1 | MODULE 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 | |
---|
21 | CONTAINS |
---|
22 | |
---|
23 | !------------------------------------------------------------------------------- |
---|
24 | ! |
---|
25 | SUBROUTINE 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 | |
---|
108 | END SUBROUTINE start_init_subsurf |
---|
109 | ! |
---|
110 | !------------------------------------------------------------------------------- |
---|
111 | |
---|
112 | END MODULE init_ssrf_m |
---|
113 | ! |
---|
114 | !******************************************************************************* |
---|