1 |
module phyetat0_m |
module phyetat0_m |
2 |
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3 |
use dimphy, only: klon, klev, zmasq |
use dimphy, only: klon |
4 |
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5 |
IMPLICIT none |
IMPLICIT none |
6 |
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7 |
REAL, save:: rlat(klon), rlon(klon) |
REAL, save:: rlat(klon), rlon(klon) |
8 |
! latitude et longitude pour chaque point, in degrees |
! latitude and longitude of a point of the scalar grid identified |
9 |
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! by a simple index, in degrees |
10 |
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11 |
private klon, klev, zmasq |
private klon |
12 |
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13 |
contains |
contains |
14 |
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15 |
SUBROUTINE phyetat0(fichnom, pctsrf, tsol,tsoil, ocean, tslab,seaice, & |
SUBROUTINE phyetat0(pctsrf, tsol, tsoil, tslab, seaice, qsurf, qsol, & |
16 |
qsurf,qsol,snow, & |
snow, albe, evap, rain_fall, snow_fall, solsw, sollw, fder, & |
17 |
albe, alblw, evap, rain_fall, snow_fall, solsw, sollw, & |
radsol, frugs, agesno, zmea, zstd, zsig, zgam, zthe, zpic, zval, & |
18 |
fder,radsol,frugs,agesno,clesphy0, & |
t_ancien, q_ancien, ancien_ok, rnebcon, ratqs, clwcon, run_off_lic_0, & |
19 |
zmea,zstd,zsig,zgam,zthe,zpic,zval,rugsrel, & |
sig1, w01) |
20 |
t_ancien,q_ancien,ancien_ok, rnebcon, ratqs,clwcon, & |
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21 |
run_off_lic_0) |
! From phylmd/phyetat0.F, version 1.4 2005/06/03 10:03:07 |
22 |
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! Author: Z.X. Li (LMD/CNRS) |
23 |
! From phylmd/phyetat0.F,v 1.4 2005/06/03 10:03:07 |
! Date: 1993/08/18 |
24 |
! Auteur(s) Z.X. Li (LMD/CNRS) date: 19930818 |
! Objet : lecture de l'état initial pour la physique |
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! Objet: Lecture de l'etat initial pour la physique |
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25 |
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26 |
USE indicesol, ONLY : epsfra, is_lic, is_oce, is_sic, is_ter, nbsrf |
use dimphy, only: zmasq, klev |
27 |
USE dimsoil, ONLY : nsoilmx |
USE dimsoil, ONLY : nsoilmx |
28 |
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USE indicesol, ONLY : epsfra, is_lic, is_oce, is_sic, is_ter, nbsrf |
29 |
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use netcdf, only: nf90_global, nf90_inq_varid, NF90_NOERR, & |
30 |
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NF90_NOWRITE |
31 |
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use netcdf95, only: nf95_close, nf95_get_att, nf95_get_var, & |
32 |
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nf95_inq_varid, nf95_inquire_variable, NF95_OPEN |
33 |
USE temps, ONLY : itau_phy |
USE temps, ONLY : itau_phy |
34 |
USE clesphys2, ONLY : cycle_diurne, iflag_con, nbapp_rad, new_oliq, & |
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35 |
ok_limitvrai, ok_orodr, ok_orolf, soil_model |
REAL pctsrf(klon, nbsrf) |
36 |
use netcdf, only: nf90_get_att, nf90_global |
REAL tsol(klon, nbsrf) |
37 |
use netcdf95, only: handle_err |
REAL tsoil(klon, nsoilmx, nbsrf) |
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include "netcdf.inc" |
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CHARACTER(len=*) fichnom |
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REAL tsol(klon,nbsrf) |
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REAL tsoil(klon,nsoilmx,nbsrf) |
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!IM "slab" ocean |
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38 |
REAL tslab(klon), seaice(klon) |
REAL tslab(klon), seaice(klon) |
39 |
REAL qsurf(klon,nbsrf) |
REAL qsurf(klon, nbsrf) |
40 |
REAL qsol(klon) |
REAL, intent(out):: qsol(:) ! (klon) |
41 |
REAL snow(klon,nbsrf) |
REAL snow(klon, nbsrf) |
42 |
REAL albe(klon,nbsrf) |
REAL albe(klon, nbsrf) |
43 |
REAL alblw(klon,nbsrf) |
REAL evap(klon, nbsrf) |
44 |
REAL evap(klon,nbsrf) |
REAL, intent(out):: rain_fall(klon) |
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REAL radsol(klon) |
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REAL rain_fall(klon) |
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45 |
REAL snow_fall(klon) |
REAL snow_fall(klon) |
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REAL sollw(klon) |
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46 |
real solsw(klon) |
real solsw(klon) |
47 |
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REAL, intent(out):: sollw(klon) |
48 |
real fder(klon) |
real fder(klon) |
49 |
REAL frugs(klon,nbsrf) |
REAL radsol(klon) |
50 |
REAL agesno(klon,nbsrf) |
REAL frugs(klon, nbsrf) |
51 |
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REAL agesno(klon, nbsrf) |
52 |
REAL zmea(klon) |
REAL zmea(klon) |
53 |
REAL zstd(klon) |
REAL, intent(out):: zstd(klon) |
54 |
REAL zsig(klon) |
REAL, intent(out):: zsig(klon) |
55 |
REAL zgam(klon) |
REAL zgam(klon) |
56 |
REAL zthe(klon) |
REAL zthe(klon) |
57 |
REAL zpic(klon) |
REAL zpic(klon) |
58 |
REAL zval(klon) |
REAL zval(klon) |
59 |
REAL rugsrel(klon) |
REAL t_ancien(klon, klev), q_ancien(klon, klev) |
60 |
REAL pctsrf(klon, nbsrf) |
LOGICAL, intent(out):: ancien_ok |
61 |
REAL fractint(klon) |
real rnebcon(klon, klev), ratqs(klon, klev), clwcon(klon, klev) |
62 |
REAL run_off_lic_0(klon) |
REAL run_off_lic_0(klon) |
63 |
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real, intent(out):: sig1(klon, klev) ! section adiabatic updraft |
64 |
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65 |
REAL t_ancien(klon,klev), q_ancien(klon,klev) |
real, intent(out):: w01(klon, klev) |
66 |
real rnebcon(klon,klev),clwcon(klon,klev),ratqs(klon,klev) |
! vertical velocity within adiabatic updraft |
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LOGICAL ancien_ok |
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CHARACTER(len=*), intent(in):: ocean |
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INTEGER longcles |
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PARAMETER ( longcles = 20 ) |
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REAL, intent(in):: clesphy0( longcles ) |
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67 |
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68 |
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! Local: |
69 |
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REAL fractint(klon) |
70 |
REAL xmin, xmax |
REAL xmin, xmax |
71 |
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INTEGER ncid, varid, ndims |
72 |
INTEGER nid, nvarid |
INTEGER ierr, i, nsrf |
73 |
INTEGER ierr, i, nsrf, isoil |
CHARACTER(len=2) str2 |
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INTEGER length |
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PARAMETER (length=100) |
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CHARACTER*7 str7 |
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CHARACTER*2 str2 |
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74 |
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75 |
!--------------------------------------------------------------- |
!--------------------------------------------------------------- |
76 |
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77 |
print *, "Call sequence information: phyetat0" |
print *, "Call sequence information: phyetat0" |
78 |
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79 |
! Ouvrir le fichier contenant l'etat initial: |
! Fichier contenant l'état initial : |
80 |
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call NF95_OPEN("startphy.nc", NF90_NOWRITE, ncid) |
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print *, 'fichnom = ', fichnom |
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ierr = NF_OPEN (fichnom, NF_NOWRITE,nid) |
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IF (ierr.NE.NF_NOERR) THEN |
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write(6,*)' Pb d''ouverture du fichier '//fichnom |
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write(6,*)' ierr = ', ierr |
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STOP 1 |
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ENDIF |
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iflag_con = clesphy0(1) |
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nbapp_rad = clesphy0(2) |
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cycle_diurne = clesphy0(3) == 1 |
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soil_model = clesphy0(4) == 1 |
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new_oliq = clesphy0(5) == 1 |
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ok_orodr = clesphy0(6) == 1 |
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ok_orolf = clesphy0(7) == 1 |
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ok_limitvrai = clesphy0(8) == 1 |
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81 |
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82 |
ierr = nf90_get_att(nid, nf90_global, "itau_phy", itau_phy) |
call nf95_get_att(ncid, nf90_global, "itau_phy", itau_phy) |
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call handle_err("phyetat0 itau_phy", ierr, nid, nf90_global) |
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83 |
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84 |
! Lecture des latitudes (coordonnees): |
! Lecture des latitudes (coordonnees): |
85 |
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86 |
ierr = NF_INQ_VARID (nid, "latitude", nvarid) |
call NF95_INQ_VARID(ncid, "latitude", varid) |
87 |
IF (ierr.NE.NF_NOERR) THEN |
call NF95_GET_VAR(ncid, varid, rlat) |
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PRINT*, 'phyetat0: Le champ <latitude> est absent' |
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stop 1 |
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ENDIF |
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ierr = NF_GET_VAR_REAL(nid, nvarid, rlat) |
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IF (ierr.NE.NF_NOERR) THEN |
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PRINT*, 'phyetat0: Lecture echouee pour <latitude>' |
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stop 1 |
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ENDIF |
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88 |
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89 |
! Lecture des longitudes (coordonnees): |
! Lecture des longitudes (coordonnees): |
90 |
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91 |
ierr = NF_INQ_VARID (nid, "longitude", nvarid) |
call NF95_INQ_VARID(ncid, "longitude", varid) |
92 |
IF (ierr.NE.NF_NOERR) THEN |
call NF95_GET_VAR(ncid, varid, rlon) |
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PRINT*, 'phyetat0: Le champ <longitude> est absent' |
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stop 1 |
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ENDIF |
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ierr = NF_GET_VAR_REAL(nid, nvarid, rlon) |
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IF (ierr.NE.NF_NOERR) THEN |
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PRINT*, 'phyetat0: Lecture echouee pour <latitude>' |
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stop 1 |
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ENDIF |
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93 |
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94 |
! Lecture du masque terre mer |
! Lecture du masque terre mer |
95 |
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96 |
ierr = NF_INQ_VARID (nid, "masque", nvarid) |
call NF95_INQ_VARID(ncid, "masque", varid) |
97 |
IF (ierr .EQ. NF_NOERR) THEN |
call nf95_get_var(ncid, varid, zmasq) |
98 |
ierr = NF_GET_VAR_REAL(nid, nvarid, zmasq) |
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IF (ierr.NE.NF_NOERR) THEN |
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PRINT*, 'phyetat0: Lecture echouee pour <masque>' |
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stop 1 |
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ENDIF |
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else |
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PRINT*, 'phyetat0: Le champ <masque> est absent' |
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PRINT*, 'fichier startphy non compatible avec phyetat0' |
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! stop 1 |
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ENDIF |
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99 |
! Lecture des fractions pour chaque sous-surface |
! Lecture des fractions pour chaque sous-surface |
100 |
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101 |
! initialisation des sous-surfaces |
! initialisation des sous-surfaces |
104 |
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105 |
! fraction de terre |
! fraction de terre |
106 |
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107 |
ierr = NF_INQ_VARID (nid, "FTER", nvarid) |
ierr = NF90_INQ_VARID(ncid, "FTER", varid) |
108 |
IF (ierr .EQ. NF_NOERR) THEN |
IF (ierr == NF90_NOERR) THEN |
109 |
ierr = NF_GET_VAR_REAL(nid, nvarid, pctsrf(1 : klon,is_ter)) |
call nf95_get_var(ncid, varid, pctsrf(:, is_ter)) |
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IF (ierr.NE.NF_NOERR) THEN |
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PRINT*, 'phyetat0: Lecture echouee pour <FTER>' |
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stop 1 |
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ENDIF |
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110 |
else |
else |
111 |
PRINT*, 'phyetat0: Le champ <FTER> est absent' |
PRINT *, 'phyetat0: Le champ <FTER> est absent' |
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!$$$ stop 1 |
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112 |
ENDIF |
ENDIF |
113 |
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114 |
! fraction de glace de terre |
! fraction de glace de terre |
115 |
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116 |
ierr = NF_INQ_VARID (nid, "FLIC", nvarid) |
ierr = NF90_INQ_VARID(ncid, "FLIC", varid) |
117 |
IF (ierr .EQ. NF_NOERR) THEN |
IF (ierr == NF90_NOERR) THEN |
118 |
ierr = NF_GET_VAR_REAL(nid, nvarid, pctsrf(1 : klon,is_lic)) |
call nf95_get_var(ncid, varid, pctsrf(:, is_lic)) |
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IF (ierr.NE.NF_NOERR) THEN |
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PRINT*, 'phyetat0: Lecture echouee pour <FLIC>' |
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stop 1 |
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ENDIF |
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119 |
else |
else |
120 |
PRINT*, 'phyetat0: Le champ <FLIC> est absent' |
PRINT *, 'phyetat0: Le champ <FLIC> est absent' |
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!$$$ stop 1 |
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121 |
ENDIF |
ENDIF |
122 |
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123 |
! fraction d'ocean |
! fraction d'ocean |
124 |
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125 |
ierr = NF_INQ_VARID (nid, "FOCE", nvarid) |
ierr = NF90_INQ_VARID(ncid, "FOCE", varid) |
126 |
IF (ierr .EQ. NF_NOERR) THEN |
IF (ierr == NF90_NOERR) THEN |
127 |
ierr = NF_GET_VAR_REAL(nid, nvarid, pctsrf(1 : klon,is_oce)) |
call nf95_get_var(ncid, varid, pctsrf(:, is_oce)) |
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IF (ierr.NE.NF_NOERR) THEN |
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PRINT*, 'phyetat0: Lecture echouee pour <FOCE>' |
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stop 1 |
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ENDIF |
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128 |
else |
else |
129 |
PRINT*, 'phyetat0: Le champ <FOCE> est absent' |
PRINT *, 'phyetat0: Le champ <FOCE> est absent' |
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!$$$ stop 1 |
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130 |
ENDIF |
ENDIF |
131 |
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132 |
! fraction glace de mer |
! fraction glace de mer |
133 |
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134 |
ierr = NF_INQ_VARID (nid, "FSIC", nvarid) |
ierr = NF90_INQ_VARID(ncid, "FSIC", varid) |
135 |
IF (ierr .EQ. NF_NOERR) THEN |
IF (ierr == NF90_NOERR) THEN |
136 |
ierr = NF_GET_VAR_REAL(nid, nvarid, pctsrf(1 : klon, is_sic)) |
call nf95_get_var(ncid, varid, pctsrf(:, is_sic)) |
|
IF (ierr.NE.NF_NOERR) THEN |
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PRINT*, 'phyetat0: Lecture echouee pour <FSIC>' |
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stop 1 |
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ENDIF |
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137 |
else |
else |
138 |
PRINT*, 'phyetat0: Le champ <FSIC> est absent' |
PRINT *, 'phyetat0: Le champ <FSIC> est absent' |
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!$$$ stop 1 |
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139 |
ENDIF |
ENDIF |
140 |
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141 |
! Verification de l'adequation entre le masque et les sous-surfaces |
! Verification de l'adequation entre le masque et les sous-surfaces |
142 |
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143 |
fractint( 1 : klon) = pctsrf(1 : klon, is_ter) & |
fractint = pctsrf(:, is_ter) + pctsrf(:, is_lic) |
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+ pctsrf(1 : klon, is_lic) |
|
144 |
DO i = 1 , klon |
DO i = 1 , klon |
145 |
IF ( abs(fractint(i) - zmasq(i) ) .GT. EPSFRA ) THEN |
IF ( abs(fractint(i) - zmasq(i) ) > EPSFRA ) THEN |
146 |
WRITE(*,*) 'phyetat0: attention fraction terre pas ', & |
WRITE(*, *) 'phyetat0: attention fraction terre pas ', & |
147 |
'coherente ', i, zmasq(i), pctsrf(i, is_ter) & |
'coherente ', i, zmasq(i), pctsrf(i, is_ter) & |
148 |
,pctsrf(i, is_lic) |
, pctsrf(i, is_lic) |
149 |
ENDIF |
ENDIF |
150 |
END DO |
END DO |
151 |
fractint (1 : klon) = pctsrf(1 : klon, is_oce) & |
fractint = pctsrf(:, is_oce) + pctsrf(:, is_sic) |
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+ pctsrf(1 : klon, is_sic) |
|
152 |
DO i = 1 , klon |
DO i = 1 , klon |
153 |
IF ( abs( fractint(i) - (1. - zmasq(i))) .GT. EPSFRA ) THEN |
IF ( abs( fractint(i) - (1. - zmasq(i))) > EPSFRA ) THEN |
154 |
WRITE(*,*) 'phyetat0 attention fraction ocean pas ', & |
WRITE(*, *) 'phyetat0 attention fraction ocean pas ', & |
155 |
'coherente ', i, zmasq(i) , pctsrf(i, is_oce) & |
'coherente ', i, zmasq(i) , pctsrf(i, is_oce) & |
156 |
,pctsrf(i, is_sic) |
, pctsrf(i, is_sic) |
157 |
ENDIF |
ENDIF |
158 |
END DO |
END DO |
159 |
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160 |
! Lecture des temperatures du sol: |
! Lecture des temperatures du sol: |
161 |
|
call NF95_INQ_VARID(ncid, "TS", varid) |
162 |
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call nf95_inquire_variable(ncid, varid, ndims = ndims) |
163 |
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if (ndims == 2) then |
164 |
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call NF95_GET_VAR(ncid, varid, tsol) |
165 |
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else |
166 |
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print *, "Found only one surface type for soil temperature." |
167 |
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call nf95_get_var(ncid, varid, tsol(:, 1)) |
168 |
|
tsol(:, 2:nbsrf) = spread(tsol(:, 1), dim = 2, ncopies = nbsrf - 1) |
169 |
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end if |
170 |
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|
171 |
ierr = NF_INQ_VARID (nid, "TS", nvarid) |
! Lecture des temperatures du sol profond: |
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IF (ierr.NE.NF_NOERR) THEN |
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PRINT*, 'phyetat0: Le champ <TS> est absent' |
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PRINT*, ' Mais je vais essayer de lire TS**' |
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DO nsrf = 1, nbsrf |
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IF (nsrf.GT.99) THEN |
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PRINT*, "Trop de sous-mailles" |
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stop 1 |
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ENDIF |
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WRITE(str2,'(i2.2)') nsrf |
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ierr = NF_INQ_VARID (nid, "TS"//str2, nvarid) |
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IF (ierr.NE.NF_NOERR) THEN |
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PRINT*, "phyetat0: Le champ <TS"//str2//"> est absent" |
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stop 1 |
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ENDIF |
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ierr = NF_GET_VAR_REAL(nid, nvarid, tsol(1,nsrf)) |
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IF (ierr.NE.NF_NOERR) THEN |
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PRINT*, "phyetat0: Lecture echouee pour <TS"//str2//">" |
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stop 1 |
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ENDIF |
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xmin = 1.0E+20 |
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xmax = -1.0E+20 |
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DO i = 1, klon |
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xmin = MIN(tsol(i,nsrf),xmin) |
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xmax = MAX(tsol(i,nsrf),xmax) |
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ENDDO |
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PRINT*,'Temperature du sol TS**:', nsrf, xmin, xmax |
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ENDDO |
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ELSE |
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PRINT*, 'phyetat0: Le champ <TS> est present' |
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PRINT*, ' J ignore donc les autres temperatures TS**' |
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ierr = NF_GET_VAR_REAL(nid, nvarid, tsol(1,1)) |
|
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IF (ierr.NE.NF_NOERR) THEN |
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PRINT*, "phyetat0: Lecture echouee pour <TS>" |
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stop 1 |
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ENDIF |
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xmin = 1.0E+20 |
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xmax = -1.0E+20 |
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DO i = 1, klon |
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xmin = MIN(tsol(i,1),xmin) |
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xmax = MAX(tsol(i,1),xmax) |
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ENDDO |
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PRINT*,'Temperature du sol <TS>', xmin, xmax |
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DO nsrf = 2, nbsrf |
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DO i = 1, klon |
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tsol(i,nsrf) = tsol(i,1) |
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ENDDO |
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ENDDO |
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ENDIF |
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! Lecture des temperatures du sol profond: |
|
172 |
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|
173 |
DO nsrf = 1, nbsrf |
call NF95_INQ_VARID(ncid, 'Tsoil', varid) |
174 |
DO isoil=1, nsoilmx |
call NF95_GET_VAR(ncid, varid, tsoil) |
|
IF (isoil.GT.99 .AND. nsrf.GT.99) THEN |
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|
PRINT*, "Trop de couches ou sous-mailles" |
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stop 1 |
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ENDIF |
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WRITE(str7,'(i2.2,"srf",i2.2)') isoil, nsrf |
|
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ierr = NF_INQ_VARID (nid, 'Tsoil'//str7, nvarid) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Le champ <Tsoil"//str7//"> est absent" |
|
|
PRINT*, " Il prend donc la valeur de surface" |
|
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DO i=1, klon |
|
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tsoil(i,isoil,nsrf)=tsol(i,nsrf) |
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ENDDO |
|
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ELSE |
|
|
ierr = NF_GET_VAR_REAL(nid, nvarid, tsoil(1,isoil,nsrf)) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "Lecture echouee pour <Tsoil"//str7//">" |
|
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stop 1 |
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ENDIF |
|
|
ENDIF |
|
|
ENDDO |
|
|
ENDDO |
|
175 |
|
|
176 |
!IM "slab" ocean |
!IM "slab" ocean |
177 |
|
! Lecture de tslab (pour slab ocean seulement): |
178 |
! Lecture de tslab (pour slab ocean seulement): |
tslab = 0. |
179 |
|
seaice = 0. |
|
IF (ocean .eq. 'slab ') then |
|
|
ierr = NF_INQ_VARID (nid, "TSLAB", nvarid) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Le champ <TSLAB> est absent" |
|
|
stop 1 |
|
|
ENDIF |
|
|
ierr = NF_GET_VAR_REAL(nid, nvarid, tslab) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Lecture echouee pour <TSLAB>" |
|
|
stop 1 |
|
|
ENDIF |
|
|
xmin = 1.0E+20 |
|
|
xmax = -1.0E+20 |
|
|
DO i = 1, klon |
|
|
xmin = MIN(tslab(i),xmin) |
|
|
xmax = MAX(tslab(i),xmax) |
|
|
ENDDO |
|
|
PRINT*,'Ecart de la SST tslab:', xmin, xmax |
|
|
|
|
|
! Lecture de seaice (pour slab ocean seulement): |
|
|
|
|
|
ierr = NF_INQ_VARID (nid, "SEAICE", nvarid) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Le champ <SEAICE> est absent" |
|
|
stop 1 |
|
|
ENDIF |
|
|
ierr = NF_GET_VAR_REAL(nid, nvarid, seaice) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Lecture echouee pour <SEAICE>" |
|
|
stop 1 |
|
|
ENDIF |
|
|
xmin = 1.0E+20 |
|
|
xmax = -1.0E+20 |
|
|
DO i = 1, klon |
|
|
xmin = MIN(seaice(i),xmin) |
|
|
xmax = MAX(seaice(i),xmax) |
|
|
ENDDO |
|
|
PRINT*,'Masse de la glace de mer seaice:', xmin, xmax |
|
|
ELSE |
|
|
tslab = 0. |
|
|
seaice = 0. |
|
|
ENDIF |
|
180 |
|
|
181 |
! Lecture de l'humidite de l'air juste au dessus du sol: |
! Lecture de l'humidite de l'air juste au dessus du sol: |
182 |
|
|
183 |
ierr = NF_INQ_VARID (nid, "QS", nvarid) |
ierr = NF90_INQ_VARID(ncid, "QS", varid) |
184 |
IF (ierr.NE.NF_NOERR) THEN |
IF (ierr /= NF90_NOERR) THEN |
185 |
PRINT*, 'phyetat0: Le champ <QS> est absent' |
PRINT *, 'phyetat0: Le champ <QS> est absent' |
186 |
PRINT*, ' Mais je vais essayer de lire QS**' |
PRINT *, ' Mais je vais essayer de lire QS**' |
187 |
DO nsrf = 1, nbsrf |
DO nsrf = 1, nbsrf |
188 |
IF (nsrf.GT.99) THEN |
IF (nsrf > 99) THEN |
189 |
PRINT*, "Trop de sous-mailles" |
PRINT *, "Trop de sous-mailles" |
|
stop 1 |
|
|
ENDIF |
|
|
WRITE(str2,'(i2.2)') nsrf |
|
|
ierr = NF_INQ_VARID (nid, "QS"//str2, nvarid) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Le champ <QS"//str2//"> est absent" |
|
|
stop 1 |
|
|
ENDIF |
|
|
ierr = NF_GET_VAR_REAL(nid, nvarid, qsurf(1,nsrf)) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Lecture echouee pour <QS"//str2//">" |
|
190 |
stop 1 |
stop 1 |
191 |
ENDIF |
ENDIF |
192 |
|
WRITE(str2, '(i2.2)') nsrf |
193 |
|
call NF95_INQ_VARID(ncid, "QS"//str2, varid) |
194 |
|
call NF95_GET_VAR(ncid, varid, qsurf(:, nsrf)) |
195 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
196 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
197 |
DO i = 1, klon |
DO i = 1, klon |
198 |
xmin = MIN(qsurf(i,nsrf),xmin) |
xmin = MIN(qsurf(i, nsrf), xmin) |
199 |
xmax = MAX(qsurf(i,nsrf),xmax) |
xmax = MAX(qsurf(i, nsrf), xmax) |
200 |
ENDDO |
ENDDO |
201 |
PRINT*,'Humidite pres du sol QS**:', nsrf, xmin, xmax |
PRINT *, 'Humidite pres du sol QS**:', nsrf, xmin, xmax |
202 |
ENDDO |
ENDDO |
203 |
ELSE |
ELSE |
204 |
PRINT*, 'phyetat0: Le champ <QS> est present' |
PRINT *, 'phyetat0: Le champ <QS> est present' |
205 |
PRINT*, ' J ignore donc les autres humidites QS**' |
PRINT *, ' J ignore donc les autres humidites QS**' |
206 |
ierr = NF_GET_VAR_REAL(nid, nvarid, qsurf(1,1)) |
call nf95_get_var(ncid, varid, qsurf(:, 1)) |
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Lecture echouee pour <QS>" |
|
|
stop 1 |
|
|
ENDIF |
|
207 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
208 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
209 |
DO i = 1, klon |
DO i = 1, klon |
210 |
xmin = MIN(qsurf(i,1),xmin) |
xmin = MIN(qsurf(i, 1), xmin) |
211 |
xmax = MAX(qsurf(i,1),xmax) |
xmax = MAX(qsurf(i, 1), xmax) |
212 |
ENDDO |
ENDDO |
213 |
PRINT*,'Humidite pres du sol <QS>', xmin, xmax |
PRINT *, 'Humidite pres du sol <QS>', xmin, xmax |
214 |
DO nsrf = 2, nbsrf |
DO nsrf = 2, nbsrf |
215 |
DO i = 1, klon |
DO i = 1, klon |
216 |
qsurf(i,nsrf) = qsurf(i,1) |
qsurf(i, nsrf) = qsurf(i, 1) |
217 |
ENDDO |
ENDDO |
218 |
ENDDO |
ENDDO |
219 |
ENDIF |
ENDIF |
220 |
|
|
221 |
! Eau dans le sol (pour le modele de sol "bucket") |
! Eau dans le sol (pour le modele de sol "bucket") |
222 |
|
|
223 |
ierr = NF_INQ_VARID (nid, "QSOL", nvarid) |
ierr = NF90_INQ_VARID(ncid, "QSOL", varid) |
224 |
IF (ierr .EQ. NF_NOERR) THEN |
IF (ierr == NF90_NOERR) THEN |
225 |
ierr = NF_GET_VAR_REAL(nid, nvarid, qsol) |
call nf95_get_var(ncid, varid, qsol) |
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, 'phyetat0: Lecture echouee pour <QSOL>' |
|
|
stop 1 |
|
|
ENDIF |
|
226 |
else |
else |
227 |
PRINT*, 'phyetat0: Le champ <QSOL> est absent' |
PRINT *, 'phyetat0: Le champ <QSOL> est absent' |
228 |
PRINT*, ' Valeur par defaut nulle' |
PRINT *, ' Valeur par defaut nulle' |
229 |
qsol(:)=0. |
qsol = 0. |
|
!$$$ stop 1 |
|
230 |
ENDIF |
ENDIF |
|
xmin = 1.0E+20 |
|
|
xmax = -1.0E+20 |
|
|
DO i = 1, klon |
|
|
xmin = MIN(qsol(i),xmin) |
|
|
xmax = MAX(qsol(i),xmax) |
|
|
ENDDO |
|
|
PRINT*,'Eau dans le sol (mm) <QSOL>', xmin, xmax |
|
231 |
|
|
232 |
! Lecture de neige au sol: |
! Lecture de neige au sol: |
233 |
|
|
234 |
ierr = NF_INQ_VARID (nid, "SNOW", nvarid) |
ierr = NF90_INQ_VARID(ncid, "SNOW", varid) |
235 |
IF (ierr.NE.NF_NOERR) THEN |
IF (ierr /= NF90_NOERR) THEN |
236 |
PRINT*, 'phyetat0: Le champ <SNOW> est absent' |
PRINT *, 'phyetat0: Le champ <SNOW> est absent' |
237 |
PRINT*, ' Mais je vais essayer de lire SNOW**' |
PRINT *, ' Mais je vais essayer de lire SNOW**' |
238 |
DO nsrf = 1, nbsrf |
DO nsrf = 1, nbsrf |
239 |
IF (nsrf.GT.99) THEN |
IF (nsrf > 99) THEN |
240 |
PRINT*, "Trop de sous-mailles" |
PRINT *, "Trop de sous-mailles" |
|
stop 1 |
|
|
ENDIF |
|
|
WRITE(str2,'(i2.2)') nsrf |
|
|
ierr = NF_INQ_VARID (nid, "SNOW"//str2, nvarid) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Le champ <SNOW"//str2//"> est absent" |
|
|
stop 1 |
|
|
ENDIF |
|
|
ierr = NF_GET_VAR_REAL(nid, nvarid, snow(1,nsrf)) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Lecture echouee pour <SNOW"//str2//">" |
|
241 |
stop 1 |
stop 1 |
242 |
ENDIF |
ENDIF |
243 |
|
WRITE(str2, '(i2.2)') nsrf |
244 |
|
call NF95_INQ_VARID(ncid, "SNOW"//str2, varid) |
245 |
|
call NF95_GET_VAR(ncid, varid, snow(:, nsrf)) |
246 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
247 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
248 |
DO i = 1, klon |
DO i = 1, klon |
249 |
xmin = MIN(snow(i,nsrf),xmin) |
xmin = MIN(snow(i, nsrf), xmin) |
250 |
xmax = MAX(snow(i,nsrf),xmax) |
xmax = MAX(snow(i, nsrf), xmax) |
251 |
ENDDO |
ENDDO |
252 |
PRINT*,'Neige du sol SNOW**:', nsrf, xmin, xmax |
PRINT *, 'Neige du sol SNOW**:', nsrf, xmin, xmax |
253 |
ENDDO |
ENDDO |
254 |
ELSE |
ELSE |
255 |
PRINT*, 'phyetat0: Le champ <SNOW> est present' |
PRINT *, 'phyetat0: Le champ <SNOW> est present' |
256 |
PRINT*, ' J ignore donc les autres neiges SNOW**' |
PRINT *, ' J ignore donc les autres neiges SNOW**' |
257 |
ierr = NF_GET_VAR_REAL(nid, nvarid, snow(1,1)) |
call nf95_get_var(ncid, varid, snow(:, 1)) |
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Lecture echouee pour <SNOW>" |
|
|
stop 1 |
|
|
ENDIF |
|
258 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
259 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
260 |
DO i = 1, klon |
DO i = 1, klon |
261 |
xmin = MIN(snow(i,1),xmin) |
xmin = MIN(snow(i, 1), xmin) |
262 |
xmax = MAX(snow(i,1),xmax) |
xmax = MAX(snow(i, 1), xmax) |
263 |
ENDDO |
ENDDO |
264 |
PRINT*,'Neige du sol <SNOW>', xmin, xmax |
PRINT *, 'Neige du sol <SNOW>', xmin, xmax |
265 |
DO nsrf = 2, nbsrf |
DO nsrf = 2, nbsrf |
266 |
DO i = 1, klon |
DO i = 1, klon |
267 |
snow(i,nsrf) = snow(i,1) |
snow(i, nsrf) = snow(i, 1) |
268 |
ENDDO |
ENDDO |
269 |
ENDDO |
ENDDO |
270 |
ENDIF |
ENDIF |
271 |
|
|
272 |
! Lecture de albedo au sol: |
! Lecture de albedo au sol: |
273 |
|
|
274 |
ierr = NF_INQ_VARID (nid, "ALBE", nvarid) |
ierr = NF90_INQ_VARID(ncid, "ALBE", varid) |
275 |
IF (ierr.NE.NF_NOERR) THEN |
IF (ierr /= NF90_NOERR) THEN |
276 |
PRINT*, 'phyetat0: Le champ <ALBE> est absent' |
PRINT *, 'phyetat0: Le champ <ALBE> est absent' |
277 |
PRINT*, ' Mais je vais essayer de lire ALBE**' |
PRINT *, ' Mais je vais essayer de lire ALBE**' |
278 |
DO nsrf = 1, nbsrf |
DO nsrf = 1, nbsrf |
279 |
IF (nsrf.GT.99) THEN |
IF (nsrf > 99) THEN |
280 |
PRINT*, "Trop de sous-mailles" |
PRINT *, "Trop de sous-mailles" |
|
stop 1 |
|
|
ENDIF |
|
|
WRITE(str2,'(i2.2)') nsrf |
|
|
ierr = NF_INQ_VARID (nid, "ALBE"//str2, nvarid) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Le champ <ALBE"//str2//"> est absent" |
|
|
stop 1 |
|
|
ENDIF |
|
|
ierr = NF_GET_VAR_REAL(nid, nvarid, albe(1,nsrf)) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Lecture echouee pour <ALBE"//str2//">" |
|
281 |
stop 1 |
stop 1 |
282 |
ENDIF |
ENDIF |
283 |
|
WRITE(str2, '(i2.2)') nsrf |
284 |
|
call NF95_INQ_VARID(ncid, "ALBE"//str2, varid) |
285 |
|
call NF95_GET_VAR(ncid, varid, albe(:, nsrf)) |
286 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
287 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
288 |
DO i = 1, klon |
DO i = 1, klon |
289 |
xmin = MIN(albe(i,nsrf),xmin) |
xmin = MIN(albe(i, nsrf), xmin) |
290 |
xmax = MAX(albe(i,nsrf),xmax) |
xmax = MAX(albe(i, nsrf), xmax) |
|
ENDDO |
|
|
PRINT*,'Albedo du sol ALBE**:', nsrf, xmin, xmax |
|
|
ENDDO |
|
|
ELSE |
|
|
PRINT*, 'phyetat0: Le champ <ALBE> est present' |
|
|
PRINT*, ' J ignore donc les autres ALBE**' |
|
|
ierr = NF_GET_VAR_REAL(nid, nvarid, albe(1,1)) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Lecture echouee pour <ALBE>" |
|
|
stop 1 |
|
|
ENDIF |
|
|
xmin = 1.0E+20 |
|
|
xmax = -1.0E+20 |
|
|
DO i = 1, klon |
|
|
xmin = MIN(albe(i,1),xmin) |
|
|
xmax = MAX(albe(i,1),xmax) |
|
|
ENDDO |
|
|
PRINT*,'Neige du sol <ALBE>', xmin, xmax |
|
|
DO nsrf = 2, nbsrf |
|
|
DO i = 1, klon |
|
|
albe(i,nsrf) = albe(i,1) |
|
|
ENDDO |
|
|
ENDDO |
|
|
ENDIF |
|
|
|
|
|
|
|
|
! Lecture de albedo au sol LW: |
|
|
|
|
|
ierr = NF_INQ_VARID (nid, "ALBLW", nvarid) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, 'phyetat0: Le champ <ALBLW> est absent' |
|
|
! PRINT*, ' Mais je vais essayer de lire ALBLW**' |
|
|
PRINT*, ' Mais je vais prendre ALBE**' |
|
|
DO nsrf = 1, nbsrf |
|
|
DO i = 1, klon |
|
|
alblw(i,nsrf) = albe(i,nsrf) |
|
291 |
ENDDO |
ENDDO |
292 |
|
PRINT *, 'Albedo du sol ALBE**:', nsrf, xmin, xmax |
293 |
ENDDO |
ENDDO |
294 |
ELSE |
ELSE |
295 |
PRINT*, 'phyetat0: Le champ <ALBLW> est present' |
PRINT *, 'phyetat0: Le champ <ALBE> est present' |
296 |
PRINT*, ' J ignore donc les autres ALBLW**' |
PRINT *, ' J ignore donc les autres ALBE**' |
297 |
ierr = NF_GET_VAR_REAL(nid, nvarid, alblw(1,1)) |
call nf95_get_var(ncid, varid, albe(:, 1)) |
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Lecture echouee pour <ALBLW>" |
|
|
stop 1 |
|
|
ENDIF |
|
298 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
299 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
300 |
DO i = 1, klon |
DO i = 1, klon |
301 |
xmin = MIN(alblw(i,1),xmin) |
xmin = MIN(albe(i, 1), xmin) |
302 |
xmax = MAX(alblw(i,1),xmax) |
xmax = MAX(albe(i, 1), xmax) |
303 |
ENDDO |
ENDDO |
304 |
PRINT*,'Neige du sol <ALBLW>', xmin, xmax |
PRINT *, 'Neige du sol <ALBE>', xmin, xmax |
305 |
DO nsrf = 2, nbsrf |
DO nsrf = 2, nbsrf |
306 |
DO i = 1, klon |
DO i = 1, klon |
307 |
alblw(i,nsrf) = alblw(i,1) |
albe(i, nsrf) = albe(i, 1) |
308 |
ENDDO |
ENDDO |
309 |
ENDDO |
ENDDO |
310 |
ENDIF |
ENDIF |
311 |
|
|
312 |
! Lecture de evaporation: |
! Lecture de evaporation: |
313 |
|
|
314 |
ierr = NF_INQ_VARID (nid, "EVAP", nvarid) |
ierr = NF90_INQ_VARID(ncid, "EVAP", varid) |
315 |
IF (ierr.NE.NF_NOERR) THEN |
IF (ierr /= NF90_NOERR) THEN |
316 |
PRINT*, 'phyetat0: Le champ <EVAP> est absent' |
PRINT *, 'phyetat0: Le champ <EVAP> est absent' |
317 |
PRINT*, ' Mais je vais essayer de lire EVAP**' |
PRINT *, ' Mais je vais essayer de lire EVAP**' |
318 |
DO nsrf = 1, nbsrf |
DO nsrf = 1, nbsrf |
319 |
IF (nsrf.GT.99) THEN |
IF (nsrf > 99) THEN |
320 |
PRINT*, "Trop de sous-mailles" |
PRINT *, "Trop de sous-mailles" |
|
stop 1 |
|
|
ENDIF |
|
|
WRITE(str2,'(i2.2)') nsrf |
|
|
ierr = NF_INQ_VARID (nid, "EVAP"//str2, nvarid) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Le champ <EVAP"//str2//"> est absent" |
|
|
stop 1 |
|
|
ENDIF |
|
|
ierr = NF_GET_VAR_REAL(nid, nvarid, evap(1,nsrf)) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Lecture echouee pour <EVAP"//str2//">" |
|
321 |
stop 1 |
stop 1 |
322 |
ENDIF |
ENDIF |
323 |
|
WRITE(str2, '(i2.2)') nsrf |
324 |
|
call NF95_INQ_VARID(ncid, "EVAP"//str2, varid) |
325 |
|
call NF95_GET_VAR(ncid, varid, evap(:, nsrf)) |
326 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
327 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
328 |
DO i = 1, klon |
DO i = 1, klon |
329 |
xmin = MIN(evap(i,nsrf),xmin) |
xmin = MIN(evap(i, nsrf), xmin) |
330 |
xmax = MAX(evap(i,nsrf),xmax) |
xmax = MAX(evap(i, nsrf), xmax) |
331 |
ENDDO |
ENDDO |
332 |
PRINT*,'evap du sol EVAP**:', nsrf, xmin, xmax |
PRINT *, 'evap du sol EVAP**:', nsrf, xmin, xmax |
333 |
ENDDO |
ENDDO |
334 |
ELSE |
ELSE |
335 |
PRINT*, 'phyetat0: Le champ <EVAP> est present' |
PRINT *, 'phyetat0: Le champ <EVAP> est present' |
336 |
PRINT*, ' J ignore donc les autres EVAP**' |
PRINT *, ' J ignore donc les autres EVAP**' |
337 |
ierr = NF_GET_VAR_REAL(nid, nvarid, evap(1,1)) |
call nf95_get_var(ncid, varid, evap(:, 1)) |
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Lecture echouee pour <EVAP>" |
|
|
stop 1 |
|
|
ENDIF |
|
338 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
339 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
340 |
DO i = 1, klon |
DO i = 1, klon |
341 |
xmin = MIN(evap(i,1),xmin) |
xmin = MIN(evap(i, 1), xmin) |
342 |
xmax = MAX(evap(i,1),xmax) |
xmax = MAX(evap(i, 1), xmax) |
343 |
ENDDO |
ENDDO |
344 |
PRINT*,'Evap du sol <EVAP>', xmin, xmax |
PRINT *, 'Evap du sol <EVAP>', xmin, xmax |
345 |
DO nsrf = 2, nbsrf |
DO nsrf = 2, nbsrf |
346 |
DO i = 1, klon |
DO i = 1, klon |
347 |
evap(i,nsrf) = evap(i,1) |
evap(i, nsrf) = evap(i, 1) |
348 |
ENDDO |
ENDDO |
349 |
ENDDO |
ENDDO |
350 |
ENDIF |
ENDIF |
351 |
|
|
352 |
! Lecture precipitation liquide: |
! Lecture precipitation liquide: |
353 |
|
|
354 |
ierr = NF_INQ_VARID (nid, "rain_f", nvarid) |
call NF95_INQ_VARID(ncid, "rain_f", varid) |
355 |
IF (ierr.NE.NF_NOERR) THEN |
call NF95_GET_VAR(ncid, varid, rain_fall) |
|
PRINT*, 'phyetat0: Le champ <rain_f> est absent' |
|
|
stop 1 |
|
|
ENDIF |
|
|
ierr = NF_GET_VAR_REAL(nid, nvarid, rain_fall) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, 'phyetat0: Lecture echouee pour <rain_f>' |
|
|
stop 1 |
|
|
ENDIF |
|
|
xmin = 1.0E+20 |
|
|
xmax = -1.0E+20 |
|
|
DO i = 1, klon |
|
|
xmin = MIN(rain_fall(i),xmin) |
|
|
xmax = MAX(rain_fall(i),xmax) |
|
|
ENDDO |
|
|
PRINT*,'Precipitation liquide rain_f:', xmin, xmax |
|
356 |
|
|
357 |
! Lecture precipitation solide: |
! Lecture precipitation solide: |
358 |
|
|
359 |
ierr = NF_INQ_VARID (nid, "snow_f", nvarid) |
call NF95_INQ_VARID(ncid, "snow_f", varid) |
360 |
IF (ierr.NE.NF_NOERR) THEN |
call NF95_GET_VAR(ncid, varid, snow_fall) |
|
PRINT*, 'phyetat0: Le champ <snow_f> est absent' |
|
|
stop 1 |
|
|
ENDIF |
|
|
ierr = NF_GET_VAR_REAL(nid, nvarid, snow_fall) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, 'phyetat0: Lecture echouee pour <snow_f>' |
|
|
stop 1 |
|
|
ENDIF |
|
361 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
362 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
363 |
DO i = 1, klon |
DO i = 1, klon |
364 |
xmin = MIN(snow_fall(i),xmin) |
xmin = MIN(snow_fall(i), xmin) |
365 |
xmax = MAX(snow_fall(i),xmax) |
xmax = MAX(snow_fall(i), xmax) |
366 |
ENDDO |
ENDDO |
367 |
PRINT*,'Precipitation solide snow_f:', xmin, xmax |
PRINT *, 'Precipitation solide snow_f:', xmin, xmax |
368 |
|
|
369 |
! Lecture rayonnement solaire au sol: |
! Lecture rayonnement solaire au sol: |
370 |
|
|
371 |
ierr = NF_INQ_VARID (nid, "solsw", nvarid) |
ierr = NF90_INQ_VARID(ncid, "solsw", varid) |
372 |
IF (ierr.NE.NF_NOERR) THEN |
IF (ierr /= NF90_NOERR) THEN |
373 |
PRINT*, 'phyetat0: Le champ <solsw> est absent' |
PRINT *, 'phyetat0: Le champ <solsw> est absent' |
374 |
PRINT*, 'mis a zero' |
PRINT *, 'mis a zero' |
375 |
solsw = 0. |
solsw = 0. |
376 |
ELSE |
ELSE |
377 |
ierr = NF_GET_VAR_REAL(nid, nvarid, solsw) |
call nf95_get_var(ncid, varid, solsw) |
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, 'phyetat0: Lecture echouee pour <solsw>' |
|
|
stop 1 |
|
|
ENDIF |
|
378 |
ENDIF |
ENDIF |
379 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
380 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
381 |
DO i = 1, klon |
DO i = 1, klon |
382 |
xmin = MIN(solsw(i),xmin) |
xmin = MIN(solsw(i), xmin) |
383 |
xmax = MAX(solsw(i),xmax) |
xmax = MAX(solsw(i), xmax) |
384 |
ENDDO |
ENDDO |
385 |
PRINT*,'Rayonnement solaire au sol solsw:', xmin, xmax |
PRINT *, 'Rayonnement solaire au sol solsw:', xmin, xmax |
386 |
|
|
387 |
! Lecture rayonnement IF au sol: |
! Lecture rayonnement IF au sol: |
388 |
|
|
389 |
ierr = NF_INQ_VARID (nid, "sollw", nvarid) |
ierr = NF90_INQ_VARID(ncid, "sollw", varid) |
390 |
IF (ierr.NE.NF_NOERR) THEN |
IF (ierr /= NF90_NOERR) THEN |
391 |
PRINT*, 'phyetat0: Le champ <sollw> est absent' |
PRINT *, 'phyetat0: Le champ <sollw> est absent' |
392 |
PRINT*, 'mis a zero' |
PRINT *, 'mis a zero' |
393 |
sollw = 0. |
sollw = 0. |
394 |
ELSE |
ELSE |
395 |
ierr = NF_GET_VAR_REAL(nid, nvarid, sollw) |
call nf95_get_var(ncid, varid, sollw) |
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, 'phyetat0: Lecture echouee pour <sollw>' |
|
|
stop 1 |
|
|
ENDIF |
|
396 |
ENDIF |
ENDIF |
397 |
xmin = 1.0E+20 |
PRINT *, 'Rayonnement IF au sol sollw:', minval(sollw), maxval(sollw) |
|
xmax = -1.0E+20 |
|
|
DO i = 1, klon |
|
|
xmin = MIN(sollw(i),xmin) |
|
|
xmax = MAX(sollw(i),xmax) |
|
|
ENDDO |
|
|
PRINT*,'Rayonnement IF au sol sollw:', xmin, xmax |
|
|
|
|
398 |
|
|
399 |
! Lecture derive des flux: |
! Lecture derive des flux: |
400 |
|
|
401 |
ierr = NF_INQ_VARID (nid, "fder", nvarid) |
ierr = NF90_INQ_VARID(ncid, "fder", varid) |
402 |
IF (ierr.NE.NF_NOERR) THEN |
IF (ierr /= NF90_NOERR) THEN |
403 |
PRINT*, 'phyetat0: Le champ <fder> est absent' |
PRINT *, 'phyetat0: Le champ <fder> est absent' |
404 |
PRINT*, 'mis a zero' |
PRINT *, 'mis a zero' |
405 |
fder = 0. |
fder = 0. |
406 |
ELSE |
ELSE |
407 |
ierr = NF_GET_VAR_REAL(nid, nvarid, fder) |
call nf95_get_var(ncid, varid, fder) |
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, 'phyetat0: Lecture echouee pour <fder>' |
|
|
stop 1 |
|
|
ENDIF |
|
408 |
ENDIF |
ENDIF |
409 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
410 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
411 |
DO i = 1, klon |
DO i = 1, klon |
412 |
xmin = MIN(fder(i),xmin) |
xmin = MIN(fder(i), xmin) |
413 |
xmax = MAX(fder(i),xmax) |
xmax = MAX(fder(i), xmax) |
414 |
ENDDO |
ENDDO |
415 |
PRINT*,'Derive des flux fder:', xmin, xmax |
PRINT *, 'Derive des flux fder:', xmin, xmax |
|
|
|
416 |
|
|
417 |
! Lecture du rayonnement net au sol: |
! Lecture du rayonnement net au sol: |
418 |
|
|
419 |
ierr = NF_INQ_VARID (nid, "RADS", nvarid) |
call NF95_INQ_VARID(ncid, "RADS", varid) |
420 |
IF (ierr.NE.NF_NOERR) THEN |
call NF95_GET_VAR(ncid, varid, radsol) |
|
PRINT*, 'phyetat0: Le champ <RADS> est absent' |
|
|
stop 1 |
|
|
ENDIF |
|
|
ierr = NF_GET_VAR_REAL(nid, nvarid, radsol) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, 'phyetat0: Lecture echouee pour <RADS>' |
|
|
stop 1 |
|
|
ENDIF |
|
421 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
422 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
423 |
DO i = 1, klon |
DO i = 1, klon |
424 |
xmin = MIN(radsol(i),xmin) |
xmin = MIN(radsol(i), xmin) |
425 |
xmax = MAX(radsol(i),xmax) |
xmax = MAX(radsol(i), xmax) |
426 |
ENDDO |
ENDDO |
427 |
PRINT*,'Rayonnement net au sol radsol:', xmin, xmax |
PRINT *, 'Rayonnement net au sol radsol:', xmin, xmax |
428 |
|
|
429 |
! Lecture de la longueur de rugosite |
! Lecture de la longueur de rugosite |
430 |
|
|
431 |
|
ierr = NF90_INQ_VARID(ncid, "RUG", varid) |
432 |
ierr = NF_INQ_VARID (nid, "RUG", nvarid) |
IF (ierr /= NF90_NOERR) THEN |
433 |
IF (ierr.NE.NF_NOERR) THEN |
PRINT *, 'phyetat0: Le champ <RUG> est absent' |
434 |
PRINT*, 'phyetat0: Le champ <RUG> est absent' |
PRINT *, ' Mais je vais essayer de lire RUG**' |
|
PRINT*, ' Mais je vais essayer de lire RUG**' |
|
435 |
DO nsrf = 1, nbsrf |
DO nsrf = 1, nbsrf |
436 |
IF (nsrf.GT.99) THEN |
IF (nsrf > 99) THEN |
437 |
PRINT*, "Trop de sous-mailles" |
PRINT *, "Trop de sous-mailles" |
|
stop 1 |
|
|
ENDIF |
|
|
WRITE(str2,'(i2.2)') nsrf |
|
|
ierr = NF_INQ_VARID (nid, "RUG"//str2, nvarid) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Le champ <RUG"//str2//"> est absent" |
|
|
stop 1 |
|
|
ENDIF |
|
|
ierr = NF_GET_VAR_REAL(nid, nvarid, frugs(1,nsrf)) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Lecture echouee pour <RUG"//str2//">" |
|
438 |
stop 1 |
stop 1 |
439 |
ENDIF |
ENDIF |
440 |
|
WRITE(str2, '(i2.2)') nsrf |
441 |
|
call NF95_INQ_VARID(ncid, "RUG"//str2, varid) |
442 |
|
call NF95_GET_VAR(ncid, varid, frugs(:, nsrf)) |
443 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
444 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
445 |
DO i = 1, klon |
DO i = 1, klon |
446 |
xmin = MIN(frugs(i,nsrf),xmin) |
xmin = MIN(frugs(i, nsrf), xmin) |
447 |
xmax = MAX(frugs(i,nsrf),xmax) |
xmax = MAX(frugs(i, nsrf), xmax) |
448 |
ENDDO |
ENDDO |
449 |
PRINT*,'rugosite du sol RUG**:', nsrf, xmin, xmax |
PRINT *, 'rugosite du sol RUG**:', nsrf, xmin, xmax |
450 |
ENDDO |
ENDDO |
451 |
ELSE |
ELSE |
452 |
PRINT*, 'phyetat0: Le champ <RUG> est present' |
PRINT *, 'phyetat0: Le champ <RUG> est present' |
453 |
PRINT*, ' J ignore donc les autres RUG**' |
PRINT *, ' J ignore donc les autres RUG**' |
454 |
ierr = NF_GET_VAR_REAL(nid, nvarid, frugs(1,1)) |
call nf95_get_var(ncid, varid, frugs(:, 1)) |
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Lecture echouee pour <RUG>" |
|
|
stop 1 |
|
|
ENDIF |
|
455 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
456 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
457 |
DO i = 1, klon |
DO i = 1, klon |
458 |
xmin = MIN(frugs(i,1),xmin) |
xmin = MIN(frugs(i, 1), xmin) |
459 |
xmax = MAX(frugs(i,1),xmax) |
xmax = MAX(frugs(i, 1), xmax) |
460 |
ENDDO |
ENDDO |
461 |
PRINT*,'rugosite <RUG>', xmin, xmax |
PRINT *, 'rugosite <RUG>', xmin, xmax |
462 |
DO nsrf = 2, nbsrf |
DO nsrf = 2, nbsrf |
463 |
DO i = 1, klon |
DO i = 1, klon |
464 |
frugs(i,nsrf) = frugs(i,1) |
frugs(i, nsrf) = frugs(i, 1) |
465 |
ENDDO |
ENDDO |
466 |
ENDDO |
ENDDO |
467 |
ENDIF |
ENDIF |
468 |
|
|
|
|
|
469 |
! Lecture de l'age de la neige: |
! Lecture de l'age de la neige: |
470 |
|
|
471 |
ierr = NF_INQ_VARID (nid, "AGESNO", nvarid) |
ierr = NF90_INQ_VARID(ncid, "AGESNO", varid) |
472 |
IF (ierr.NE.NF_NOERR) THEN |
IF (ierr /= NF90_NOERR) THEN |
473 |
PRINT*, 'phyetat0: Le champ <AGESNO> est absent' |
PRINT *, 'phyetat0: Le champ <AGESNO> est absent' |
474 |
PRINT*, ' Mais je vais essayer de lire AGESNO**' |
PRINT *, ' Mais je vais essayer de lire AGESNO**' |
475 |
DO nsrf = 1, nbsrf |
DO nsrf = 1, nbsrf |
476 |
IF (nsrf.GT.99) THEN |
IF (nsrf > 99) THEN |
477 |
PRINT*, "Trop de sous-mailles" |
PRINT *, "Trop de sous-mailles" |
478 |
stop 1 |
stop 1 |
479 |
ENDIF |
ENDIF |
480 |
WRITE(str2,'(i2.2)') nsrf |
WRITE(str2, '(i2.2)') nsrf |
481 |
ierr = NF_INQ_VARID (nid, "AGESNO"//str2, nvarid) |
ierr = NF90_INQ_VARID(ncid, "AGESNO"//str2, varid) |
482 |
IF (ierr.NE.NF_NOERR) THEN |
IF (ierr /= NF90_NOERR) THEN |
483 |
PRINT*, "phyetat0: Le champ <AGESNO"//str2//"> est absent" |
PRINT *, "phyetat0: Le champ <AGESNO"//str2//"> est absent" |
484 |
agesno = 50.0 |
agesno = 50.0 |
485 |
ENDIF |
ENDIF |
486 |
ierr = NF_GET_VAR_REAL(nid, nvarid, agesno(1,nsrf)) |
call NF95_GET_VAR(ncid, varid, agesno(:, nsrf)) |
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Lecture echouee pour <AGESNO"//str2//">" |
|
|
stop 1 |
|
|
ENDIF |
|
487 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
488 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
489 |
DO i = 1, klon |
DO i = 1, klon |
490 |
xmin = MIN(agesno(i,nsrf),xmin) |
xmin = MIN(agesno(i, nsrf), xmin) |
491 |
xmax = MAX(agesno(i,nsrf),xmax) |
xmax = MAX(agesno(i, nsrf), xmax) |
492 |
ENDDO |
ENDDO |
493 |
PRINT*,'Age de la neige AGESNO**:', nsrf, xmin, xmax |
PRINT *, 'Age de la neige AGESNO**:', nsrf, xmin, xmax |
494 |
ENDDO |
ENDDO |
495 |
ELSE |
ELSE |
496 |
PRINT*, 'phyetat0: Le champ <AGESNO> est present' |
PRINT *, 'phyetat0: Le champ <AGESNO> est present' |
497 |
PRINT*, ' J ignore donc les autres AGESNO**' |
PRINT *, ' J ignore donc les autres AGESNO**' |
498 |
ierr = NF_GET_VAR_REAL(nid, nvarid, agesno(1,1)) |
call nf95_get_var(ncid, varid, agesno(:, 1)) |
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Lecture echouee pour <AGESNO>" |
|
|
stop 1 |
|
|
ENDIF |
|
499 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
500 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
501 |
DO i = 1, klon |
DO i = 1, klon |
502 |
xmin = MIN(agesno(i,1),xmin) |
xmin = MIN(agesno(i, 1), xmin) |
503 |
xmax = MAX(agesno(i,1),xmax) |
xmax = MAX(agesno(i, 1), xmax) |
504 |
ENDDO |
ENDDO |
505 |
PRINT*,'Age de la neige <AGESNO>', xmin, xmax |
PRINT *, 'Age de la neige <AGESNO>', xmin, xmax |
506 |
DO nsrf = 2, nbsrf |
DO nsrf = 2, nbsrf |
507 |
DO i = 1, klon |
DO i = 1, klon |
508 |
agesno(i,nsrf) = agesno(i,1) |
agesno(i, nsrf) = agesno(i, 1) |
509 |
ENDDO |
ENDDO |
510 |
ENDDO |
ENDDO |
511 |
ENDIF |
ENDIF |
512 |
|
|
513 |
|
call NF95_INQ_VARID(ncid, "ZMEA", varid) |
514 |
ierr = NF_INQ_VARID (nid, "ZMEA", nvarid) |
call NF95_GET_VAR(ncid, varid, zmea) |
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, 'phyetat0: Le champ <ZMEA> est absent' |
|
|
stop 1 |
|
|
ENDIF |
|
|
ierr = NF_GET_VAR_REAL(nid, nvarid, zmea) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, 'phyetat0: Lecture echouee pour <ZMEA>' |
|
|
stop 1 |
|
|
ENDIF |
|
515 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
516 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
517 |
DO i = 1, klon |
DO i = 1, klon |
518 |
xmin = MIN(zmea(i),xmin) |
xmin = MIN(zmea(i), xmin) |
519 |
xmax = MAX(zmea(i),xmax) |
xmax = MAX(zmea(i), xmax) |
520 |
ENDDO |
ENDDO |
521 |
PRINT*,'OROGRAPHIE SOUS-MAILLE zmea:', xmin, xmax |
PRINT *, 'OROGRAPHIE SOUS-MAILLE zmea:', xmin, xmax |
|
|
|
522 |
|
|
523 |
ierr = NF_INQ_VARID (nid, "ZSTD", nvarid) |
call NF95_INQ_VARID(ncid, "ZSTD", varid) |
524 |
IF (ierr.NE.NF_NOERR) THEN |
call NF95_GET_VAR(ncid, varid, zstd) |
|
PRINT*, 'phyetat0: Le champ <ZSTD> est absent' |
|
|
stop 1 |
|
|
ENDIF |
|
|
ierr = NF_GET_VAR_REAL(nid, nvarid, zstd) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, 'phyetat0: Lecture echouee pour <ZSTD>' |
|
|
stop 1 |
|
|
ENDIF |
|
525 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
526 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
527 |
DO i = 1, klon |
DO i = 1, klon |
528 |
xmin = MIN(zstd(i),xmin) |
xmin = MIN(zstd(i), xmin) |
529 |
xmax = MAX(zstd(i),xmax) |
xmax = MAX(zstd(i), xmax) |
530 |
ENDDO |
ENDDO |
531 |
PRINT*,'OROGRAPHIE SOUS-MAILLE zstd:', xmin, xmax |
PRINT *, 'OROGRAPHIE SOUS-MAILLE zstd:', xmin, xmax |
|
|
|
532 |
|
|
533 |
ierr = NF_INQ_VARID (nid, "ZSIG", nvarid) |
call NF95_INQ_VARID(ncid, "ZSIG", varid) |
534 |
IF (ierr.NE.NF_NOERR) THEN |
call NF95_GET_VAR(ncid, varid, zsig) |
|
PRINT*, 'phyetat0: Le champ <ZSIG> est absent' |
|
|
stop 1 |
|
|
ENDIF |
|
|
ierr = NF_GET_VAR_REAL(nid, nvarid, zsig) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, 'phyetat0: Lecture echouee pour <ZSIG>' |
|
|
stop 1 |
|
|
ENDIF |
|
535 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
536 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
537 |
DO i = 1, klon |
DO i = 1, klon |
538 |
xmin = MIN(zsig(i),xmin) |
xmin = MIN(zsig(i), xmin) |
539 |
xmax = MAX(zsig(i),xmax) |
xmax = MAX(zsig(i), xmax) |
540 |
ENDDO |
ENDDO |
541 |
PRINT*,'OROGRAPHIE SOUS-MAILLE zsig:', xmin, xmax |
PRINT *, 'OROGRAPHIE SOUS-MAILLE zsig:', xmin, xmax |
|
|
|
542 |
|
|
543 |
ierr = NF_INQ_VARID (nid, "ZGAM", nvarid) |
call NF95_INQ_VARID(ncid, "ZGAM", varid) |
544 |
IF (ierr.NE.NF_NOERR) THEN |
call NF95_GET_VAR(ncid, varid, zgam) |
|
PRINT*, 'phyetat0: Le champ <ZGAM> est absent' |
|
|
stop 1 |
|
|
ENDIF |
|
|
ierr = NF_GET_VAR_REAL(nid, nvarid, zgam) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, 'phyetat0: Lecture echouee pour <ZGAM>' |
|
|
stop 1 |
|
|
ENDIF |
|
545 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
546 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
547 |
DO i = 1, klon |
DO i = 1, klon |
548 |
xmin = MIN(zgam(i),xmin) |
xmin = MIN(zgam(i), xmin) |
549 |
xmax = MAX(zgam(i),xmax) |
xmax = MAX(zgam(i), xmax) |
550 |
ENDDO |
ENDDO |
551 |
PRINT*,'OROGRAPHIE SOUS-MAILLE zgam:', xmin, xmax |
PRINT *, 'OROGRAPHIE SOUS-MAILLE zgam:', xmin, xmax |
|
|
|
552 |
|
|
553 |
ierr = NF_INQ_VARID (nid, "ZTHE", nvarid) |
call NF95_INQ_VARID(ncid, "ZTHE", varid) |
554 |
IF (ierr.NE.NF_NOERR) THEN |
call NF95_GET_VAR(ncid, varid, zthe) |
|
PRINT*, 'phyetat0: Le champ <ZTHE> est absent' |
|
|
stop 1 |
|
|
ENDIF |
|
|
ierr = NF_GET_VAR_REAL(nid, nvarid, zthe) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, 'phyetat0: Lecture echouee pour <ZTHE>' |
|
|
stop 1 |
|
|
ENDIF |
|
555 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
556 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
557 |
DO i = 1, klon |
DO i = 1, klon |
558 |
xmin = MIN(zthe(i),xmin) |
xmin = MIN(zthe(i), xmin) |
559 |
xmax = MAX(zthe(i),xmax) |
xmax = MAX(zthe(i), xmax) |
560 |
ENDDO |
ENDDO |
561 |
PRINT*,'OROGRAPHIE SOUS-MAILLE zthe:', xmin, xmax |
PRINT *, 'OROGRAPHIE SOUS-MAILLE zthe:', xmin, xmax |
|
|
|
562 |
|
|
563 |
ierr = NF_INQ_VARID (nid, "ZPIC", nvarid) |
call NF95_INQ_VARID(ncid, "ZPIC", varid) |
564 |
IF (ierr.NE.NF_NOERR) THEN |
call NF95_GET_VAR(ncid, varid, zpic) |
|
PRINT*, 'phyetat0: Le champ <ZPIC> est absent' |
|
|
stop 1 |
|
|
ENDIF |
|
|
ierr = NF_GET_VAR_REAL(nid, nvarid, zpic) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, 'phyetat0: Lecture echouee pour <ZPIC>' |
|
|
stop 1 |
|
|
ENDIF |
|
565 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
566 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
567 |
DO i = 1, klon |
DO i = 1, klon |
568 |
xmin = MIN(zpic(i),xmin) |
xmin = MIN(zpic(i), xmin) |
569 |
xmax = MAX(zpic(i),xmax) |
xmax = MAX(zpic(i), xmax) |
570 |
ENDDO |
ENDDO |
571 |
PRINT*,'OROGRAPHIE SOUS-MAILLE zpic:', xmin, xmax |
PRINT *, 'OROGRAPHIE SOUS-MAILLE zpic:', xmin, xmax |
572 |
|
|
573 |
ierr = NF_INQ_VARID (nid, "ZVAL", nvarid) |
call NF95_INQ_VARID(ncid, "ZVAL", varid) |
574 |
IF (ierr.NE.NF_NOERR) THEN |
call NF95_GET_VAR(ncid, varid, zval) |
|
PRINT*, 'phyetat0: Le champ <ZVAL> est absent' |
|
|
stop 1 |
|
|
ENDIF |
|
|
ierr = NF_GET_VAR_REAL(nid, nvarid, zval) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, 'phyetat0: Lecture echouee pour <ZVAL>' |
|
|
stop 1 |
|
|
ENDIF |
|
|
xmin = 1.0E+20 |
|
|
xmax = -1.0E+20 |
|
|
DO i = 1, klon |
|
|
xmin = MIN(zval(i),xmin) |
|
|
xmax = MAX(zval(i),xmax) |
|
|
ENDDO |
|
|
PRINT*,'OROGRAPHIE SOUS-MAILLE zval:', xmin, xmax |
|
|
|
|
|
|
|
|
ierr = NF_INQ_VARID (nid, "RUGSREL", nvarid) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, 'phyetat0: Le champ <RUGSREL> est absent' |
|
|
stop 1 |
|
|
ENDIF |
|
|
ierr = NF_GET_VAR_REAL(nid, nvarid, rugsrel) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, 'phyetat0: Lecture echouee pour <RUGSREL>' |
|
|
stop 1 |
|
|
ENDIF |
|
575 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
576 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
577 |
DO i = 1, klon |
DO i = 1, klon |
578 |
xmin = MIN(rugsrel(i),xmin) |
xmin = MIN(zval(i), xmin) |
579 |
xmax = MAX(rugsrel(i),xmax) |
xmax = MAX(zval(i), xmax) |
580 |
ENDDO |
ENDDO |
581 |
PRINT*,'Rugosite relief (ecart-type) rugsrel:', xmin, xmax |
PRINT *, 'OROGRAPHIE SOUS-MAILLE zval:', xmin, xmax |
|
|
|
582 |
|
|
583 |
ancien_ok = .TRUE. |
ancien_ok = .TRUE. |
584 |
|
|
585 |
ierr = NF_INQ_VARID (nid, "TANCIEN", nvarid) |
ierr = NF90_INQ_VARID(ncid, "TANCIEN", varid) |
586 |
IF (ierr.NE.NF_NOERR) THEN |
IF (ierr /= NF90_NOERR) THEN |
587 |
PRINT*, "phyetat0: Le champ <TANCIEN> est absent" |
PRINT *, "phyetat0: Le champ <TANCIEN> est absent" |
588 |
PRINT*, "Depart legerement fausse. Mais je continue" |
PRINT *, "Depart legerement fausse. Mais je continue" |
589 |
ancien_ok = .FALSE. |
ancien_ok = .FALSE. |
590 |
ELSE |
ELSE |
591 |
ierr = NF_GET_VAR_REAL(nid, nvarid, t_ancien) |
call nf95_get_var(ncid, varid, t_ancien) |
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Lecture echouee pour <TANCIEN>" |
|
|
stop 1 |
|
|
ENDIF |
|
592 |
ENDIF |
ENDIF |
593 |
|
|
594 |
ierr = NF_INQ_VARID (nid, "QANCIEN", nvarid) |
ierr = NF90_INQ_VARID(ncid, "QANCIEN", varid) |
595 |
IF (ierr.NE.NF_NOERR) THEN |
IF (ierr /= NF90_NOERR) THEN |
596 |
PRINT*, "phyetat0: Le champ <QANCIEN> est absent" |
PRINT *, "phyetat0: Le champ <QANCIEN> est absent" |
597 |
PRINT*, "Depart legerement fausse. Mais je continue" |
PRINT *, "Depart legerement fausse. Mais je continue" |
598 |
ancien_ok = .FALSE. |
ancien_ok = .FALSE. |
599 |
ELSE |
ELSE |
600 |
ierr = NF_GET_VAR_REAL(nid, nvarid, q_ancien) |
call nf95_get_var(ncid, varid, q_ancien) |
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Lecture echouee pour <QANCIEN>" |
|
|
stop 1 |
|
|
ENDIF |
|
601 |
ENDIF |
ENDIF |
602 |
|
|
603 |
ierr = NF_INQ_VARID (nid, "CLWCON", nvarid) |
ierr = NF90_INQ_VARID(ncid, "CLWCON", varid) |
604 |
IF (ierr.NE.NF_NOERR) THEN |
IF (ierr /= NF90_NOERR) THEN |
605 |
PRINT*, "phyetat0: Le champ CLWCON est absent" |
PRINT *, "phyetat0: Le champ CLWCON est absent" |
606 |
PRINT*, "Depart legerement fausse. Mais je continue" |
PRINT *, "Depart legerement fausse. Mais je continue" |
607 |
clwcon = 0. |
clwcon = 0. |
608 |
ELSE |
ELSE |
609 |
ierr = NF_GET_VAR_REAL(nid, nvarid, clwcon) |
call nf95_get_var(ncid, varid, clwcon(:, 1)) |
610 |
IF (ierr.NE.NF_NOERR) THEN |
clwcon(:, 2:) = 0. |
|
PRINT*, "phyetat0: Lecture echouee pour <CLWCON>" |
|
|
stop 1 |
|
|
ENDIF |
|
611 |
ENDIF |
ENDIF |
612 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
613 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
614 |
xmin = MINval(clwcon) |
xmin = MINval(clwcon) |
615 |
xmax = MAXval(clwcon) |
xmax = MAXval(clwcon) |
616 |
PRINT*,'Eau liquide convective (ecart-type) clwcon:', xmin, xmax |
PRINT *, 'Eau liquide convective (ecart-type) clwcon:', xmin, xmax |
617 |
|
|
618 |
ierr = NF_INQ_VARID (nid, "RNEBCON", nvarid) |
ierr = NF90_INQ_VARID(ncid, "RNEBCON", varid) |
619 |
IF (ierr.NE.NF_NOERR) THEN |
IF (ierr /= NF90_NOERR) THEN |
620 |
PRINT*, "phyetat0: Le champ RNEBCON est absent" |
PRINT *, "phyetat0: Le champ RNEBCON est absent" |
621 |
PRINT*, "Depart legerement fausse. Mais je continue" |
PRINT *, "Depart legerement fausse. Mais je continue" |
622 |
rnebcon = 0. |
rnebcon = 0. |
623 |
ELSE |
ELSE |
624 |
ierr = NF_GET_VAR_REAL(nid, nvarid, rnebcon) |
call nf95_get_var(ncid, varid, rnebcon(:, 1)) |
625 |
IF (ierr.NE.NF_NOERR) THEN |
rnebcon(:, 2:) = 0. |
|
PRINT*, "phyetat0: Lecture echouee pour <RNEBCON>" |
|
|
stop 1 |
|
|
ENDIF |
|
626 |
ENDIF |
ENDIF |
627 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
628 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
629 |
xmin = MINval(rnebcon) |
xmin = MINval(rnebcon) |
630 |
xmax = MAXval(rnebcon) |
xmax = MAXval(rnebcon) |
631 |
PRINT*,'Nebulosite convective (ecart-type) rnebcon:', xmin, xmax |
PRINT *, 'Nebulosite convective (ecart-type) rnebcon:', xmin, xmax |
|
|
|
|
|
|
|
ierr = NF_INQ_VARID (nid, "QANCIEN", nvarid) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Le champ <QANCIEN> est absent" |
|
|
PRINT*, "Depart legerement fausse. Mais je continue" |
|
|
ancien_ok = .FALSE. |
|
|
ELSE |
|
|
ierr = NF_GET_VAR_REAL(nid, nvarid, q_ancien) |
|
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Lecture echouee pour <QANCIEN>" |
|
|
stop 1 |
|
|
ENDIF |
|
|
ENDIF |
|
632 |
|
|
633 |
! Lecture ratqs |
! Lecture ratqs |
634 |
|
|
635 |
ierr = NF_INQ_VARID (nid, "RATQS", nvarid) |
ierr = NF90_INQ_VARID(ncid, "RATQS", varid) |
636 |
IF (ierr.NE.NF_NOERR) THEN |
IF (ierr /= NF90_NOERR) THEN |
637 |
PRINT*, "phyetat0: Le champ <RATQS> est absent" |
PRINT *, "phyetat0: Le champ <RATQS> est absent" |
638 |
PRINT*, "Depart legerement fausse. Mais je continue" |
PRINT *, "Depart legerement fausse. Mais je continue" |
639 |
ratqs = 0. |
ratqs = 0. |
640 |
ELSE |
ELSE |
641 |
ierr = NF_GET_VAR_REAL(nid, nvarid, ratqs) |
call nf95_get_var(ncid, varid, ratqs(:, 1)) |
642 |
IF (ierr.NE.NF_NOERR) THEN |
ratqs(:, 2:) = 0. |
|
PRINT*, "phyetat0: Lecture echouee pour <RATQS>" |
|
|
stop 1 |
|
|
ENDIF |
|
643 |
ENDIF |
ENDIF |
644 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
645 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
646 |
xmin = MINval(ratqs) |
xmin = MINval(ratqs) |
647 |
xmax = MAXval(ratqs) |
xmax = MAXval(ratqs) |
648 |
PRINT*,'(ecart-type) ratqs:', xmin, xmax |
PRINT *, '(ecart-type) ratqs:', xmin, xmax |
649 |
|
|
650 |
! Lecture run_off_lic_0 |
! Lecture run_off_lic_0 |
651 |
|
|
652 |
ierr = NF_INQ_VARID (nid, "RUNOFFLIC0", nvarid) |
ierr = NF90_INQ_VARID(ncid, "RUNOFFLIC0", varid) |
653 |
IF (ierr.NE.NF_NOERR) THEN |
IF (ierr /= NF90_NOERR) THEN |
654 |
PRINT*, "phyetat0: Le champ <RUNOFFLIC0> est absent" |
PRINT *, "phyetat0: Le champ <RUNOFFLIC0> est absent" |
655 |
PRINT*, "Depart legerement fausse. Mais je continue" |
PRINT *, "Depart legerement fausse. Mais je continue" |
656 |
run_off_lic_0 = 0. |
run_off_lic_0 = 0. |
657 |
ELSE |
ELSE |
658 |
ierr = NF_GET_VAR_REAL(nid, nvarid, run_off_lic_0) |
call nf95_get_var(ncid, varid, run_off_lic_0) |
|
IF (ierr.NE.NF_NOERR) THEN |
|
|
PRINT*, "phyetat0: Lecture echouee pour <RUNOFFLIC0>" |
|
|
stop 1 |
|
|
ENDIF |
|
659 |
ENDIF |
ENDIF |
660 |
xmin = 1.0E+20 |
xmin = 1.0E+20 |
661 |
xmax = -1.0E+20 |
xmax = -1.0E+20 |
662 |
xmin = MINval(run_off_lic_0) |
xmin = MINval(run_off_lic_0) |
663 |
xmax = MAXval(run_off_lic_0) |
xmax = MAXval(run_off_lic_0) |
664 |
PRINT*,'(ecart-type) run_off_lic_0:', xmin, xmax |
PRINT *, '(ecart-type) run_off_lic_0:', xmin, xmax |
665 |
|
|
666 |
|
call nf95_inq_varid(ncid, "sig1", varid) |
667 |
|
call nf95_get_var(ncid, varid, sig1) |
668 |
|
|
669 |
! Fermer le fichier: |
call nf95_inq_varid(ncid, "w01", varid) |
670 |
|
call nf95_get_var(ncid, varid, w01) |
671 |
|
|
672 |
ierr = NF_CLOSE(nid) |
call NF95_CLOSE(ncid) |
673 |
|
|
674 |
END SUBROUTINE phyetat0 |
END SUBROUTINE phyetat0 |
675 |
|
|