source: LMDZ5/branches/IPSLCM5A2.1/libf/dynphy_lonlat/phylmd/init_ssrf_m.F90 @ 5360

Last change on this file since 5360 was 2597, checked in by Ehouarn Millour, 8 years ago

Cleanup in the dynamics: get rid of comconst.h, make it a module comconst_mod.
EM

File size: 4.6 KB
Line 
1MODULE init_ssrf_m
2!
3!*******************************************************************************
4
5  USE indice_sol_mod, ONLY: is_ter, is_oce, is_oce, is_lic, epsfra
6  USE dimphy,             ONLY: klon, zmasq
7  USE phys_state_var_mod, ONLY: pctsrf
8  USE geometry_mod, ONLY : longitude_deg, latitude_deg
9  USE grid_atob_m,        ONLY: grille_m
10  USE ioipsl,             ONLY: flininfo, flinopen, flinget, flinclo
11  USE comconst_mod, ONLY: im, pi
12
13  CHARACTER(LEN=256), PARAMETER :: icefname="landiceref.nc", icevar="landice"
14  PRIVATE
15  PUBLIC :: start_init_subsurf
16  include "iniprint.h"
17  include "dimensions.h"
18  include "paramet.h"
19  include "comgeom2.h"
20
21CONTAINS
22
23!-------------------------------------------------------------------------------
24!
25SUBROUTINE start_init_subsurf(known_mask)
26!
27!-------------------------------------------------------------------------------
28! Purpose: Subsurfaces initialization.
29!-------------------------------------------------------------------------------
30! Comment: Called by etat0phys_netcdf ; also called by limit_netcdf in case
31!          no starting states are required (ok_etat0==.FALSE.).
32!-------------------------------------------------------------------------------
33  IMPLICIT NONE
34!-------------------------------------------------------------------------------
35! Arguments:
36  LOGICAL, INTENT(IN) :: known_mask
37!-------------------------------------------------------------------------------
38! Local variables:
39  INTEGER           :: iml_lic, jml_lic
40  INTEGER           :: fid, llm_tmp, ttm_tmp, itaul(1), ji, j
41  REAL, ALLOCATABLE :: dlon_lic(:), lon_lic(:,:), fraclic (:,:)
42  REAL, ALLOCATABLE :: dlat_lic(:), lat_lic(:,:), flic_tmp(:,:), vtmp(:,:)
43  REAL              :: date, lev(1), dt, deg2rad
44!-------------------------------------------------------------------------------
45  deg2rad= pi/180.0
46
47!--- Physical grid points coordinates
48  DO j=2,jjm; latitude_deg((j-2)*iim+2:(j-1)*iim+1)=rlatu(j);    END DO
49  DO j=2,jjm; longitude_deg((j-2)*iim+2:(j-1)*iim+1)=rlonv(1:im); END DO
50  latitude_deg(1) = pi/2.; latitude_deg(klon) = - pi/2.
51  latitude_deg(:)=latitude_deg(:)/deg2rad
52  longitude_deg(1) = 0.0;   longitude_deg(klon) = 0.0;
53  longitude_deg(:)=longitude_deg(:)/deg2rad
54
55! Compute ground geopotential, sub-cells quantities and possibly the mask.
56! Sub-surfaces initialization
57!*******************************************************************************
58!--- Read and interpolate on model T-grid soil fraction and soil ice fraction.
59  CALL flininfo(icefname, iml_lic, jml_lic, llm_tmp, ttm_tmp, fid)
60  ALLOCATE(lat_lic(iml_lic,jml_lic),lon_lic(iml_lic,jml_lic))
61  ALLOCATE(fraclic(iml_lic,jml_lic))
62  CALL flinopen(icefname, .FALSE., iml_lic, jml_lic, llm_tmp,  &
63 &               lon_lic, lat_lic, lev, ttm_tmp, itaul, date, dt, fid)
64  CALL flinget(fid, icevar, iml_lic, jml_lic, llm_tmp, ttm_tmp, 1,1, fraclic)
65  CALL flinclo(fid)
66  WRITE(lunout,*)'landice dimensions: iml_lic, jml_lic : ',iml_lic,jml_lic
67
68  ALLOCATE(dlon_lic(iml_lic),dlat_lic(jml_lic))
69  dlon_lic(:)=lon_lic(:,1); IF(MAXVAL(dlon_lic)>pi) dlon_lic=dlon_lic*pi/180.
70  dlat_lic(:)=lat_lic(1,:); IF(MAXVAL(dlat_lic)>pi) dlat_lic=dlat_lic*pi/180.
71  DEALLOCATE(lon_lic,lat_lic); ALLOCATE(flic_tmp(iip1,jjp1))
72  CALL grille_m(dlon_lic,dlat_lic,fraclic,rlonv(1:iim),rlatu,flic_tmp(1:iim,:))
73  flic_tmp(iip1,:)=flic_tmp(1,:)
74
75!--- To the physical grid
76  pctsrf(:,:) = 0.
77  CALL gr_dyn_fi(1, iip1, jjp1, klon, flic_tmp, pctsrf(:,is_lic))
78  DEALLOCATE(flic_tmp)
79
80!--- Adequation with soil/sea mask
81  WHERE(pctsrf(:,is_lic)<EPSFRA) pctsrf(:,is_lic)=0.
82  WHERE(zmasq(:)<EPSFRA)         pctsrf(:,is_lic)=0.
83  pctsrf(:,is_ter)=zmasq(:)
84  DO ji=1,klon
85    IF(zmasq(ji)>EPSFRA) THEN
86      IF(pctsrf(ji,is_lic)>=zmasq(ji)) THEN
87        pctsrf(ji,is_lic)=zmasq(ji)
88        pctsrf(ji,is_ter)=0.
89      ELSE
90        pctsrf(ji,is_ter)=zmasq(ji)-pctsrf(ji,is_lic)
91        IF(pctsrf(ji,is_ter)<EPSFRA) THEN
92          pctsrf(ji,is_ter)=0.
93          pctsrf(ji,is_lic)=zmasq(ji)
94        END IF
95      END IF
96    END IF
97  END DO
98
99!--- Sub-surface ocean and sea ice (sea ice set to zero for start).
100  pctsrf(:,is_oce)=(1.-zmasq(:))
101  WHERE(pctsrf(:,is_oce)<EPSFRA) pctsrf(:,is_oce)=0.
102  IF(known_mask) pctsrf(:,is_oce)=1-zmasq(:)
103
104!--- It is checked that the sub-surfaces sum is equal to 1.
105  ji=COUNT((ABS(SUM(pctsrf(:,:),dim=2))-1.0)>EPSFRA)
106  IF(ji/=0) WRITE(lunout,*) 'Sub-cell distribution problem for ',ji,' points'
107
108END SUBROUTINE start_init_subsurf
109!
110!-------------------------------------------------------------------------------
111
112END MODULE init_ssrf_m
113!
114!*******************************************************************************
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