source: LMDZ6/trunk/libf/phylmd/phyredem.f90 @ 5662

Last change on this file since 5662 was 5662, checked in by Laurent Fairhead, 3 weeks ago

Ajout du modèle thermodynamique de glace de mer interactive améliorant les flux échangés à la surface de la banquise (Doctorat de Nicolas Michalezyk, Contact : Nicolas Michaleyk, Guillaume Gastineau)

  • Property copyright set to
    Name of program: LMDZ
    Creation date: 1984
    Version: LMDZ5
    License: CeCILL version 2
    Holder: Laboratoire de m\'et\'eorologie dynamique, CNRS, UMR 8539
    See the license file in the root directory
  • Property svn:eol-style set to native
  • Property svn:keywords set to Author Date Id Revision
File size: 18.9 KB
Line 
1!
2! $Id: phyredem.f90 5662 2025-05-20 14:24:41Z fairhead $
3!
4SUBROUTINE phyredem (fichnom)
5!
6!-------------------------------------------------------------------------------
7! Author: Z.X. Li (LMD/CNRS), 1993/08/18
8!-------------------------------------------------------------------------------
9! Purpose: Write restart state for physics.
10!-------------------------------------------------------------------------------
11USE compbl_mod_h
12  USE alpale_mod
13    USE clesphys_mod_h
14  USE dimphy, ONLY: klon, klev
15  USE fonte_neige_mod,  ONLY : fonte_neige_final
16  USE pbl_surface_mod,  ONLY : pbl_surface_final
17  USE phys_state_var_mod, ONLY: radpas, zmasq, pctsrf,                       &
18                                ftsol, beta_aridity, delta_tsurf, falb_dir,  &
19                                falb_dif, qsol, fevap, radsol, solsw, sollw, &
20                                sollwdown, rain_fall, snow_fall, bs_fall, z0m, z0h, &
21                                agesno, zmea, zstd, zsig, zgam, zthe, zpic,  &
22                                zval, rugoro, t_ancien, q_ancien,            &
23                                prw_ancien, prlw_ancien, prsw_ancien, prbsw_ancien,      &
24                                ql_ancien, qs_ancien, qbs_ancien, cf_ancien, &
25                                rvc_ancien, u_ancien, v_ancien,              &
26                                clwcon, rnebcon, ratqs, pbl_tke,             &
27                                wake_delta_pbl_tke, zmax0, f0, sig1, w01,    &
28                                wake_deltat, wake_deltaq, wake_s, awake_s,   &
29                                wake_dens, awake_dens, cv_gen,               &
30                                wake_cstar,                                  &
31                                wake_pe, wake_fip, fm_therm, entr_therm,     &
32                                detr_therm, ale_bl, ale_bl_trig, alp_bl,     &
33                                ale_wake, ale_bl_stat,                       &
34                                du_gwd_rando, du_gwd_front, u10m, v10m, &
35                                treedrg, solswfdiff, delta_sal, ds_ns, dt_ns, &
36!GG                                delta_sst, ratqs_inter_, dter,
37                                !dser, dt_ds
38                                delta_sst, ratqs_inter_, dter, dser,&
39                                & dt_ds, hice, tice, bilg_cumul, !GG
40                                frac_tersrf, z0m_tersrf,&
41                                     & ratio_z0m_z0h_tersrf,&
42                                     & albedo_tersrf, beta_tersrf,&
43                                     & inertie_tersrf, hcond_tersrf,&
44                                     & tsurfi_tersrf, tsoili_tersrf,&
45                                     & tsoil_depth, qsurf_tersrf,&
46                                     & tsurf_tersrf, tsoil_tersrf,&
47                                     & tsurf_new_tersrf,&
48                                     & cdragm_tersrf, cdragh_tersrf,&
49                                     & swnet_tersrf, lwnet_tersrf,&
50                                     & fluxsens_tersrf, fluxlat_tersrf
51
52  USE geometry_mod, ONLY : longitude_deg, latitude_deg
53  USE iostart, ONLY: open_restartphy, close_restartphy, enddef_restartphy, put_field, put_var
54  USE traclmdz_mod, ONLY : traclmdz_to_restart
55  USE infotrac_phy, ONLY: type_trac, nqtot, tracers, nbtr
56  USE carbon_cycle_mod, ONLY : carbon_cycle_cpl, co2_send, carbon_cycle_rad, RCO2_glo
57  USE indice_sol_mod, ONLY: nbsrf, is_oce, is_sic, is_ter, is_lic, epsfra
58!GG  USE surface_data, ONLY: type_ocean, version_ocean
59  USE surface_data, ONLY: type_ocean, version_ocean, iflag_seaice, iflag_seaice_alb, &
60                          iflag_leads
61!GG
62  USE ocean_slab_mod, ONLY : nslay, tslab, seaice, tice_slab, fsic
63  USE time_phylmdz_mod, ONLY: annee_ref, day_end, itau_phy, pdtphys
64  use config_ocean_skin_m, only: activate_ocean_skin
65  USE dimsoil_mod_h, ONLY: nsoilmx
66  IMPLICIT none
67  !======================================================================
68  CHARACTER*(*) fichnom
69
70  ! les variables globales ecrites dans le fichier restart
71
72  REAL tsoil(klon, nsoilmx, nbsrf)
73  REAL qsurf(klon, nbsrf)
74  REAL snow(klon, nbsrf)
75  real fder(klon)
76  REAL run_off_lic_0(klon)
77  REAL trs(klon, nbtr)
78
79  INTEGER nid, nvarid, idim1, idim2, idim3
80  INTEGER ierr
81  INTEGER length
82  PARAMETER (length=100)
83  REAL tab_cntrl(length)
84
85  INTEGER isoil, nsrf,isw
86  CHARACTER (len=2) :: str2
87  CHARACTER (len=256) :: nam, lnam
88  INTEGER           :: it, iq, pass
89
90  !======================================================================
91
92  ! Get variables which will be written to restart file from module
93  ! pbl_surface_mod
94  if ( iflag_physiq <= 1 ) then
95     CALL pbl_surface_final(fder, snow, qsurf,  tsoil)
96  endif
97
98  ! Get a variable calculated in module fonte_neige_mod
99  CALL fonte_neige_final(run_off_lic_0)
100
101  !======================================================================
102
103  CALL open_restartphy(fichnom)
104
105 
106  DO ierr = 1, length
107     tab_cntrl(ierr) = 0.0
108  ENDDO
109  tab_cntrl(1) = pdtphys
110  tab_cntrl(2) = radpas
111  ! co2_ppm : current value of atmospheric CO2
112  tab_cntrl(3) = co2_ppm
113  tab_cntrl(4) = solaire
114  tab_cntrl(5) = iflag_con
115  tab_cntrl(6) = nbapp_rad
116
117  IF( iflag_cycle_diurne.GE.1 ) tab_cntrl( 7 ) = iflag_cycle_diurne
118  IF(   soil_model ) tab_cntrl( 8 ) = 1.
119  IF(     liqice_in_radocond ) tab_cntrl( 9 ) = 1.
120  IF(     ok_orodr ) tab_cntrl(10 ) = 1.
121  IF(     ok_orolf ) tab_cntrl(11 ) = 1.
122
123  tab_cntrl(13) = day_end
124  tab_cntrl(14) = annee_ref
125  tab_cntrl(15) = itau_phy
126
127  ! co2_ppm0 : initial value of atmospheric CO2
128  ! tab_cntrl(16) = co2_ppm0
129
130  !  PC -- initial value of RCO2 for the radiation scheme
131  !  tab_cntrl(17) = co2_ppm * 1.0e-06 * RMCO2 / RMD
132  IF (carbon_cycle_rad) tab_cntrl(17) = RCO2_glo
133  !PRINT*, "PC : phyredem RCO2_glo =",RCO2_glo
134  !GG
135  tab_cntrl(18 ) = iflag_seaice
136  tab_cntrl(19 ) = iflag_seaice_alb
137  tab_cntrl(20 ) = iflag_leads
138  !GG
139
140  DO pass=1,2   ! pass=1 netcdf definition ; pass=2 netcdf write
141 
142    CALL put_var(pass, "controle", "Parametres de controle", tab_cntrl)
143
144    CALL put_field(pass,"longitude", &
145         "Longitudes de la grille physique", longitude_deg)
146
147    CALL put_field(pass,"latitude", "Latitudes de la grille physique", latitude_deg)
148
149    ! PB ajout du masque terre/mer
150
151    CALL put_field(pass,"masque", "masque terre mer", zmasq)
152
153    ! BP ajout des fraction de chaque sous-surface
154
155    ! Get last fractions from slab ocean
156    IF (type_ocean == 'slab' .AND. version_ocean == "sicINT") THEN
157        WHERE (1.-zmasq(:).GT.EPSFRA)
158            pctsrf(:,is_oce)=(1.-fsic(:))*(1.-zmasq(:))
159            pctsrf(:,is_sic)=fsic(:)*(1.-zmasq(:))
160        END WHERE
161    END IF
162
163    ! 1. fraction de terre
164
165    CALL put_field(pass,"FTER", "fraction de continent", pctsrf(:, is_ter))
166
167    ! 2. Fraction de glace de terre
168
169    CALL put_field(pass,"FLIC", "fraction glace de terre", pctsrf(:, is_lic))
170    ! 3. fraction ocean
171
172    CALL put_field(pass,"FOCE", "fraction ocean", pctsrf(:, is_oce))
173
174    ! 4. Fraction glace de mer
175
176    CALL put_field(pass,"FSIC", "fraction glace mer", pctsrf(:, is_sic))
177
178    IF(nbsrf>99) THEN
179      PRINT*, "Trop de sous-mailles";  CALL abort_physic("phyredem", "", 1)
180    END IF
181    IF(nsoilmx>99) THEN
182      PRINT*, "Trop de sous-surfaces"; CALL abort_physic("phyredem", "", 1)
183    END IF
184    IF(nsw>99) THEN
185      PRINT*, "Trop de bandes"; CALL abort_physic("phyredem", "", 1)
186    END IF
187
188!    Surface variables
189    CALL put_field_srf1(pass,"TS","Temperature",ftsol(:,:))
190
191    IF (iflag_pbl>1 .AND. iflag_wake>=1  .AND. iflag_pbl_split >=1) then
192       CALL put_field_srf1(pass, "DELTATS", &
193            "w-x surface temperature difference", delta_tsurf(:,:))
194       CALL put_field_srf1(pass,"BETAS","Aridity factor", beta_aridity(:,:))
195    end IF
196!    End surface variables
197
198! ================== Albedo =======================================
199    print*,'PHYREDEM NOUVEAU'
200    CALL put_field_srf2(pass,"A_dir_SW","Albedo direct",falb_dir(:,:,:))
201    CALL put_field_srf2(pass,"A_dif_SW","Albedo diffus",falb_dif(:,:,:))
202
203    CALL put_field_srf1(pass,"U10M", "u a 10m", u10m)
204
205    CALL put_field_srf1(pass,"V10M", "v a 10m", v10m)
206
207
208! ================== Tsoil =========================================
209    CALL put_field_srf2(pass,"Tsoil","Temperature",tsoil(:,:,:))
210!FC
211!  CALL put_field_srf2("treedrg","freinage arbres",treedrg(:,:,:))
212    CALL put_field(pass,"treedrg_ter","freinage arbres",treedrg(:,:,is_ter))
213!AM
214    CALL put_field_srf1(pass,"frac_tersrf","fraction sous surface", frac_tersrf(:,:))
215    CALL put_field_srf1(pass,"z0m_tersrf","rugosite sous surface", z0m_tersrf(:,:))
216    CALL put_field_srf1(pass,"ratio_z0m_z0h_tersrf","ratio rugosites sous surface", ratio_z0m_z0h_tersrf(:,:))
217    CALL put_field_srf1(pass,"albedo_tersrf","albedo sous surface", albedo_tersrf(:,:))
218    CALL put_field_srf1(pass,"beta_tersrf","beta sous surface", beta_tersrf(:,:))
219    CALL put_field_srf1(pass,"inertie_tersrf","inertie sous surface", inertie_tersrf(:,:))
220    CALL put_field_srf1(pass,"hcond_tersrf","conductivité thermique sous surface", hcond_tersrf(:,:))
221    CALL put_field_srf1(pass,"tsurfi_tersrf","temperature surface sous surface initiale", tsurfi_tersrf(:,:))
222    CALL put_field_srf2(pass,"Tsoili","temperature sol sous surface initiale", tsoili_tersrf(:,:,:))
223    CALL put_field_srf2(pass,"tsoil_depth","profondeur temperature sol sous surface", tsoil_depth(:,:,:))
224    CALL put_field_srf1(pass,"qsurf_tersrf","humidite surface sous surface", qsurf_tersrf(:,:))
225    CALL put_field_srf1(pass,"tsurf_tersrf","temperature surface sous surface", tsurf_tersrf(:,:))
226    CALL put_field_srf1(pass,"tsurf_new_tersrf","temperature surface sous surface", tsurf_new_tersrf(:,:))
227    CALL put_field_srf1(pass,"cdragm_tersrf","coeff trainee quantite mouvement sous surface", cdragm_tersrf(:,:))
228    CALL put_field_srf1(pass,"cdragh_tersrf","coeff trainee chaleur sous surface", cdragh_tersrf(:,:))
229    CALL put_field_srf1(pass,"swnet_tersrf","shortwave net sous surface", swnet_tersrf(:,:))
230    CALL put_field_srf1(pass,"lwnet_tersrf","longwave net sous surface", lwnet_tersrf(:,:))
231    CALL put_field_srf1(pass,"fluxsens_tersrf","flux sensible sous surface", fluxsens_tersrf(:,:))
232    CALL put_field_srf1(pass,"fluxlat_tersrf","flux latent sous surface", fluxlat_tersrf(:,:))
233    CALL put_field_srf2(pass,"tsoil_tersrf","temperature sol sous surface", tsoil_tersrf(:,:,:))
234
235    CALL put_field_srf1(pass,"QS"  , "Humidite",qsurf(:,:))
236
237    CALL put_field     (pass,"QSOL", "Eau dans le sol (mm)", qsol)
238
239    CALL put_field_srf1(pass,"EVAP", "Evaporation", fevap(:,:))
240
241    CALL put_field_srf1(pass,"SNOW", "Neige", snow(:,:))
242
243    !GG
244    CALL put_field(pass,"hice", "Ice thickness", hice)
245    CALL put_field(pass,"tice", "Sea Ice temperature", tice)
246    CALL put_field(pass,"bilg_cumul", "Flux conductivite + transmit sea-ice", bilg_cumul)
247    !GG
248
249    CALL put_field(pass,"RADS", "Rayonnement net a la surface", radsol)
250
251    CALL put_field(pass,"solsw", "Rayonnement solaire a la surface", solsw)
252
253    CALL put_field(pass,"solswfdiff", "Fraction du rayonnement solaire a la surface qui est diffus", solswfdiff)
254
255    CALL put_field(pass,"sollw", "Rayonnement IF a la surface", sollw)
256
257    CALL put_field(pass,"sollwdown", "Rayonnement down IF a la surface", sollwdown)
258
259    CALL put_field(pass,"fder", "Derive de flux", fder)
260
261    CALL put_field(pass,"rain_f", "precipitation liquide", rain_fall)
262
263    CALL put_field(pass,"snow_f", "precipitation solide", snow_fall)
264
265    CALL put_field_srf1(pass,"Z0m", "rugosite", z0m(:,:))
266
267    CALL put_field_srf1(pass,"Z0h", "rugosite", z0h(:,:))
268
269    CALL put_field_srf1(pass,"AGESNO", "Age de la neige", agesno(:,:))
270
271    CALL put_field(pass,"ZMEA", "ZMEA", zmea)
272
273    CALL put_field(pass,"ZSTD", "ZSTD", zstd)
274
275    CALL put_field(pass,"ZSIG", "ZSIG", zsig)
276
277    CALL put_field(pass,"ZGAM", "ZGAM", zgam)
278
279    CALL put_field(pass,"ZTHE", "ZTHE", zthe)
280
281    CALL put_field(pass,"ZPIC", "ZPIC", zpic)
282
283    CALL put_field(pass,"ZVAL", "ZVAL", zval)
284
285    CALL put_field(pass,"RUGSREL", "RUGSREL", rugoro)
286
287    CALL put_field(pass,"TANCIEN", "TANCIEN", t_ancien)
288
289    CALL put_field(pass,"QANCIEN", "QANCIEN", q_ancien)
290
291    CALL put_field(pass,"QLANCIEN", "QLANCIEN", ql_ancien)
292
293    CALL put_field(pass,"QSANCIEN", "QSANCIEN", qs_ancien)
294
295    IF (ok_bs) THEN
296       CALL put_field(pass,"bs_f", "precipitation neige soufflee", bs_fall)
297       CALL put_field(pass,"QBSANCIEN", "QBSANCIEN", qbs_ancien)
298       CALL put_field(pass,"PRBSWANCIEN", "PRBSWANCIEN", prbsw_ancien)
299    ENDIF
300
301    IF ( ok_ice_supersat ) THEN
302      CALL put_field(pass,"CFANCIEN", "CFANCIEN", cf_ancien)
303      CALL put_field(pass,"RVCANCIEN", "RVCANCIEN", rvc_ancien)
304    ENDIF
305
306    CALL put_field(pass,"PRWANCIEN", "PRWANCIEN", prw_ancien)
307
308    CALL put_field(pass,"PRLWANCIEN", "PRLWANCIEN", prlw_ancien)
309
310    CALL put_field(pass,"PRSWANCIEN", "PRSWANCIEN", prsw_ancien)
311
312    CALL put_field(pass,"UANCIEN", "UANCIEN", u_ancien)
313
314    CALL put_field(pass,"VANCIEN", "VANCIEN", v_ancien)
315
316    CALL put_field(pass,"CLWCON", "Eau liquide convective", clwcon)
317
318    CALL put_field(pass,"RNEBCON", "Nebulosite convective", rnebcon)
319
320    CALL put_field(pass,"RATQS", "Ratqs", ratqs)
321
322    ! run_off_lic_0
323
324    CALL put_field(pass,"RUNOFFLIC0", "Runofflic0", run_off_lic_0)
325
326    ! DEB TKE PBL !
327
328    IF (iflag_pbl>1) then
329      CALL put_field_srf3(pass,"TKE", "Energ. Cineti. Turb.", &
330           pbl_tke(:,:,:))
331      CALL put_field_srf3(pass,"DELTATKE", "Del TKE wk/env.", &
332           wake_delta_pbl_tke(:,:,:))
333    END IF
334
335    ! FIN TKE PBL !
336    !IM ajout zmax0, f0, sig1, w01
337    !IM wake_deltat, wake_deltaq, wake_s, wake_cstar, wake_pe, wake_fip
338
339    CALL put_field(pass,"ZMAX0", "ZMAX0", zmax0)
340
341    CALL put_field(pass,"F0", "F0", f0)
342
343    CALL put_field(pass,"sig1", "sig1 Emanuel", sig1)
344
345    CALL put_field(pass,"w01", "w01 Emanuel", w01)
346
347    ! wake_deltat
348    CALL put_field(pass,"WAKE_DELTAT", "WAKE_DELTAT", wake_deltat)
349
350    CALL put_field(pass,"WAKE_DELTAQ", "WAKE_DELTAQ", wake_deltaq)
351
352    CALL put_field(pass,"WAKE_S", "Wake frac. area", wake_s)
353
354    CALL put_field(pass,"AWAKE_S", "Active Wake frac. area", awake_s)
355
356    CALL put_field(pass,"WAKE_DENS", "Wake num. /unit area", wake_dens)
357
358    CALL put_field(pass,"AWAKE_DENS", "Active Wake num. /unit area", awake_dens)
359
360    CALL put_field(pass,"CV_GEN", "CB birth rate", cv_gen)
361
362    CALL put_field(pass,"WAKE_CSTAR", "WAKE_CSTAR", wake_cstar)
363
364    CALL put_field(pass,"WAKE_PE", "WAKE_PE", wake_pe)
365
366    CALL put_field(pass,"WAKE_FIP", "WAKE_FIP", wake_fip)
367
368    ! thermiques
369
370    CALL put_field(pass,"FM_THERM", "FM_THERM", fm_therm)
371
372    CALL put_field(pass,"ENTR_THERM", "ENTR_THERM", entr_therm)
373
374    CALL put_field(pass,"DETR_THERM", "DETR_THERM", detr_therm)
375
376    CALL put_field(pass,"ALE_BL", "ALE_BL", ale_bl)
377
378    CALL put_field(pass,"ALE_BL_TRIG", "ALE_BL_TRIG", ale_bl_trig)
379
380    CALL put_field(pass,"ALP_BL", "ALP_BL", alp_bl)
381
382    CALL put_field(pass,"ALE_WAKE", "ALE_WAKE", ale_wake)
383
384    CALL put_field(pass,"ALE_BL_STAT", "ALE_BL_STAT", ale_bl_stat)
385
386
387    ! fisrtilp/clouds
388    CALL put_field(pass,"RATQS_INTER","Relative width of the lsc sugrid scale water",ratqs_inter_)
389
390
391    IF (ANY(type_trac == ['co2i','inco'])) THEN
392       IF (carbon_cycle_cpl) THEN
393          IF (.NOT. ALLOCATED(co2_send)) THEN
394             ! This is the case of create_etat0_limit, ce0l
395             ALLOCATE(co2_send(klon))
396             co2_send(:) = co2_ppm0
397          END IF
398          CALL put_field(pass,"co2_send", "co2_ppm for coupling", co2_send)
399       END IF
400
401    ! trs from traclmdz_mod
402    ELSE IF (type_trac == 'lmdz') THEN
403       CALL traclmdz_to_restart(trs)
404       it = 0
405       DO iq = 1, nqtot
406          IF(.NOT.tracers(iq)%isInPhysics) CYCLE
407          it = it+1
408          CALL put_field(pass,"trs_"//tracers(iq)%name, "", trs(:, it))
409       END DO
410    END IF
411
412    ! Restart variables for Slab ocean
413    IF (type_ocean == 'slab') THEN
414        IF (nslay.EQ.1) THEN
415          CALL put_field(pass,"tslab", "Slab ocean temperature", tslab)
416        ELSE
417          DO it=1,nslay
418            WRITE(str2,'(i2.2)') it
419            CALL put_field(pass,"tslab"//str2, "Slab ocean temperature", tslab(:,it))
420          END DO
421        END IF
422        IF (version_ocean == 'sicINT') THEN
423            CALL put_field(pass,"seaice", "Slab seaice (kg/m2)", seaice)
424            CALL put_field(pass,"slab_tice", "Slab sea ice temperature", tice_slab)
425        END IF
426    END IF
427
428    if (ok_gwd_rando) call put_field(pass,"du_gwd_rando", &
429         "tendency on zonal wind due to flott gravity waves", du_gwd_rando)
430
431    IF (.not. ok_hines .and. ok_gwd_rando) call put_field(pass,"du_gwd_front", &
432         "tendency on zonal wind due to acama gravity waves", du_gwd_front)
433
434    if (activate_ocean_skin >= 1) then
435       if (activate_ocean_skin == 2 .and. type_ocean == 'couple') then
436          CALL put_field(pass, "delta_sal", &
437               "ocean-air interface salinity minus bulk salinity", delta_sal)
438          CALL put_field(pass, "delta_SST", &
439               "ocean-air interface temperature minus bulk SST", delta_sst)
440          CALL put_field(pass, "dter", &
441               "ocean-air interface temperature minus subskin temperature", &
442               dter)
443          CALL put_field(pass, "dser", &
444               "ocean-air interface salinity minus subskin salinity", dser)
445          CALL put_field(pass, "dt_ds", &
446               "(tks / tkt) * dTer", dt_ds)
447       end if
448       
449       CALL put_field(pass, "dS_ns", "delta salinity near surface", ds_ns)
450       CALL put_field(pass, "dT_ns", "delta temperature near surface", dT_ns)
451    end if
452   
453    IF (pass==1) CALL enddef_restartphy
454    IF (pass==2) CALL close_restartphy
455  ENDDO ! DO pass=1,2   ! pass=1 netcdf definition ; pass=2 netcdf write
456 
457  !$OMP BARRIER
458
459
460  CONTAINS
461
462
463SUBROUTINE put_field_srf1(pass,nam,lnam,field)
464
465  IMPLICIT NONE
466  INTEGER, INTENT(IN)           :: pass
467  CHARACTER(LEN=*),  INTENT(IN) :: nam, lnam
468  REAL,              INTENT(IN) :: field(:,:)
469  CHARACTER(LEN=256) :: nm, lm, str
470  DO nsrf = 1, SIZE(field,2)
471    WRITE(str, '(i2.2)') nsrf
472    nm=TRIM(nam)//TRIM(str)
473    lm=TRIM(lnam)//" de surface No. "//TRIM(str)
474    CALL put_field(pass,nm,lm,field(:,nsrf))
475  END DO
476
477END SUBROUTINE put_field_srf1
478
479
480SUBROUTINE put_field_srf2(pass,nam,lnam,field)
481
482  IMPLICIT NONE
483  INTEGER, INTENT(IN)            :: pass
484  CHARACTER(LEN=*),  INTENT(IN) :: nam, lnam
485  REAL,              INTENT(IN) :: field(:,:,:)
486  CHARACTER(LEN=256) :: nm, lm, str
487  DO nsrf = 1, SIZE(field,3)
488    DO isoil=1, SIZE(field,2)
489      WRITE(str, '(i2.2,"srf",i2.2)')isoil,nsrf
490!      WRITE(lunout,*)"PHYREDEM ",TRIM(nam)//TRIM(str)
491      nm=TRIM(nam)//TRIM(str)
492      lm=TRIM(lnam)//" du sol No. "//TRIM(str)
493      CALL put_field(pass,nm,lm,field(:,isoil,nsrf))
494    END DO
495  END DO
496
497END SUBROUTINE put_field_srf2
498
499
500SUBROUTINE put_field_srf3(pass,nam,lnam,field)
501
502  IMPLICIT NONE
503  INTEGER, INTENT(IN)            :: pass
504  CHARACTER(LEN=*),  INTENT(IN) :: nam, lnam
505  REAL,              INTENT(IN) :: field(:,:,:)
506  CHARACTER(LEN=256) :: nm, lm, str
507  DO nsrf = 1, SIZE(field,3)
508    WRITE(str, '(i2.2)') nsrf
509    nm=TRIM(nam)//TRIM(str)
510    lm=TRIM(lnam)//TRIM(str)
511    CALL put_field(pass,nm,lm,field(:,1:klev+1,nsrf))
512  END DO
513
514END SUBROUTINE put_field_srf3
515
516
517END SUBROUTINE phyredem
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