source: LMDZ5/trunk/libf/phylmd/phys_output_mod.F90 @ 1645

Last change on this file since 1645 was 1641, checked in by jghattas, 12 years ago
  • Corrected bug while using parameter phys_out_filetimestep instead of ecrit_mth : cosp did not write at correct timestep. This correction also corrects timestep in histday_seri.nc file.
  • Replaced use of lev_histmth by logical swaero_diag in sw_aeroAR4.f90. swaero_diag is true if at least one of following variables are defined in output file : topswad, topswai, solswad, solswai
  • Property svn:eol-style set to native
  • Property svn:keywords set to Author Date Id Revision
File size: 112.0 KB
Line 
1! $Id: phys_output_mod.F90 1641 2012-07-24 14:16:30Z lguez $
2!
3! Abderrahmane 12 2007
4!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
5!!! Ecreture des Sorties du modele dans les fichiers Netcdf :
6! histmth.nc : moyennes mensuelles
7! histday.nc : moyennes journalieres
8! histhf.nc  : moyennes toutes les 3 heures
9! histins.nc : valeurs instantanees
10!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
11
12MODULE phys_output_mod
13
14  IMPLICIT NONE
15
16  private histdef2d, histdef3d, conf_physoutputs
17
18
19  integer, parameter                           :: nfiles = 6
20  logical, dimension(nfiles), save             :: clef_files
21  logical, dimension(nfiles), save             :: clef_stations
22  integer, dimension(nfiles), save             :: lev_files
23  integer, dimension(nfiles), save             :: nid_files
24  integer, dimension(nfiles), save  :: nnid_files
25!!$OMP THREADPRIVATE(clef_files, clef_stations, lev_files,nid_files,nnid_files)
26  integer, dimension(nfiles), private, save :: nnhorim
27
28  integer, dimension(nfiles), private, save :: nhorim, nvertm
29  integer, dimension(nfiles), private, save :: nvertap, nvertbp, nvertAlt
30  !   integer, dimension(nfiles), private, save :: nvertp0
31  real, dimension(nfiles), private, save                :: zoutm
32  real,                    private, save                :: zdtime
33  CHARACTER(len=20), dimension(nfiles), private, save   :: type_ecri
34  !$OMP THREADPRIVATE(nhorim, nvertm, zoutm,zdtime,type_ecri)
35 ! swaero_diag : flag indicates if it is necessary to do calculation for some aerosol diagnostics
36  logical, save                                :: swaero_diag=.FALSE.
37
38
39  !   integer, save                     :: nid_hf3d
40
41!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
42  !! Definition pour chaque variable du niveau d ecriture dans chaque fichier
43!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!/ histmth, histday, histhf, histins /),'!!!!!!!!!!!!
44!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
45
46  integer, private:: levmin(nfiles) = 1
47  integer, private:: levmax(nfiles)
48
49  TYPE ctrl_out
50     integer,dimension(6) :: flag
51     character(len=20)     :: name
52  END TYPE ctrl_out
53
54!!! Comosentes de la coordonnee sigma-hybride
55!!! Ap et Bp
56  type(ctrl_out),save :: o_Ahyb         = ctrl_out((/ 1, 1, 1, 1, 1, 1 /), 'Ap')
57  type(ctrl_out),save :: o_Bhyb         = ctrl_out((/ 1, 1, 1, 1, 1, 1 /), 'Bp')
58  type(ctrl_out),save :: o_Alt          = ctrl_out((/ 1, 1, 1, 1, 1, 1 /), 'Alt')
59
60!!! 1D
61  type(ctrl_out),save :: o_phis         = ctrl_out((/ 1, 1, 10, 5, 1, 1 /), 'phis')
62  type(ctrl_out),save :: o_aire         = ctrl_out((/ 1, 1, 10,  10, 1, 1 /),'aire')
63  type(ctrl_out),save :: o_contfracATM  = ctrl_out((/ 10, 1,  1, 10, 10, 10 /),'contfracATM')
64  type(ctrl_out),save :: o_contfracOR   = ctrl_out((/ 10, 1,  1, 10, 10, 10 /),'contfracOR')
65  type(ctrl_out),save :: o_aireTER      = ctrl_out((/ 10, 10, 1, 10, 10, 10 /),'aireTER')
66
67!!! 2D
68  type(ctrl_out),save :: o_flat         = ctrl_out((/ 5, 1, 10, 10, 5, 10 /),'flat')
69  type(ctrl_out),save :: o_slp          = ctrl_out((/ 1, 1, 1, 10, 10, 10 /),'slp')
70  type(ctrl_out),save :: o_tsol         = ctrl_out((/ 1, 1, 1, 5, 10, 10 /),'tsol')
71  type(ctrl_out),save :: o_t2m          = ctrl_out((/ 1, 1, 1, 5, 10, 10 /),'t2m')
72  type(ctrl_out),save :: o_t2m_min      = ctrl_out((/ 1, 1, 10, 10, 10, 10 /),'t2m_min')
73  type(ctrl_out),save :: o_t2m_max      = ctrl_out((/ 1, 1, 10, 10, 10, 10 /),'t2m_max')
74  type(ctrl_out),save,dimension(4) :: o_t2m_srf      = (/ ctrl_out((/ 10, 6, 10, 10, 10, 10 /),'t2m_ter'), &
75       ctrl_out((/ 10, 6, 10, 10, 10, 10 /),'t2m_lic'), &
76       ctrl_out((/ 10, 6, 10, 10, 10, 10 /),'t2m_oce'), &
77       ctrl_out((/ 10, 6, 10, 10, 10, 10 /),'t2m_sic') /)
78
79  type(ctrl_out),save :: o_wind10m      = ctrl_out((/ 1, 1, 1, 10, 10, 10 /),'wind10m')
80  type(ctrl_out),save :: o_wind10max    = ctrl_out((/ 10, 1, 10, 10, 10, 10 /),'wind10max')
81  type(ctrl_out),save :: o_sicf         = ctrl_out((/ 1, 1, 10, 10, 10, 10 /),'sicf')
82  type(ctrl_out),save :: o_q2m          = ctrl_out((/ 1, 1, 1, 5, 10, 10 /),'q2m')
83  type(ctrl_out),save :: o_u10m         = ctrl_out((/ 1, 1, 1, 5, 10, 10 /),'u10m')
84  type(ctrl_out),save :: o_v10m         = ctrl_out((/ 1, 1, 1, 5, 10, 10 /),'v10m')
85  type(ctrl_out),save :: o_psol         = ctrl_out((/ 1, 1, 1, 5, 10, 10 /),'psol')
86  type(ctrl_out),save :: o_qsurf        = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'qsurf')
87
88  type(ctrl_out),save,dimension(4) :: o_u10m_srf     = (/ ctrl_out((/ 10, 6, 10, 10, 10, 10 /),'u10m_ter'), &
89       ctrl_out((/ 10, 6, 10, 10, 10, 10 /),'u10m_lic'), &
90       ctrl_out((/ 10, 6, 10, 10, 10, 10 /),'u10m_oce'), &
91       ctrl_out((/ 10, 6, 10, 10, 10, 10 /),'u10m_sic') /)
92
93  type(ctrl_out),save,dimension(4) :: o_v10m_srf     = (/ ctrl_out((/ 10, 6, 10, 10, 10, 10 /),'v10m_ter'), &
94       ctrl_out((/ 10, 6, 10, 10, 10, 10 /),'v10m_lic'), &
95       ctrl_out((/ 10, 6, 10, 10, 10, 10 /),'v10m_oce'), &
96       ctrl_out((/ 10, 6, 10, 10, 10, 10 /),'v10m_sic') /)
97
98  type(ctrl_out),save :: o_qsol         = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'qsol')
99
100  type(ctrl_out),save :: o_ndayrain     = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'ndayrain')
101  type(ctrl_out),save :: o_precip       = ctrl_out((/ 1, 1, 1, 10, 5, 10 /),'precip')
102  type(ctrl_out),save :: o_plul         = ctrl_out((/ 1, 1, 1, 10, 10, 10 /),'plul')
103
104  type(ctrl_out),save :: o_pluc         = ctrl_out((/ 1, 1, 1, 10, 5, 10 /),'pluc')
105  type(ctrl_out),save :: o_snow         = ctrl_out((/ 1, 1, 10, 10, 5, 10 /),'snow')
106  type(ctrl_out),save :: o_evap         = ctrl_out((/ 1, 1, 10, 10, 10, 10 /),'evap')
107  type(ctrl_out),save,dimension(4) :: o_evap_srf     = (/ ctrl_out((/ 1, 6, 10, 10, 10, 10 /),'evap_ter'), &
108       ctrl_out((/ 1, 6, 10, 10, 10, 10 /),'evap_lic'), &
109       ctrl_out((/ 1, 6, 10, 10, 10, 10 /),'evap_oce'), &
110       ctrl_out((/ 1, 6, 10, 10, 10, 10 /),'evap_sic') /)
111  type(ctrl_out),save :: o_msnow       = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'msnow')
112  type(ctrl_out),save :: o_fsnow       = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'fsnow')
113
114  type(ctrl_out),save :: o_tops         = ctrl_out((/ 1, 1, 10, 10, 10, 10 /),'tops')
115  type(ctrl_out),save :: o_tops0        = ctrl_out((/ 1, 5, 10, 10, 10, 10 /),'tops0')
116  type(ctrl_out),save :: o_topl         = ctrl_out((/ 1, 1, 10, 5, 10, 10 /),'topl')
117  type(ctrl_out),save :: o_topl0        = ctrl_out((/ 1, 5, 10, 10, 10, 10 /),'topl0')
118  type(ctrl_out),save :: o_SWupTOA      = ctrl_out((/ 1, 4, 10, 10, 10, 10 /),'SWupTOA')
119  type(ctrl_out),save :: o_SWupTOAclr   = ctrl_out((/ 1, 4, 10, 10, 10, 10 /),'SWupTOAclr')
120  type(ctrl_out),save :: o_SWdnTOA      = ctrl_out((/ 1, 4, 10, 10, 10, 10 /),'SWdnTOA')
121  type(ctrl_out),save :: o_SWdnTOAclr   = ctrl_out((/ 1, 4, 10, 10, 10, 10 /),'SWdnTOAclr')
122  type(ctrl_out),save :: o_nettop       = ctrl_out((/ 1, 4, 10, 10, 10, 10 /),'nettop')
123
124  type(ctrl_out),save :: o_SWup200      = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'SWup200')
125  type(ctrl_out),save :: o_SWup200clr   = ctrl_out((/ 10, 1, 10, 10, 10, 10 /),'SWup200clr')
126  type(ctrl_out),save :: o_SWdn200      = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'SWdn200')
127  type(ctrl_out),save :: o_SWdn200clr   = ctrl_out((/ 10, 1, 10, 10, 10, 10 /),'SWdn200clr')
128
129  ! arajouter
130  !  type(ctrl_out),save :: o_LWupTOA     = ctrl_out((/ 1, 4, 10, 10, 10, 10 /),'LWupTOA')
131  !  type(ctrl_out),save :: o_LWupTOAclr  = ctrl_out((/ 1, 4, 10, 10, 10, 10 /),'LWupTOAclr')
132  !  type(ctrl_out),save :: o_LWdnTOA     = ctrl_out((/ 1, 4, 10, 10, 10, 10 /),'LWdnTOA')
133  !  type(ctrl_out),save :: o_LWdnTOAclr  = ctrl_out((/ 1, 4, 10, 10, 10, 10 /),'LWdnTOAclr')
134
135  type(ctrl_out),save :: o_LWup200      = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'LWup200')
136  type(ctrl_out),save :: o_LWup200clr   = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'LWup200clr')
137  type(ctrl_out),save :: o_LWdn200      = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'LWdn200')
138  type(ctrl_out),save :: o_LWdn200clr   = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'LWdn200clr')
139  type(ctrl_out),save :: o_sols         = ctrl_out((/ 1, 1, 10, 10, 10, 10 /),'sols')
140  type(ctrl_out),save :: o_sols0        = ctrl_out((/ 1, 5, 10, 10, 10, 10 /),'sols0')
141  type(ctrl_out),save :: o_soll         = ctrl_out((/ 1, 1, 10, 10, 10, 10 /),'soll')
142  type(ctrl_out),save :: o_soll0        = ctrl_out((/ 1, 5, 10, 10, 10, 10 /),'soll0')
143  type(ctrl_out),save :: o_radsol       = ctrl_out((/ 1, 7, 10, 10, 10, 10 /),'radsol')
144  type(ctrl_out),save :: o_SWupSFC      = ctrl_out((/ 1, 4, 10, 10, 5, 10 /),'SWupSFC')
145  type(ctrl_out),save :: o_SWupSFCclr   = ctrl_out((/ 1, 4, 10, 10, 5, 10 /),'SWupSFCclr')
146  type(ctrl_out),save :: o_SWdnSFC      = ctrl_out((/ 1, 1, 10, 10, 5, 10 /),'SWdnSFC')
147  type(ctrl_out),save :: o_SWdnSFCclr   = ctrl_out((/ 1, 4, 10, 10, 5, 10 /),'SWdnSFCclr')
148  type(ctrl_out),save :: o_LWupSFC      = ctrl_out((/ 1, 4, 10, 10, 5, 10 /),'LWupSFC')
149  type(ctrl_out),save :: o_LWupSFCclr   = ctrl_out((/ 1, 4, 10, 10, 5, 10 /),'LWupSFCclr')
150  type(ctrl_out),save :: o_LWdnSFC      = ctrl_out((/ 1, 4, 10, 10, 5, 10 /),'LWdnSFC')
151  type(ctrl_out),save :: o_LWdnSFCclr   = ctrl_out((/ 1, 4, 10, 10, 5, 10 /),'LWdnSFCclr')
152  type(ctrl_out),save :: o_bils         = ctrl_out((/ 1, 2, 10, 5, 10, 10 /),'bils')
153  type(ctrl_out),save :: o_sens         = ctrl_out((/ 1, 1, 10, 10, 5, 10 /),'sens')
154  type(ctrl_out),save :: o_fder         = ctrl_out((/ 1, 2, 10, 10, 10, 10 /),'fder')
155  type(ctrl_out),save :: o_ffonte       = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'ffonte')
156  type(ctrl_out),save :: o_fqcalving    = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'fqcalving')
157  type(ctrl_out),save :: o_fqfonte      = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'fqfonte')
158
159  type(ctrl_out),save :: o_taux         = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'taux')
160  type(ctrl_out),save :: o_tauy         = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'tauy')
161  type(ctrl_out),save,dimension(4) :: o_taux_srf     = (/ ctrl_out((/ 1, 6, 10, 10, 10, 10 /),'taux_ter'), &
162       ctrl_out((/ 1, 6, 10, 10, 10, 10 /),'taux_lic'), &
163       ctrl_out((/ 1, 6, 10, 10, 10, 10 /),'taux_oce'), &
164       ctrl_out((/ 1, 6, 10, 10, 10, 10 /),'taux_sic') /)
165
166  type(ctrl_out),save,dimension(4) :: o_tauy_srf     = (/ ctrl_out((/ 1, 6, 10, 10, 10, 10 /),'tauy_ter'), &
167       ctrl_out((/ 1, 6, 10, 10, 10, 10 /),'tauy_lic'), &
168       ctrl_out((/ 1, 6, 10, 10, 10, 10 /),'tauy_oce'), &
169       ctrl_out((/ 1, 6, 10, 10, 10, 10 /),'tauy_sic') /)
170
171
172  type(ctrl_out),save,dimension(4) :: o_pourc_srf    = (/ ctrl_out((/ 1, 7, 10, 10, 10, 10 /),'pourc_ter'), &
173       ctrl_out((/ 1, 7, 10, 10, 10, 10 /),'pourc_lic'), &
174       ctrl_out((/ 1, 7, 10, 10, 10, 10 /),'pourc_oce'), &
175       ctrl_out((/ 1, 7, 10, 10, 10, 10 /),'pourc_sic') /)     
176
177  type(ctrl_out),save,dimension(4) :: o_fract_srf    = (/ ctrl_out((/ 1, 6, 10, 10, 10, 10 /),'fract_ter'), &
178       ctrl_out((/ 1, 6, 10, 10, 10, 10 /),'fract_lic'), &
179       ctrl_out((/ 1, 6, 10, 10, 10, 10 /),'fract_oce'), &
180       ctrl_out((/ 1, 6, 10, 10, 10, 10 /),'fract_sic') /)
181
182  type(ctrl_out),save,dimension(4) :: o_tsol_srf     = (/ ctrl_out((/ 1, 6, 10, 10, 10, 10 /),'tsol_ter'), &
183       ctrl_out((/ 1, 6, 10, 10, 10, 10 /),'tsol_lic'), &
184       ctrl_out((/ 1, 6, 10, 10, 10, 10 /),'tsol_oce'), &
185       ctrl_out((/ 1, 6, 10, 10, 10, 10 /),'tsol_sic') /)
186
187  type(ctrl_out),save,dimension(4) :: o_sens_srf     = (/ ctrl_out((/ 1, 6, 10, 7, 10, 10 /),'sens_ter'), &
188       ctrl_out((/ 1, 6, 10, 7, 10, 10 /),'sens_lic'), &
189       ctrl_out((/ 1, 6, 10, 7, 10, 10 /),'sens_oce'), &
190       ctrl_out((/ 1, 6, 10, 7, 10, 10 /),'sens_sic') /)
191
192  type(ctrl_out),save,dimension(4) :: o_lat_srf      = (/ ctrl_out((/ 1, 6, 10, 7, 10, 10 /),'lat_ter'), &
193       ctrl_out((/ 1, 6, 10, 7, 10, 10 /),'lat_lic'), &
194       ctrl_out((/ 1, 6, 10, 7, 10, 10 /),'lat_oce'), &
195       ctrl_out((/ 1, 6, 10, 7, 10, 10 /),'lat_sic') /)
196
197  type(ctrl_out),save,dimension(4) :: o_flw_srf      = (/ ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'flw_ter'), &
198       ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'flw_lic'), &
199       ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'flw_oce'), &
200       ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'flw_sic') /)
201
202  type(ctrl_out),save,dimension(4) :: o_fsw_srf      = (/ ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'fsw_ter'), &
203       ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'fsw_lic'), &
204       ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'fsw_oce'), &
205       ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'fsw_sic') /)
206
207  type(ctrl_out),save,dimension(4) :: o_wbils_srf    = (/ ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'wbils_ter'), &
208       ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'wbils_lic'), &
209       ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'wbils_oce'), &
210       ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'wbils_sic') /)
211
212  type(ctrl_out),save,dimension(4) :: o_wbilo_srf    = (/ ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'wbilo_ter'), &
213       ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'wbilo_lic'), &
214       ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'wbilo_oce'), &
215       ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'wbilo_sic') /)
216
217
218  type(ctrl_out),save :: o_cdrm         = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'cdrm')
219  type(ctrl_out),save :: o_cdrh         = ctrl_out((/ 1, 10, 10, 7, 10, 10 /),'cdrh')
220  type(ctrl_out),save :: o_cldl         = ctrl_out((/ 1, 1, 10, 10, 10, 10 /),'cldl')
221  type(ctrl_out),save :: o_cldm         = ctrl_out((/ 1, 1, 10, 10, 10, 10 /),'cldm')
222  type(ctrl_out),save :: o_cldh         = ctrl_out((/ 1, 1, 10, 10, 10, 10 /),'cldh')
223  type(ctrl_out),save :: o_cldt         = ctrl_out((/ 1, 1, 2, 10, 5, 10 /),'cldt')
224  type(ctrl_out),save :: o_cldq         = ctrl_out((/ 1, 1, 10, 10, 10, 10 /),'cldq')
225  type(ctrl_out),save :: o_lwp          = ctrl_out((/ 1, 5, 10, 10, 10, 10 /),'lwp')
226  type(ctrl_out),save :: o_iwp          = ctrl_out((/ 1, 5, 10, 10, 10, 10 /),'iwp')
227  type(ctrl_out),save :: o_ue           = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'ue')
228  type(ctrl_out),save :: o_ve           = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'ve')
229  type(ctrl_out),save :: o_uq           = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'uq')
230  type(ctrl_out),save :: o_vq           = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'vq')
231
232  type(ctrl_out),save :: o_cape         = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'cape')
233  type(ctrl_out),save :: o_pbase        = ctrl_out((/ 1, 5, 10, 10, 10, 10 /),'pbase')
234  type(ctrl_out),save :: o_ptop         = ctrl_out((/ 1, 5, 10, 10, 10, 10 /),'ptop')
235  type(ctrl_out),save :: o_fbase        = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'fbase')
236  type(ctrl_out),save :: o_plcl        = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'plcl')
237  type(ctrl_out),save :: o_plfc        = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'plfc')
238  type(ctrl_out),save :: o_wbeff        = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'wbeff')
239  type(ctrl_out),save :: o_prw          = ctrl_out((/ 1, 1, 10, 10, 10, 10 /),'prw')
240
241  type(ctrl_out),save :: o_s_pblh       = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'s_pblh')
242  type(ctrl_out),save :: o_s_pblt       = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'s_pblt')
243  type(ctrl_out),save :: o_s_lcl        = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'s_lcl')
244  type(ctrl_out),save :: o_s_therm      = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'s_therm')
245  !IM : Les champs suivants (s_capCL, s_oliqCL, s_cteiCL, s_trmb1, s_trmb2, s_trmb3) ne sont pas definis dans HBTM.F
246  ! type(ctrl_out),save :: o_s_capCL      = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'s_capCL')
247  ! type(ctrl_out),save :: o_s_oliqCL     = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'s_oliqCL')
248  ! type(ctrl_out),save :: o_s_cteiCL     = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'s_cteiCL')
249  ! type(ctrl_out),save :: o_s_trmb1      = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'s_trmb1')
250  ! type(ctrl_out),save :: o_s_trmb2      = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'s_trmb2')
251  ! type(ctrl_out),save :: o_s_trmb3      = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'s_trmb3')
252
253  type(ctrl_out),save :: o_slab_bils    = ctrl_out((/ 1, 1, 10, 10, 10, 10 /),'slab_bils_oce')
254
255  type(ctrl_out),save :: o_ale_bl       = ctrl_out((/ 1, 1, 1, 10, 10, 10 /),'ale_bl')
256  type(ctrl_out),save :: o_alp_bl       = ctrl_out((/ 1, 1, 1, 10, 10, 10 /),'alp_bl')
257  type(ctrl_out),save :: o_ale_wk       = ctrl_out((/ 1, 1, 1, 10, 10, 10 /),'ale_wk')
258  type(ctrl_out),save :: o_alp_wk       = ctrl_out((/ 1, 1, 1, 10, 10, 10 /),'alp_wk')
259
260  type(ctrl_out),save :: o_ale          = ctrl_out((/ 1, 1, 1, 10, 10, 10 /),'ale')
261  type(ctrl_out),save :: o_alp          = ctrl_out((/ 1, 1, 1, 10, 10, 10 /),'alp')
262  type(ctrl_out),save :: o_cin          = ctrl_out((/ 1, 1, 1, 10, 10, 10 /),'cin')
263  type(ctrl_out),save :: o_wape         = ctrl_out((/ 1, 1, 1, 10, 10, 10 /),'wape')
264
265!!! nrlmd le 10/04/2012
266
267!-------Propriétés du thermiques au LCL
268  type(ctrl_out),save :: o_zlcl_th        = ctrl_out((/ 1, 1, 1, 6, 10, 10 /),'zlcl_th')
269  type(ctrl_out),save :: o_fraca0         = ctrl_out((/ 1, 1, 1, 6, 10, 10 /),'fraca0')
270  type(ctrl_out),save :: o_w0             = ctrl_out((/ 1, 1, 1, 6, 10, 10 /),'w0')
271  type(ctrl_out),save :: o_w_conv         = ctrl_out((/ 1, 1, 1, 6, 10, 10 /),'w_conv')
272  type(ctrl_out),save :: o_therm_tke_max0 = ctrl_out((/ 1, 1, 1, 6, 10, 10 /),'therm_tke_max0')
273  type(ctrl_out),save :: o_env_tke_max0   = ctrl_out((/ 1, 1, 1, 6, 10, 10 /),'env_tke_max0')
274
275!-------Spectre de thermiques de type 2 au LCL
276  type(ctrl_out),save :: o_n2                = ctrl_out((/ 1, 1, 1, 6, 10, 10 /),'n2')
277  type(ctrl_out),save :: o_s2                = ctrl_out((/ 1, 1, 1, 6, 10, 10 /),'s2')
278                                                                             
279!-------Déclenchement stochastique                                           
280  type(ctrl_out),save :: o_proba_notrig      = ctrl_out((/ 1, 1, 1, 6, 10, 10 /),'proba_notrig')
281  type(ctrl_out),save :: o_random_notrig     = ctrl_out((/ 1, 1, 1, 6, 10, 10 /),'random_notrig')
282  type(ctrl_out),save :: o_ale_bl_stat       = ctrl_out((/ 1, 1, 1, 6, 10, 10 /),'ale_bl_stat')
283  type(ctrl_out),save :: o_ale_bl_trig       = ctrl_out((/ 1, 1, 1, 6, 10, 10 /),'ale_bl_trig')
284                                                                             
285!-------Profils de TKE dans et hors du thermique                             
286  type(ctrl_out),save :: o_therm_tke_max     = ctrl_out((/ 1, 1, 1, 6, 10, 10 /),'therm_tke_max')
287  type(ctrl_out),save :: o_env_tke_max       = ctrl_out((/ 1, 1, 1, 6, 10, 10 /),'env_tke_max')
288
289!-------Fermeture statistique
290  type(ctrl_out),save :: o_alp_bl_det        = ctrl_out((/ 1, 1, 1, 10, 10, 10 /),'alp_bl_det')
291  type(ctrl_out),save :: o_alp_bl_fluct_m    = ctrl_out((/ 1, 1, 1, 10, 10, 10 /),'alp_bl_fluct_m')
292  type(ctrl_out),save :: o_alp_bl_fluct_tke  = ctrl_out((/ 1, 1, 1, 10, 10, 10 /),'alp_bl_fluct_tke')
293  type(ctrl_out),save :: o_alp_bl_conv       = ctrl_out((/ 1, 1, 1, 10, 10, 10 /),'alp_bl_conv')
294  type(ctrl_out),save :: o_alp_bl_stat       = ctrl_out((/ 1, 1, 1, 10, 10, 10 /),'alp_bl_stat')
295
296!!! fin nrlmd le 10/04/2012
297
298  ! Champs interpolles sur des niveaux de pression ??? a faire correctement
299
300  type(ctrl_out),save,dimension(7) :: o_uSTDlevs     = (/ ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'u850'), &
301       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'u700'), &
302       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'u500'), &
303       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'u200'), &
304       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'u100'), &
305       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'u50'), &
306       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'u10') /)
307
308
309  type(ctrl_out),save,dimension(7) :: o_vSTDlevs     = (/ ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'v850'), &
310       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'v700'), &
311       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'v500'), &
312       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'v200'), &
313       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'v100'), &
314       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'v50'), &
315       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'v10') /)
316
317  type(ctrl_out),save,dimension(7) :: o_wSTDlevs     = (/ ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'w850'), &
318       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'w700'), &
319       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'w500'), &
320       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'w200'), &
321       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'w100'), &
322       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'w50'), &
323       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'w10') /)
324
325  type(ctrl_out),save,dimension(7) :: o_tSTDlevs     = (/ ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'t850'), &
326       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'t700'), &
327       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'t500'), &
328       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'t200'), &
329       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'t100'), &
330       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'t50'), &
331       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'t10') /)
332
333  type(ctrl_out),save,dimension(7) :: o_qSTDlevs     = (/ ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'q850'), &
334       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'q700'), &
335       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'q500'), &
336       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'q200'), &
337       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'q100'), &
338       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'q50'), &
339       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'q10') /)
340
341  type(ctrl_out),save,dimension(7) :: o_zSTDlevs   = (/ ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'z850'), &
342       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'z700'), &
343       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'z500'), &
344       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'z200'), &
345       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'z100'), &
346       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'z50'), &
347       ctrl_out((/ 1, 7, 7, 10, 10, 10 /),'z10') /)
348
349
350  type(ctrl_out),save :: o_t_oce_sic    = ctrl_out((/ 1, 10, 10, 10, 10, 10 /),'t_oce_sic')
351
352  type(ctrl_out),save :: o_weakinv      = ctrl_out((/ 10, 1, 10, 10, 10, 10 /),'weakinv')
353  type(ctrl_out),save :: o_dthmin       = ctrl_out((/ 10, 1, 10, 10, 10, 10 /),'dthmin')
354  type(ctrl_out),save,dimension(4) :: o_u10_srf      = (/ ctrl_out((/ 10, 4, 10, 10, 10, 10 /),'u10_ter'), &
355       ctrl_out((/ 10, 4, 10, 10, 10, 10 /),'u10_lic'), &
356       ctrl_out((/ 10, 4, 10, 10, 10, 10 /),'u10_oce'), &
357       ctrl_out((/ 10, 4, 10, 10, 10, 10 /),'u10_sic') /)
358
359  type(ctrl_out),save,dimension(4) :: o_v10_srf      = (/ ctrl_out((/ 10, 4, 10, 10, 10, 10 /),'v10_ter'), &
360       ctrl_out((/ 10, 4, 10, 10, 10, 10 /),'v10_lic'), &
361       ctrl_out((/ 10, 4, 10, 10, 10, 10 /),'v10_oce'), &
362       ctrl_out((/ 10, 4, 10, 10, 10, 10 /),'v10_sic') /)
363
364  type(ctrl_out),save :: o_cldtau       = ctrl_out((/ 10, 5, 10, 10, 10, 10 /),'cldtau')                     
365  type(ctrl_out),save :: o_cldemi       = ctrl_out((/ 10, 5, 10, 10, 10, 10 /),'cldemi')
366  type(ctrl_out),save :: o_rh2m         = ctrl_out((/ 5, 5, 10, 10, 10, 10 /),'rh2m')
367  type(ctrl_out),save :: o_rh2m_min     = ctrl_out((/ 10, 5, 10, 10, 10, 10 /),'rh2m_min')
368  type(ctrl_out),save :: o_rh2m_max     = ctrl_out((/ 10, 5, 10, 10, 10, 10 /),'rh2m_max')
369  type(ctrl_out),save :: o_qsat2m       = ctrl_out((/ 10, 5, 10, 10, 10, 10 /),'qsat2m')
370  type(ctrl_out),save :: o_tpot         = ctrl_out((/ 10, 5, 10, 10, 10, 10 /),'tpot')
371  type(ctrl_out),save :: o_tpote        = ctrl_out((/ 10, 5, 10, 10, 10, 10 /),'tpote')
372  type(ctrl_out),save :: o_tke          = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'tke ')
373  type(ctrl_out),save :: o_tke_max      = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'tke_max')
374
375  type(ctrl_out),save,dimension(4) :: o_tke_srf      = (/ ctrl_out((/ 10, 4, 10, 10, 10, 10 /),'tke_ter'), &
376       ctrl_out((/ 10, 4, 10, 10, 10, 10 /),'tke_lic'), &
377       ctrl_out((/ 10, 4, 10, 10, 10, 10 /),'tke_oce'), &
378       ctrl_out((/ 10, 4, 10, 10, 10, 10 /),'tke_sic') /)
379
380  type(ctrl_out),save,dimension(4) :: o_tke_max_srf  = (/ ctrl_out((/ 10, 4, 10, 10, 10, 10 /),'tke_max_ter'), &
381       ctrl_out((/ 10, 4, 10, 10, 10, 10 /),'tke_max_lic'), &
382       ctrl_out((/ 10, 4, 10, 10, 10, 10 /),'tke_max_oce'), &
383       ctrl_out((/ 10, 4, 10, 10, 10, 10 /),'tke_max_sic') /)
384
385  type(ctrl_out),save :: o_kz           = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'kz')
386  type(ctrl_out),save :: o_kz_max       = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'kz_max')
387  type(ctrl_out),save :: o_SWnetOR      = ctrl_out((/ 10, 10, 2, 10, 10, 10 /),'SWnetOR')
388  type(ctrl_out),save :: o_SWdownOR     = ctrl_out((/ 10, 10, 2, 10, 10, 10 /),'SWdownOR')
389  type(ctrl_out),save :: o_LWdownOR     = ctrl_out((/ 10, 10, 2, 10, 10, 10 /),'LWdownOR')
390
391  type(ctrl_out),save :: o_snowl        = ctrl_out((/ 10, 1, 10, 10, 10, 10 /),'snowl')
392  type(ctrl_out),save :: o_cape_max     = ctrl_out((/ 10, 1, 10, 10, 10, 10 /),'cape_max')
393  type(ctrl_out),save :: o_solldown     = ctrl_out((/ 10, 1, 10, 10, 10, 10 /),'solldown')
394
395  type(ctrl_out),save :: o_dtsvdfo      = ctrl_out((/ 10, 10, 10, 10, 10, 10 /),'dtsvdfo')
396  type(ctrl_out),save :: o_dtsvdft      = ctrl_out((/ 10, 10, 10, 10, 10, 10 /),'dtsvdft')
397  type(ctrl_out),save :: o_dtsvdfg      = ctrl_out((/ 10, 10, 10, 10, 10, 10 /),'dtsvdfg')
398  type(ctrl_out),save :: o_dtsvdfi      = ctrl_out((/ 10, 10, 10, 10, 10, 10 /),'dtsvdfi')
399  type(ctrl_out),save :: o_rugs         = ctrl_out((/ 10, 10, 10, 10, 10, 10 /),'rugs')
400
401  type(ctrl_out),save :: o_topswad      = ctrl_out((/ 2, 10, 10, 10, 10, 10 /),'topswad')
402  type(ctrl_out),save :: o_topswai      = ctrl_out((/ 2, 10, 10, 10, 10, 10 /),'topswai')
403  type(ctrl_out),save :: o_solswad      = ctrl_out((/ 2, 10, 10, 10, 10, 10 /),'solswad')
404  type(ctrl_out),save :: o_solswai      = ctrl_out((/ 2, 10, 10, 10, 10, 10 /),'solswai')
405
406  type(ctrl_out),save,dimension(10) :: o_tausumaero  = (/ ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'OD550_ASBCM'), &
407       ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'OD550_ASPOMM'), &
408       ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'OD550_ASSO4M'), &
409       ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'OD550_CSSO4M'), &
410       ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'OD550_SSSSM'), &
411       ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'OD550_ASSSM'), &
412       ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'OD550_CSSSM'), &
413       ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'OD550_CIDUSTM'), &
414       ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'OD550_AIBCM'), &
415       ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'OD550_AIPOMM') /)
416
417  type(ctrl_out),save :: o_od550aer     = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'od550aer')
418  type(ctrl_out),save :: o_od865aer     = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'od865aer')
419  type(ctrl_out),save :: o_absvisaer    = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'absvisaer')
420  type(ctrl_out),save :: o_od550lt1aer  = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'od550lt1aer')
421
422  type(ctrl_out),save :: o_sconcso4     = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'sconcso4')
423  type(ctrl_out),save :: o_sconcoa      = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'sconcoa')
424  type(ctrl_out),save :: o_sconcbc      = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'sconcbc')
425  type(ctrl_out),save :: o_sconcss      = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'sconcss')
426  type(ctrl_out),save :: o_sconcdust    = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'sconcdust')
427  type(ctrl_out),save :: o_concso4      = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'concso4')
428  type(ctrl_out),save :: o_concoa       = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'concoa')
429  type(ctrl_out),save :: o_concbc       = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'concbc')
430  type(ctrl_out),save :: o_concss       = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'concss')
431  type(ctrl_out),save :: o_concdust     = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'concdust')
432  type(ctrl_out),save :: o_loadso4      = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'loadso4')
433  type(ctrl_out),save :: o_loadoa       = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'loadoa')
434  type(ctrl_out),save :: o_loadbc       = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'loadbc')
435  type(ctrl_out),save :: o_loadss       = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'loadss')
436  type(ctrl_out),save :: o_loaddust     = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'loaddust')
437
438  type(ctrl_out),save :: o_swtoaas_nat  = ctrl_out((/ 4, 6, 10, 10, 10, 10 /),'swtoaas_nat')
439  type(ctrl_out),save :: o_swsrfas_nat  = ctrl_out((/ 4, 6, 10, 10, 10, 10 /),'swsrfas_nat')
440  type(ctrl_out),save :: o_swtoacs_nat  = ctrl_out((/ 4, 6, 10, 10, 10, 10 /),'swtoacs_nat')
441  type(ctrl_out),save :: o_swsrfcs_nat  = ctrl_out((/ 4, 6, 10, 10, 10, 10 /),'swsrfcs_nat')
442
443  type(ctrl_out),save :: o_swtoaas_ant  = ctrl_out((/ 4, 6, 10, 10, 10, 10 /),'swtoaas_ant')
444  type(ctrl_out),save :: o_swsrfas_ant  = ctrl_out((/ 4, 6, 10, 10, 10, 10 /),'swsrfas_ant')
445  type(ctrl_out),save :: o_swtoacs_ant  = ctrl_out((/ 4, 6, 10, 10, 10, 10 /),'swtoacs_ant')
446  type(ctrl_out),save :: o_swsrfcs_ant  = ctrl_out((/ 4, 6, 10, 10, 10, 10 /),'swsrfcs_ant')
447
448  type(ctrl_out),save :: o_swtoacf_nat  = ctrl_out((/ 4, 6, 10, 10, 10, 10 /),'swtoacf_nat')
449  type(ctrl_out),save :: o_swsrfcf_nat  = ctrl_out((/ 4, 6, 10, 10, 10, 10 /),'swsrfcf_nat')
450  type(ctrl_out),save :: o_swtoacf_ant  = ctrl_out((/ 4, 6, 10, 10, 10, 10 /),'swtoacf_ant')
451  type(ctrl_out),save :: o_swsrfcf_ant  = ctrl_out((/ 4, 6, 10, 10, 10, 10 /),'swsrfcf_ant')
452  type(ctrl_out),save :: o_swtoacf_zero = ctrl_out((/ 4, 6, 10, 10, 10, 10 /),'swtoacf_zero')
453  type(ctrl_out),save :: o_swsrfcf_zero = ctrl_out((/ 4, 6, 10, 10, 10, 10 /),'swsrfcf_zero')
454
455  type(ctrl_out),save :: o_cldncl       = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'cldncl')
456  type(ctrl_out),save :: o_reffclwtop   = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'reffclwtop')
457  type(ctrl_out),save :: o_cldnvi       = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'cldnvi')
458  type(ctrl_out),save :: o_lcc          = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'lcc')
459
460
461!!!!!!!!!!!!!!!!!!!!!! 3D !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
462  type(ctrl_out),save :: o_ec550aer     = ctrl_out((/ 2, 6, 10, 10, 10, 10 /),'ec550aer')
463  type(ctrl_out),save :: o_lwcon        = ctrl_out((/ 2, 5, 10, 10, 10, 10 /),'lwcon')
464  type(ctrl_out),save :: o_iwcon        = ctrl_out((/ 2, 5, 10, 10, 10, 10 /),'iwcon')
465  type(ctrl_out),save :: o_temp         = ctrl_out((/ 2, 3, 4, 10, 10, 10 /),'temp')
466  type(ctrl_out),save :: o_theta        = ctrl_out((/ 2, 3, 4, 10, 10, 10 /),'theta')
467  type(ctrl_out),save :: o_ovap         = ctrl_out((/ 2, 3, 4, 10, 10, 10 /),'ovap')
468  type(ctrl_out),save :: o_ovapinit     = ctrl_out((/ 2, 10, 10, 10, 10, 10 /),'ovapinit')
469  type(ctrl_out),save :: o_oliq         = ctrl_out((/ 2, 3, 4, 10, 10, 10 /),'oliq')
470  type(ctrl_out),save :: o_wvapp        = ctrl_out((/ 2, 10, 10, 10, 10, 10 /),'wvapp')
471  type(ctrl_out),save :: o_geop         = ctrl_out((/ 2, 3, 10, 10, 10, 10 /),'geop')
472  type(ctrl_out),save :: o_vitu         = ctrl_out((/ 2, 3, 4, 6, 10, 10 /),'vitu')
473  type(ctrl_out),save :: o_vitv         = ctrl_out((/ 2, 3, 4, 6, 10, 10 /),'vitv')
474  type(ctrl_out),save :: o_vitw         = ctrl_out((/ 2, 3, 10, 6, 10, 10 /),'vitw')
475  type(ctrl_out),save :: o_pres         = ctrl_out((/ 2, 3, 10, 10, 10, 10 /),'pres')
476  type(ctrl_out),save :: o_paprs        = ctrl_out((/ 2, 3, 10, 10, 10, 10 /),'paprs')
477  type(ctrl_out),save :: o_mass        = ctrl_out((/ 2, 3, 10, 10, 10, 10 /),'mass')
478  type(ctrl_out),save :: o_zfull       = ctrl_out((/ 2, 3, 10, 10, 10, 10 /),'zfull')
479  type(ctrl_out),save :: o_zhalf       = ctrl_out((/ 2, 3, 10, 10, 10, 10 /),'zhalf')
480  type(ctrl_out),save :: o_rneb         = ctrl_out((/ 2, 5, 10, 10, 10, 10 /),'rneb')
481  type(ctrl_out),save :: o_rnebcon      = ctrl_out((/ 2, 5, 10, 10, 10, 10 /),'rnebcon')
482  type(ctrl_out),save :: o_rhum         = ctrl_out((/ 2, 5, 10, 10, 10, 10 /),'rhum')
483  type(ctrl_out),save :: o_ozone        = ctrl_out((/ 2, 10, 10, 10, 10, 10 /),'ozone')
484  type(ctrl_out),save :: o_ozone_light  = ctrl_out((/ 2, 10, 10, 10, 10, 10 /),'ozone_daylight')
485  type(ctrl_out),save :: o_upwd         = ctrl_out((/ 2, 10, 10, 10, 10, 10 /),'upwd')
486  type(ctrl_out),save :: o_dtphy        = ctrl_out((/ 2, 10, 10, 10, 10, 10 /),'dtphy')
487  type(ctrl_out),save :: o_dqphy        = ctrl_out((/ 2, 10, 10, 10, 10, 10 /),'dqphy')
488  type(ctrl_out),save :: o_pr_con_l     = ctrl_out((/ 2, 10, 10, 10, 10, 10 /),'pr_con_l')
489  type(ctrl_out),save :: o_pr_con_i     = ctrl_out((/ 2, 10, 10, 10, 10, 10 /),'pr_con_i')
490  type(ctrl_out),save :: o_pr_lsc_l     = ctrl_out((/ 2, 10, 10, 10, 10, 10 /),'pr_lsc_l')
491  type(ctrl_out),save :: o_pr_lsc_i     = ctrl_out((/ 2, 10, 10, 10, 10, 10 /),'pr_lsc_i')
492  type(ctrl_out),save :: o_re           = ctrl_out((/ 5, 10, 10, 10, 10, 10 /),'re')
493  type(ctrl_out),save :: o_fl           = ctrl_out((/ 5, 10, 10, 10, 10, 10 /),'fl')
494  type(ctrl_out),save :: o_scdnc        = ctrl_out((/ 2,  6, 10, 10, 10, 10 /),'scdnc')
495  type(ctrl_out),save :: o_reffclws     = ctrl_out((/ 2,  6, 10, 10, 10, 10 /),'reffclws')
496  type(ctrl_out),save :: o_reffclwc     = ctrl_out((/ 2,  6, 10, 10, 10, 10 /),'reffclwc')
497  type(ctrl_out),save :: o_lcc3d        = ctrl_out((/ 2,  6, 10, 10, 10, 10 /),'lcc3d')
498  type(ctrl_out),save :: o_lcc3dcon     = ctrl_out((/ 2,  6, 10, 10, 10, 10 /),'lcc3dcon')
499  type(ctrl_out),save :: o_lcc3dstra    = ctrl_out((/ 2,  6, 10, 10, 10, 10 /),'lcc3dstra')
500!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
501
502  type(ctrl_out),save,dimension(4) :: o_albe_srf     = (/ ctrl_out((/ 3, 7, 10, 7, 10, 10 /),'albe_ter'), &
503       ctrl_out((/ 3, 7, 10, 7, 10, 10 /),'albe_lic'), &
504       ctrl_out((/ 3, 7, 10, 7, 10, 10 /),'albe_oce'), &
505       ctrl_out((/ 3, 7, 10, 7, 10, 10 /),'albe_sic') /)
506
507  type(ctrl_out),save,dimension(4) :: o_ages_srf     = (/ ctrl_out((/ 10, 10, 10, 10, 10, 10 /),'ages_ter'), &
508       ctrl_out((/ 3, 10, 10, 10, 10, 10 /),'ages_lic'), &
509       ctrl_out((/ 10, 10, 10, 10, 10, 10 /),'ages_oce'), &
510       ctrl_out((/ 3, 10, 10, 10, 10, 10 /),'ages_sic') /)
511
512  type(ctrl_out),save,dimension(4) :: o_rugs_srf     = (/ ctrl_out((/ 3, 6, 10, 10, 10, 10 /),'rugs_ter'), &
513       ctrl_out((/ 3, 6, 10, 10, 10, 10 /),'rugs_lic'), &
514       ctrl_out((/ 3, 6, 10, 10, 10, 10 /),'rugs_oce'), &
515       ctrl_out((/ 3, 6, 10, 10, 10, 10 /),'rugs_sic') /)
516
517  type(ctrl_out),save :: o_alb1         = ctrl_out((/ 3, 10, 10, 10, 10, 10 /),'alb1')
518  type(ctrl_out),save :: o_alb2       = ctrl_out((/ 3, 10, 10, 10, 10, 10 /),'alb2')
519
520  type(ctrl_out),save :: o_clwcon       = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'clwcon')
521  type(ctrl_out),save :: o_Ma           = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'Ma')
522  type(ctrl_out),save :: o_dnwd         = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dnwd')
523  type(ctrl_out),save :: o_dnwd0        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dnwd0')
524  type(ctrl_out),save :: o_mc           = ctrl_out((/ 4, 5, 10, 10, 10, 10 /),'mc')
525  type(ctrl_out),save :: o_ftime_con    = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'ftime_con')
526  type(ctrl_out),save :: o_dtdyn        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dtdyn')
527  type(ctrl_out),save :: o_dqdyn        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dqdyn')
528  type(ctrl_out),save :: o_dudyn        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dudyn')  !AXC
529  type(ctrl_out),save :: o_dvdyn        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dvdyn')  !AXC
530  type(ctrl_out),save :: o_dtcon        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dtcon')
531  type(ctrl_out),save :: o_ducon        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'ducon')
532  type(ctrl_out),save :: o_dvcon        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dvcon')
533  type(ctrl_out),save :: o_dqcon        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dqcon')
534  type(ctrl_out),save :: o_dtwak        = ctrl_out((/ 4, 5, 10, 10, 10, 10 /),'dtwak')
535  type(ctrl_out),save :: o_dqwak        = ctrl_out((/ 4, 5, 10, 10, 10, 10 /),'dqwak')
536  type(ctrl_out),save :: o_wake_h       = ctrl_out((/ 4, 5, 10, 10, 10, 10 /),'wake_h')
537  type(ctrl_out),save :: o_wake_s       = ctrl_out((/ 4, 5, 10, 10, 10, 10 /),'wake_s')
538  type(ctrl_out),save :: o_wake_deltat  = ctrl_out((/ 4, 5, 10, 10, 10, 10 /),'wake_deltat')
539  type(ctrl_out),save :: o_wake_deltaq  = ctrl_out((/ 4, 5, 10, 10, 10, 10 /),'wake_deltaq')
540  type(ctrl_out),save :: o_wake_omg     = ctrl_out((/ 4, 5, 10, 10, 10, 10 /),'wake_omg')
541  type(ctrl_out),save :: o_Vprecip      = ctrl_out((/ 10, 10, 10, 10, 10, 10 /),'Vprecip')
542  type(ctrl_out),save :: o_ftd          = ctrl_out((/ 4, 5, 10, 10, 10, 10 /),'ftd')
543  type(ctrl_out),save :: o_fqd          = ctrl_out((/ 4, 5, 10, 10, 10, 10 /),'fqd')
544  type(ctrl_out),save :: o_dtlsc        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dtlsc')
545  type(ctrl_out),save :: o_dtlschr      = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dtlschr')
546  type(ctrl_out),save :: o_dqlsc        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dqlsc')
547  type(ctrl_out),save :: o_dtvdf        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dtvdf')
548  type(ctrl_out),save :: o_dqvdf        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dqvdf')
549  type(ctrl_out),save :: o_dteva        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dteva')
550  type(ctrl_out),save :: o_dqeva        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dqeva')
551
552!!!!!!!!!!!!!!!! Specifique thermiques
553  type(ctrl_out),save :: o_dqlscth        = ctrl_out((/ 10, 10, 10, 10, 10, 10 /),'dqlscth')
554  type(ctrl_out),save :: o_dqlscst        = ctrl_out((/ 10, 10, 10, 10, 10, 10 /),'dqlscst')
555  type(ctrl_out),save :: o_dtlscth        = ctrl_out((/ 10, 10, 10, 10, 10, 10 /),'dtlscth')
556  type(ctrl_out),save :: o_dtlscst        = ctrl_out((/ 10, 10, 10, 10, 10, 10 /),'dtlscst')
557  type(ctrl_out),save :: o_plulth        = ctrl_out((/ 10, 10, 10, 10, 10, 10 /),'plulth')
558  type(ctrl_out),save :: o_plulst        = ctrl_out((/ 10, 10, 10, 10, 10, 10 /),'plulst')
559  type(ctrl_out),save :: o_lmaxth        = ctrl_out((/ 10, 10, 10, 10, 10, 10 /),'lmaxth')
560  type(ctrl_out),save :: o_ptconvth        = ctrl_out((/ 10, 10, 10, 10, 10, 10 /),'ptconvth')
561!!!!!!!!!!!!!!!!!!!!!!!!
562
563
564  type(ctrl_out),save :: o_ptconv       = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'ptconv')
565  type(ctrl_out),save :: o_ratqs        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'ratqs')
566  type(ctrl_out),save :: o_dtthe        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dtthe')
567  type(ctrl_out),save :: o_f_th         = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'f_th')
568  type(ctrl_out),save :: o_e_th         = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'e_th')
569  type(ctrl_out),save :: o_w_th         = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'w_th')
570  type(ctrl_out),save :: o_ftime_th     = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'ftime_th')
571  type(ctrl_out),save :: o_q_th         = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'q_th')
572  type(ctrl_out),save :: o_a_th         = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'a_th')
573  type(ctrl_out),save :: o_d_th         = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'d_th')
574  type(ctrl_out),save :: o_f0_th        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'f0_th')
575  type(ctrl_out),save :: o_zmax_th      = ctrl_out((/ 4,  4,  4,  5, 10, 10 /),'zmax_th')
576  type(ctrl_out),save :: o_dqthe        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dqthe')
577  type(ctrl_out),save :: o_dtajs        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dtajs')
578  type(ctrl_out),save :: o_dqajs        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dqajs')
579  type(ctrl_out),save :: o_dtswr        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dtswr')
580  type(ctrl_out),save :: o_dtsw0        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dtsw0')
581  type(ctrl_out),save :: o_dtlwr        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dtlwr')
582  type(ctrl_out),save :: o_dtlw0        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dtlw0')
583  type(ctrl_out),save :: o_dtec         = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dtec')
584  type(ctrl_out),save :: o_duvdf        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'duvdf')
585  type(ctrl_out),save :: o_dvvdf        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dvvdf')
586  type(ctrl_out),save :: o_duoro        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'duoro')
587  type(ctrl_out),save :: o_dvoro        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dvoro')
588  type(ctrl_out),save :: o_dulif        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dulif')
589  type(ctrl_out),save :: o_dvlif        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dvlif')
590  type(ctrl_out),save :: o_duhin        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'duhin')
591  type(ctrl_out),save :: o_dvhin        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dvhin')
592  type(ctrl_out),save :: o_dtoro        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dtoro')
593  type(ctrl_out),save :: o_dtlif        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dtlif')
594  type(ctrl_out),save :: o_dthin        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dthin')
595
596  type(ctrl_out),save,allocatable :: o_trac(:)
597
598  type(ctrl_out),save :: o_rsu        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'rsu')
599  type(ctrl_out),save :: o_rsd        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'rsd')
600  type(ctrl_out),save :: o_rlu        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'rlu')
601  type(ctrl_out),save :: o_rld        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'rld')
602  type(ctrl_out),save :: o_rsucs      = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'rsucs')
603  type(ctrl_out),save :: o_rsdcs      = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'rsdcs')
604  type(ctrl_out),save :: o_rlucs      = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'rlucs')
605  type(ctrl_out),save :: o_rldcs      = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'rldcs')
606
607  type(ctrl_out),save :: o_tnt          = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'tnt')
608  type(ctrl_out),save :: o_tntc         = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'tntc')
609  type(ctrl_out),save :: o_tntr        = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'tntr')
610  type(ctrl_out),save :: o_tntscpbl          = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'tntscpbl')
611
612  type(ctrl_out),save :: o_tnhus          = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'tnhus')
613  type(ctrl_out),save :: o_tnhusc         = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'tnhusc')
614  type(ctrl_out),save :: o_tnhusscpbl     = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'tnhusscpbl')
615
616  type(ctrl_out),save :: o_evu          = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'evu')
617
618  type(ctrl_out),save :: o_h2o          = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'h2o')
619
620  type(ctrl_out),save :: o_mcd          = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'mcd')
621  type(ctrl_out),save :: o_dmc          = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'dmc')
622  type(ctrl_out),save :: o_ref_liq      = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'ref_liq')
623  type(ctrl_out),save :: o_ref_ice      = ctrl_out((/ 4, 10, 10, 10, 10, 10 /),'ref_ice')
624
625  type(ctrl_out),save :: o_rsut4co2     = ctrl_out((/ 5, 10, 10, 10, 10, 10 /),'rsut4co2')
626  type(ctrl_out),save :: o_rlut4co2     = ctrl_out((/ 5, 10, 10, 10, 10, 10 /),'rlut4co2')
627  type(ctrl_out),save :: o_rsutcs4co2   = ctrl_out((/ 5, 10, 10, 10, 10, 10 /),'rsutcs4co2')
628  type(ctrl_out),save :: o_rlutcs4co2   = ctrl_out((/ 5, 10, 10, 10, 10, 10 /),'rlutcs4co2')
629
630  type(ctrl_out),save :: o_rsu4co2     = ctrl_out((/ 5, 10, 10, 10, 10, 10 /),'rsu4co2')
631  type(ctrl_out),save :: o_rlu4co2     = ctrl_out((/ 5, 10, 10, 10, 10, 10 /),'rlu4co2')
632  type(ctrl_out),save :: o_rsucs4co2   = ctrl_out((/ 5, 10, 10, 10, 10, 10 /),'rsucs4co2')
633  type(ctrl_out),save :: o_rlucs4co2   = ctrl_out((/ 5, 10, 10, 10, 10, 10 /),'rlucs4co2')
634  type(ctrl_out),save :: o_rsd4co2     = ctrl_out((/ 5, 10, 10, 10, 10, 10 /),'rsd4co2')
635  type(ctrl_out),save :: o_rld4co2     = ctrl_out((/ 5, 10, 10, 10, 10, 10 /),'rld4co2')
636  type(ctrl_out),save :: o_rsdcs4co2   = ctrl_out((/ 5, 10, 10, 10, 10, 10 /),'rsdcs4co2')
637  type(ctrl_out),save :: o_rldcs4co2   = ctrl_out((/ 5, 10, 10, 10, 10, 10 /),'rldcs4co2')
638
639
640CONTAINS
641
642!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
643!!!!!!!!! Ouverture des fichier et definition des variable de sortie !!!!!!!!
644  !! histbeg, histvert et histdef
645!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
646
647  SUBROUTINE phys_output_open(rlon,rlat,pim,tabij,ipt,jpt,plon,plat, &
648       jjmp1,nlevSTD,clevSTD,nbteta, &
649       ctetaSTD, dtime, ok_veget, &
650       type_ocean, iflag_pbl,ok_mensuel,ok_journe, &
651       ok_hf,ok_instan,ok_LES,ok_ade,ok_aie, read_climoz, &
652       phys_out_filestations, &
653       new_aod, aerosol_couple)   
654
655    USE iophy
656    USE dimphy
657    USE infotrac
658    USE ioipsl
659!    USE phys_cal_mod, only : hour
660    USE mod_phys_lmdz_para
661    USE aero_mod, only : naero_spc,name_aero
662
663    IMPLICIT NONE
664    include "dimensions.h"
665    include "temps.h"
666    include "indicesol.h"
667    include "clesphys.h"
668    include "thermcell.h"
669    include "comvert.h"
670    include "iniprint.h"
671
672    real,dimension(klon),intent(in) :: rlon
673    real,dimension(klon),intent(in) :: rlat
674    integer, intent(in)             :: pim
675    INTEGER, DIMENSION(pim)            :: tabij
676    INTEGER,dimension(pim), intent(in) :: ipt, jpt
677    REAL,dimension(pim), intent(in) :: plat, plon
678    REAL,dimension(pim,2) :: plat_bounds, plon_bounds
679
680    integer                               :: jjmp1
681    integer                               :: nbteta, nlevSTD, radpas
682    logical                               :: ok_mensuel, ok_journe, ok_hf, ok_instan
683    logical                               :: ok_LES,ok_ade,ok_aie
684    logical                               :: new_aod, aerosol_couple
685    integer, intent(in)::  read_climoz ! read ozone climatology
686    !     Allowed values are 0, 1 and 2
687    !     0: do not read an ozone climatology
688    !     1: read a single ozone climatology that will be used day and night
689    !     2: read two ozone climatologies, the average day and night
690    !     climatology and the daylight climatology
691
692    real                                  :: dtime
693    integer                               :: idayref
694    real                                  :: zjulian
695    real, dimension(klev)                 :: Ahyb, Bhyb, Alt
696    character(len=4), dimension(nlevSTD)  :: clevSTD
697    integer                               :: nsrf, k, iq, iiq, iff, i, j, ilev
698    integer                               :: naero
699    logical                               :: ok_veget
700    integer                               :: iflag_pbl
701    CHARACTER(len=4)                      :: bb2
702    CHARACTER(len=2)                      :: bb3
703    character(len=6)                      :: type_ocean
704    CHARACTER(len=3)                      :: ctetaSTD(nbteta)
705    real, dimension(nfiles)               :: ecrit_files
706    CHARACTER(len=20), dimension(nfiles)  :: phys_out_filenames
707    INTEGER, dimension(iim*jjmp1)         ::  ndex2d
708    INTEGER, dimension(iim*jjmp1*klev)    :: ndex3d
709    integer                               :: imin_ins, imax_ins
710    integer                               :: jmin_ins, jmax_ins
711    integer, dimension(nfiles)            :: phys_out_levmin, phys_out_levmax
712    integer, dimension(nfiles)            :: phys_out_filelevels
713    CHARACTER(len=20), dimension(nfiles)  :: type_ecri_files, phys_out_filetypes
714    character(len=20), dimension(nfiles)  :: chtimestep   = (/ 'DefFreq', 'DefFreq','DefFreq', 'DefFreq', 'DefFreq', 'DefFreq' /)
715    logical, dimension(nfiles)            :: phys_out_filekeys
716    logical, dimension(nfiles)            :: phys_out_filestations
717
718!!!!!!!!!! stockage dans une region limitee pour chaque fichier !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
719    !                 entre [phys_out_lonmin,phys_out_lonmax] et [phys_out_latmin,phys_out_latmax]
720
721    logical, dimension(nfiles), save  :: phys_out_regfkey       = (/ .false., .false., .false.,  .false., .false., .false. /)
722    real, dimension(nfiles), save     :: phys_out_lonmin        = (/   -180.,   -180.,   -180.,    -180.,   -180.,   -180. /)
723    real, dimension(nfiles), save     :: phys_out_lonmax        = (/    180.,    180.,    180.,     180.,    180.,    180. /)
724    real, dimension(nfiles), save     :: phys_out_latmin        = (/    -90.,    -90.,    -90.,     -90.,    -90.,    -90. /)
725    real, dimension(nfiles), save     :: phys_out_latmax        = (/     90.,     90.,     90.,     90.,     90.,     90. /)
726
727    write(lunout,*) 'Debut phys_output_mod.F90'
728    ! Initialisations (Valeurs par defaut
729
730    if (.not. allocated(o_trac)) ALLOCATE(o_trac(nqtot))
731
732    levmax = (/ klev, klev, klev, klev, klev, klev /)
733
734    phys_out_filenames(1) = 'histmth'
735    phys_out_filenames(2) = 'histday'
736    phys_out_filenames(3) = 'histhf'
737    phys_out_filenames(4) = 'histins'
738    phys_out_filenames(5) = 'histLES'
739    phys_out_filenames(6) = 'histstn'
740
741    type_ecri(1) = 'ave(X)'
742    type_ecri(2) = 'ave(X)'
743    type_ecri(3) = 'ave(X)'
744    type_ecri(4) = 'inst(X)'
745    type_ecri(5) = 'ave(X)'
746    type_ecri(6) = 'inst(X)'
747
748    clef_files(1) = ok_mensuel
749    clef_files(2) = ok_journe
750    clef_files(3) = ok_hf
751    clef_files(4) = ok_instan
752    clef_files(5) = ok_LES
753    clef_files(6) = ok_instan
754
755    !sortir des fichiers "stations" si clef_stations(:)=.TRUE.
756    clef_stations(1) = .FALSE.
757    clef_stations(2) = .FALSE.
758    clef_stations(3) = .FALSE.
759    clef_stations(4) = .FALSE.
760    clef_stations(5) = .FALSE.
761    clef_stations(6) = .FALSE.
762
763    lev_files(1) = lev_histmth
764    lev_files(2) = lev_histday
765    lev_files(3) = lev_histhf
766    lev_files(4) = lev_histins
767    lev_files(5) = lev_histLES
768    lev_files(6) = lev_histins
769
770    ecrit_files(1) = ecrit_mth
771    ecrit_files(2) = ecrit_day
772    ecrit_files(3) = ecrit_hf
773    ecrit_files(4) = ecrit_ins
774    ecrit_files(5) = ecrit_LES
775    ecrit_files(6) = ecrit_ins
776
777    !! Lectures des parametres de sorties dans physiq.def
778
779    call getin('phys_out_regfkey',phys_out_regfkey)
780    call getin('phys_out_lonmin',phys_out_lonmin)
781    call getin('phys_out_lonmax',phys_out_lonmax)
782    call getin('phys_out_latmin',phys_out_latmin)
783    call getin('phys_out_latmax',phys_out_latmax)
784    phys_out_levmin(:)=levmin(:)
785    call getin('phys_out_levmin',levmin)
786    phys_out_levmax(:)=levmax(:)
787    call getin('phys_out_levmax',levmax)
788    call getin('phys_out_filenames',phys_out_filenames)
789    phys_out_filekeys(:)=clef_files(:)
790    call getin('phys_out_filekeys',clef_files)
791    phys_out_filestations(:)=clef_stations(:)
792    call getin('phys_out_filestations',clef_stations)
793    phys_out_filelevels(:)=lev_files(:)
794    call getin('phys_out_filelevels',lev_files)
795    call getin('phys_out_filetimesteps',chtimestep)
796    phys_out_filetypes(:)=type_ecri(:)
797    call getin('phys_out_filetypes',type_ecri)
798
799    type_ecri_files(:)=type_ecri(:)
800
801    write(lunout,*)'phys_out_lonmin=',phys_out_lonmin
802    write(lunout,*)'phys_out_lonmax=',phys_out_lonmax
803    write(lunout,*)'phys_out_latmin=',phys_out_latmin
804    write(lunout,*)'phys_out_latmax=',phys_out_latmax
805    write(lunout,*)'phys_out_filenames=',phys_out_filenames
806    write(lunout,*)'phys_out_filetypes=',type_ecri
807    write(lunout,*)'phys_out_filekeys=',clef_files
808    write(lunout,*)'phys_out_filestations=',clef_stations
809    write(lunout,*)'phys_out_filelevels=',lev_files
810
811!!!!!!!!!!!!!!!!!!!!!!! Boucle sur les fichiers !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
812    ! Appel de histbeg et histvert pour creer le fichier et les niveaux verticaux !!
813    ! Appel des histbeg pour definir les variables (nom, moy ou inst, freq de sortie ..
814!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
815
816    zdtime = dtime         ! Frequence ou l on moyenne
817
818    ! Calcul des Ahyb, Bhyb et Alt
819    do k=1,klev
820       Ahyb(k)=(ap(k)+ap(k+1))/2.
821       Bhyb(k)=(bp(k)+bp(k+1))/2.
822       Alt(k)=log(preff/presnivs(k))*8.
823    enddo
824    !          if(prt_level.ge.1) then
825    write(lunout,*)'Ap Hybrid = ',Ahyb(1:klev)
826    write(lunout,*)'Bp Hybrid = ',Bhyb(1:klev)
827    write(lunout,*)'Alt approx des couches pour une haut d echelle de 8km = ',Alt(1:klev)
828    !          endif
829    DO iff=1,nfiles
830
831       ! Calculate ecrit_files for all files
832       if ( chtimestep(iff).eq.'DefFreq' ) then
833          ! Par defaut ecrit_files = (ecrit_mensuel ecrit_jour ecrit_hf ...)*86400.
834          ecrit_files(iff)=ecrit_files(iff)*86400.
835       else
836          call convers_timesteps(chtimestep(iff),dtime,ecrit_files(iff))
837       endif
838       write(lunout,*)'ecrit_files(',iff,')= ',ecrit_files(iff)
839
840       zoutm(iff) = ecrit_files(iff) ! Frequence ou l on ecrit en seconde
841
842       IF (clef_files(iff)) THEN
843
844          idayref = day_ref
845          CALL ymds2ju(annee_ref, 1, idayref, 0.0, zjulian)       
846! correction pour l heure initiale                               !jyg
847!                                                                !jyg
848!      CALL ymds2ju(annee_ref, 1, idayref, hour, zjulian)         !jyg
849
850!!!!!!!!!!!!!!!!! Traitement dans le cas ou l'on veut stocker sur un domaine limite !!
851!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
852          if (phys_out_regfkey(iff)) then
853
854             imin_ins=1
855             imax_ins=iim
856             jmin_ins=1
857             jmax_ins=jjmp1
858
859             ! correction abderr       
860             do i=1,iim
861                write(lunout,*)'io_lon(i)=',io_lon(i)
862                if (io_lon(i).le.phys_out_lonmin(iff)) imin_ins=i
863                if (io_lon(i).le.phys_out_lonmax(iff)) imax_ins=i+1
864             enddo
865
866             do j=1,jjmp1
867                write(lunout,*)'io_lat(j)=',io_lat(j)
868                if (io_lat(j).ge.phys_out_latmin(iff)) jmax_ins=j+1
869                if (io_lat(j).ge.phys_out_latmax(iff)) jmin_ins=j
870             enddo
871
872             write(lunout,*)'On stoke le fichier histoire numero ',iff,' sur ', &
873                  imin_ins,imax_ins,jmin_ins,jmax_ins
874             write(lunout,*)'longitudes : ', &
875                  io_lon(imin_ins),io_lon(imax_ins), &
876                  'latitudes : ', &
877                  io_lat(jmax_ins),io_lat(jmin_ins)
878
879             CALL histbeg(phys_out_filenames(iff),iim,io_lon,jjmp1,io_lat, &
880                  imin_ins,imax_ins-imin_ins+1, &
881                  jmin_ins,jmax_ins-jmin_ins+1, &
882                  itau_phy,zjulian,dtime,nhorim(iff),nid_files(iff))
883!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
884             !IM fichiers stations
885          else if (clef_stations(iff)) THEN
886
887             write(lunout,*)'phys_output_mod phys_out_filenames=',phys_out_filenames(iff)
888
889             call histbeg_phy_all(rlon,rlat,pim,tabij,ipt,jpt,plon,plat,plon_bounds,plat_bounds, &
890                  phys_out_filenames(iff), &
891                  itau_phy,zjulian,dtime,nhorim(iff),nid_files(iff))
892          else
893             CALL histbeg_phy(phys_out_filenames(iff),itau_phy,zjulian,dtime,nhorim(iff),nid_files(iff))
894          endif
895
896          CALL histvert(nid_files(iff), "presnivs", "Vertical levels", "Pa", &
897               levmax(iff) - levmin(iff) + 1, &
898               presnivs(levmin(iff):levmax(iff)), nvertm(iff),"down")
899
900!!!!!!!!!!!!! Traitement des champs 3D pour histhf !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
901!!!!!!!!!!!!!!! A Revoir plus tard !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
902          !          IF (iff.eq.3.and.lev_files(iff).ge.4) THEN
903          !          CALL histbeg_phy("histhf3d",itau_phy, &
904          !     &                     zjulian, dtime, &
905          !     &                     nhorim, nid_hf3d)
906
907          !         CALL histvert(nid_hf3d, "presnivs", &
908          !     &                 "Vertical levels", "mb", &
909          !     &                 klev, presnivs/100., nvertm)
910          !          ENDIF
911          !
912!!!! Composentes de la coordonnee sigma-hybride
913          CALL histvert(nid_files(iff), "Ahyb","Ahyb comp of Hyb Cord ", "Pa", &
914               levmax(iff) - levmin(iff) + 1,Ahyb,nvertap(iff))
915
916          CALL histvert(nid_files(iff), "Bhyb","Bhyb comp of Hyb Cord", " ", &
917               levmax(iff) - levmin(iff) + 1,Bhyb,nvertbp(iff))
918
919          CALL histvert(nid_files(iff), "Alt","Height approx for scale heigh of 8km at levels", "Km", &
920               levmax(iff) - levmin(iff) + 1,Alt,nvertAlt(iff))
921
922          !   CALL histvert(nid_files(iff), "preff","Reference pressure", "Pa", &
923          !                 1,preff,nvertp0(iff))
924!!! Champs 1D !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
925          IF (.NOT.clef_stations(iff)) THEN
926             !
927             !IM: there is no way to have one single value in a netcdf file
928             !
929             type_ecri(1) = 'once'
930             type_ecri(2) = 'once'
931             type_ecri(3) = 'once'
932             type_ecri(4) = 'once'
933             type_ecri(5) = 'once'
934             type_ecri(6) = 'once'
935             CALL histdef2d(iff,clef_stations(iff),o_aire%flag,o_aire%name,"Grid area", "-")
936             CALL histdef2d(iff,clef_stations(iff),o_contfracATM%flag,o_contfracATM%name,"% sfce ter+lic", "-")
937          ENDIF
938          type_ecri(:) = type_ecri_files(:)
939
940!!! Champs 2D !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
941          CALL histdef2d(iff,clef_stations(iff),o_phis%flag,o_phis%name,"Surface geop.height", "m2/s2" )
942          CALL histdef2d(iff,clef_stations(iff),o_contfracOR%flag,o_contfracOR%name,"% sfce terre OR", "-" )
943          CALL histdef2d(iff,clef_stations(iff),o_aireTER%flag,o_aireTER%name,"Grid area CONT", "-" )
944          CALL histdef2d(iff,clef_stations(iff),o_flat%flag,o_flat%name, "Latent heat flux", "W/m2")
945          CALL histdef2d(iff,clef_stations(iff),o_slp%flag,o_slp%name, "Sea Level Pressure", "Pa" )
946          CALL histdef2d(iff,clef_stations(iff),o_tsol%flag,o_tsol%name, "Surface Temperature", "K")
947          CALL histdef2d(iff,clef_stations(iff),o_t2m%flag,o_t2m%name, "Temperature 2m", "K" )
948          IF (.NOT.clef_stations(iff)) THEN
949             !
950             !IM: there is no way to have one single value in a netcdf file
951             !
952             type_ecri(1) = 't_min(X)'
953             type_ecri(2) = 't_min(X)'
954             type_ecri(3) = 't_min(X)'
955             type_ecri(4) = 't_min(X)'
956             type_ecri(5) = 't_min(X)'
957             type_ecri(6) = 't_min(X)'
958             CALL histdef2d(iff,clef_stations(iff),o_t2m_min%flag,o_t2m_min%name, "Temp 2m min", "K" )
959             type_ecri(1) = 't_max(X)'
960             type_ecri(2) = 't_max(X)'
961             type_ecri(3) = 't_max(X)'
962             type_ecri(4) = 't_max(X)'
963             type_ecri(5) = 't_max(X)'
964             type_ecri(6) = 't_max(X)'
965             CALL histdef2d(iff,clef_stations(iff),o_t2m_max%flag,o_t2m_max%name, "Temp 2m max", "K" )
966          ENDIF
967          type_ecri(:) = type_ecri_files(:)
968          CALL histdef2d(iff,clef_stations(iff),o_wind10m%flag,o_wind10m%name, "10-m wind speed", "m/s")
969          CALL histdef2d(iff,clef_stations(iff),o_wind10max%flag,o_wind10max%name, "10m wind speed max", "m/s")
970          CALL histdef2d(iff,clef_stations(iff),o_sicf%flag,o_sicf%name, "Sea-ice fraction", "-" )
971          CALL histdef2d(iff,clef_stations(iff),o_q2m%flag,o_q2m%name, "Specific humidity 2m", "kg/kg")
972          CALL histdef2d(iff,clef_stations(iff),o_u10m%flag,o_u10m%name, "Vent zonal 10m", "m/s" )
973          CALL histdef2d(iff,clef_stations(iff),o_v10m%flag,o_v10m%name, "Vent meridien 10m", "m/s")
974          CALL histdef2d(iff,clef_stations(iff),o_psol%flag,o_psol%name, "Surface Pressure", "Pa" )
975          CALL histdef2d(iff,clef_stations(iff),o_qsurf%flag,o_qsurf%name, "Surface Air humidity", "kg/kg")
976
977          if (.not. ok_veget) then
978             CALL histdef2d(iff,clef_stations(iff),o_qsol%flag,o_qsol%name, "Soil watter content", "mm" )
979          endif
980
981          CALL histdef2d(iff,clef_stations(iff),o_ndayrain%flag,o_ndayrain%name, "Number of dayrain(liq+sol)", "-")
982          CALL histdef2d(iff,clef_stations(iff),o_precip%flag,o_precip%name, "Precip Totale liq+sol", "kg/(s*m2)" )
983          CALL histdef2d(iff,clef_stations(iff),o_plul%flag,o_plul%name, "Large-scale Precip.", "kg/(s*m2)")
984          CALL histdef2d(iff,clef_stations(iff),o_pluc%flag,o_pluc%name, "Convective Precip.", "kg/(s*m2)")
985          CALL histdef2d(iff,clef_stations(iff),o_snow%flag,o_snow%name, "Snow fall", "kg/(s*m2)" )
986          CALL histdef2d(iff,clef_stations(iff),o_msnow%flag,o_msnow%name, "Surface snow amount", "kg/m2" )
987          CALL histdef2d(iff,clef_stations(iff),o_fsnow%flag,o_fsnow%name, "Surface snow area fraction", "-" )
988          CALL histdef2d(iff,clef_stations(iff),o_evap%flag,o_evap%name, "Evaporat", "kg/(s*m2)" )
989          CALL histdef2d(iff,clef_stations(iff),o_tops%flag,o_tops%name, "Solar rad. at TOA", "W/m2")
990          CALL histdef2d(iff,clef_stations(iff),o_tops0%flag,o_tops0%name, "CS Solar rad. at TOA", "W/m2")
991          CALL histdef2d(iff,clef_stations(iff),o_topl%flag,o_topl%name, "IR rad. at TOA", "W/m2" )
992          CALL histdef2d(iff,clef_stations(iff),o_topl0%flag,o_topl0%name, "IR rad. at TOA", "W/m2")
993          CALL histdef2d(iff,clef_stations(iff),o_SWupTOA%flag,o_SWupTOA%name, "SWup at TOA", "W/m2")
994          CALL histdef2d(iff,clef_stations(iff),o_SWupTOAclr%flag,o_SWupTOAclr%name, "SWup clear sky at TOA", "W/m2")
995          CALL histdef2d(iff,clef_stations(iff),o_SWdnTOA%flag,o_SWdnTOA%name, "SWdn at TOA", "W/m2" )
996          CALL histdef2d(iff,clef_stations(iff),o_SWdnTOAclr%flag,o_SWdnTOAclr%name, "SWdn clear sky at TOA", "W/m2")
997          CALL histdef2d(iff,clef_stations(iff),o_nettop%flag,o_nettop%name, "Net dn radiatif flux at TOA", "W/m2")
998          CALL histdef2d(iff,clef_stations(iff),o_SWup200%flag,o_SWup200%name, "SWup at 200mb", "W/m2" )
999          CALL histdef2d(iff,clef_stations(iff),o_SWup200clr%flag,o_SWup200clr%name, "SWup clear sky at 200mb", "W/m2")
1000          CALL histdef2d(iff,clef_stations(iff),o_SWdn200%flag,o_SWdn200%name, "SWdn at 200mb", "W/m2" )
1001          CALL histdef2d(iff,clef_stations(iff),o_SWdn200clr%flag,o_SWdn200clr%name, "SWdn clear sky at 200mb", "W/m2")
1002          CALL histdef2d(iff,clef_stations(iff),o_LWup200%flag,o_LWup200%name, "LWup at 200mb", "W/m2")
1003          CALL histdef2d(iff,clef_stations(iff),o_LWup200clr%flag,o_LWup200clr%name, "LWup clear sky at 200mb", "W/m2")
1004          CALL histdef2d(iff,clef_stations(iff),o_LWdn200%flag,o_LWdn200%name, "LWdn at 200mb", "W/m2")
1005          CALL histdef2d(iff,clef_stations(iff),o_LWdn200clr%flag,o_LWdn200clr%name, "LWdn clear sky at 200mb", "W/m2")
1006          CALL histdef2d(iff,clef_stations(iff),o_sols%flag,o_sols%name, "Solar rad. at surf.", "W/m2")
1007          CALL histdef2d(iff,clef_stations(iff),o_sols0%flag,o_sols0%name, "Solar rad. at surf.", "W/m2")
1008          CALL histdef2d(iff,clef_stations(iff),o_soll%flag,o_soll%name, "IR rad. at surface", "W/m2") 
1009          CALL histdef2d(iff,clef_stations(iff),o_radsol%flag,o_radsol%name, "Rayonnement au sol", "W/m2")
1010          CALL histdef2d(iff,clef_stations(iff),o_soll0%flag,o_soll0%name, "IR rad. at surface", "W/m2")
1011          CALL histdef2d(iff,clef_stations(iff),o_SWupSFC%flag,o_SWupSFC%name, "SWup at surface", "W/m2")
1012          CALL histdef2d(iff,clef_stations(iff),o_SWupSFCclr%flag,o_SWupSFCclr%name, "SWup clear sky at surface", "W/m2")
1013          CALL histdef2d(iff,clef_stations(iff),o_SWdnSFC%flag,o_SWdnSFC%name, "SWdn at surface", "W/m2")
1014          CALL histdef2d(iff,clef_stations(iff),o_SWdnSFCclr%flag,o_SWdnSFCclr%name, "SWdn clear sky at surface", "W/m2")
1015          CALL histdef2d(iff,clef_stations(iff),o_LWupSFC%flag,o_LWupSFC%name, "Upwd. IR rad. at surface", "W/m2")
1016          CALL histdef2d(iff,clef_stations(iff),o_LWdnSFC%flag,o_LWdnSFC%name, "Down. IR rad. at surface", "W/m2")
1017          CALL histdef2d(iff,clef_stations(iff),o_LWupSFCclr%flag,o_LWupSFCclr%name, "CS Upwd. IR rad. at surface", "W/m2")
1018          CALL histdef2d(iff,clef_stations(iff),o_LWdnSFCclr%flag,o_LWdnSFCclr%name, "Down. CS IR rad. at surface", "W/m2")
1019          CALL histdef2d(iff,clef_stations(iff),o_bils%flag,o_bils%name, "Surf. total heat flux", "W/m2")
1020          CALL histdef2d(iff,clef_stations(iff),o_sens%flag,o_sens%name, "Sensible heat flux", "W/m2")
1021          CALL histdef2d(iff,clef_stations(iff),o_fder%flag,o_fder%name, "Heat flux derivation", "W/m2")
1022          CALL histdef2d(iff,clef_stations(iff),o_ffonte%flag,o_ffonte%name, "Thermal flux for snow melting", "W/m2")
1023          CALL histdef2d(iff,clef_stations(iff),o_fqcalving%flag,o_fqcalving%name, "Ice Calving", "kg/m2/s")
1024          CALL histdef2d(iff,clef_stations(iff),o_fqfonte%flag,o_fqfonte%name, "Land ice melt", "kg/m2/s")
1025
1026          CALL histdef2d(iff,clef_stations(iff),o_taux%flag,o_taux%name, "Zonal wind stress","Pa")
1027          CALL histdef2d(iff,clef_stations(iff),o_tauy%flag,o_tauy%name, "Meridional wind stress","Pa")
1028
1029          DO nsrf = 1, nbsrf
1030             CALL histdef2d(iff,clef_stations(iff),o_pourc_srf(nsrf)%flag,o_pourc_srf(nsrf)%name,"% "//clnsurf(nsrf),"%")
1031             CALL histdef2d(iff,clef_stations(iff),o_fract_srf(nsrf)%flag,o_fract_srf(nsrf)%name,"Fraction "//clnsurf(nsrf),"1")
1032             CALL histdef2d(iff,clef_stations(iff), &
1033                  o_taux_srf(nsrf)%flag,o_taux_srf(nsrf)%name,"Zonal wind stress"//clnsurf(nsrf),"Pa")
1034             CALL histdef2d(iff,clef_stations(iff), &
1035                  o_tauy_srf(nsrf)%flag,o_tauy_srf(nsrf)%name,"Meridional wind stress "//clnsurf(nsrf),"Pa")
1036             CALL histdef2d(iff,clef_stations(iff), &
1037                  o_tsol_srf(nsrf)%flag,o_tsol_srf(nsrf)%name,"Temperature "//clnsurf(nsrf),"K")
1038             CALL histdef2d(iff,clef_stations(iff), &
1039                  o_u10m_srf(nsrf)%flag,o_u10m_srf(nsrf)%name,"Vent Zonal 10m "//clnsurf(nsrf),"m/s")
1040             CALL histdef2d(iff,clef_stations(iff), &
1041                  o_evap_srf(nsrf)%flag,o_evap_srf(nsrf)%name,"evaporation at surface "//clnsurf(nsrf),"kg/(s*m2)")
1042             CALL histdef2d(iff,clef_stations(iff), &
1043                  o_v10m_srf(nsrf)%flag,o_v10m_srf(nsrf)%name,"Vent meredien 10m "//clnsurf(nsrf),"m/s")
1044             CALL histdef2d(iff,clef_stations(iff), &
1045                  o_t2m_srf(nsrf)%flag,o_t2m_srf(nsrf)%name,"Temp 2m "//clnsurf(nsrf),"K")
1046             CALL histdef2d(iff,clef_stations(iff), &
1047                  o_sens_srf(nsrf)%flag,o_sens_srf(nsrf)%name,"Sensible heat flux "//clnsurf(nsrf),"W/m2")
1048             CALL histdef2d(iff,clef_stations(iff), &
1049                  o_lat_srf(nsrf)%flag,o_lat_srf(nsrf)%name,"Latent heat flux "//clnsurf(nsrf),"W/m2")
1050             CALL histdef2d(iff,clef_stations(iff), &
1051                  o_flw_srf(nsrf)%flag,o_flw_srf(nsrf)%name,"LW "//clnsurf(nsrf),"W/m2")
1052             CALL histdef2d(iff,clef_stations(iff), &
1053                  o_fsw_srf(nsrf)%flag,o_fsw_srf(nsrf)%name,"SW "//clnsurf(nsrf),"W/m2")
1054             CALL histdef2d(iff,clef_stations(iff), &
1055                  o_wbils_srf(nsrf)%flag,o_wbils_srf(nsrf)%name,"Bilan sol "//clnsurf(nsrf),"W/m2" )
1056             CALL histdef2d(iff,clef_stations(iff), &
1057                  o_wbilo_srf(nsrf)%flag,o_wbilo_srf(nsrf)%name,"Bilan eau "//clnsurf(nsrf),"kg/(m2*s)")
1058             if (iflag_pbl>1 .and. lev_files(iff).gt.10 ) then
1059                CALL histdef2d(iff,clef_stations(iff), &
1060                     o_tke_srf(nsrf)%flag,o_tke_srf(nsrf)%name,"Max Turb. Kinetic Energy "//clnsurf(nsrf),"-")
1061
1062                IF (.NOT.clef_stations(iff)) THEN
1063                   !
1064                   !IM: there is no way to have one single value in a netcdf file
1065                   !
1066                   type_ecri(1) = 't_max(X)'
1067                   type_ecri(2) = 't_max(X)'
1068                   type_ecri(3) = 't_max(X)'
1069                   type_ecri(4) = 't_max(X)'
1070                   type_ecri(5) = 't_max(X)'
1071                   type_ecri(6) = 't_max(X)'
1072                   CALL histdef2d(iff,clef_stations(iff), &
1073                        o_tke_max_srf(nsrf)%flag,o_tke_max_srf(nsrf)%name,"Max Turb. Kinetic Energy "//clnsurf(nsrf),"-")
1074                   type_ecri(:) = type_ecri_files(:)
1075                ENDIF
1076
1077             endif
1078
1079             CALL histdef2d(iff,clef_stations(iff), &
1080                  o_albe_srf(nsrf)%flag,o_albe_srf(nsrf)%name,"Albedo VIS surf. "//clnsurf(nsrf),"-")
1081             CALL histdef2d(iff,clef_stations(iff), &
1082                  o_rugs_srf(nsrf)%flag,o_rugs_srf(nsrf)%name,"Surface roughness "//clnsurf(nsrf),"m")
1083             CALL histdef2d(iff,clef_stations(iff), &
1084                  o_ages_srf(nsrf)%flag,o_ages_srf(nsrf)%name,"Snow age", "day")
1085          END DO
1086
1087          IF (new_aod .AND. (.NOT. aerosol_couple)) THEN
1088             IF (ok_ade.OR.ok_aie) THEN
1089
1090                CALL histdef2d(iff,clef_stations(iff), &
1091                     o_od550aer%flag,o_od550aer%name, "Total aerosol optical depth at 550nm", "-")
1092                CALL histdef2d(iff,clef_stations(iff), &
1093                     o_od865aer%flag,o_od865aer%name, "Total aerosol optical depth at 870nm", "-")
1094                CALL histdef2d(iff,clef_stations(iff), &
1095                     o_absvisaer%flag,o_absvisaer%name, "Absorption aerosol visible optical depth", "-")
1096                CALL histdef2d(iff,clef_stations(iff), &
1097                     o_od550lt1aer%flag,o_od550lt1aer%name, "Fine mode optical depth", "-")
1098
1099
1100                CALL histdef2d(iff,clef_stations(iff), &
1101                     o_sconcso4%flag,o_sconcso4%name,"Surface Concentration of Sulfate ","kg/m3")
1102                CALL histdef2d(iff,clef_stations(iff), &
1103                     o_sconcoa%flag,o_sconcoa%name,"Surface Concentration of Organic Aerosol ","kg/m3")
1104                CALL histdef2d(iff,clef_stations(iff), &
1105                     o_sconcbc%flag,o_sconcbc%name,"Surface Concentration of Black Carbon ","kg/m3")
1106                CALL histdef2d(iff,clef_stations(iff), &
1107                     o_sconcss%flag,o_sconcss%name,"Surface Concentration of Sea Salt ","kg/m3")
1108                CALL histdef2d(iff,clef_stations(iff), &
1109                     o_sconcdust%flag,o_sconcdust%name,"Surface Concentration of Dust ","kg/m3")
1110                CALL histdef3d(iff,clef_stations(iff), &
1111                     o_concso4%flag,o_concso4%name,"Concentration of Sulfate ","kg/m3")
1112                CALL histdef3d(iff,clef_stations(iff), &
1113                     o_concoa%flag,o_concoa%name,"Concentration of Organic Aerosol ","kg/m3")
1114                CALL histdef3d(iff,clef_stations(iff), &
1115                     o_concbc%flag,o_concbc%name,"Concentration of Black Carbon ","kg/m3")
1116                CALL histdef3d(iff,clef_stations(iff), &
1117                     o_concss%flag,o_concss%name,"Concentration of Sea Salt ","kg/m3")
1118                CALL histdef3d(iff,clef_stations(iff), &
1119                     o_concdust%flag,o_concdust%name,"Concentration of Dust ","kg/m3")
1120                CALL histdef2d(iff,clef_stations(iff), &
1121                     o_loadso4%flag,o_loadso4%name,"Column Load of Sulfate ","kg/m2")
1122                CALL histdef2d(iff,clef_stations(iff), &
1123                     o_loadoa%flag,o_loadoa%name,"Column Load of Organic Aerosol ","kg/m2")
1124                CALL histdef2d(iff,clef_stations(iff), &
1125                     o_loadbc%flag,o_loadbc%name,"Column Load of Black Carbon ","kg/m2")
1126                CALL histdef2d(iff,clef_stations(iff), &
1127                     o_loadss%flag,o_loadss%name,"Column Load of Sea Salt ","kg/m2")
1128                CALL histdef2d(iff,clef_stations(iff), &
1129                     o_loaddust%flag,o_loaddust%name,"Column Load of Dust ","kg/m2")
1130
1131                DO naero = 1, naero_spc
1132                   CALL histdef2d(iff,clef_stations(iff), &
1133                        o_tausumaero(naero)%flag,o_tausumaero(naero)%name,"Aerosol Optical depth at 550 nm "//name_aero(naero),"1")
1134                END DO
1135             ENDIF
1136          ENDIF
1137
1138          IF (ok_ade) THEN
1139             CALL histdef2d(iff,clef_stations(iff), &
1140                  o_topswad%flag,o_topswad%name, "ADE at TOA", "W/m2")
1141             CALL histdef2d(iff,clef_stations(iff), &
1142                  o_solswad%flag,o_solswad%name, "ADE at SRF", "W/m2")
1143
1144             CALL histdef2d(iff,clef_stations(iff), &
1145                  o_swtoaas_nat%flag,o_swtoaas_nat%name, "Natural aerosol radiative forcing all-sky at TOA", "W/m2")
1146             CALL histdef2d(iff,clef_stations(iff), &
1147                  o_swsrfas_nat%flag,o_swsrfas_nat%name, "Natural aerosol radiative forcing all-sky at SRF", "W/m2")
1148             CALL histdef2d(iff,clef_stations(iff), &
1149                  o_swtoacs_nat%flag,o_swtoacs_nat%name, "Natural aerosol radiative forcing clear-sky at TOA", "W/m2")
1150             CALL histdef2d(iff,clef_stations(iff), &
1151                  o_swsrfcs_nat%flag,o_swsrfcs_nat%name, "Natural aerosol radiative forcing clear-sky at SRF", "W/m2")
1152
1153             CALL histdef2d(iff,clef_stations(iff), &
1154                  o_swtoaas_ant%flag,o_swtoaas_ant%name, "Anthropogenic aerosol radiative forcing all-sky at TOA", "W/m2")
1155             CALL histdef2d(iff,clef_stations(iff), &
1156                  o_swsrfas_ant%flag,o_swsrfas_ant%name, "Anthropogenic aerosol radiative forcing all-sky at SRF", "W/m2")
1157             CALL histdef2d(iff,clef_stations(iff), &
1158                  o_swtoacs_ant%flag,o_swtoacs_ant%name, "Anthropogenic aerosol radiative forcing clear-sky at TOA", "W/m2")
1159             CALL histdef2d(iff,clef_stations(iff), &
1160                  o_swsrfcs_ant%flag,o_swsrfcs_ant%name, "Anthropogenic aerosol radiative forcing clear-sky at SRF", "W/m2")
1161
1162             IF (.NOT. aerosol_couple) THEN
1163                CALL histdef2d(iff,clef_stations(iff), &
1164                     o_swtoacf_nat%flag,o_swtoacf_nat%name, "Natural aerosol impact on cloud radiative forcing at TOA", "W/m2")
1165                CALL histdef2d(iff,clef_stations(iff), &
1166                     o_swsrfcf_nat%flag,o_swsrfcf_nat%name, "Natural aerosol impact on cloud radiative forcing  at SRF", "W/m2")
1167                CALL histdef2d(iff, clef_stations(iff), o_swtoacf_ant%flag, &
1168                     o_swtoacf_ant%name, &
1169                     "Anthropogenic aerosol impact on cloud radiative forcing at TOA", &
1170                     "W/m2")
1171                CALL histdef2d(iff, clef_stations(iff), o_swsrfcf_ant%flag, &
1172                     o_swsrfcf_ant%name, &
1173                     "Anthropogenic aerosol impact on cloud radiative forcing at SRF", &
1174                     "W/m2")
1175                CALL histdef2d(iff,clef_stations(iff), &
1176                     o_swtoacf_zero%flag,o_swtoacf_zero%name, "Cloud radiative forcing (allsky-clearsky fluxes) at TOA", "W/m2")
1177                CALL histdef2d(iff,clef_stations(iff), &
1178                     o_swsrfcf_zero%flag,o_swsrfcf_zero%name, "Cloud radiative forcing (allsky-clearsky fluxes) at SRF", "W/m2")
1179             ENDIF
1180          ENDIF
1181
1182          IF (ok_aie) THEN
1183             CALL histdef2d(iff,clef_stations(iff), &
1184                  o_topswai%flag,o_topswai%name, "AIE at TOA", "W/m2")
1185             CALL histdef2d(iff,clef_stations(iff), &
1186                  o_solswai%flag,o_solswai%name, "AIE at SFR", "W/m2")
1187             !Cloud droplet number concentration
1188             CALL histdef3d(iff,clef_stations(iff), &
1189                  o_scdnc%flag,o_scdnc%name, "Cloud droplet number concentration","m-3")
1190             CALL histdef2d(iff,clef_stations(iff), &
1191                  o_cldncl%flag,o_cldncl%name, "CDNC at top of liquid water cloud", "m-3")
1192             CALL histdef3d(iff,clef_stations(iff), &
1193                  o_reffclws%flag,o_reffclws%name, "Stratiform Cloud Droplet Effective Radius (aerosol diags.)","m")
1194             CALL histdef3d(iff,clef_stations(iff), &
1195                  o_reffclwc%flag,o_reffclwc%name, "Convective Cloud Droplet Effective Radius (aerosol diags.)","m")
1196             CALL histdef2d(iff,clef_stations(iff), &
1197                  o_cldnvi%flag,o_cldnvi%name, "Column Integrated Cloud Droplet Number", "m-2")
1198             CALL histdef3d(iff,clef_stations(iff), &
1199                  o_lcc3d%flag,o_lcc3d%name, "Cloud liquid fraction","1")
1200             CALL histdef3d(iff,clef_stations(iff), &
1201                  o_lcc3dcon%flag,o_lcc3dcon%name, "Convective cloud liquid fraction","1")
1202             CALL histdef3d(iff,clef_stations(iff), &
1203                  o_lcc3dstra%flag,o_lcc3dstra%name, "Stratiform cloud liquid fraction","1")
1204             CALL histdef2d(iff,clef_stations(iff), &
1205                  o_lcc%flag,o_lcc%name, "Cloud liquid fraction at top of cloud","1")
1206             CALL histdef2d(iff,clef_stations(iff), &
1207                  o_reffclwtop%flag,o_reffclwtop%name, "Droplet effective radius at top of liquid water cloud", "m")
1208          ENDIF
1209
1210
1211          CALL histdef2d(iff,clef_stations(iff), &
1212               o_alb1%flag,o_alb1%name, "Surface VIS albedo", "-")
1213          CALL histdef2d(iff,clef_stations(iff), &
1214               o_alb2%flag,o_alb2%name, "Surface Near IR albedo", "-")
1215          CALL histdef2d(iff,clef_stations(iff), &
1216               o_cdrm%flag,o_cdrm%name, "Momentum drag coef.", "-")
1217          CALL histdef2d(iff,clef_stations(iff), &
1218               o_cdrh%flag,o_cdrh%name, "Heat drag coef.", "-" )
1219          CALL histdef2d(iff,clef_stations(iff), &
1220               o_cldl%flag,o_cldl%name, "Low-level cloudiness", "-")
1221          CALL histdef2d(iff,clef_stations(iff), &
1222               o_cldm%flag,o_cldm%name, "Mid-level cloudiness", "-")
1223          CALL histdef2d(iff,clef_stations(iff), &
1224               o_cldh%flag,o_cldh%name, "High-level cloudiness", "-")
1225          CALL histdef2d(iff,clef_stations(iff), &
1226               o_cldt%flag,o_cldt%name, "Total cloudiness", "-")
1227          CALL histdef2d(iff,clef_stations(iff), &
1228               o_cldq%flag,o_cldq%name, "Cloud liquid water path", "kg/m2")
1229          CALL histdef2d(iff,clef_stations(iff), &
1230               o_lwp%flag,o_lwp%name, "Cloud water path", "kg/m2")
1231          CALL histdef2d(iff,clef_stations(iff), &
1232               o_iwp%flag,o_iwp%name, "Cloud ice water path", "kg/m2" )
1233          CALL histdef2d(iff,clef_stations(iff), &
1234               o_ue%flag,o_ue%name, "Zonal energy transport", "-")
1235          CALL histdef2d(iff,clef_stations(iff), &
1236               o_ve%flag,o_ve%name, "Merid energy transport", "-")
1237          CALL histdef2d(iff,clef_stations(iff), &
1238               o_uq%flag,o_uq%name, "Zonal humidity transport", "-")
1239          CALL histdef2d(iff,clef_stations(iff), &
1240               o_vq%flag,o_vq%name, "Merid humidity transport", "-")
1241
1242          IF(iflag_con.GE.3) THEN ! sb
1243             CALL histdef2d(iff,clef_stations(iff), &
1244                  o_cape%flag,o_cape%name, "Conv avlbl pot ener", "J/kg")
1245             CALL histdef2d(iff,clef_stations(iff), &
1246                  o_pbase%flag,o_pbase%name, "Cld base pressure", "Pa")
1247             CALL histdef2d(iff,clef_stations(iff), &
1248                  o_ptop%flag,o_ptop%name, "Cld top pressure", "Pa")
1249             CALL histdef2d(iff,clef_stations(iff), &
1250                  o_fbase%flag,o_fbase%name, "Cld base mass flux", "kg/m2/s")
1251             if (iflag_con /= 30) then
1252                CALL histdef2d(iff,clef_stations(iff), &
1253                     o_plcl%flag,o_plcl%name, "Lifting Condensation Level", "hPa")
1254                CALL histdef2d(iff,clef_stations(iff), &
1255                     o_plfc%flag,o_plfc%name, "Level of Free Convection", "hPa")
1256                CALL histdef2d(iff,clef_stations(iff), &
1257                     o_wbeff%flag,o_wbeff%name, "Conv. updraft velocity at LFC (<100)", "m/s")
1258             end if
1259             IF (.NOT.clef_stations(iff)) THEN
1260                !
1261                !IM: there is no way to have one single value in a netcdf file
1262                !
1263                type_ecri(1) = 't_max(X)'
1264                type_ecri(2) = 't_max(X)'
1265                type_ecri(3) = 't_max(X)'
1266                type_ecri(4) = 't_max(X)'
1267                type_ecri(5) = 't_max(X)'
1268                type_ecri(6) = 't_max(X)'
1269                CALL histdef2d(iff,clef_stations(iff), &
1270                     o_cape_max%flag,o_cape_max%name, "CAPE max.", "J/kg")
1271             ENDIF
1272             type_ecri(:) = type_ecri_files(:)
1273             CALL histdef3d(iff,clef_stations(iff), &
1274                  o_upwd%flag,o_upwd%name, "saturated updraft", "kg/m2/s")
1275             CALL histdef3d(iff,clef_stations(iff), &
1276                  o_Ma%flag,o_Ma%name, "undilute adiab updraft", "kg/m2/s")
1277             CALL histdef3d(iff,clef_stations(iff), &
1278                  o_dnwd%flag,o_dnwd%name, "saturated downdraft", "kg/m2/s")
1279             CALL histdef3d(iff,clef_stations(iff), &
1280                  o_dnwd0%flag,o_dnwd0%name, "unsat. downdraft", "kg/m2/s")
1281             CALL histdef3d(iff,clef_stations(iff), &
1282                  o_mc%flag,o_mc%name, "Convective mass flux", "kg/m2/s")
1283             type_ecri(1) = 'inst(X)'
1284             type_ecri(2) = 'inst(X)'
1285             type_ecri(3) = 'inst(X)'
1286             type_ecri(4) = 'inst(X)'
1287             type_ecri(5) = 'inst(X)'
1288             type_ecri(6) = 'inst(X)'
1289             CALL histdef2d(iff,clef_stations(iff), &
1290                  o_ftime_con%flag,o_ftime_con%name, "Fraction of time convection Occurs", " ")
1291             type_ecri(:) = type_ecri_files(:)
1292          ENDIF !iflag_con .GE. 3
1293
1294          CALL histdef2d(iff,clef_stations(iff), &
1295               o_prw%flag,o_prw%name, "Precipitable water", "kg/m2")
1296          CALL histdef2d(iff,clef_stations(iff), &
1297               o_s_pblh%flag,o_s_pblh%name, "Boundary Layer Height", "m")
1298          CALL histdef2d(iff,clef_stations(iff), &
1299               o_s_pblt%flag,o_s_pblt%name, "t at Boundary Layer Height", "K")
1300          CALL histdef2d(iff,clef_stations(iff), &
1301               o_s_lcl%flag,o_s_lcl%name, "Condensation level", "m")
1302          CALL histdef2d(iff,clef_stations(iff), &
1303               o_s_therm%flag,o_s_therm%name, "Exces du thermique", "K")
1304          !IM : Les champs suivants (s_oliqCL, s_cteiCL, s_trmb1, s_trmb2, s_trmb3) ne sont pas definis dans HBTM.F
1305          !CALL histdef2d(iff,clef_stations(iff), &
1306          !o_s_capCL%flag,o_s_capCL%name, "Conv avlbl pot enerfor ABL", "J/m2" )
1307          !CALL histdef2d(iff,clef_stations(iff), &
1308          !o_s_oliqCL%flag,o_s_oliqCL%name, "Liq Water in BL", "kg/m2")
1309          !CALL histdef2d(iff,clef_stations(iff), &
1310          !o_s_cteiCL%flag,o_s_cteiCL%name, "Instability criteria(ABL)", "K")
1311          !CALL histdef2d(iff,clef_stations(iff), &
1312          !o_s_trmb1%flag,o_s_trmb1%name, "deep_cape(HBTM2)", "J/m2")
1313          !CALL histdef2d(iff,clef_stations(iff), &
1314          !o_s_trmb2%flag,o_s_trmb2%name, "inhibition (HBTM2)", "J/m2")
1315          !CALL histdef2d(iff,clef_stations(iff), &
1316          !o_s_trmb3%flag,o_s_trmb3%name, "Point Omega (HBTM2)", "m")
1317
1318          ! Champs interpolles sur des niveaux de pression
1319
1320          type_ecri(1) = 'inst(X)'
1321          type_ecri(2) = 'inst(X)'
1322          type_ecri(3) = 'inst(X)'
1323          type_ecri(4) = 'inst(X)'
1324          type_ecri(5) = 'inst(X)'
1325          type_ecri(6) = 'inst(X)'
1326
1327          ! Attention a reverifier
1328
1329          ilev=0       
1330          DO k=1, nlevSTD
1331             bb2=clevSTD(k)
1332             IF(bb2.EQ."850".OR.bb2.EQ."700".OR.bb2.EQ."500".OR.bb2.EQ."200" &
1333                  .OR.bb2.EQ."100".OR.bb2.EQ."50".OR.bb2.EQ."10")THEN
1334                ilev=ilev+1
1335                !     print*,'ilev k bb2 flag name ',ilev,k, bb2,o_uSTDlevs(ilev)%flag,o_uSTDlevs(ilev)%name
1336                CALL histdef2d(iff,clef_stations(iff), &
1337                     o_uSTDlevs(ilev)%flag,o_uSTDlevs(ilev)%name,"Zonal wind "//bb2//"hPa", "m/s")
1338                CALL histdef2d(iff,clef_stations(iff), &
1339                     o_vSTDlevs(ilev)%flag,o_vSTDlevs(ilev)%name,"Meridional wind "//bb2//"hPa", "m/s")
1340                CALL histdef2d(iff,clef_stations(iff), &
1341                     o_wSTDlevs(ilev)%flag,o_wSTDlevs(ilev)%name,"Vertical wind "//bb2//"hPa", "Pa/s")
1342                CALL histdef2d(iff,clef_stations(iff), &
1343                     o_zSTDlevs(ilev)%flag,o_zSTDlevs(ilev)%name,"Geopotential height "//bb2//"hPa", "m")
1344                CALL histdef2d(iff,clef_stations(iff), &
1345                     o_qSTDlevs(ilev)%flag,o_qSTDlevs(ilev)%name,"Specific humidity "//bb2//"hPa", "kg/kg" )
1346                CALL histdef2d(iff,clef_stations(iff), &
1347                     o_tSTDlevs(ilev)%flag,o_tSTDlevs(ilev)%name,"Temperature "//bb2//"hPa", "K")
1348             ENDIF !(bb2.EQ."850".OR.bb2.EQ."700".OR."500".OR.bb2.EQ."200".OR.bb2.EQ."50".OR.bb2.EQ."10")
1349          ENDDO
1350          type_ecri(:) = type_ecri_files(:)
1351
1352          CALL histdef2d(iff,clef_stations(iff), &
1353               o_t_oce_sic%flag,o_t_oce_sic%name, "Temp mixte oce-sic", "K")
1354
1355          IF (type_ocean=='slab') &
1356               CALL histdef2d(iff,clef_stations(iff), &
1357               o_slab_bils%flag, o_slab_bils%name,"Bilan au sol sur ocean slab", "W/m2")
1358
1359          ! Couplage conv-CL
1360          IF (iflag_con.GE.3) THEN
1361             IF (iflag_coupl>=1) THEN
1362                CALL histdef2d(iff,clef_stations(iff), &
1363                     o_ale_bl%flag,o_ale_bl%name, "ALE BL", "m2/s2")
1364                CALL histdef2d(iff,clef_stations(iff), &
1365                     o_alp_bl%flag,o_alp_bl%name, "ALP BL", "m2/s2")
1366             ENDIF
1367          ENDIF !(iflag_con.GE.3)
1368
1369          CALL histdef2d(iff,clef_stations(iff), &
1370               o_weakinv%flag,o_weakinv%name, "Weak inversion", "-")
1371          CALL histdef2d(iff,clef_stations(iff), &
1372               o_dthmin%flag,o_dthmin%name, "dTheta mini", "K/m")
1373          CALL histdef2d(iff,clef_stations(iff), &
1374               o_rh2m%flag,o_rh2m%name, "Relative humidity at 2m", "%" )
1375
1376          IF (.NOT.clef_stations(iff)) THEN
1377             !
1378             !IM: there is no way to have one single value in a netcdf file
1379             !
1380             type_ecri(1) = 't_min(X)'
1381             type_ecri(2) = 't_min(X)'
1382             type_ecri(3) = 't_min(X)'
1383             type_ecri(4) = 't_min(X)'
1384             type_ecri(5) = 't_min(X)'
1385             type_ecri(6) = 't_min(X)'
1386             CALL histdef2d(iff,clef_stations(iff),o_rh2m_min%flag,o_rh2m_min%name, "Min Relative humidity at 2m", "%" )
1387             type_ecri(1) = 't_max(X)'
1388             type_ecri(2) = 't_max(X)'
1389             type_ecri(3) = 't_max(X)'
1390             type_ecri(4) = 't_max(X)'
1391             type_ecri(5) = 't_max(X)'
1392             type_ecri(6) = 't_max(X)'
1393             CALL histdef2d(iff,clef_stations(iff),o_rh2m_max%flag,o_rh2m_max%name, "Max Relative humidity at 2m", "%" )
1394          ENDIF
1395
1396          type_ecri(:) = type_ecri_files(:)
1397          CALL histdef2d(iff,clef_stations(iff),o_qsat2m%flag,o_qsat2m%name, "Saturant humidity at 2m", "%")
1398          CALL histdef2d(iff,clef_stations(iff),o_tpot%flag,o_tpot%name, "Surface air potential temperature", "K")
1399          CALL histdef2d(iff,clef_stations(iff), &
1400               o_tpote%flag,o_tpote%name, "Surface air equivalent potential temperature", "K")
1401          CALL histdef2d(iff,clef_stations(iff),o_SWnetOR%flag,o_SWnetOR%name, "Sfce net SW radiation OR", "W/m2")
1402          CALL histdef2d(iff,clef_stations(iff),o_SWdownOR%flag,o_SWdownOR%name, "Sfce incident SW radiation OR", "W/m2")
1403          CALL histdef2d(iff,clef_stations(iff),o_LWdownOR%flag,o_LWdownOR%name, "Sfce incident LW radiation OR", "W/m2")
1404          CALL histdef2d(iff,clef_stations(iff),o_snowl%flag,o_snowl%name, "Solid Large-scale Precip.", "kg/(m2*s)")
1405
1406          CALL histdef2d(iff,clef_stations(iff),o_solldown%flag,o_solldown%name, "Down. IR rad. at surface", "W/m2")
1407          CALL histdef2d(iff,clef_stations(iff),o_dtsvdfo%flag,o_dtsvdfo%name, "Boundary-layer dTs(o)", "K/s")
1408          CALL histdef2d(iff,clef_stations(iff),o_dtsvdft%flag,o_dtsvdft%name, "Boundary-layer dTs(t)", "K/s")
1409          CALL histdef2d(iff,clef_stations(iff),o_dtsvdfg%flag,o_dtsvdfg%name, "Boundary-layer dTs(g)", "K/s")
1410          CALL histdef2d(iff,clef_stations(iff),o_dtsvdfi%flag,o_dtsvdfi%name, "Boundary-layer dTs(g)", "K/s")
1411          CALL histdef2d(iff,clef_stations(iff),o_rugs%flag,o_rugs%name, "rugosity", "-" )
1412
1413          ! Champs 3D:
1414          CALL histdef3d(iff,clef_stations(iff),o_ec550aer%flag,o_ec550aer%name, "Extinction at 550nm", "m^-1")
1415          CALL histdef3d(iff,clef_stations(iff),o_lwcon%flag,o_lwcon%name, "Cloud liquid water content", "kg/kg")
1416          CALL histdef3d(iff,clef_stations(iff),o_iwcon%flag,o_iwcon%name, "Cloud ice water content", "kg/kg")
1417          CALL histdef3d(iff,clef_stations(iff),o_temp%flag,o_temp%name, "Air temperature", "K" )
1418          CALL histdef3d(iff,clef_stations(iff),o_theta%flag,o_theta%name, "Potential air temperature", "K" )
1419          CALL histdef3d(iff,clef_stations(iff),o_ovap%flag,o_ovap%name, "Specific humidity", "kg/kg" )
1420          CALL histdef3d(iff,clef_stations(iff),o_oliq%flag,o_oliq%name, "Condensed water", "kg/kg" )
1421          CALL histdef3d(iff,clef_stations(iff), &
1422               o_ovapinit%flag,o_ovapinit%name, "Specific humidity (begin of timestep)", "kg/kg" )
1423          CALL histdef3d(iff,clef_stations(iff), &
1424               o_geop%flag,o_geop%name, "Geopotential height", "m2/s2")
1425          CALL histdef3d(iff,clef_stations(iff), &
1426               o_vitu%flag,o_vitu%name, "Zonal wind", "m/s" )
1427          CALL histdef3d(iff,clef_stations(iff), &
1428               o_vitv%flag,o_vitv%name, "Meridional wind", "m/s" )
1429          CALL histdef3d(iff,clef_stations(iff), &
1430               o_vitw%flag,o_vitw%name, "Vertical wind", "Pa/s" )
1431          CALL histdef3d(iff,clef_stations(iff), &
1432               o_pres%flag,o_pres%name, "Air pressure", "Pa" )
1433          CALL histdef3d(iff,clef_stations(iff), &
1434               o_paprs%flag,o_paprs%name, "Air pressure Inter-Couches", "Pa" )
1435          CALL histdef3d(iff,clef_stations(iff), &
1436               o_mass%flag,o_mass%name, "Masse Couches", "kg/m2" )
1437          CALL histdef3d(iff,clef_stations(iff), &
1438               o_zfull%flag,o_zfull%name, "Altitude of full pressure levels", "m" )
1439          CALL histdef3d(iff,clef_stations(iff), &
1440               o_zhalf%flag,o_zhalf%name, "Altitude of half pressure levels", "m" )
1441          CALL histdef3d(iff,clef_stations(iff), &
1442               o_rneb%flag,o_rneb%name, "Cloud fraction", "-")
1443          CALL histdef3d(iff,clef_stations(iff), &
1444               o_rnebcon%flag,o_rnebcon%name, "Convective Cloud Fraction", "-")
1445          CALL histdef3d(iff,clef_stations(iff), &
1446               o_rhum%flag,o_rhum%name, "Relative humidity", "-")
1447          CALL histdef3d(iff,clef_stations(iff), &
1448               o_ozone%flag,o_ozone%name, "Ozone mole fraction", "-")
1449          if (read_climoz == 2) &
1450               CALL histdef3d(iff,clef_stations(iff), &
1451               o_ozone_light%flag,o_ozone_light%name, &
1452               "Daylight ozone mole fraction", "-")
1453          CALL histdef3d(iff,clef_stations(iff), &
1454               o_dtphy%flag,o_dtphy%name, "Physics dT", "K/s")
1455          CALL histdef3d(iff,clef_stations(iff), &
1456               o_dqphy%flag,o_dqphy%name, "Physics dQ", "(kg/kg)/s")
1457          CALL histdef3d(iff,clef_stations(iff), &
1458               o_cldtau%flag,o_cldtau%name, "Cloud optical thickness", "1")
1459          CALL histdef3d(iff,clef_stations(iff), &
1460               o_cldemi%flag,o_cldemi%name, "Cloud optical emissivity", "1")
1461          !IM: bug ?? dimensionnement variables (klon,klev+1) pmflxr, pmflxs, prfl, psfl
1462          CALL histdef3d(iff,clef_stations(iff), &
1463               o_pr_con_l%flag,o_pr_con_l%name, "Convective precipitation lic", " ")
1464          CALL histdef3d(iff,clef_stations(iff), &
1465               o_pr_con_i%flag,o_pr_con_i%name, "Convective precipitation ice", " ")
1466          CALL histdef3d(iff,clef_stations(iff), &
1467               o_pr_lsc_l%flag,o_pr_lsc_l%name, "Large scale precipitation lic", " ")
1468          CALL histdef3d(iff,clef_stations(iff), &
1469               o_pr_lsc_i%flag,o_pr_lsc_i%name, "Large scale precipitation ice", " ")
1470          !Cloud droplet effective radius
1471          CALL histdef3d(iff,clef_stations(iff), &
1472               o_re%flag,o_re%name, "Cloud droplet effective radius","um")
1473          CALL histdef3d(iff,clef_stations(iff), &
1474               o_fl%flag,o_fl%name, "Denominator of Cloud droplet effective radius"," ")
1475          !FH Sorties pour la couche limite
1476          if (iflag_pbl>1) then
1477             CALL histdef3d(iff,clef_stations(iff), &
1478                  o_tke%flag,o_tke%name, "TKE", "m2/s2")
1479             IF (.NOT.clef_stations(iff)) THEN
1480                !
1481                !IM: there is no way to have one single value in a netcdf file
1482                !
1483                type_ecri(1) = 't_max(X)'
1484                type_ecri(2) = 't_max(X)'
1485                type_ecri(3) = 't_max(X)'
1486                type_ecri(4) = 't_max(X)'
1487                type_ecri(5) = 't_max(X)'
1488                type_ecri(6) = 't_max(X)'
1489                CALL histdef3d(iff,clef_stations(iff), &
1490                     o_tke_max%flag,o_tke_max%name, "TKE max", "m2/s2")
1491             ENDIF
1492             type_ecri(:) = type_ecri_files(:)
1493          endif
1494
1495          CALL histdef3d(iff,clef_stations(iff), &
1496               o_kz%flag,o_kz%name, "Kz melange", "m2/s")
1497          IF (.NOT.clef_stations(iff)) THEN
1498             !
1499             !IM: there is no way to have one single value in a netcdf file
1500             !
1501             type_ecri(1) = 't_max(X)'
1502             type_ecri(2) = 't_max(X)'
1503             type_ecri(3) = 't_max(X)'
1504             type_ecri(4) = 't_max(X)'
1505             type_ecri(5) = 't_max(X)'
1506             type_ecri(6) = 't_max(X)'
1507             CALL histdef3d(iff,clef_stations(iff), &
1508                  o_kz_max%flag,o_kz_max%name, "Kz melange max", "m2/s" )
1509          ENDIF
1510          type_ecri(:) = type_ecri_files(:)
1511          CALL histdef3d(iff,clef_stations(iff), &
1512               o_clwcon%flag,o_clwcon%name, "Convective Cloud Liquid water content", "kg/kg")
1513          CALL histdef3d(iff,clef_stations(iff), &
1514               o_dtdyn%flag,o_dtdyn%name, "Dynamics dT", "K/s")
1515          CALL histdef3d(iff,clef_stations(iff), &
1516               o_dqdyn%flag,o_dqdyn%name, "Dynamics dQ", "(kg/kg)/s")
1517          CALL histdef3d(iff,clef_stations(iff), &
1518               o_dudyn%flag,o_dudyn%name, "Dynamics dU", "m/s2")
1519          CALL histdef3d(iff,clef_stations(iff), &
1520               o_dvdyn%flag,o_dvdyn%name, "Dynamics dV", "m/s2")
1521          CALL histdef3d(iff,clef_stations(iff), &
1522               o_dtcon%flag,o_dtcon%name, "Convection dT", "K/s")
1523          CALL histdef3d(iff,clef_stations(iff), &
1524               o_ducon%flag,o_ducon%name, "Convection du", "m/s2")
1525          CALL histdef3d(iff,clef_stations(iff), &
1526               o_dvcon%flag,o_dvcon%name, "Convection dv", "m/s2")
1527          CALL histdef3d(iff,clef_stations(iff), &
1528               o_dqcon%flag,o_dqcon%name, "Convection dQ", "(kg/kg)/s")
1529
1530          ! Wakes
1531          IF(iflag_con.EQ.3) THEN
1532             IF (iflag_wake >= 1) THEN
1533                CALL histdef2d(iff,clef_stations(iff), &
1534                     o_ale_wk%flag,o_ale_wk%name, "ALE WK", "m2/s2")
1535                CALL histdef2d(iff,clef_stations(iff), &
1536                     o_alp_wk%flag,o_alp_wk%name, "ALP WK", "m2/s2")
1537                CALL histdef2d(iff,clef_stations(iff), &
1538                     o_ale%flag,o_ale%name, "ALE", "m2/s2")
1539                CALL histdef2d(iff,clef_stations(iff), &
1540                     o_alp%flag,o_alp%name, "ALP", "W/m2")
1541                CALL histdef2d(iff,clef_stations(iff),o_cin%flag,o_cin%name, "Convective INhibition", "m2/s2")
1542                CALL histdef2d(iff,clef_stations(iff),o_wape%flag,o_WAPE%name, "WAPE", "m2/s2")
1543                CALL histdef2d(iff,clef_stations(iff),o_wake_h%flag,o_wake_h%name, "wake_h", "-")
1544                CALL histdef2d(iff,clef_stations(iff),o_wake_s%flag,o_wake_s%name, "wake_s", "-")
1545                CALL histdef3d(iff,clef_stations(iff),o_dtwak%flag,o_dtwak%name, "Wake dT", "K/s")
1546                CALL histdef3d(iff,clef_stations(iff),o_dqwak%flag,o_dqwak%name, "Wake dQ", "(kg/kg)/s")
1547                CALL histdef3d(iff,clef_stations(iff),o_wake_deltat%flag,o_wake_deltat%name, "wake_deltat", " ")
1548                CALL histdef3d(iff,clef_stations(iff),o_wake_deltaq%flag,o_wake_deltaq%name, "wake_deltaq", " ")
1549                CALL histdef3d(iff,clef_stations(iff),o_wake_omg%flag,o_wake_omg%name, "wake_omg", " ")
1550             ENDIF
1551             CALL histdef3d(iff,clef_stations(iff),o_Vprecip%flag,o_Vprecip%name, "precipitation vertical profile", "-")
1552             CALL histdef3d(iff,clef_stations(iff),o_ftd%flag,o_ftd%name, "tend temp due aux descentes precip", "-")
1553             CALL histdef3d(iff,clef_stations(iff),o_fqd%flag,o_fqd%name,"tend vap eau due aux descentes precip", "-")
1554          ENDIF !(iflag_con.EQ.3)
1555
1556!!! nrlmd le 10/04/2012
1557
1558 CALL histdef2d(iff,clef_stations(iff),o_zlcl_th%flag,o_zlcl_th%name, "Altitude du LCL", "m")
1559 CALL histdef2d(iff,clef_stations(iff),o_fraca0%flag,o_fraca0%name, "Fraction de Thermique au LCL", "")
1560 CALL histdef2d(iff,clef_stations(iff),o_w0%flag,o_w0%name, "Vitesse thermique au LCL", "m/s")
1561 CALL histdef2d(iff,clef_stations(iff),o_w_conv%flag,o_w_conv%name, "Vitesse verticale grande échelle au LCL", "m/s")
1562 CALL histdef2d(iff,clef_stations(iff),o_therm_tke_max0%flag,o_therm_tke_max0%name, "TKE thermique au LCL", "m2/s2")
1563 CALL histdef2d(iff,clef_stations(iff),o_env_tke_max0%flag,o_env_tke_max0%name, "TKE environnement au LCL", "m2/s2")
1564
1565 CALL histdef2d(iff,clef_stations(iff),o_n2%flag,o_n2%name, "Nombre de panaches de type 2", " ")
1566 CALL histdef2d(iff,clef_stations(iff),o_s2%flag,o_s2%name, "Surface moyenne des panaches de type 2", "m2")
1567
1568 CALL histdef2d(iff,clef_stations(iff),o_proba_notrig%flag,o_proba_notrig%name, "Probabilité de non-déclenchement", " ")
1569 CALL histdef2d(iff,clef_stations(iff),o_random_notrig%flag,o_random_notrig%name, "Tirage aléatoire de non-déclenchement", " ")
1570 CALL histdef2d(iff,clef_stations(iff),o_ale_bl_trig%flag,o_ale_bl_trig%name, "ALE_BL_STAT + Condition P>Pseuil", "m2/s2")
1571 CALL histdef2d(iff,clef_stations(iff),o_ale_bl_stat%flag,o_ale_bl_stat%name, "ALE_BL_STAT", "m2/s2")
1572
1573 CALL histdef3d(iff,clef_stations(iff),o_therm_tke_max%flag,o_therm_tke_max%name, "TKE thermique", "m2/s2")
1574 CALL histdef3d(iff,clef_stations(iff),o_env_tke_max%flag,o_env_tke_max%name, "TKE environnement", "m2/s2")
1575 CALL histdef2d(iff,clef_stations(iff),o_alp_bl_det%flag,o_alp_bl_det%name, "ALP_BL_DET", "W/m2")
1576 CALL histdef2d(iff,clef_stations(iff),o_alp_bl_fluct_m%flag,o_alp_bl_fluct_m%name, "ALP_BL_FLUCT_M", "W/m2")
1577 CALL histdef2d(iff,clef_stations(iff),o_alp_bl_fluct_tke%flag,o_alp_bl_fluct_tke%name, "ALP_BL_FLUCT_TKE", "W/m2")
1578 CALL histdef2d(iff,clef_stations(iff),o_alp_bl_conv%flag,o_alp_bl_conv%name, "ALP_BL_CONV", "W/m2")
1579 CALL histdef2d(iff,clef_stations(iff),o_alp_bl_stat%flag,o_alp_bl_stat%name, "ALP_BL_STAT", "W/m2")
1580
1581!!! fin nrlmd le 10/04/2012
1582
1583          CALL histdef3d(iff,clef_stations(iff),o_dtlsc%flag,o_dtlsc%name, "Condensation dT", "K/s")
1584          CALL histdef3d(iff,clef_stations(iff),o_dtlschr%flag,o_dtlschr%name,"Large-scale condensational heating rate","K/s")
1585          CALL histdef3d(iff,clef_stations(iff),o_dqlsc%flag,o_dqlsc%name, "Condensation dQ", "(kg/kg)/s")
1586          CALL histdef3d(iff,clef_stations(iff),o_dtvdf%flag,o_dtvdf%name, "Boundary-layer dT", "K/s")
1587          CALL histdef3d(iff,clef_stations(iff),o_dqvdf%flag,o_dqvdf%name, "Boundary-layer dQ", "(kg/kg)/s")
1588          CALL histdef3d(iff,clef_stations(iff),o_dteva%flag,o_dteva%name, "Reevaporation dT", "K/s")
1589          CALL histdef3d(iff,clef_stations(iff),o_dqeva%flag,o_dqeva%name, "Reevaporation dQ", "(kg/kg)/s")
1590          CALL histdef3d(iff,clef_stations(iff),o_ptconv%flag,o_ptconv%name, "POINTS CONVECTIFS", " ")
1591          CALL histdef3d(iff,clef_stations(iff),o_ratqs%flag,o_ratqs%name, "RATQS", " ")
1592          CALL histdef3d(iff,clef_stations(iff),o_dtthe%flag,o_dtthe%name, "Thermal dT", "K/s")
1593
1594          if(iflag_thermals.ge.1) THEN
1595             CALL histdef3d(iff,clef_stations(iff),o_dqlscth%flag,o_dqlscth%name, "dQ therm.", "(kg/kg)/s")
1596             CALL histdef3d(iff,clef_stations(iff),o_dqlscst%flag,o_dqlscst%name, "dQ strat.", "(kg/kg)/s")
1597             CALL histdef3d(iff,clef_stations(iff),o_dtlscth%flag,o_dtlscth%name, "dQ therm.", "K/s")
1598             CALL histdef3d(iff,clef_stations(iff),o_dtlscst%flag,o_dtlscst%name, "dQ strat.", "K/s")
1599             CALL histdef2d(iff,clef_stations(iff),o_plulth%flag,o_plulth%name, "Rainfall therm.", "K/s")
1600             CALL histdef2d(iff,clef_stations(iff),o_plulst%flag,o_plulst%name, "Rainfall strat.", "K/s")
1601             CALL histdef2d(iff,clef_stations(iff),o_lmaxth%flag,o_lmaxth%name, "Upper level thermals", "")
1602             CALL histdef3d(iff,clef_stations(iff),o_ptconvth%flag,o_ptconvth%name, "POINTS CONVECTIFS therm.", " ")
1603             CALL histdef3d(iff,clef_stations(iff),o_f_th%flag,o_f_th%name, "Thermal plume mass flux", "kg/(m2*s)")
1604             CALL histdef3d(iff,clef_stations(iff),o_e_th%flag,o_e_th%name,"Thermal plume entrainment","K/s")
1605             CALL histdef3d(iff,clef_stations(iff),o_w_th%flag,o_w_th%name,"Thermal plume vertical velocity","m/s")
1606             CALL histdef2d(iff,clef_stations(iff), &
1607                  o_ftime_th%flag,o_ftime_th%name,"Fraction of time Shallow convection occurs"," ")
1608             CALL histdef3d(iff,clef_stations(iff), &
1609                  o_q_th%flag,o_q_th%name, "Thermal plume total humidity", "kg/kg")
1610             CALL histdef3d(iff,clef_stations(iff), &
1611                  o_a_th%flag,o_a_th%name, "Thermal plume fraction", "")
1612             CALL histdef3d(iff,clef_stations(iff), &
1613                  o_d_th%flag,o_d_th%name, "Thermal plume detrainment", "K/s")
1614
1615             CALL histdef2d(iff,clef_stations(iff), &
1616                  o_f0_th%flag,o_f0_th%name, "Thermal closure mass flux", "K/s")
1617             CALL histdef2d(iff,clef_stations(iff), &
1618                  o_zmax_th%flag,o_zmax_th%name, "Thermal plume height", "K/s")
1619             CALL histdef3d(iff,clef_stations(iff), &
1620                  o_dqthe%flag,o_dqthe%name, "Thermal dQ", "(kg/kg)/s")
1621          endif !iflag_thermals.ge.1
1622          CALL histdef3d(iff,clef_stations(iff), &
1623               o_dtajs%flag,o_dtajs%name, "Dry adjust. dT", "K/s")
1624          CALL histdef3d(iff,clef_stations(iff), &
1625               o_dqajs%flag,o_dqajs%name, "Dry adjust. dQ", "(kg/kg)/s")
1626          CALL histdef3d(iff,clef_stations(iff), &
1627               o_dtswr%flag,o_dtswr%name, "SW radiation dT", "K/s")
1628          CALL histdef3d(iff,clef_stations(iff), &
1629               o_dtsw0%flag,o_dtsw0%name, "CS SW radiation dT", "K/s")
1630          CALL histdef3d(iff,clef_stations(iff), &
1631               o_dtlwr%flag,o_dtlwr%name, "LW radiation dT", "K/s")
1632          CALL histdef3d(iff,clef_stations(iff), &
1633               o_dtlw0%flag,o_dtlw0%name, "CS LW radiation dT", "K/s")
1634          CALL histdef3d(iff,clef_stations(iff), &
1635               o_dtec%flag,o_dtec%name, "Cinetic dissip dT", "K/s")
1636          CALL histdef3d(iff,clef_stations(iff), &
1637               o_duvdf%flag,o_duvdf%name, "Boundary-layer dU", "m/s2")
1638          CALL histdef3d(iff,clef_stations(iff), &
1639               o_dvvdf%flag,o_dvvdf%name, "Boundary-layer dV", "m/s2")
1640
1641          IF (ok_orodr) THEN
1642             CALL histdef3d(iff,clef_stations(iff), &
1643                  o_duoro%flag,o_duoro%name, "Orography dU", "m/s2")
1644             CALL histdef3d(iff,clef_stations(iff), &
1645                  o_dvoro%flag,o_dvoro%name, "Orography dV", "m/s2")
1646             CALL histdef3d(iff,clef_stations(iff), &
1647                  o_dtoro%flag,o_dtoro%name, "Orography dT", "K/s")
1648          ENDIF
1649
1650          IF (ok_orolf) THEN
1651             CALL histdef3d(iff,clef_stations(iff), &
1652                  o_dulif%flag,o_dulif%name, "Orography dU", "m/s2")
1653             CALL histdef3d(iff,clef_stations(iff), &
1654                  o_dvlif%flag,o_dvlif%name, "Orography dV", "m/s2")
1655             CALL histdef3d(iff,clef_stations(iff), &
1656                  o_dtlif%flag,o_dtlif%name, "Orography dT", "K/s")
1657          ENDIF
1658
1659          IF (ok_hines) then
1660             CALL histdef3d(iff,clef_stations(iff), &
1661                  o_duhin%flag,o_duhin%name, "Hines GWD dU", "m/s2")
1662             CALL histdef3d(iff,clef_stations(iff), &
1663                  o_dvhin%flag,o_dvhin%name, "Hines GWD dV", "m/s2")
1664
1665             CALL histdef3d(iff,clef_stations(iff), &
1666                  o_dthin%flag,o_dthin%name, "Hines GWD dT", "K/s")
1667          ENDIF
1668
1669          CALL histdef3d(iff,clef_stations(iff), &
1670               o_rsu%flag,o_rsu%name, "SW upward radiation", "W m-2")
1671          CALL histdef3d(iff,clef_stations(iff), &
1672               o_rsd%flag,o_rsd%name, "SW downward radiation", "W m-2")
1673          CALL histdef3d(iff,clef_stations(iff), &
1674               o_rlu%flag,o_rlu%name, "LW upward radiation", "W m-2")
1675          CALL histdef3d(iff,clef_stations(iff), &
1676               o_rld%flag,o_rld%name, "LW downward radiation", "W m-2")
1677
1678          CALL histdef3d(iff,clef_stations(iff), &
1679               o_rsucs%flag,o_rsucs%name, "SW CS upward radiation", "W m-2")
1680          CALL histdef3d(iff,clef_stations(iff), &
1681               o_rsdcs%flag,o_rsdcs%name, "SW CS downward radiation", "W m-2")
1682          CALL histdef3d(iff,clef_stations(iff), &
1683               o_rlucs%flag,o_rlucs%name, "LW CS upward radiation", "W m-2")
1684          CALL histdef3d(iff,clef_stations(iff), &
1685               o_rldcs%flag,o_rldcs%name, "LW CS downward radiation", "W m-2")
1686
1687          CALL histdef3d(iff,clef_stations(iff), &
1688               o_tnt%flag,o_tnt%name, "Tendency of air temperature", "K s-1")
1689
1690          CALL histdef3d(iff,clef_stations(iff), &
1691               o_tntc%flag,o_tntc%name, "Tendency of air temperature due to Moist Convection", &
1692               "K s-1")
1693
1694          CALL histdef3d(iff,clef_stations(iff), &
1695               o_tntr%flag,o_tntr%name, "Air temperature tendency due to Radiative heating", &
1696               "K s-1")
1697
1698          CALL histdef3d(iff,clef_stations(iff), &
1699               o_tntscpbl%flag,o_tntscpbl%name, "Air temperature tendency due to St cloud and precipitation and BL mixing", &
1700               "K s-1")
1701
1702          CALL histdef3d(iff,clef_stations(iff), &
1703               o_tnhus%flag,o_tnhus%name, "Tendency of specific humidity", "s-1")
1704
1705          CALL histdef3d(iff,clef_stations(iff), &
1706               o_tnhusc%flag,o_tnhusc%name, "Tendency of specific humidity due to convection", "s-1")
1707
1708          CALL histdef3d(iff,clef_stations(iff), &
1709               o_tnhusscpbl%flag,o_tnhusscpbl%name, "Tendency of Specific humidity due to ST cl, precip and BL mixing", &
1710               "s-1")
1711
1712          CALL histdef3d(iff,clef_stations(iff), &
1713               o_evu%flag,o_evu%name, "Eddy viscosity coefficient for Momentum Variables", "m2 s-1")
1714
1715          CALL histdef3d(iff,clef_stations(iff), &
1716               o_h2o%flag,o_h2o%name, "Mass Fraction of Water", "1")
1717
1718          CALL histdef3d(iff,clef_stations(iff), &
1719               o_mcd%flag,o_mcd%name, "Downdraft COnvective Mass Flux", "kg/(m2*s)")
1720
1721          CALL histdef3d(iff,clef_stations(iff), &
1722               o_dmc%flag,o_dmc%name, "Deep COnvective Mass Flux", "kg/(m2*s)")
1723
1724          CALL histdef3d(iff,clef_stations(iff), &
1725               o_ref_liq%flag,o_ref_liq%name, "Effective radius of convective cloud liquid water particle", "m")
1726
1727          CALL histdef3d(iff,clef_stations(iff), &
1728               o_ref_ice%flag,o_ref_ice%name, "Effective radius of startiform cloud ice particle", "m")
1729
1730          if (RCO2_per.NE.RCO2_act.OR.RCH4_per.NE.RCH4_act.OR. &
1731               RN2O_per.NE.RN2O_act.OR.RCFC11_per.NE.RCFC11_act.OR. &
1732               RCFC12_per.NE.RCFC12_act) THEN
1733
1734             CALL histdef2d(iff,clef_stations(iff),o_rsut4co2%flag,o_rsut4co2%name, &
1735                  "TOA Out SW in 4xCO2 atmosphere", "W/m2")
1736             CALL histdef2d(iff,clef_stations(iff),o_rlut4co2%flag,o_rlut4co2%name, &
1737                  "TOA Out LW in 4xCO2 atmosphere", "W/m2")
1738             CALL histdef2d(iff,clef_stations(iff),o_rsutcs4co2%flag,o_rsutcs4co2%name, &
1739                  "TOA Out CS SW in 4xCO2 atmosphere", "W/m2")
1740             CALL histdef2d(iff,clef_stations(iff),o_rlutcs4co2%flag,o_rlutcs4co2%name, &
1741                  "TOA Out CS LW in 4xCO2 atmosphere", "W/m2")
1742
1743             CALL histdef3d(iff,clef_stations(iff),o_rsu4co2%flag,o_rsu4co2%name, &
1744                  "Upwelling SW 4xCO2 atmosphere", "W/m2")
1745             CALL histdef3d(iff,clef_stations(iff),o_rlu4co2%flag,o_rlu4co2%name, &
1746                  "Upwelling LW 4xCO2 atmosphere", "W/m2")
1747             CALL histdef3d(iff,clef_stations(iff),o_rsucs4co2%flag,o_rsucs4co2%name, &
1748                  "Upwelling CS SW 4xCO2 atmosphere", "W/m2")
1749             CALL histdef3d(iff,clef_stations(iff),o_rlucs4co2%flag,o_rlucs4co2%name, &
1750                  "Upwelling CS LW 4xCO2 atmosphere", "W/m2")
1751
1752             CALL histdef3d(iff,clef_stations(iff),o_rsd4co2%flag,o_rsd4co2%name, &
1753                  "Downwelling SW 4xCO2 atmosphere", "W/m2")
1754             CALL histdef3d(iff,clef_stations(iff),o_rld4co2%flag,o_rld4co2%name, &
1755                  "Downwelling LW 4xCO2 atmosphere", "W/m2")
1756             CALL histdef3d(iff,clef_stations(iff),o_rsdcs4co2%flag,o_rsdcs4co2%name, &
1757                  "Downwelling CS SW 4xCO2 atmosphere", "W/m2")
1758             CALL histdef3d(iff,clef_stations(iff),o_rldcs4co2%flag,o_rldcs4co2%name, &
1759                  "Downwelling CS LW 4xCO2 atmosphere", "W/m2")
1760
1761          endif
1762
1763
1764          IF (nqtot>=3) THEN
1765             DO iq=3,nqtot 
1766                iiq=niadv(iq)
1767                o_trac(iq-2) = ctrl_out((/ 4, 5, 1, 1, 1, 10 /),tname(iiq))
1768                CALL histdef3d (iff,clef_stations(iff), &
1769                     o_trac(iq-2)%flag,o_trac(iq-2)%name,'Tracer '//ttext(iiq), "-" )
1770             ENDDO
1771          ENDIF
1772
1773          CALL histend(nid_files(iff))
1774
1775          ndex2d = 0
1776          ndex3d = 0
1777
1778       ENDIF ! clef_files
1779
1780    ENDDO !  iff
1781
1782    ! Updated write frequencies due to phys_out_filetimesteps.
1783    ! Write frequencies are now in seconds. 
1784    ecrit_mth = ecrit_files(1)
1785    ecrit_day = ecrit_files(2)
1786    ecrit_hf  = ecrit_files(3)
1787    ecrit_ins = ecrit_files(4)
1788    ecrit_LES = ecrit_files(5)
1789    ecrit_ins = ecrit_files(6)
1790
1791    write(lunout,*)'swaero_diag=',swaero_diag
1792    write(lunout,*)'Fin phys_output_mod.F90'
1793  end subroutine phys_output_open
1794
1795  SUBROUTINE histdef2d (iff,lpoint,flag_var,nomvar,titrevar,unitvar)
1796
1797    use ioipsl
1798    USE dimphy
1799    USE mod_phys_lmdz_para
1800    USE iophy
1801
1802    IMPLICIT NONE
1803
1804    include "dimensions.h"
1805    include "temps.h"
1806    include "indicesol.h"
1807    include "clesphys.h"
1808
1809    integer                          :: iff
1810    logical                          :: lpoint
1811    integer, dimension(nfiles)       :: flag_var
1812    character(len=20)                 :: nomvar
1813    character(len=*)                 :: titrevar
1814    character(len=*)                 :: unitvar
1815
1816    real zstophym
1817
1818    if (type_ecri(iff)=='inst(X)'.OR.type_ecri(iff)=='once') then
1819       zstophym=zoutm(iff)
1820    else
1821       zstophym=zdtime
1822    endif
1823
1824    ! Appel a la lecture des noms et niveau d'ecriture des variables dans output.def
1825    call conf_physoutputs(nomvar,flag_var)
1826
1827    if(.NOT.lpoint) THEN 
1828       if ( flag_var(iff)<=lev_files(iff) ) then
1829          call histdef (nid_files(iff),nomvar,titrevar,unitvar, &
1830               iim,jj_nb,nhorim(iff), 1,1,1, -99, 32, &
1831               type_ecri(iff), zstophym,zoutm(iff))               
1832       endif
1833    else
1834       if ( flag_var(iff)<=lev_files(iff) ) then
1835          call histdef (nid_files(iff),nomvar,titrevar,unitvar, &
1836               npstn,1,nhorim(iff), 1,1,1, -99, 32, &
1837               type_ecri(iff), zstophym,zoutm(iff))               
1838       endif
1839    endif
1840
1841    ! Set swaero_diag=true if at least one of the concerned variables are defined
1842    if (nomvar=='topswad' .OR. nomvar=='topswai' .OR. nomvar=='solswad' .OR. nomvar=='solswai' ) THEN
1843       if  ( flag_var(iff)<=lev_files(iff) ) then
1844          swaero_diag=.TRUE.
1845       end if
1846    end if
1847  end subroutine histdef2d
1848
1849  SUBROUTINE histdef3d (iff,lpoint,flag_var,nomvar,titrevar,unitvar)
1850
1851    use ioipsl
1852    USE dimphy
1853    USE mod_phys_lmdz_para
1854    USE iophy
1855
1856    IMPLICIT NONE
1857
1858    include "dimensions.h"
1859    include "temps.h"
1860    include "indicesol.h"
1861    include "clesphys.h"
1862
1863    integer                          :: iff
1864    logical                          :: lpoint
1865    integer, dimension(nfiles)       :: flag_var
1866    character(len=20)                 :: nomvar
1867    character(len=*)                 :: titrevar
1868    character(len=*)                 :: unitvar
1869
1870    real zstophym
1871
1872    ! Appel a la lecture des noms et niveau d'ecriture des variables dans output.def
1873    call conf_physoutputs(nomvar,flag_var)
1874
1875    if (type_ecri(iff)=='inst(X)'.OR.type_ecri(iff)=='once') then
1876       zstophym=zoutm(iff)
1877    else
1878       zstophym=zdtime
1879    endif
1880
1881    if(.NOT.lpoint) THEN
1882       if ( flag_var(iff)<=lev_files(iff) ) then
1883          call histdef (nid_files(iff), nomvar, titrevar, unitvar, &
1884               iim, jj_nb, nhorim(iff), klev, levmin(iff), &
1885               levmax(iff)-levmin(iff)+1, nvertm(iff), 32, type_ecri(iff), &
1886               zstophym, zoutm(iff))
1887       endif
1888    else
1889       if ( flag_var(iff)<=lev_files(iff) ) then
1890          call histdef (nid_files(iff), nomvar, titrevar, unitvar, &
1891               npstn,1,nhorim(iff), klev, levmin(iff), &
1892               levmax(iff)-levmin(iff)+1, nvertm(iff), 32, &
1893               type_ecri(iff), zstophym,zoutm(iff))
1894       endif
1895    endif
1896  end subroutine histdef3d
1897
1898  SUBROUTINE conf_physoutputs(nam_var,flag_var)
1899!!! Lecture des noms et niveau de sortie des variables dans output.def
1900    !   en utilisant les routines getin de IOIPSL 
1901    use ioipsl
1902
1903    IMPLICIT NONE
1904
1905    include 'iniprint.h'
1906
1907    character(len=20)                :: nam_var
1908    integer, dimension(nfiles)      :: flag_var
1909
1910    IF(prt_level>10) WRITE(lunout,*)'Avant getin: nam_var flag_var ',nam_var,flag_var(:)
1911    call getin('flag_'//nam_var,flag_var)
1912    call getin('name_'//nam_var,nam_var)
1913    IF(prt_level>10) WRITE(lunout,*)'Apres getin: nam_var flag_var ',nam_var,flag_var(:)
1914
1915  END SUBROUTINE conf_physoutputs
1916
1917  SUBROUTINE convers_timesteps(str,dtime,timestep)
1918
1919    use ioipsl
1920    USE phys_cal_mod
1921
1922    IMPLICIT NONE
1923
1924    character(len=20)   :: str
1925    character(len=10)   :: type
1926    integer             :: ipos,il
1927    real                :: ttt,xxx,timestep,dayseconde,dtime
1928    parameter (dayseconde=86400.)
1929    include "temps.h"
1930    include "comconst.h"
1931    include "iniprint.h"
1932
1933    ipos=scan(str,'0123456789.',.true.)
1934    ! 
1935    il=len_trim(str)
1936    write(lunout,*)ipos,il
1937    read(str(1:ipos),*) ttt
1938    write(lunout,*)ttt
1939    type=str(ipos+1:il)
1940
1941
1942    if ( il == ipos ) then
1943       type='day'
1944    endif
1945
1946    if ( type == 'day'.or.type == 'days'.or.type == 'jours'.or.type == 'jour' ) timestep = ttt * dayseconde
1947    if ( type == 'mounths'.or.type == 'mth'.or.type == 'mois' ) then
1948       write(lunout,*)'annee_ref,day_ref mon_len',annee_ref,day_ref,mth_len
1949       timestep = ttt * dayseconde * mth_len
1950    endif
1951    if ( type == 'hours'.or.type == 'hr'.or.type == 'heurs') timestep = ttt * dayseconde / 24.
1952    if ( type == 'mn'.or.type == 'minutes'  ) timestep = ttt * 60.
1953    if ( type == 's'.or.type == 'sec'.or.type == 'secondes'   ) timestep = ttt
1954    if ( type == 'TS' ) timestep = ttt * dtime
1955
1956    write(lunout,*)'type =      ',type
1957    write(lunout,*)'nb j/h/m =  ',ttt
1958    write(lunout,*)'timestep(s)=',timestep
1959
1960  END SUBROUTINE convers_timesteps
1961
1962END MODULE phys_output_mod
1963
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