jk      ! Mixed layer
107               IF( avt (ji,jj,jk) < zavt_c                     )   imld(ji,jj) = jk      ! Turbocline
108            END DO
109         END DO
110      END DO
111      ! depth of the mixing and mixed layers
112      DO jj = 1, jpj
113         DO ji = 1, jpi
114            iiki = imld(ji,jj)
115            iikn = nmln(ji,jj)
116#if defined key_z_first
117            hmld (ji,jj) = fsdepw(ji,jj,iiki  ) * tmask_1(ji,jj)    ! Turbocline depth
118            hmlp (ji,jj) = fsdepw(ji,jj,iikn  ) * tmask_1(ji,jj)    ! Mixed layer depth
119#else
120            hmld (ji,jj) = fsdepw(ji,jj,iiki  ) * tmask(ji,jj,1)    ! Turbocline depth
121            hmlp (ji,jj) = fsdepw(ji,jj,iikn  ) * tmask(ji,jj,1)    ! Mixed layer depth
122#endif
123            hmlpt(ji,jj) = fsdept(ji,jj,iikn-1)                     ! depth of the last T-point inside the mixed layer
124         END DO
125      END DO
126      CALL iom_put( "mldr10_1", hmlp )   ! mixed layer depth
127      CALL iom_put( "mldkz5"  , hmld )   ! turbocline depth
128     
129      IF(ln_ctl)   CALL prt_ctl( tab2d_1=REAL(nmln,wp), clinfo1=' nmln : ', tab2d_2=hmlp, clinfo2=' hmlp : ', ovlap=1 )
130      !
131      IF( iwrk_not_released(2, 1) )   CALL ctl_stop('zdf_mxl: failed to release workspace array')
132      !
133   END SUBROUTINE zdf_mxl
134
135   !!======================================================================
136END MODULE zdfmxl
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