source: dynamico_lmdz/aquaplanet/LMDZ5/libf/phylmd/phys_output_write_mod.F90 @ 3820

Last change on this file since 3820 was 3819, checked in by ymipsl, 10 years ago

Removed all iim et jjm depedency. Replaced by nbp_lon and nbp_lat.
Supress gr_fi_ecrit, replaced by grid1dTo2d_glo

YM

File size: 58.8 KB
Line 
1!
2! $Id: phys_output_write_mod.F90 2243 2015-03-24 13:28:51Z fhourdin $
3!
4MODULE phys_output_write_mod
5
6  USE phytrac_mod, ONLY : d_tr_cl, d_tr_th, d_tr_cv, d_tr_lessi_impa, &
7       d_tr_lessi_nucl, d_tr_insc, d_tr_bcscav, d_tr_evapls, d_tr_ls,  &
8       d_tr_trsp, d_tr_sscav, d_tr_sat, d_tr_uscav
9
10  ! Author: Abderrahmane IDELKADI (original include file)
11  ! Author: Laurent FAIRHEAD (transformation to module/subroutine)
12  ! Author: Ulysse GERARD (effective implementation)
13
14CONTAINS
15
16  ! ug Routine pour définir (los du premier passageà) ET sortir les variables
17  SUBROUTINE phys_output_write(itap, pdtphys, paprs, pphis, &
18       pplay, lmax_th, aerosol_couple,         &
19       ok_ade, ok_aie, ivap, new_aod, ok_sync, &
20       ptconv, read_climoz, clevSTD, ptconvth, &
21       d_t, qx, d_qx, zmasse, flag_aerosol, flag_aerosol_strat, ok_cdnc)
22
23    ! This subroutine does the actual writing of diagnostics that were
24    ! defined and initialised in phys_output_mod.F90
25
26    USE dimphy, only: klon, klev, klevp1, nslay
27    USE mod_grid_phy_lmdz, ONLY : nbp_lon, nbp_lat
28    !USE control_phy_mod, only: day_step, iphysiq
29    USE inifis_mod, only: day_step, iphysiq
30    USE phys_output_ctrlout_mod, only: o_phis, o_aire, is_ter, is_lic, is_oce, &
31         is_ave, is_sic, o_contfracATM, o_contfracOR, &
32         o_aireTER, o_flat, o_slp, o_tsol, &
33         o_t2m, o_t2m_min, o_t2m_max, &
34         o_t2m_min_mon, o_t2m_max_mon, &
35         o_q2m, o_ustar, o_u10m, o_v10m, &
36         o_wind10m, o_wind10max, o_gusts, o_sicf, &
37         o_psol, o_mass, o_qsurf, o_qsol, &
38         o_precip, o_ndayrain, o_plul, o_pluc, &
39         o_snow, o_msnow, o_fsnow, o_evap, &
40         o_tops, o_tops0, o_topl, o_topl0, &
41         o_SWupTOA, o_SWupTOAclr, o_SWdnTOA, &
42         o_SWdnTOAclr, o_nettop, o_SWup200, &
43         o_SWup200clr, o_SWdn200, o_SWdn200clr, &
44         o_LWup200, o_LWup200clr, o_LWdn200, &
45         o_LWdn200clr, o_sols, o_sols0, &
46         o_soll, o_radsol, o_soll0, o_SWupSFC, &
47         o_SWupSFCclr, o_SWdnSFC, o_SWdnSFCclr, &
48         o_LWupSFC, o_LWdnSFC, o_LWupSFCclr, &
49         o_LWdnSFCclr, o_bils, o_bils_diss, &
50         o_bils_ec,o_bils_ech, o_bils_tke, o_bils_kinetic, &
51         o_bils_latent, o_bils_enthalp, o_sens, &
52         o_fder, o_ffonte, o_fqcalving, o_fqfonte, &
53         o_taux, o_tauy, o_snowsrf, o_qsnow, &
54         o_snowhgt, o_toice, o_sissnow, o_runoff, &
55         o_albslw3, o_pourc_srf, o_fract_srf, &
56         o_taux_srf, o_tauy_srf, o_tsol_srf, &
57         o_evappot_srf, o_ustar_srf, o_u10m_srf, &
58         o_v10m_srf, o_t2m_srf, o_evap_srf, &
59         o_sens_srf, o_lat_srf, o_flw_srf, &
60         o_fsw_srf, o_wbils_srf, o_wbilo_srf, &
61         o_tke_srf, o_tke_max_srf,o_dltpbltke_srf, o_wstar, &
62         o_cdrm, o_cdrh, o_cldl, o_cldm, o_cldh, &
63         o_cldt, o_JrNt, o_cldljn, o_cldmjn, &
64         o_cldhjn, o_cldtjn, o_cldq, o_lwp, o_iwp, &
65         o_ue, o_ve, o_uq, o_vq, o_cape, o_pbase, &
66         o_ptop, o_fbase, o_plcl, o_plfc, &
67         o_wbeff, o_cape_max, o_upwd, o_Ma, &
68         o_dnwd, o_dnwd0, o_ftime_con, o_mc, &
69         o_prw, o_s_pblh, o_s_pblt, o_s_lcl, &
70         o_s_therm, o_uSTDlevs, o_vSTDlevs, &
71         o_wSTDlevs, o_zSTDlevs, o_qSTDlevs, &
72         o_tSTDlevs, epsfra, o_t_oce_sic, &
73         o_ale_bl, o_alp_bl, o_ale_wk, o_alp_wk, &
74         o_ale, o_alp, o_cin, o_WAPE, o_wake_h, &
75         o_wake_s, o_wake_deltat, o_wake_deltaq, &
76         o_wake_omg, o_dtwak, o_dqwak, o_Vprecip, &
77         o_ftd, o_fqd, o_wdtrainA, o_wdtrainM, &
78         o_n2, o_s2, o_proba_notrig, &
79         o_random_notrig, o_ale_bl_stat, &
80         o_ale_bl_trig, o_alp_bl_det, &
81         o_alp_bl_fluct_m, o_alp_bl_fluct_tke, &
82         o_alp_bl_conv, o_alp_bl_stat, &
83         o_slab_qflux, o_tslab, o_slab_bils, &
84         o_slab_bilg, o_slab_sic, o_slab_tice, &
85         o_weakinv, o_dthmin, o_cldtau, &
86         o_cldemi, o_pr_con_l, o_pr_con_i, &
87         o_pr_lsc_l, o_pr_lsc_i, o_re, o_fl, &
88         o_rh2m, o_rh2m_min, o_rh2m_max, &
89         o_qsat2m, o_tpot, o_tpote, o_SWnetOR, &
90         o_SWdownOR, o_LWdownOR, o_snowl, &
91         o_solldown, o_dtsvdfo, o_dtsvdft, &
92         o_dtsvdfg, o_dtsvdfi, o_z0m, o_z0h, o_od550aer, &
93         o_od865aer, o_absvisaer, o_od550lt1aer, &
94         o_sconcso4, o_sconcno3, o_sconcoa, o_sconcbc, &
95         o_sconcss, o_sconcdust, o_concso4, o_concno3, &
96         o_concoa, o_concbc, o_concss, o_concdust, &
97         o_loadso4, o_loadoa, o_loadbc, o_loadss, &
98         o_loaddust, o_tausumaero, o_tausumaero_lw, &
99         o_topswad, o_topswad0, o_solswad, o_solswad0, &
100         o_toplwad, o_toplwad0, o_sollwad, o_sollwad0, &
101         o_swtoaas_nat, o_swsrfas_nat, &
102         o_swtoacs_nat, o_swtoaas_ant, &
103         o_swsrfas_ant, o_swtoacs_ant, &
104         o_swsrfcs_ant, o_swtoacf_nat, &
105         o_swsrfcf_nat, o_swtoacf_ant, &
106         o_swsrfcs_nat, o_swsrfcf_ant, &
107         o_swtoacf_zero, o_swsrfcf_zero, &
108         o_topswai, o_solswai, o_scdnc, &
109         o_cldncl, o_reffclws, o_reffclwc, &
110         o_cldnvi, o_lcc, o_lcc3d, o_lcc3dcon, &
111         o_lcc3dstra, o_reffclwtop, o_ec550aer, &
112         o_lwcon, o_iwcon, o_temp, o_theta, &
113         o_ovapinit, o_ovap, o_oliq, o_geop, &
114         o_vitu, o_vitv, o_vitw, o_pres, o_paprs, &
115         o_zfull, o_zhalf, o_rneb, o_rnebjn, o_rnebcon, &
116         o_rnebls, o_rhum, o_ozone, o_ozone_light, &
117         o_dtphy, o_dqphy, o_albe_srf, o_z0m_srf, o_z0h_srf, &
118         o_ages_srf, o_snow_srf, o_alb1, o_alb2, o_tke, &
119         o_tke_max, o_kz, o_kz_max, o_clwcon, &
120         o_dtdyn, o_dqdyn, o_dudyn, o_dvdyn, &
121         o_dtcon, o_tntc, o_ducon, o_dvcon, &
122         o_dqcon, o_tnhusc, o_tnhusc, o_dtlsc, &
123         o_dtlschr, o_dqlsc, o_beta_prec, &
124         o_dtlscth, o_dtlscst, o_dqlscth, &
125         o_dqlscst, o_plulth, o_plulst, &
126         o_ptconvth, o_lmaxth, o_dtvdf, &
127         o_dtdis, o_dqvdf, o_dteva, o_dqeva, &
128         o_ptconv, o_ratqs, o_dtthe, &
129         o_duthe, o_dvthe, o_ftime_th, &
130         o_f_th, o_e_th, o_w_th, o_q_th, &
131         o_a_th, o_d_th, o_f0_th, o_zmax_th, &
132         o_dqthe, o_dtajs, o_dqajs, o_dtswr, &
133         o_dtsw0, o_dtlwr, o_dtlw0, o_dtec, &
134         o_duvdf, o_dvvdf, o_duoro, o_dvoro, &
135         o_dtoro, o_dulif, o_dvlif, o_dtlif, &
136         o_duhin, o_dvhin, o_dthin, o_dqch4, o_rsu, &
137         o_rsd, o_rlu, o_rld, o_rsucs, o_rsdcs, &
138         o_rlucs, o_rldcs, o_tnt, o_tntr, &
139         o_tntscpbl, o_tnhus, o_tnhusscpbl, &
140         o_evu, o_h2o, o_mcd, o_dmc, o_ref_liq, &
141         o_ref_ice, o_rsut4co2, o_rlut4co2, &
142         o_rsutcs4co2, o_rlutcs4co2, o_rsu4co2, &
143         o_rlu4co2, o_rsucs4co2, o_rlucs4co2, &
144         o_rsd4co2, o_rld4co2, o_rsdcs4co2, &
145         o_rldcs4co2, o_tnondef, o_ta, o_zg, &
146         o_hus, o_hur, o_ua, o_va, o_wap, &
147         o_psbg, o_tro3, o_tro3_daylight, &
148         o_uxv, o_vxq, o_vxT, o_wxq, o_vxphi, &
149         o_wxT, o_uxu, o_vxv, o_TxT, o_trac, &
150         o_dtr_vdf, o_dtr_the, o_dtr_con, &
151         o_dtr_lessi_impa, o_dtr_lessi_nucl, &
152         o_dtr_insc, o_dtr_bcscav, o_dtr_evapls, &
153         o_dtr_ls, o_dtr_trsp, o_dtr_sscav, &
154         o_dtr_sat, o_dtr_uscav, o_trac_cum, o_du_gwd_rando, o_dv_gwd_rando, &
155         o_vstr_gwd_rando
156
157    USE phys_state_var_mod, only: pctsrf, paire_ter, rain_fall, snow_fall, &
158         qsol, z0m, z0h, fevap, agesno, &
159         nday_rain, rain_con, snow_con, &
160         topsw, toplw, toplw0, swup, swdn, &
161         topsw0, swup0, swdn0, SWup200, SWup200clr, &
162         SWdn200, SWdn200clr, LWup200, LWup200clr, &
163         LWdn200, LWdn200clr, solsw, solsw0, sollw, &
164         radsol, sollw0, sollwdown, sollw, gustiness, &
165         sollwdownclr, lwdn0, ftsol, ustar, u10m, &
166         v10m, pbl_tke, wake_delta_pbl_TKE, &
167         wstar, cape, ema_pcb, ema_pct, &
168         ema_cbmf, Ma, fm_therm, ale_bl, alp_bl, ale, &
169         alp, cin, wake_pe, wake_s, wake_deltat, &
170         wake_deltaq, ftd, fqd, ale_bl_trig, albsol1, &
171         rnebcon, wo, falb1, albsol2, coefh, clwcon0, &
172         ratqs, entr_therm, zqasc, detr_therm, f0, &
173         lwup, lwdn, lwup0, coefm, &
174         swupp, lwupp, swup0p, lwup0p, swdnp, lwdnp, &
175         swdn0p, lwdn0p, tnondef, O3sumSTD, uvsumSTD, &
176         vqsumSTD, vTsumSTD, O3daysumSTD, wqsumSTD, &
177         vphisumSTD, wTsumSTD, u2sumSTD, v2sumSTD, &
178         T2sumSTD, nlevSTD, du_gwd_rando, dv_gwd_rando
179
180    USE phys_local_var_mod, only: zxfluxlat, slp, zxtsol, zt2m, &
181         t2m_min_mon, t2m_max_mon, evap, &
182         zu10m, zv10m, zq2m, zustar, zxqsurf, &
183         rain_lsc, snow_lsc, bils, sens, fder, &
184         zxffonte, zxfqcalving, zxfqfonte, fluxu, &
185         fluxv, zxsnow, qsnow, snowhgt, to_ice, &
186         sissnow, runoff, albsol3_lic, evap_pot, &
187         t2m, fluxt, fluxlat, fsollw, fsolsw, &
188         wfbils, wfbilo, cdragm, cdragh, cldl, cldm, &
189         cldh, cldt, JrNt, cldljn, cldmjn, cldhjn, &
190         cldtjn, cldq, flwp, fiwp, ue, ve, uq, vq, &
191         plcl, plfc, wbeff, upwd, dnwd, dnwd0, prw, &
192         s_pblh, s_pblt, s_lcl, s_therm, uwriteSTD, &
193         vwriteSTD, wwriteSTD, phiwriteSTD, qwriteSTD, &
194         twriteSTD, ale_wake, alp_wake, wake_h, &
195         wake_omg, d_t_wake, d_q_wake, Vprecip, &
196         wdtrainA, wdtrainM, n2, s2, proba_notrig, &
197         random_notrig, ale_bl_stat, &
198         alp_bl_det, alp_bl_fluct_m, alp_bl_conv, &
199         alp_bl_stat, alp_bl_fluct_tke, slab_wfbils, &
200         weak_inversion, dthmin, cldtau, cldemi, &
201         pmflxr, pmflxs, prfl, psfl, re, fl, rh2m, &
202         qsat2m, tpote, tpot, d_ts, od550aer, &
203         od865aer, absvisaer, od550lt1aer, sconcso4, sconcno3, &
204         sconcoa, sconcbc, sconcss, sconcdust, concso4, concno3, &
205         concoa, concbc, concss, concdust, loadso4, &
206         loadoa, loadbc, loadss, loaddust, tausum_aero, &
207         topswad_aero, topswad0_aero, solswad_aero, &
208         solswad0_aero, topsw_aero, solsw_aero, &
209         topsw0_aero, solsw0_aero, topswcf_aero, &
210         solswcf_aero, topswai_aero, solswai_aero, &
211         toplwad_aero, toplwad0_aero, sollwad_aero, &
212         sollwad0_aero, toplwai_aero, sollwai_aero, &
213         scdnc, cldncl, reffclws, reffclwc, cldnvi, &
214         lcc, lcc3d, lcc3dcon, lcc3dstra, reffclwtop, &
215         ec550aer, flwc, fiwc, t_seri, theta, q_seri, &
216         ql_seri, zphi, u_seri, v_seri, omega, cldfra, &
217         rneb, rnebjn, zx_rh, d_t_dyn, d_q_dyn, &
218         d_u_dyn, d_v_dyn, d_t_con, d_t_ajsb, d_t_ajs, &
219         d_u_ajs, d_v_ajs, &
220         d_u_con, d_v_con, d_q_con, d_q_ajs, d_t_lsc, &
221         d_t_lwr,d_t_lw0,d_t_swr,d_t_sw0, &
222         d_t_eva, d_q_lsc, beta_prec, d_t_lscth, &
223         d_t_lscst, d_q_lscth, d_q_lscst, plul_th, &
224         plul_st, d_t_vdf, d_t_diss, d_q_vdf, d_q_eva, &
225         zw2, fraca, zmax_th, d_q_ajsb, d_t_ec, d_u_vdf, &
226         d_v_vdf, d_u_oro, d_v_oro, d_t_oro, d_u_lif, &
227         d_v_lif, d_t_lif, d_u_hin, d_v_hin, d_t_hin, &
228         d_q_ch4, pmfd, pmfu, ref_liq, ref_ice, rhwriteSTD
229
230    USE phys_output_var_mod, only: vars_defined, snow_o, zfra_o, bils_diss, &
231         bils_ec,bils_ech, bils_tke, bils_kinetic, bils_latent, bils_enthalp, &
232         itau_con, nfiles, clef_files, nid_files, zvstr_gwd_rando
233    USE ocean_slab_mod, only: tslab, slab_bils, slab_bilg, tice, seaice
234    USE pbl_surface_mod, only: snow
235    USE indice_sol_mod, only: nbsrf
236    USE infotrac_phy, only: nqtot, nqo, type_trac
237    USE comgeomphy, only: airephy
238    USE surface_data, only: type_ocean, version_ocean, ok_veget, ok_snow
239!    USE aero_mod, only: naero_spc
240    USE aero_mod, only: naero_tot, id_STRAT_phy
241    USE ioipsl, only: histend, histsync
242    USE iophy, only: set_itau_iophy, histwrite_phy
243    USE netcdf, only: nf90_fill_real
244
245#ifdef CPP_XIOS
246    ! ug Pour les sorties XIOS
247    USE xios, ONLY: xios_update_calendar
248    USE wxios, only: wxios_closedef
249#endif
250    USE phys_cal_mod, only : mth_len
251    !USE temps_phy_mod
252    USE inifis_mod, ONLY: start_time, itau_phy
253
254    IMPLICIT NONE
255
256
257    INCLUDE "clesphys.h"
258    INCLUDE "thermcell.h"
259    INCLUDE "compbl.h"
260    INCLUDE "YOMCST.h"
261
262    ! Input
263    INTEGER :: itap, ivap, read_climoz
264    INTEGER, DIMENSION(klon) :: lmax_th
265    LOGICAL :: aerosol_couple, ok_sync
266    LOGICAL :: ok_ade, ok_aie, new_aod
267    LOGICAL, DIMENSION(klon, klev) :: ptconv, ptconvth
268    REAL :: pdtphys
269    CHARACTER (LEN=4), DIMENSION(nlevSTD) :: clevSTD
270    REAL, DIMENSION(klon,nlevSTD) :: zx_tmp_fi3d_STD
271    REAL, DIMENSION(klon) :: pphis
272    REAL, DIMENSION(klon, klev) :: pplay, d_t
273    REAL, DIMENSION(klon, klev+1) :: paprs
274    REAL, DIMENSION(klon,klev,nqtot) :: qx, d_qx
275    REAL, DIMENSION(klon, klev) :: zmasse
276    LOGICAL :: flag_aerosol_strat
277    INTEGER :: flag_aerosol
278    LOGICAL :: ok_cdnc
279    REAL, DIMENSION(3) :: freq_moyNMC
280
281    ! Local
282    INTEGER :: itau_w
283    INTEGER :: i, iinit, iinitend=1, iff, iq, nsrf, k, ll, naero
284    REAL, DIMENSION (klon) :: zx_tmp_fi2d
285    REAL, DIMENSION (klon,klev) :: zx_tmp_fi3d, zpt_conv
286    REAL, DIMENSION (klon,klev+1) :: zx_tmp_fi3d1
287    CHARACTER (LEN=4)              :: bb2
288    INTEGER, DIMENSION(nbp_lon*nbp_lat)  :: ndex2d
289    INTEGER, DIMENSION(nbp_lon*nbp_lat*klev) :: ndex3d
290    REAL, PARAMETER :: dobson_u = 2.1415e-05 ! Dobson unit, in kg m-2
291    REAL, PARAMETER :: missing_val=nf90_fill_real
292    REAL, PARAMETER :: un_jour=86400.
293
294    ! On calcul le nouveau tau:
295    itau_w = itau_phy + itap + start_time * day_step / iphysiq
296    ! On le donne à iophy pour que les histwrite y aient accès:
297    CALL set_itau_iophy(itau_w)
298
299    IF(.NOT.vars_defined) THEN
300       iinitend = 2
301    ELSE
302       iinitend = 1
303    ENDIF
304
305    ! ug la boucle qui suit ne sert qu'une fois, pour l'initialisation, sinon il n'y a toujours qu'un seul passage:
306    DO iinit=1, iinitend
307#ifdef CPP_XIOS
308       !$OMP MASTER
309       IF (vars_defined) THEN
310          if (prt_level >= 10) then
311             write(lunout,*)"phys_output_write: call xios_update_calendar, itau_w=",itau_w
312          endif
313!          CALL xios_update_calendar(itau_w)
314          CALL xios_update_calendar(itap)
315       END IF
316       !$OMP END MASTER
317       !$OMP BARRIER
318#endif
319       ! On procède à l'écriture ou à la définition des nombreuses variables:
320!!! Champs 1D !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
321       CALL histwrite_phy(o_phis, pphis)
322       CALL histwrite_phy(o_aire, airephy)
323
324       IF (vars_defined) THEN
325          DO i=1, klon
326             zx_tmp_fi2d(i)=pctsrf(i,is_ter)+pctsrf(i,is_lic)
327          ENDDO
328       ENDIF
329
330       CALL histwrite_phy(o_contfracATM, zx_tmp_fi2d)
331       CALL histwrite_phy(o_contfracOR, pctsrf(:,is_ter))
332       CALL histwrite_phy(o_aireTER, paire_ter)
333!!! Champs 2D !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
334       CALL histwrite_phy(o_flat, zxfluxlat)
335       CALL histwrite_phy(o_slp, slp)
336       CALL histwrite_phy(o_tsol, zxtsol)
337       CALL histwrite_phy(o_t2m, zt2m)
338       CALL histwrite_phy(o_t2m_min, zt2m)
339       CALL histwrite_phy(o_t2m_max, zt2m)
340       CALL histwrite_phy(o_t2m_max_mon, t2m_max_mon)
341       CALL histwrite_phy(o_t2m_min_mon, t2m_min_mon)
342
343       IF (vars_defined) THEN
344          DO i=1, klon
345             zx_tmp_fi2d(i)=SQRT(zu10m(i)*zu10m(i)+zv10m(i)*zv10m(i))
346          ENDDO
347       ENDIF
348       CALL histwrite_phy(o_wind10m, zx_tmp_fi2d)
349
350       IF (vars_defined) THEN
351          DO i=1, klon
352             zx_tmp_fi2d(i)=SQRT(zu10m(i)*zu10m(i)+zv10m(i)*zv10m(i))
353          ENDDO
354       ENDIF
355       CALL histwrite_phy(o_wind10max, zx_tmp_fi2d)
356
357       CALL histwrite_phy(o_gusts, gustiness)
358
359       IF (vars_defined) THEN
360          DO i = 1, klon
361             zx_tmp_fi2d(i) = pctsrf(i,is_sic)
362          ENDDO
363       ENDIF
364       CALL histwrite_phy(o_sicf, zx_tmp_fi2d)
365       CALL histwrite_phy(o_q2m, zq2m)
366       CALL histwrite_phy(o_ustar, zustar)
367       CALL histwrite_phy(o_u10m, zu10m)
368       CALL histwrite_phy(o_v10m, zv10m)
369
370       IF (vars_defined) THEN
371          DO i = 1, klon
372             zx_tmp_fi2d(i) = paprs(i,1)
373          ENDDO
374       ENDIF
375       CALL histwrite_phy(o_psol, zx_tmp_fi2d)
376       CALL histwrite_phy(o_mass, zmasse)
377       CALL histwrite_phy(o_qsurf, zxqsurf)
378
379       IF (.NOT. ok_veget) THEN
380          CALL histwrite_phy(o_qsol, qsol)
381       ENDIF
382
383       IF (vars_defined) THEN
384          DO i = 1, klon
385             zx_tmp_fi2d(i) = rain_fall(i) + snow_fall(i)
386          ENDDO
387       ENDIF
388
389       CALL histwrite_phy(o_precip, zx_tmp_fi2d)
390       CALL histwrite_phy(o_ndayrain, nday_rain)
391
392       IF (vars_defined) THEN
393          DO i = 1, klon
394             zx_tmp_fi2d(i) = rain_lsc(i) + snow_lsc(i)
395          ENDDO
396       ENDIF
397       CALL histwrite_phy(o_plul, zx_tmp_fi2d)
398
399       IF (vars_defined) THEN
400          DO i = 1, klon
401             zx_tmp_fi2d(i) = rain_con(i) + snow_con(i)
402          ENDDO
403       ENDIF
404       CALL histwrite_phy(o_pluc, zx_tmp_fi2d)
405       CALL histwrite_phy(o_snow, snow_fall)
406       CALL histwrite_phy(o_msnow, zxsnow)
407       CALL histwrite_phy(o_fsnow, zfra_o)
408       CALL histwrite_phy(o_evap, evap)
409       CALL histwrite_phy(o_tops, topsw)
410       CALL histwrite_phy(o_tops0, topsw0)
411       CALL histwrite_phy(o_topl, toplw)
412       CALL histwrite_phy(o_topl0, toplw0)
413
414       IF (vars_defined) THEN
415          zx_tmp_fi2d(1 : klon) = swup ( 1 : klon, klevp1 )
416       ENDIF
417       CALL histwrite_phy(o_SWupTOA, zx_tmp_fi2d)
418
419       IF (vars_defined) THEN
420          zx_tmp_fi2d(1 : klon) = swup0 ( 1 : klon, klevp1 )
421       ENDIF
422       CALL histwrite_phy(o_SWupTOAclr, zx_tmp_fi2d)
423
424       IF (vars_defined) THEN
425          zx_tmp_fi2d(1 : klon) = swdn ( 1 : klon, klevp1 )
426       ENDIF
427       CALL histwrite_phy(o_SWdnTOA, zx_tmp_fi2d)
428
429       IF (vars_defined) THEN
430          zx_tmp_fi2d(1 : klon) = swdn0 ( 1 : klon, klevp1 )
431       ENDIF
432       CALL histwrite_phy(o_SWdnTOAclr, zx_tmp_fi2d)
433
434       IF (vars_defined) THEN
435          zx_tmp_fi2d(:) = topsw(:)-toplw(:)
436       ENDIF
437       CALL histwrite_phy(o_nettop, zx_tmp_fi2d)
438       CALL histwrite_phy(o_SWup200, SWup200)
439       CALL histwrite_phy(o_SWup200clr, SWup200clr)
440       CALL histwrite_phy(o_SWdn200, SWdn200)
441       CALL histwrite_phy(o_SWdn200clr, SWdn200clr)
442       CALL histwrite_phy(o_LWup200, LWup200)
443       CALL histwrite_phy(o_LWup200clr, LWup200clr)
444       CALL histwrite_phy(o_LWdn200, LWdn200)
445       CALL histwrite_phy(o_LWdn200clr, LWdn200clr)
446       CALL histwrite_phy(o_sols, solsw)
447       CALL histwrite_phy(o_sols0, solsw0)
448       CALL histwrite_phy(o_soll, sollw)
449       CALL histwrite_phy(o_radsol, radsol)
450       CALL histwrite_phy(o_soll0, sollw0)
451
452       IF (vars_defined) THEN
453          zx_tmp_fi2d(1 : klon) = swup ( 1 : klon, 1 )
454       ENDIF
455       CALL histwrite_phy(o_SWupSFC, zx_tmp_fi2d)
456
457       IF (vars_defined) THEN
458          zx_tmp_fi2d(1 : klon) = swup0 ( 1 : klon, 1 )
459       ENDIF
460       CALL histwrite_phy(o_SWupSFCclr, zx_tmp_fi2d)
461
462       IF (vars_defined) THEN
463          zx_tmp_fi2d(1 : klon) = swdn ( 1 : klon, 1 )
464       ENDIF
465       CALL histwrite_phy(o_SWdnSFC, zx_tmp_fi2d)
466
467       IF (vars_defined) THEN
468          zx_tmp_fi2d(1 : klon) = swdn0 ( 1 : klon, 1 )
469       ENDIF
470       CALL histwrite_phy(o_SWdnSFCclr, zx_tmp_fi2d)
471
472       IF (vars_defined) THEN
473          zx_tmp_fi2d(1:klon)=sollwdown(1:klon)-sollw(1:klon)
474       ENDIF
475       CALL histwrite_phy(o_LWupSFC, zx_tmp_fi2d)
476       CALL histwrite_phy(o_LWdnSFC, sollwdown)
477
478       IF (vars_defined) THEN
479          sollwdownclr(1:klon) = -1.*lwdn0(1:klon,1)
480          zx_tmp_fi2d(1:klon)=sollwdownclr(1:klon)-sollw0(1:klon)
481       ENDIF
482       CALL histwrite_phy(o_LWupSFCclr, zx_tmp_fi2d)
483       CALL histwrite_phy(o_LWdnSFCclr, sollwdownclr)
484       CALL histwrite_phy(o_bils, bils)
485       CALL histwrite_phy(o_bils_diss, bils_diss)
486       CALL histwrite_phy(o_bils_ec, bils_ec)
487       IF (iflag_ener_conserv>=1) THEN
488         CALL histwrite_phy(o_bils_ech, bils_ech)
489       ENDIF
490       CALL histwrite_phy(o_bils_tke, bils_tke)
491       CALL histwrite_phy(o_bils_kinetic, bils_kinetic)
492       CALL histwrite_phy(o_bils_latent, bils_latent)
493       CALL histwrite_phy(o_bils_enthalp, bils_enthalp)
494
495       IF (vars_defined) THEN
496          zx_tmp_fi2d(1:klon)=-1*sens(1:klon)
497       ENDIF
498       CALL histwrite_phy(o_sens, zx_tmp_fi2d)
499       CALL histwrite_phy(o_fder, fder)
500       CALL histwrite_phy(o_ffonte, zxffonte)
501       CALL histwrite_phy(o_fqcalving, zxfqcalving)
502       CALL histwrite_phy(o_fqfonte, zxfqfonte)
503       IF (vars_defined) THEN
504          zx_tmp_fi2d=0.
505          DO nsrf=1,nbsrf
506             zx_tmp_fi2d(:)=zx_tmp_fi2d(:)+pctsrf(:,nsrf)*fluxu(:,1,nsrf)
507          ENDDO
508       ENDIF
509       CALL histwrite_phy(o_taux, zx_tmp_fi2d)
510
511       IF (vars_defined) THEN
512          zx_tmp_fi2d=0.
513          DO nsrf=1,nbsrf
514             zx_tmp_fi2d(:)=zx_tmp_fi2d(:)+pctsrf(:,nsrf)*fluxv(:,1,nsrf)
515          ENDDO
516       ENDIF
517       CALL histwrite_phy(o_tauy, zx_tmp_fi2d)
518
519       IF (ok_snow) THEN
520          CALL histwrite_phy(o_snowsrf, snow_o)
521          CALL histwrite_phy(o_qsnow, qsnow)
522          CALL histwrite_phy(o_snowhgt,snowhgt)
523          CALL histwrite_phy(o_toice,to_ice)
524          CALL histwrite_phy(o_sissnow,sissnow)
525          CALL histwrite_phy(o_runoff,runoff)
526          CALL histwrite_phy(o_albslw3,albsol3_lic)
527       ENDIF
528
529       DO nsrf = 1, nbsrf
530          IF (vars_defined)             zx_tmp_fi2d(1 : klon) = pctsrf( 1 : klon, nsrf)*100.
531          CALL histwrite_phy(o_pourc_srf(nsrf), zx_tmp_fi2d)
532          IF (vars_defined)           zx_tmp_fi2d(1 : klon) = pctsrf( 1 : klon, nsrf)
533          CALL histwrite_phy(o_fract_srf(nsrf), zx_tmp_fi2d)
534          IF (vars_defined)         zx_tmp_fi2d(1 : klon) = fluxu( 1 : klon, 1, nsrf)
535          CALL histwrite_phy(o_taux_srf(nsrf), zx_tmp_fi2d)
536          IF (vars_defined)         zx_tmp_fi2d(1 : klon) = fluxv( 1 : klon, 1, nsrf)
537          CALL histwrite_phy(o_tauy_srf(nsrf), zx_tmp_fi2d)
538          IF (vars_defined)         zx_tmp_fi2d(1 : klon) = ftsol( 1 : klon, nsrf)
539          CALL histwrite_phy(o_tsol_srf(nsrf), zx_tmp_fi2d)
540          IF (vars_defined)         zx_tmp_fi2d(1 : klon) = evap_pot( 1 : klon, nsrf)
541          CALL histwrite_phy(o_evappot_srf(nsrf), zx_tmp_fi2d)
542          IF (vars_defined)       zx_tmp_fi2d(1 : klon) = ustar(1 : klon, nsrf)
543          CALL histwrite_phy(o_ustar_srf(nsrf), zx_tmp_fi2d)
544          IF (vars_defined)       zx_tmp_fi2d(1 : klon) = u10m(1 : klon, nsrf)
545          CALL histwrite_phy(o_u10m_srf(nsrf), zx_tmp_fi2d)
546          IF (vars_defined)       zx_tmp_fi2d(1 : klon) = v10m(1 : klon, nsrf)
547          CALL histwrite_phy(o_v10m_srf(nsrf), zx_tmp_fi2d)
548          IF (vars_defined)       zx_tmp_fi2d(1 : klon) = t2m(1 : klon, nsrf)
549          CALL histwrite_phy(o_t2m_srf(nsrf), zx_tmp_fi2d)
550          IF (vars_defined)       zx_tmp_fi2d(1 : klon) = fevap(1 : klon, nsrf)
551          CALL histwrite_phy(o_evap_srf(nsrf), zx_tmp_fi2d)
552          IF (vars_defined)        zx_tmp_fi2d(1 : klon) = fluxt( 1 : klon, 1, nsrf)
553          CALL histwrite_phy(o_sens_srf(nsrf), zx_tmp_fi2d)
554          IF (vars_defined)         zx_tmp_fi2d(1 : klon) = fluxlat( 1 : klon, nsrf)
555          CALL histwrite_phy(o_lat_srf(nsrf), zx_tmp_fi2d)
556          IF (vars_defined)         zx_tmp_fi2d(1 : klon) = fsollw( 1 : klon, nsrf)
557          CALL histwrite_phy(o_flw_srf(nsrf), zx_tmp_fi2d)
558          IF (vars_defined)         zx_tmp_fi2d(1 : klon) = fsolsw( 1 : klon, nsrf)
559          CALL histwrite_phy(o_fsw_srf(nsrf), zx_tmp_fi2d)
560          IF (vars_defined)         zx_tmp_fi2d(1 : klon) = wfbils( 1 : klon, nsrf)
561          CALL histwrite_phy(o_wbils_srf(nsrf), zx_tmp_fi2d)
562          IF (vars_defined)         zx_tmp_fi2d(1 : klon) = wfbilo( 1 : klon, nsrf)
563          CALL histwrite_phy(o_wbilo_srf(nsrf), zx_tmp_fi2d)
564
565          IF (iflag_pbl > 1) THEN
566             CALL histwrite_phy(o_tke_srf(nsrf),  pbl_tke(:,1:klev,nsrf))
567             CALL histwrite_phy(o_tke_max_srf(nsrf),  pbl_tke(:,1:klev,nsrf))
568          ENDIF
569!jyg<
570          IF (iflag_pbl > 1) THEN
571             CALL histwrite_phy(o_dltpbltke_srf(nsrf), wake_delta_pbl_TKE(:,1:klev,nsrf))
572          ENDIF
573!>jyg
574
575       ENDDO
576       DO nsrf=1,nbsrf+1
577          CALL histwrite_phy(o_wstar(nsrf), wstar(1 : klon, nsrf))
578       ENDDO
579
580       CALL histwrite_phy(o_cdrm, cdragm)
581       CALL histwrite_phy(o_cdrh, cdragh)
582       CALL histwrite_phy(o_cldl, cldl)
583       CALL histwrite_phy(o_cldm, cldm)
584       CALL histwrite_phy(o_cldh, cldh)
585       CALL histwrite_phy(o_cldt, cldt)
586       CALL histwrite_phy(o_JrNt, JrNt)
587       CALL histwrite_phy(o_cldljn, cldl*JrNt)
588       CALL histwrite_phy(o_cldmjn, cldm*JrNt)
589       CALL histwrite_phy(o_cldhjn, cldh*JrNt)
590       CALL histwrite_phy(o_cldtjn, cldt*JrNt)
591       CALL histwrite_phy(o_cldq, cldq)
592       IF (vars_defined)       zx_tmp_fi2d(1:klon) = flwp(1:klon)
593       CALL histwrite_phy(o_lwp, zx_tmp_fi2d)
594       IF (vars_defined)       zx_tmp_fi2d(1:klon) = fiwp(1:klon)
595       CALL histwrite_phy(o_iwp, zx_tmp_fi2d)
596       CALL histwrite_phy(o_ue, ue)
597       CALL histwrite_phy(o_ve, ve)
598       CALL histwrite_phy(o_uq, uq)
599       CALL histwrite_phy(o_vq, vq)
600       IF(iflag_con.GE.3) THEN ! sb
601          CALL histwrite_phy(o_cape, cape)
602          CALL histwrite_phy(o_pbase, ema_pcb)
603          CALL histwrite_phy(o_ptop, ema_pct)
604          CALL histwrite_phy(o_fbase, ema_cbmf)
605          if (iflag_con /= 30) then
606             CALL histwrite_phy(o_plcl, plcl)
607             CALL histwrite_phy(o_plfc, plfc)
608             CALL histwrite_phy(o_wbeff, wbeff)
609          end if
610
611          CALL histwrite_phy(o_cape_max, cape)
612
613          CALL histwrite_phy(o_upwd, upwd)
614          CALL histwrite_phy(o_Ma, Ma)
615          CALL histwrite_phy(o_dnwd, dnwd)
616          CALL histwrite_phy(o_dnwd0, dnwd0)
617          IF (vars_defined)         zx_tmp_fi2d=float(itau_con)/float(itap)
618          CALL histwrite_phy(o_ftime_con, zx_tmp_fi2d)
619          IF (vars_defined) THEN
620             IF(iflag_thermals>=1)THEN
621                zx_tmp_fi3d=dnwd+dnwd0+upwd+fm_therm(:,1:klev)
622             ELSE
623                zx_tmp_fi3d=dnwd+dnwd0+upwd
624             ENDIF
625          ENDIF
626          CALL histwrite_phy(o_mc, zx_tmp_fi3d)
627       ENDIF !iflag_con .GE. 3
628       CALL histwrite_phy(o_prw, prw)
629       CALL histwrite_phy(o_s_pblh, s_pblh)
630       CALL histwrite_phy(o_s_pblt, s_pblt)
631       CALL histwrite_phy(o_s_lcl, s_lcl)
632       CALL histwrite_phy(o_s_therm, s_therm)
633       !IM : Les champs suivants (s_capCL, s_oliqCL, s_cteiCL, s_trmb1, s_trmb2, s_trmb3) ne sont pas definis dans HBTM.F
634       !       IF (o_s_capCL%flag(iff)<=lev_files(iff)) THEN
635       !     CALL histwrite_phy(nid_files(iff),clef_stations(iff),
636       !    $o_s_capCL%name,itau_w,s_capCL)
637       !       ENDIF
638       !       IF (o_s_oliqCL%flag(iff)<=lev_files(iff)) THEN
639       !     CALL histwrite_phy(nid_files(iff),clef_stations(iff),
640       !    $o_s_oliqCL%name,itau_w,s_oliqCL)
641       !       ENDIF
642       !       IF (o_s_cteiCL%flag(iff)<=lev_files(iff)) THEN
643       !     CALL histwrite_phy(nid_files(iff),clef_stations(iff),
644       !    $o_s_cteiCL%name,itau_w,s_cteiCL)
645       !       ENDIF
646       !       IF (o_s_trmb1%flag(iff)<=lev_files(iff)) THEN
647       !     CALL histwrite_phy(nid_files(iff),clef_stations(iff),
648       !    $o_s_trmb1%name,itau_w,s_trmb1)
649       !       ENDIF
650       !       IF (o_s_trmb2%flag(iff)<=lev_files(iff)) THEN
651       !     CALL histwrite_phy(nid_files(iff),clef_stations(iff),
652       !    $o_s_trmb2%name,itau_w,s_trmb2)
653       !       ENDIF
654       !       IF (o_s_trmb3%flag(iff)<=lev_files(iff)) THEN
655       !     CALL histwrite_phy(nid_files(iff),clef_stations(iff),
656       !    $o_s_trmb3%name,itau_w,s_trmb3)
657       !       ENDIF
658
659       ! ATTENTION, LES ANCIENS HISTWRITE ONT ETES CONSERVES EN ATTENDANT MIEUX:
660       ! Champs interpolles sur des niveaux de pression
661       DO iff=1, nfiles
662          ll=0
663          DO k=1, nlevSTD
664             bb2=clevSTD(k)
665             IF(bb2.EQ."850".OR.bb2.EQ."700".OR. &
666                  bb2.EQ."500".OR.bb2.EQ."200".OR. &
667                  bb2.EQ."100".OR. &
668                  bb2.EQ."50".OR.bb2.EQ."10") THEN
669
670                ! a refaire correctement !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
671                ll=ll+1
672                CALL histwrite_phy(o_uSTDlevs(ll),uwriteSTD(:,k,iff), iff)
673                CALL histwrite_phy(o_vSTDlevs(ll),vwriteSTD(:,k,iff), iff)
674                CALL histwrite_phy(o_wSTDlevs(ll),wwriteSTD(:,k,iff), iff)
675                CALL histwrite_phy(o_zSTDlevs(ll),phiwriteSTD(:,k,iff), iff)
676                CALL histwrite_phy(o_qSTDlevs(ll),qwriteSTD(:,k,iff), iff)
677                CALL histwrite_phy(o_tSTDlevs(ll),twriteSTD(:,k,iff), iff)
678
679             ENDIF !(bb2.EQ."850".OR.bb2.EQ."700".OR.
680          ENDDO
681       ENDDO
682
683       IF (vars_defined) THEN
684          DO i=1, klon
685             IF (pctsrf(i,is_oce).GT.epsfra.OR. &
686                  pctsrf(i,is_sic).GT.epsfra) THEN
687                zx_tmp_fi2d(i) = (ftsol(i, is_oce) * pctsrf(i,is_oce)+ &
688                     ftsol(i, is_sic) * pctsrf(i,is_sic))/ &
689                     (pctsrf(i,is_oce)+pctsrf(i,is_sic))
690             ELSE
691                zx_tmp_fi2d(i) = 273.15
692             ENDIF
693          ENDDO
694       ENDIF
695       CALL histwrite_phy(o_t_oce_sic, zx_tmp_fi2d)
696
697       ! Couplage convection-couche limite
698       IF (iflag_con.GE.3) THEN
699          IF (iflag_coupl>=1) THEN
700             CALL histwrite_phy(o_ale_bl, ale_bl)
701             CALL histwrite_phy(o_alp_bl, alp_bl)
702          ENDIF !iflag_coupl>=1
703       ENDIF !(iflag_con.GE.3)
704       ! Wakes
705       IF (iflag_con.EQ.3) THEN
706          IF (iflag_wake>=1) THEN
707             CALL histwrite_phy(o_ale_wk, ale_wake)
708             CALL histwrite_phy(o_alp_wk, alp_wake)
709             CALL histwrite_phy(o_ale, ale)
710             CALL histwrite_phy(o_alp, alp)
711             CALL histwrite_phy(o_cin, cin)
712             CALL histwrite_phy(o_WAPE, wake_pe)
713             CALL histwrite_phy(o_wake_h, wake_h)
714             CALL histwrite_phy(o_wake_s, wake_s)
715             CALL histwrite_phy(o_wake_deltat, wake_deltat)
716             CALL histwrite_phy(o_wake_deltaq, wake_deltaq)
717             CALL histwrite_phy(o_wake_omg, wake_omg)
718             IF (vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_t_wake(1:klon,1:klev) &
719                  /pdtphys
720             CALL histwrite_phy(o_dtwak, zx_tmp_fi3d)
721             IF (vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_q_wake(1:klon,1:klev)/pdtphys
722             CALL histwrite_phy(o_dqwak, zx_tmp_fi3d)
723          ENDIF ! iflag_wake>=1
724          CALL histwrite_phy(o_Vprecip, Vprecip)
725          CALL histwrite_phy(o_ftd, ftd)
726          CALL histwrite_phy(o_fqd, fqd)
727       ELSEIF (iflag_con.EQ.30) THEN
728          ! sortie RomP convection descente insaturee iflag_con=30
729          CALL histwrite_phy(o_Vprecip, Vprecip)
730          CALL histwrite_phy(o_wdtrainA, wdtrainA)
731          CALL histwrite_phy(o_wdtrainM, wdtrainM)
732       ENDIF !(iflag_con.EQ.3.or.iflag_con.EQ.30)
733!!! nrlmd le 10/04/2012
734       IF (iflag_trig_bl>=1) THEN
735          CALL histwrite_phy(o_n2, n2)
736          CALL histwrite_phy(o_s2, s2)
737          CALL histwrite_phy(o_proba_notrig, proba_notrig)
738          CALL histwrite_phy(o_random_notrig, random_notrig)
739          CALL histwrite_phy(o_ale_bl_stat, ale_bl_stat)
740          CALL histwrite_phy(o_ale_bl_trig, ale_bl_trig)
741       ENDIF  !(iflag_trig_bl>=1)
742       IF (iflag_clos_bl>=1) THEN
743          CALL histwrite_phy(o_alp_bl_det, alp_bl_det)
744          CALL histwrite_phy(o_alp_bl_fluct_m, alp_bl_fluct_m)
745          CALL histwrite_phy(o_alp_bl_fluct_tke,  &
746               alp_bl_fluct_tke)
747          CALL histwrite_phy(o_alp_bl_conv, alp_bl_conv)
748          CALL histwrite_phy(o_alp_bl_stat, alp_bl_stat)
749       ENDIF  !(iflag_clos_bl>=1)
750!!! fin nrlmd le 10/04/2012
751       ! Output of slab ocean variables
752       IF (type_ocean=='slab ') THEN
753          CALL histwrite_phy(o_slab_qflux, slab_wfbils)
754          CALL histwrite_phy(o_slab_bils, slab_bils)
755          IF (nslay.EQ.1) THEN
756              zx_tmp_fi2d(:)=tslab(:,1)
757              CALL histwrite_phy(o_tslab, zx_tmp_fi2d)
758          ELSE
759              CALL histwrite_phy(o_tslab, tslab)
760          END IF
761          IF (version_ocean=='sicINT') THEN
762              CALL histwrite_phy(o_slab_bilg, slab_bilg)
763              CALL histwrite_phy(o_slab_tice, tice)
764              CALL histwrite_phy(o_slab_sic, seaice)
765          END IF
766       ENDIF !type_ocean == force/slab
767       CALL histwrite_phy(o_weakinv, weak_inversion)
768       CALL histwrite_phy(o_dthmin, dthmin)
769       CALL histwrite_phy(o_cldtau, cldtau)
770       CALL histwrite_phy(o_cldemi, cldemi)
771       CALL histwrite_phy(o_pr_con_l, pmflxr(:,1:klev))
772       CALL histwrite_phy(o_pr_con_i, pmflxs(:,1:klev))
773       CALL histwrite_phy(o_pr_lsc_l, prfl(:,1:klev))
774       CALL histwrite_phy(o_pr_lsc_i, psfl(:,1:klev))
775       CALL histwrite_phy(o_re, re)
776       CALL histwrite_phy(o_fl, fl)
777       IF (vars_defined) THEN
778          DO i=1, klon
779             zx_tmp_fi2d(i)=MIN(100.,rh2m(i)*100.)
780          ENDDO
781       ENDIF
782       CALL histwrite_phy(o_rh2m, zx_tmp_fi2d)
783
784       IF (vars_defined) THEN
785          DO i=1, klon
786             zx_tmp_fi2d(i)=MIN(100.,rh2m(i)*100.)
787          ENDDO
788       ENDIF
789       CALL histwrite_phy(o_rh2m_min, zx_tmp_fi2d)
790
791       IF (vars_defined) THEN
792          DO i=1, klon
793             zx_tmp_fi2d(i)=MIN(100.,rh2m(i)*100.)
794          ENDDO
795       ENDIF
796       CALL histwrite_phy(o_rh2m_max, zx_tmp_fi2d)
797
798       CALL histwrite_phy(o_qsat2m, qsat2m)
799       CALL histwrite_phy(o_tpot, tpot)
800       CALL histwrite_phy(o_tpote, tpote)
801       IF (vars_defined) zx_tmp_fi2d(1 : klon) = fsolsw( 1 : klon, is_ter)
802       CALL histwrite_phy(o_SWnetOR,  zx_tmp_fi2d)
803       IF (vars_defined) zx_tmp_fi2d(1:klon) = solsw(1:klon)/(1.-albsol1(1:klon))
804       CALL histwrite_phy(o_SWdownOR,  zx_tmp_fi2d)
805       CALL histwrite_phy(o_LWdownOR, sollwdown)
806       CALL histwrite_phy(o_snowl, snow_lsc)
807       CALL histwrite_phy(o_solldown, sollwdown)
808       CALL histwrite_phy(o_dtsvdfo, d_ts(:,is_oce))
809       CALL histwrite_phy(o_dtsvdft, d_ts(:,is_ter))
810       CALL histwrite_phy(o_dtsvdfg,  d_ts(:,is_lic))
811       CALL histwrite_phy(o_dtsvdfi, d_ts(:,is_sic))
812       CALL histwrite_phy(o_z0m, z0m(:,nbsrf+1))
813       CALL histwrite_phy(o_z0h, z0h(:,nbsrf+1))
814       ! OD550 per species
815!--OLIVIER
816!This is warranted by treating INCA aerosols as offline aerosols
817!       IF (new_aod .and. (.not. aerosol_couple)) THEN
818       IF (new_aod) THEN
819          IF (flag_aerosol.GT.0) THEN
820             CALL histwrite_phy(o_od550aer, od550aer)
821             CALL histwrite_phy(o_od865aer, od865aer)
822             CALL histwrite_phy(o_absvisaer, absvisaer)
823             CALL histwrite_phy(o_od550lt1aer, od550lt1aer)
824             CALL histwrite_phy(o_sconcso4, sconcso4)
825             CALL histwrite_phy(o_sconcno3, sconcno3)
826             CALL histwrite_phy(o_sconcoa, sconcoa)
827             CALL histwrite_phy(o_sconcbc, sconcbc)
828             CALL histwrite_phy(o_sconcss, sconcss)
829             CALL histwrite_phy(o_sconcdust, sconcdust)
830             CALL histwrite_phy(o_concso4, concso4)
831             CALL histwrite_phy(o_concno3, concno3)
832             CALL histwrite_phy(o_concoa, concoa)
833             CALL histwrite_phy(o_concbc, concbc)
834             CALL histwrite_phy(o_concss, concss)
835             CALL histwrite_phy(o_concdust, concdust)
836             CALL histwrite_phy(o_loadso4, loadso4)
837             CALL histwrite_phy(o_loadoa, loadoa)
838             CALL histwrite_phy(o_loadbc, loadbc)
839             CALL histwrite_phy(o_loadss, loadss)
840             CALL histwrite_phy(o_loaddust, loaddust)
841             !--STRAT AER
842          ENDIF
843          IF (flag_aerosol.GT.0.OR.flag_aerosol_strat) THEN
844!             DO naero = 1, naero_spc
845!--correction mini bug OB
846             DO naero = 1, naero_tot
847                CALL histwrite_phy(o_tausumaero(naero), &
848                     tausum_aero(:,2,naero) )
849             END DO
850          ENDIF
851          IF (flag_aerosol_strat) THEN
852             CALL histwrite_phy(o_tausumaero_lw, &
853                  tausum_aero(:,6,id_STRAT_phy) )
854          ENDIF
855       ENDIF
856       IF (ok_ade) THEN
857          CALL histwrite_phy(o_topswad, topswad_aero)
858          CALL histwrite_phy(o_topswad0, topswad0_aero)
859          CALL histwrite_phy(o_solswad, solswad_aero)
860          CALL histwrite_phy(o_solswad0, solswad0_aero)
861          CALL histwrite_phy(o_toplwad, toplwad_aero)
862          CALL histwrite_phy(o_toplwad0, toplwad0_aero)
863          CALL histwrite_phy(o_sollwad, sollwad_aero)
864          CALL histwrite_phy(o_sollwad0, sollwad0_aero)
865          !====MS forcing diagnostics
866          if (new_aod) then
867             CALL histwrite_phy(o_swtoaas_nat, topsw_aero(:,1))
868             CALL histwrite_phy(o_swsrfas_nat, solsw_aero(:,1))
869             CALL histwrite_phy(o_swtoacs_nat, topsw0_aero(:,1))
870             CALL histwrite_phy(o_swsrfcs_nat, solsw0_aero(:,1))
871             !ant
872             CALL histwrite_phy(o_swtoaas_ant, topsw_aero(:,2))
873             CALL histwrite_phy(o_swsrfas_ant, solsw_aero(:,2))
874             CALL histwrite_phy(o_swtoacs_ant, topsw0_aero(:,2))
875             CALL histwrite_phy(o_swsrfcs_ant, solsw0_aero(:,2))
876             !cf
877             if (.not. aerosol_couple) then
878                CALL histwrite_phy(o_swtoacf_nat, topswcf_aero(:,1))
879                CALL histwrite_phy(o_swsrfcf_nat, solswcf_aero(:,1))
880                CALL histwrite_phy(o_swtoacf_ant, topswcf_aero(:,2))
881                CALL histwrite_phy(o_swsrfcf_ant, solswcf_aero(:,2))
882                CALL histwrite_phy(o_swtoacf_zero,topswcf_aero(:,3))
883                CALL histwrite_phy(o_swsrfcf_zero,solswcf_aero(:,3))
884             endif
885          endif ! new_aod
886          !====MS forcing diagnostics
887       ENDIF
888       IF (ok_aie) THEN
889          CALL histwrite_phy(o_topswai, topswai_aero)
890          CALL histwrite_phy(o_solswai, solswai_aero)
891       ENDIF
892       IF (flag_aerosol.GT.0.AND.ok_cdnc) THEN
893          CALL histwrite_phy(o_scdnc, scdnc)
894          CALL histwrite_phy(o_cldncl, cldncl)
895          CALL histwrite_phy(o_reffclws, reffclws)
896          CALL histwrite_phy(o_reffclwc, reffclwc)
897          CALL histwrite_phy(o_cldnvi, cldnvi)
898          CALL histwrite_phy(o_lcc, lcc)
899          CALL histwrite_phy(o_lcc3d, lcc3d)
900          CALL histwrite_phy(o_lcc3dcon, lcc3dcon)
901          CALL histwrite_phy(o_lcc3dstra, lcc3dstra)
902          CALL histwrite_phy(o_reffclwtop, reffclwtop)
903       ENDIF
904       ! Champs 3D:
905       IF (ok_ade .OR. ok_aie) then
906          CALL histwrite_phy(o_ec550aer, ec550aer)
907       ENDIF
908       CALL histwrite_phy(o_lwcon, flwc)
909       CALL histwrite_phy(o_iwcon, fiwc)
910       CALL histwrite_phy(o_temp, t_seri)
911       CALL histwrite_phy(o_theta, theta)
912       CALL histwrite_phy(o_ovapinit, qx(:,:,ivap))
913       CALL histwrite_phy(o_ovap, q_seri)
914       CALL histwrite_phy(o_oliq, ql_seri)
915       CALL histwrite_phy(o_geop, zphi)
916       CALL histwrite_phy(o_vitu, u_seri)
917       CALL histwrite_phy(o_vitv, v_seri)
918       CALL histwrite_phy(o_vitw, omega)
919       CALL histwrite_phy(o_pres, pplay)
920       CALL histwrite_phy(o_paprs, paprs(:,1:klev))
921       IF (vars_defined) THEN
922          DO i=1, klon
923             zx_tmp_fi3d1(i,1)= pphis(i)/RG
924             !020611   zx_tmp_fi3d(i,1)= pphis(i)/RG
925          ENDDO
926          DO k=1, klev
927             !020611        DO k=1, klev-1
928             DO i=1, klon
929                !020611         zx_tmp_fi3d(i,k+1)= zx_tmp_fi3d(i,k) - (t_seri(i,k) *RD *
930                zx_tmp_fi3d1(i,k+1)= zx_tmp_fi3d1(i,k) - (t_seri(i,k) *RD *  &
931                     (paprs(i,k+1) - paprs(i,k))) / ( pplay(i,k) * RG )
932             ENDDO
933          ENDDO
934       ENDIF
935       CALL histwrite_phy(o_zfull,zx_tmp_fi3d1(:,2:klevp1))
936       !020611    $o_zfull%name,itau_w,zx_tmp_fi3d)
937
938       IF (vars_defined)  THEN
939          DO i=1, klon
940             zx_tmp_fi3d(i,1)= pphis(i)/RG - ( &
941                  (t_seri(i,1)+zxtsol(i))/2. *RD * &
942                  (pplay(i,1) - paprs(i,1)))/( (paprs(i,1)+pplay(i,1))/2.* RG)
943          ENDDO
944          DO k=1, klev-1
945             DO i=1, klon
946                zx_tmp_fi3d(i,k+1)= zx_tmp_fi3d(i,k) - ( &
947                     (t_seri(i,k)+t_seri(i,k+1))/2. *RD *  &
948                     (pplay(i,k+1) - pplay(i,k))) / ( paprs(i,k) * RG )
949             ENDDO
950          ENDDO
951       ENDIF
952       CALL histwrite_phy(o_zhalf, zx_tmp_fi3d)
953       CALL histwrite_phy(o_rneb, cldfra)
954       CALL histwrite_phy(o_rnebcon, rnebcon)
955       CALL histwrite_phy(o_rnebls, rneb)
956       IF (vars_defined)  THEN
957          DO k=1, klev
958             DO i=1, klon
959                zx_tmp_fi3d(i,k)=cldfra(i,k)*JrNt(i)
960             ENDDO
961          ENDDO
962       ENDIF
963       CALL histwrite_phy(o_rnebjn, zx_tmp_fi3d)
964       CALL histwrite_phy(o_rhum, zx_rh)
965       CALL histwrite_phy(o_ozone, &
966            wo(:, :, 1) * dobson_u * 1e3 / zmasse / rmo3 * rmd)
967
968       IF (read_climoz == 2) THEN
969          CALL histwrite_phy(o_ozone_light, &
970               wo(:, :, 2) * dobson_u * 1e3 / zmasse / rmo3 * rmd)
971       ENDIF
972
973       CALL histwrite_phy(o_dtphy, d_t)
974       CALL histwrite_phy(o_dqphy,  d_qx(:,:,ivap))
975       DO nsrf=1, nbsrf
976          IF (vars_defined) zx_tmp_fi2d(1 : klon) = falb1( 1 : klon, nsrf)
977          CALL histwrite_phy(o_albe_srf(nsrf), zx_tmp_fi2d)
978          IF (vars_defined) zx_tmp_fi2d(1 : klon) = z0m( 1 : klon, nsrf)
979          CALL histwrite_phy(o_z0m_srf(nsrf), zx_tmp_fi2d)
980          IF (vars_defined) zx_tmp_fi2d(1 : klon) = z0h( 1 : klon, nsrf)
981          CALL histwrite_phy(o_z0h_srf(nsrf), zx_tmp_fi2d)
982          IF (vars_defined) zx_tmp_fi2d(1 : klon) = agesno( 1 : klon, nsrf)
983          CALL histwrite_phy(o_ages_srf(nsrf), zx_tmp_fi2d)
984          IF (vars_defined) zx_tmp_fi2d(1 : klon) = snow( 1 : klon, nsrf)
985          CALL histwrite_phy(o_snow_srf(nsrf), zx_tmp_fi2d)
986       ENDDO !nsrf=1, nbsrf
987       CALL histwrite_phy(o_alb1, albsol1)
988       CALL histwrite_phy(o_alb2, albsol2)
989       !FH Sorties pour la couche limite
990       if (iflag_pbl>1) then
991          zx_tmp_fi3d=0.
992          IF (vars_defined) THEN
993             do nsrf=1,nbsrf
994                do k=1,klev
995                   zx_tmp_fi3d(:,k)=zx_tmp_fi3d(:,k) &
996                        +pctsrf(:,nsrf)*pbl_tke(:,k,nsrf)
997                enddo
998             enddo
999          ENDIF
1000          CALL histwrite_phy(o_tke, zx_tmp_fi3d)
1001
1002          CALL histwrite_phy(o_tke_max, zx_tmp_fi3d)
1003       ENDIF
1004
1005       CALL histwrite_phy(o_kz, coefh(:,:,is_ave))
1006
1007       CALL histwrite_phy(o_kz_max, coefh(:,:,is_ave))
1008
1009       CALL histwrite_phy(o_clwcon, clwcon0)
1010       CALL histwrite_phy(o_dtdyn, d_t_dyn)
1011       CALL histwrite_phy(o_dqdyn, d_q_dyn)
1012       CALL histwrite_phy(o_dudyn, d_u_dyn)
1013       CALL histwrite_phy(o_dvdyn, d_v_dyn)
1014
1015       IF (vars_defined) THEN
1016          zx_tmp_fi3d(1:klon,1:klev)=d_t_con(1:klon,1:klev)/pdtphys
1017       ENDIF
1018       CALL histwrite_phy(o_dtcon, zx_tmp_fi3d)
1019       if(iflag_thermals.eq.0)then
1020          IF (vars_defined) THEN
1021             zx_tmp_fi3d(1:klon,1:klev)=d_t_con(1:klon,1:klev)/pdtphys + &
1022                  d_t_ajsb(1:klon,1:klev)/pdtphys
1023          ENDIF
1024          CALL histwrite_phy(o_tntc, zx_tmp_fi3d)
1025       else if(iflag_thermals.ge.1.and.iflag_wake.EQ.1)then
1026          IF (vars_defined) THEN
1027             zx_tmp_fi3d(1:klon,1:klev)=d_t_con(1:klon,1:klev)/pdtphys + &
1028                  d_t_ajs(1:klon,1:klev)/pdtphys + &
1029                  d_t_wake(1:klon,1:klev)/pdtphys
1030          ENDIF
1031          CALL histwrite_phy(o_tntc, zx_tmp_fi3d)
1032       endif
1033       IF (vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_u_con(1:klon,1:klev)/pdtphys
1034       CALL histwrite_phy(o_ducon, zx_tmp_fi3d)
1035       IF (vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_v_con(1:klon,1:klev)/pdtphys
1036       CALL histwrite_phy(o_dvcon, zx_tmp_fi3d)
1037       IF (vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_q_con(1:klon,1:klev)/pdtphys
1038       CALL histwrite_phy(o_dqcon, zx_tmp_fi3d)
1039
1040       IF(iflag_thermals.EQ.0) THEN
1041          IF (vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_q_con(1:klon,1:klev)/pdtphys
1042          CALL histwrite_phy(o_tnhusc, zx_tmp_fi3d)
1043       ELSE IF(iflag_thermals.GE.1.AND.iflag_wake.EQ.1) THEN
1044          IF (vars_defined) THEN
1045             zx_tmp_fi3d(1:klon,1:klev)=d_q_con(1:klon,1:klev)/pdtphys + &
1046                  d_q_ajs(1:klon,1:klev)/pdtphys + &
1047                  d_q_wake(1:klon,1:klev)/pdtphys
1048          ENDIF
1049          CALL histwrite_phy(o_tnhusc, zx_tmp_fi3d)
1050       ENDIF
1051
1052       IF (vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_t_lsc(1:klon,1:klev)/pdtphys
1053       CALL histwrite_phy(o_dtlsc, zx_tmp_fi3d)
1054       IF (vars_defined) zx_tmp_fi3d(1:klon, 1:klev)=(d_t_lsc(1:klon,1:klev)+ &
1055            d_t_eva(1:klon,1:klev))/pdtphys
1056       CALL histwrite_phy(o_dtlschr, zx_tmp_fi3d)
1057       IF (vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_q_lsc(1:klon,1:klev)/pdtphys
1058       CALL histwrite_phy(o_dqlsc, zx_tmp_fi3d)
1059       IF (vars_defined) zx_tmp_fi3d(1:klon,1:klev)=beta_prec(1:klon,1:klev)
1060       CALL histwrite_phy(o_beta_prec, zx_tmp_fi3d)
1061!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
1062       ! Sorties specifiques a la separation thermiques/non thermiques
1063       if (iflag_thermals>=1) then
1064          IF(vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_t_lscth(1:klon,1:klev)/pdtphys
1065          CALL histwrite_phy(o_dtlscth, zx_tmp_fi3d)
1066          IF(vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_t_lscst(1:klon,1:klev)/pdtphys
1067          CALL histwrite_phy(o_dtlscst, zx_tmp_fi3d)
1068          IF(vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_q_lscth(1:klon,1:klev)/pdtphys
1069          CALL histwrite_phy(o_dqlscth, zx_tmp_fi3d)
1070          IF(vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_q_lscst(1:klon,1:klev)/pdtphys
1071          CALL histwrite_phy(o_dqlscst, zx_tmp_fi3d)
1072          CALL histwrite_phy(o_plulth, plul_th)
1073          CALL histwrite_phy(o_plulst, plul_st)
1074          IF (vars_defined) THEN
1075             do k=1,klev
1076                do i=1,klon
1077                   if (ptconvth(i,k)) then
1078                      zx_tmp_fi3d(i,k)=1.
1079                   else
1080                      zx_tmp_fi3d(i,k)=0.
1081                   endif
1082                enddo
1083             enddo
1084          ENDIF
1085          CALL histwrite_phy(o_ptconvth, zx_tmp_fi3d)
1086          IF (vars_defined) THEN
1087             do i=1,klon
1088                zx_tmp_fi2d(1:klon)=lmax_th(:)
1089             enddo
1090          ENDIF
1091          CALL histwrite_phy(o_lmaxth, zx_tmp_fi2d)
1092       endif ! iflag_thermals>=1
1093!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
1094       IF (vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_t_vdf(1:klon,1:klev)/pdtphys
1095       CALL histwrite_phy(o_dtvdf, zx_tmp_fi3d)
1096       IF(vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_t_diss(1:klon,1:klev)/pdtphys
1097       CALL histwrite_phy(o_dtdis, zx_tmp_fi3d)
1098       IF (vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_q_vdf(1:klon,1:klev)/pdtphys
1099       CALL histwrite_phy(o_dqvdf, zx_tmp_fi3d)
1100       IF (vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_t_eva(1:klon,1:klev)/pdtphys
1101       CALL histwrite_phy(o_dteva, zx_tmp_fi3d)
1102       IF (vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_q_eva(1:klon,1:klev)/pdtphys
1103       CALL histwrite_phy(o_dqeva, zx_tmp_fi3d)
1104       zpt_conv = 0.
1105       WHERE (ptconv) zpt_conv = 1.
1106       CALL histwrite_phy(o_ptconv, zpt_conv)
1107       CALL histwrite_phy(o_ratqs, ratqs)
1108       IF (vars_defined) THEN
1109          zx_tmp_fi3d(1:klon,1:klev)=d_t_ajs(1:klon,1:klev)/pdtphys - &
1110               d_t_ajsb(1:klon,1:klev)/pdtphys
1111       ENDIF
1112       CALL histwrite_phy(o_dtthe, zx_tmp_fi3d)
1113       IF (vars_defined) THEN
1114          zx_tmp_fi3d(1:klon,1:klev)=d_u_ajs(1:klon,1:klev)/pdtphys
1115       ENDIF
1116       CALL histwrite_phy(o_duthe, zx_tmp_fi3d)
1117       IF (vars_defined) THEN
1118          zx_tmp_fi3d(1:klon,1:klev)=d_v_ajs(1:klon,1:klev)/pdtphys
1119       ENDIF
1120       CALL histwrite_phy(o_dvthe, zx_tmp_fi3d)
1121
1122       IF (iflag_thermals>=1) THEN
1123          ! Pour l instant 0 a y reflichir pour les thermiques
1124          zx_tmp_fi2d=0.
1125          CALL histwrite_phy(o_ftime_th, zx_tmp_fi2d)
1126          CALL histwrite_phy(o_f_th, fm_therm)
1127          CALL histwrite_phy(o_e_th, entr_therm)
1128          CALL histwrite_phy(o_w_th, zw2)
1129          CALL histwrite_phy(o_q_th, zqasc)
1130          CALL histwrite_phy(o_a_th, fraca)
1131          CALL histwrite_phy(o_d_th, detr_therm)
1132          CALL histwrite_phy(o_f0_th, f0)
1133          CALL histwrite_phy(o_zmax_th, zmax_th)
1134          IF (vars_defined) THEN
1135             zx_tmp_fi3d(1:klon,1:klev)=d_q_ajs(1:klon,1:klev)/pdtphys - &
1136                  d_q_ajsb(1:klon,1:klev)/pdtphys
1137          ENDIF
1138          CALL histwrite_phy(o_dqthe, zx_tmp_fi3d)
1139       ENDIF !iflag_thermals
1140       IF(vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_t_ajsb(1:klon,1:klev)/pdtphys
1141       CALL histwrite_phy(o_dtajs, zx_tmp_fi3d)
1142       IF(vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_q_ajsb(1:klon,1:klev)/pdtphys
1143       CALL histwrite_phy(o_dqajs, zx_tmp_fi3d)
1144       IF(vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_t_swr(1:klon,1:klev)/pdtphys
1145       CALL histwrite_phy(o_dtswr, zx_tmp_fi3d)
1146       IF(vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_t_sw0(1:klon,1:klev)/pdtphys
1147       CALL histwrite_phy(o_dtsw0, zx_tmp_fi3d)
1148       IF(vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_t_lwr(1:klon,1:klev)/pdtphys
1149       CALL histwrite_phy(o_dtlwr, zx_tmp_fi3d)
1150       IF(vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_t_lw0(1:klon,1:klev)/pdtphys
1151       CALL histwrite_phy(o_dtlw0, zx_tmp_fi3d)
1152       IF(vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_t_ec(1:klon,1:klev)/pdtphys
1153       CALL histwrite_phy(o_dtec, zx_tmp_fi3d)
1154       IF(vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_u_vdf(1:klon,1:klev)/pdtphys
1155       CALL histwrite_phy(o_duvdf, zx_tmp_fi3d)
1156       IF(vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_v_vdf(1:klon,1:klev)/pdtphys
1157       CALL histwrite_phy(o_dvvdf, zx_tmp_fi3d)
1158       IF (ok_orodr) THEN
1159          IF(vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_u_oro(1:klon,1:klev)/pdtphys
1160          CALL histwrite_phy(o_duoro, zx_tmp_fi3d)
1161          IF(vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_v_oro(1:klon,1:klev)/pdtphys
1162          CALL histwrite_phy(o_dvoro, zx_tmp_fi3d)
1163          IF(vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_t_oro(1:klon,1:klev)/pdtphys
1164          CALL histwrite_phy(o_dtoro, zx_tmp_fi3d)
1165       ENDIF
1166       IF (ok_orolf) THEN
1167          IF(vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_u_lif(1:klon,1:klev)/pdtphys
1168          CALL histwrite_phy(o_dulif, zx_tmp_fi3d)
1169
1170          IF(vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_v_lif(1:klon,1:klev)/pdtphys
1171          CALL histwrite_phy(o_dvlif, zx_tmp_fi3d)
1172
1173          IF(vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_t_lif(1:klon,1:klev)/pdtphys
1174          CALL histwrite_phy(o_dtlif, zx_tmp_fi3d)
1175       ENDIF
1176
1177       IF (ok_hines) THEN
1178          IF(vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_u_hin(1:klon,1:klev)/pdtphys
1179          CALL histwrite_phy(o_duhin, zx_tmp_fi3d)
1180          IF(vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_v_hin(1:klon,1:klev)/pdtphys
1181          CALL histwrite_phy(o_dvhin, zx_tmp_fi3d)
1182          IF(vars_defined) zx_tmp_fi3d(1:klon,1:klev)=d_t_hin(1:klon,1:klev)/pdtphys
1183          CALL histwrite_phy(o_dthin, zx_tmp_fi3d)
1184       ENDIF
1185
1186       IF (ok_gwd_rando) then
1187          CALL histwrite_phy(o_du_gwd_rando, du_gwd_rando / pdtphys)
1188          CALL histwrite_phy(o_dv_gwd_rando, dv_gwd_rando / pdtphys)
1189          CALL histwrite_phy(o_vstr_gwd_rando, zvstr_gwd_rando)
1190       end IF
1191
1192       IF (ok_qch4) then
1193          CALL histwrite_phy(o_dqch4, d_q_ch4 / pdtphys)
1194       ENDIF
1195
1196       CALL histwrite_phy(o_rsu, swup)
1197       CALL histwrite_phy(o_rsd, swdn)
1198       CALL histwrite_phy(o_rlu, lwup)
1199       CALL histwrite_phy(o_rld, lwdn)
1200       CALL histwrite_phy(o_rsucs, swup0)
1201       CALL histwrite_phy(o_rsdcs, swdn0)
1202       CALL histwrite_phy(o_rlucs, lwup0)
1203       CALL histwrite_phy(o_rldcs, lwdn0)
1204       IF(vars_defined) THEN
1205          zx_tmp_fi3d(1:klon,1:klev)=d_t(1:klon,1:klev)+ &
1206               d_t_dyn(1:klon,1:klev)
1207       ENDIF
1208       CALL histwrite_phy(o_tnt, zx_tmp_fi3d)
1209       IF(vars_defined) THEN
1210          zx_tmp_fi3d(1:klon,1:klev)=d_t_swr(1:klon,1:klev)/pdtphys + &
1211               d_t_lwr(1:klon,1:klev)/pdtphys
1212       ENDIF
1213       CALL histwrite_phy(o_tntr, zx_tmp_fi3d)
1214       IF(vars_defined) THEN
1215          zx_tmp_fi3d(1:klon,1:klev)= (d_t_lsc(1:klon,1:klev)+ &
1216               d_t_eva(1:klon,1:klev)+ &
1217               d_t_vdf(1:klon,1:klev))/pdtphys
1218       ENDIF
1219       CALL histwrite_phy(o_tntscpbl, zx_tmp_fi3d)
1220       IF(vars_defined) THEN
1221          zx_tmp_fi3d(1:klon,1:klev)=d_qx(1:klon,1:klev,ivap)+ &
1222               d_q_dyn(1:klon,1:klev)
1223       ENDIF
1224       CALL histwrite_phy(o_tnhus, zx_tmp_fi3d)
1225       IF(vars_defined) THEN
1226          zx_tmp_fi3d(1:klon,1:klev)=d_q_lsc(1:klon,1:klev)/pdtphys+ &
1227               d_q_eva(1:klon,1:klev)/pdtphys
1228       ENDIF
1229       CALL histwrite_phy(o_tnhusscpbl, zx_tmp_fi3d)
1230       CALL histwrite_phy(o_evu, coefm(:,:,is_ave))
1231       IF(vars_defined) THEN
1232          zx_tmp_fi3d(1:klon,1:klev)=q_seri(1:klon,1:klev)+ &
1233               ql_seri(1:klon,1:klev)
1234       ENDIF
1235       CALL histwrite_phy(o_h2o, zx_tmp_fi3d)
1236       if (iflag_con >= 3) then
1237          IF(vars_defined) THEN
1238             zx_tmp_fi3d(1:klon,1:klev)=-1 * (dnwd(1:klon,1:klev)+ &
1239                  dnwd0(1:klon,1:klev))
1240          ENDIF
1241          CALL histwrite_phy(o_mcd, zx_tmp_fi3d)
1242          IF(vars_defined) THEN
1243             zx_tmp_fi3d(1:klon,1:klev)=upwd(1:klon,1:klev) + &
1244                  dnwd(1:klon,1:klev)+ dnwd0(1:klon,1:klev)
1245          ENDIF
1246          CALL histwrite_phy(o_dmc, zx_tmp_fi3d)
1247       else if (iflag_con == 2) then
1248          CALL histwrite_phy(o_mcd,  pmfd)
1249          CALL histwrite_phy(o_dmc,  pmfu + pmfd)
1250       end if
1251       CALL histwrite_phy(o_ref_liq, ref_liq)
1252       CALL histwrite_phy(o_ref_ice, ref_ice)
1253       if (RCO2_per.NE.RCO2_act.OR.RCH4_per.NE.RCH4_act.OR. &
1254            RN2O_per.NE.RN2O_act.OR.RCFC11_per.NE.RCFC11_act.OR. &
1255            RCFC12_per.NE.RCFC12_act) THEN
1256          IF(vars_defined) zx_tmp_fi2d(1 : klon) = swupp ( 1 : klon, klevp1 )
1257          CALL histwrite_phy(o_rsut4co2, zx_tmp_fi2d)
1258          IF(vars_defined) zx_tmp_fi2d(1 : klon) = lwupp ( 1 : klon, klevp1 )
1259          CALL histwrite_phy(o_rlut4co2, zx_tmp_fi2d)
1260          IF(vars_defined) zx_tmp_fi2d(1 : klon) = swup0p ( 1 : klon, klevp1 )
1261          CALL histwrite_phy(o_rsutcs4co2, zx_tmp_fi2d)
1262          IF(vars_defined) zx_tmp_fi2d(1 : klon) = lwup0p ( 1 : klon, klevp1 )
1263          CALL histwrite_phy(o_rlutcs4co2, zx_tmp_fi2d)
1264          CALL histwrite_phy(o_rsu4co2, swupp)
1265          CALL histwrite_phy(o_rlu4co2, lwupp)
1266          CALL histwrite_phy(o_rsucs4co2, swup0p)
1267          CALL histwrite_phy(o_rlucs4co2, lwup0p)
1268          CALL histwrite_phy(o_rsd4co2, swdnp)
1269          CALL histwrite_phy(o_rld4co2, lwdnp)
1270          CALL histwrite_phy(o_rsdcs4co2, swdn0p)
1271          CALL histwrite_phy(o_rldcs4co2, lwdn0p)
1272       ENDIF
1273!!!!!!!!!!!! Sorties niveaux de pression NMC !!!!!!!!!!!!!!!!!!!!
1274       DO iff=7, nfiles
1275
1276          CALL histwrite_phy(o_tnondef,tnondef(:,:,iff-6),iff)
1277          CALL histwrite_phy(o_ta,twriteSTD(:,:,iff-6),iff)
1278          CALL histwrite_phy(o_zg,phiwriteSTD(:,:,iff-6),iff)
1279          CALL histwrite_phy(o_hus,qwriteSTD(:,:,iff-6),iff)
1280          CALL histwrite_phy(o_hur,rhwriteSTD(:,:,iff-6),iff)
1281          CALL histwrite_phy(o_ua,uwriteSTD(:,:,iff-6),iff)
1282          CALL histwrite_phy(o_va,vwriteSTD(:,:,iff-6),iff)
1283          CALL histwrite_phy(o_wap,wwriteSTD(:,:,iff-6),iff)
1284          IF(vars_defined) THEN
1285             DO k=1, nlevSTD
1286                DO i=1, klon
1287                   IF(tnondef(i,k,iff-6).NE.missing_val) THEN
1288                      IF(freq_outNMC(iff-6).LT.0) THEN
1289                         freq_moyNMC(iff-6)=(mth_len*un_jour)/freq_calNMC(iff-6)
1290                      ELSE
1291                         freq_moyNMC(iff-6)=freq_outNMC(iff-6)/freq_calNMC(iff-6)
1292                      ENDIF
1293                      zx_tmp_fi3d_STD(i,k) = (100.*tnondef(i,k,iff-6))/freq_moyNMC(iff-6)
1294                   ELSE
1295                      zx_tmp_fi3d_STD(i,k) = missing_val
1296                   ENDIF
1297                ENDDO
1298             ENDDO
1299          ENDIF
1300          CALL histwrite_phy(o_psbg,zx_tmp_fi3d_STD,iff)
1301          IF(vars_defined) THEN
1302             DO k=1, nlevSTD
1303                DO i=1, klon
1304                   IF(O3sumSTD(i,k,iff-6).NE.missing_val) THEN
1305                      zx_tmp_fi3d_STD(i,k) = O3sumSTD(i,k,iff-6) * 1.e+9
1306                   ELSE
1307                      zx_tmp_fi3d_STD(i,k) = missing_val
1308                   ENDIF
1309                ENDDO
1310             ENDDO !k=1, nlevSTD
1311          ENDIF
1312          CALL histwrite_phy(o_tro3,zx_tmp_fi3d_STD,iff)
1313          if (read_climoz == 2) THEN
1314             IF(vars_defined) THEN
1315                DO k=1, nlevSTD
1316                   DO i=1, klon
1317                      IF(O3daysumSTD(i,k,iff-6).NE.missing_val) THEN
1318                         zx_tmp_fi3d_STD(i,k) = O3daysumSTD(i,k,iff-6) * 1.e+9
1319                      ELSE
1320                         zx_tmp_fi3d_STD(i,k) = missing_val
1321                      ENDIF
1322                   ENDDO
1323                ENDDO !k=1, nlevSTD
1324             ENDIF
1325             CALL histwrite_phy(o_tro3_daylight,zx_tmp_fi3d_STD,iff)
1326          endif
1327          CALL histwrite_phy(o_uxv,uvsumSTD(:,:,iff-6),iff)
1328          CALL histwrite_phy(o_vxq,vqsumSTD(:,:,iff-6),iff)
1329          CALL histwrite_phy(o_vxT,vTsumSTD(:,:,iff-6),iff)
1330          CALL histwrite_phy(o_wxq,wqsumSTD(:,:,iff-6),iff)
1331          CALL histwrite_phy(o_vxphi,vphisumSTD(:,:,iff-6),iff)
1332          CALL histwrite_phy(o_wxT,wTsumSTD(:,:,iff-6),iff)
1333          CALL histwrite_phy(o_uxu,u2sumSTD(:,:,iff-6),iff)
1334          CALL histwrite_phy(o_vxv,v2sumSTD(:,:,iff-6),iff)
1335          CALL histwrite_phy(o_TxT,T2sumSTD(:,:,iff-6),iff)
1336       ENDDO !nfiles
1337!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
1338        IF (nqtot.GE.nqo+1) THEN
1339            DO iq=nqo+1,nqtot
1340              IF (type_trac == 'lmdz' .OR. type_trac == 'repr') THEN
1341
1342             CALL histwrite_phy(o_trac(iq-nqo), qx(:,:,iq))
1343             CALL histwrite_phy(o_dtr_vdf(iq-nqo),d_tr_cl(:,:,iq-nqo))
1344             CALL histwrite_phy(o_dtr_the(iq-nqo),d_tr_th(:,:,iq-nqo))
1345             CALL histwrite_phy(o_dtr_con(iq-nqo),d_tr_cv(:,:,iq-nqo))
1346             CALL histwrite_phy(o_dtr_lessi_impa(iq-nqo),d_tr_lessi_impa(:,:,iq-nqo))
1347             CALL histwrite_phy(o_dtr_lessi_nucl(iq-nqo),d_tr_lessi_nucl(:,:,iq-nqo))
1348             CALL histwrite_phy(o_dtr_insc(iq-nqo),d_tr_insc(:,:,iq-nqo))
1349             CALL histwrite_phy(o_dtr_bcscav(iq-nqo),d_tr_bcscav(:,:,iq-nqo))
1350             CALL histwrite_phy(o_dtr_evapls(iq-nqo),d_tr_evapls(:,:,iq-nqo))
1351             CALL histwrite_phy(o_dtr_ls(iq-nqo),d_tr_ls(:,:,iq-nqo))
1352             CALL histwrite_phy(o_dtr_trsp(iq-nqo),d_tr_trsp(:,:,iq-nqo))
1353             CALL histwrite_phy(o_dtr_sscav(iq-nqo),d_tr_sscav(:,:,iq-nqo))
1354             CALL histwrite_phy(o_dtr_sat(iq-nqo),d_tr_sat(:,:,iq-nqo))
1355             CALL histwrite_phy(o_dtr_uscav(iq-nqo),d_tr_uscav(:,:,iq-nqo))
1356             zx_tmp_fi2d=0.
1357             IF(vars_defined) THEN
1358                DO k=1,klev
1359                   zx_tmp_fi2d(:)=zx_tmp_fi2d(:)+zmasse(:,k)*qx(:,k,iq)
1360                ENDDO
1361             ENDIF
1362             CALL histwrite_phy(o_trac_cum(iq-nqo), zx_tmp_fi2d)
1363             endif
1364          ENDDO
1365       ENDIF
1366
1367       IF(.NOT.vars_defined) THEN
1368          !$OMP MASTER
1369#ifndef CPP_IOIPSL_NO_OUTPUT
1370          DO iff=1,nfiles
1371             IF (clef_files(iff)) THEN
1372                CALL histend(nid_files(iff))
1373                ndex2d = 0
1374                ndex3d = 0
1375
1376             ENDIF ! clef_files
1377          ENDDO !  iff
1378#endif
1379#ifdef CPP_XIOS
1380          !On finalise l'initialisation:
1381          CALL wxios_closedef()
1382#endif
1383
1384          !$OMP END MASTER
1385          !$OMP BARRIER
1386          vars_defined = .TRUE.
1387
1388       END IF
1389
1390    END DO
1391
1392    IF(vars_defined) THEN
1393       ! On synchronise les fichiers pour IOIPSL
1394#ifndef CPP_IOIPSL_NO_OUTPUT
1395       !$OMP MASTER
1396       DO iff=1,nfiles
1397          IF (ok_sync .AND. clef_files(iff)) THEN
1398             CALL histsync(nid_files(iff))
1399          ENDIF
1400       END DO
1401       !$OMP END MASTER
1402#endif
1403    ENDIF
1404
1405  END SUBROUTINE phys_output_write
1406
1407END MODULE phys_output_write_mod
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