source: LMDZ5/trunk/libf/phylmd/write_paramLMDZ_phy.h @ 2343

Last change on this file since 2343 was 2343, checked in by Ehouarn Millour, 9 years ago

Another step towards a clean separation between physics and dynamics: adapted read_pstoke.F90, read_pstoke0.F90 initphysto.F90 and phystokenc.F90 (now module phystokenc_mod.F90) to not explicitely include/use file/modules from the dynamics.
In the process, added module "time_phylmdz_mod.F90" in the physics, which contains the information otherwise found in "temps.h" (which is in the dynamics) and should be used instead.
EM

  • Property copyright set to
    Name of program: LMDZ
    Creation date: 1984
    Version: LMDZ5
    License: CeCILL version 2
    Holder: Laboratoire de m\'et\'eorologie dynamique, CNRS, UMR 8539
    See the license file in the root directory
  • Property svn:eol-style set to native
  • Property svn:executable set to *
  • Property svn:keywords set to Author Date Id Revision
File size: 3.3 KB
Line 
1!
2! calcul moyennes globales
3!
4       zx_tmp_fi2d=bils*airephy
5       CALL global_mean(zx_tmp_fi2d,airephy,.TRUE.,gbils)
6       zx_tmp_fi2d=evap*airephy
7       CALL global_mean(zx_tmp_fi2d,airephy,.TRUE.,gevap)
8       zx_tmp_fi2d(:)=fevap(:, is_ter)*airephy(:)
9       CALL global_mean(zx_tmp_fi2d,airephy,.TRUE.,gevapt)
10       zx_tmp_fi2d=zxfluxlat*airephy
11       CALL global_mean(zx_tmp_fi2d,airephy,.TRUE.,glat)
12       zx_tmp_fi2d=(topsw0-toplw0)*airephy
13       CALL global_mean(zx_tmp_fi2d,airephy,.TRUE.,gnet0)
14       zx_tmp_fi2d=(topsw-toplw)*airephy
15       CALL global_mean(zx_tmp_fi2d,airephy,.TRUE.,gnet)
16       zx_tmp_fi2d=(rain_fall+snow_fall)*airephy
17       CALL global_mean(zx_tmp_fi2d,airephy,.TRUE.,grain)
18       zx_tmp_fi2d=zxtsol*airephy
19       CALL global_mean(zx_tmp_fi2d,airephy,.TRUE.,gtsol)
20       zx_tmp_fi2d=zt2m*airephy
21       CALL global_mean(zx_tmp_fi2d,airephy,.TRUE.,gt2m)
22       zx_tmp_fi2d=prw*airephy
23       CALL global_mean(zx_tmp_fi2d,airephy,.TRUE.,gprw)
24!
25!$OMP MASTER
26      if (is_mpi_root) then     
27!
28      ndex2d = 0
29      itau_w = itau_phy + itap + int(start_time * day_step_phy)
30!
31! Variables globales
32!
33      zx_tmp_0d=R_ecc
34      CALL histwrite(nid_ctesGCM,"R_ecc",itau_w, &
35                     zx_tmp_0d,np,ndex2d)
36!
37      zx_tmp_0d=R_peri
38      CALL histwrite(nid_ctesGCM,"R_peri",itau_w, &
39                     zx_tmp_0d,np,ndex2d)
40!
41      zx_tmp_0d=R_incl
42      CALL histwrite(nid_ctesGCM,"R_incl",itau_w, &
43                     zx_tmp_0d,np,ndex2d)
44!
45      zx_tmp_0d=solaire
46      CALL histwrite(nid_ctesGCM,"solaire",itau_w, &
47                     zx_tmp_0d,np,ndex2d)
48!
49      zx_tmp_0d=co2_ppm
50      CALL histwrite(nid_ctesGCM,"co2_ppm",itau_w, &
51                     zx_tmp_0d,np,ndex2d)
52!
53      zx_tmp_0d=CH4_ppb
54      CALL histwrite(nid_ctesGCM,"CH4_ppb",itau_w, &
55                     zx_tmp_0d,np,ndex2d)
56!
57      zx_tmp_0d=N2O_ppb
58      CALL histwrite(nid_ctesGCM,"N2O_ppb",itau_w, &
59                     zx_tmp_0d,np,ndex2d)
60!
61      zx_tmp_0d=CFC11_ppt
62      CALL histwrite(nid_ctesGCM,"CFC11_ppt",itau_w, &
63                     zx_tmp_0d,np,ndex2d)
64!
65      zx_tmp_0d=CFC12_ppt
66      CALL histwrite(nid_ctesGCM,"CFC12_ppt",itau_w, &
67                     zx_tmp_0d,np,ndex2d)
68!
69!=================================================================
70! moyennes globales
71!
72      CALL histwrite(nid_ctesGCM,"bils",itau_w, &
73                     gbils,np,ndex2d)
74      CALL histwrite(nid_ctesGCM,"evap",itau_w, &
75                     gevap,np,ndex2d)
76      CALL histwrite(nid_ctesGCM,"evap_land",itau_w, &
77                     gevapt,np,ndex2d)
78      CALL histwrite(nid_ctesGCM,"flat",itau_w, &
79                     glat,np,ndex2d)
80      CALL histwrite(nid_ctesGCM,"nettop0",itau_w, &
81                     gnet0,np,ndex2d)
82      CALL histwrite(nid_ctesGCM,"nettop",itau_w, &
83                     gnet,np,ndex2d)
84      CALL histwrite(nid_ctesGCM,"precip",itau_w, &
85                     grain,np,ndex2d)
86      CALL histwrite(nid_ctesGCM,"tsol",itau_w, &
87                     gtsol,np,ndex2d)
88      CALL histwrite(nid_ctesGCM,"t2m",itau_w, &
89                     gt2m,np,ndex2d)
90      CALL histwrite(nid_ctesGCM,"prw",itau_w, &
91                     gprw,np,ndex2d)
92!=================================================================
93!
94      if (ok_sync) then
95        call histsync(nid_ctesGCM)
96      endif
97!
98      endif !(is_mpi_root) then     
99!$OMP END MASTER
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