source: LMDZ6/trunk/libf/phylmd/phys_output_mod.F90 @ 4998

Last change on this file since 4998 was 4998, checked in by lebasn, 2 months ago

StratAer?: new diags (sulfate SAD and MMR)

  • 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 Id
File size: 25.1 KB
RevLine 
[1279]1! $Id: phys_output_mod.F90 4998 2024-06-27 09:56:50Z lebasn $
2!
[1813]3
4MODULE phys_output_mod
5  USE indice_sol_mod
6  USE phys_output_var_mod
7  USE phys_output_write_mod, ONLY : phys_output_write
[1920]8  REAL, DIMENSION(nfiles),SAVE :: ecrit_files
[1813]9
[907]10! Abderrahmane 12 2007
11!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
12!!! Ecreture des Sorties du modele dans les fichiers Netcdf :
13! histmth.nc : moyennes mensuelles
14! histday.nc : moyennes journalieres
15! histhf.nc  : moyennes toutes les 3 heures
16! histins.nc : valeurs instantanees
17!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
18
[1562]19CONTAINS
[907]20
21!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
22!!!!!!!!! Ouverture des fichier et definition des variable de sortie !!!!!!!!
[1562]23  !! histbeg, histvert et histdef
[907]24!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
[1562]25
[1539]26  SUBROUTINE phys_output_open(rlon,rlat,pim,tabij,ipt,jpt,plon,plat, &
[2037]27       jjmp1,nlevSTD,clevSTD,rlevSTD, dtime, ok_veget, &
[2159]28       type_ocean, iflag_pbl,iflag_pbl_split,ok_mensuel,ok_journe, &
[1279]29       ok_hf,ok_instan,ok_LES,ok_ade,ok_aie, read_climoz, &
[1539]30       phys_out_filestations, &
[3630]31       aerosol_couple, flag_aerosol_strat, &
[1807]32       pdtphys, paprs, pphis, pplay, lmax_th, ptconv, ptconvth, ivap, &
[2665]33       d_u, d_t, qx, d_qx, zmasse, ok_sync)   
[907]34
[1562]35    USE iophy
36    USE dimphy
[4170]37    USE infotrac_phy, ONLY: nqtot, tracers, niso
[4120]38    USE strings_mod,  ONLY: maxlen
[1562]39    USE ioipsl
[2358]40    USE phys_cal_mod, only : hour, calend
[1562]41    USE mod_phys_lmdz_para
[2704]42    !Martin
[3792]43    USE surface_data, ONLY : landice_opt
[1807]44    USE phys_output_ctrlout_mod
[2344]45    USE mod_grid_phy_lmdz, only: klon_glo,nbp_lon,nbp_lat
[2311]46    USE print_control_mod, ONLY: prt_level,lunout
[4228]47    USE vertical_layers_mod, ONLY: ap,bp,preff,presnivs, aps, bps, pseudoalt, presinter
[2344]48    USE time_phylmdz_mod, ONLY: day_ini, itau_phy, start_time, annee_ref, day_ref
[1825]49    ! ug Pour les sorties XIOS
50    USE wxios
[4998]51#ifdef CPP_StratAer
52   USE infotrac_phy, ONLY: nbtr_bin
53#endif
54   
[1562]55    IMPLICIT NONE
56    include "clesphys.h"
[2551]57    include "YOMCST.h"
[907]58
[2110]59    ! ug Nouveaux arguments n\'ecessaires au histwrite_mod:
[1807]60    INTEGER, INTENT(IN)                         :: ivap
61    INTEGER, DIMENSION(klon), INTENT(IN)        :: lmax_th
62    LOGICAL, INTENT(IN)                         :: ok_sync
63    LOGICAL, DIMENSION(klon, klev), INTENT(IN)  :: ptconv, ptconvth
64    REAL, INTENT(IN)                            :: pdtphys
65    REAL, DIMENSION(klon), INTENT(IN)           :: pphis
[2665]66    REAL, DIMENSION(klon, klev), INTENT(IN)     :: pplay, d_u, d_t
[1807]67    REAL, DIMENSION(klon, klev+1), INTENT(IN)   :: paprs
68    REAL, DIMENSION(klon,klev,nqtot), INTENT(IN):: qx, d_qx
[2344]69    REAL, DIMENSION(klon, klev), INTENT(IN)      :: zmasse
[1807]70
71
72    REAL,DIMENSION(klon),INTENT(IN) :: rlon
73    REAL,DIMENSION(klon),INTENT(IN) :: rlat
74    INTEGER, INTENT(IN)             :: pim
[1539]75    INTEGER, DIMENSION(pim)            :: tabij
[1807]76    INTEGER,DIMENSION(pim), INTENT(IN) :: ipt, jpt
77    REAL,DIMENSION(pim), INTENT(IN) :: plat, plon
78    REAL,DIMENSION(pim,2) :: plat_bounds, plon_bounds
[1539]79
[1791]80    INTEGER                               :: jjmp1
[2037]81    INTEGER                               :: nlevSTD, radpas
[1791]82    LOGICAL                               :: ok_mensuel, ok_journe, ok_hf, ok_instan
[2530]83    LOGICAL                               :: ok_LES,ok_ade,ok_aie
84    INTEGER                               :: flag_aerosol_strat
[3630]85    LOGICAL                               :: aerosol_couple
[1807]86    INTEGER, INTENT(IN)::  read_climoz ! read ozone climatology
[1562]87    !     Allowed values are 0, 1 and 2
88    !     0: do not read an ozone climatology
89    !     1: read a single ozone climatology that will be used day and night
90    !     2: read two ozone climatologies, the average day and night
91    !     climatology and the daylight climatology
[1279]92
[1791]93    REAL                                  :: dtime
94    INTEGER                               :: idayref
[2095]95    REAL                                  :: zjulian_start, zjulian
[1791]96    CHARACTER(LEN=4), DIMENSION(nlevSTD)  :: clevSTD
[1828]97    REAL, DIMENSION(nlevSTD)              :: rlevSTD
[4998]98    INTEGER                               :: nsrf, k, iq, iff, i, j, ilev, itr, itrb, ixt, iiso, izone
[1791]99    INTEGER                               :: naero
100    LOGICAL                               :: ok_veget
101    INTEGER                               :: iflag_pbl
[2159]102    INTEGER                               :: iflag_pbl_split
[1791]103    CHARACTER(LEN=4)                      :: bb2
104    CHARACTER(LEN=2)                      :: bb3
105    CHARACTER(LEN=6)                      :: type_ocean
[2344]106    INTEGER, DIMENSION(nbp_lon*jjmp1)         ::  ndex2d
107    INTEGER, DIMENSION(nbp_lon*jjmp1*klev)    :: ndex3d
[1791]108    INTEGER                               :: imin_ins, imax_ins
109    INTEGER                               :: jmin_ins, jmax_ins
110    INTEGER, DIMENSION(nfiles)            :: phys_out_levmin, phys_out_levmax
111    INTEGER, DIMENSION(nfiles)            :: phys_out_filelevels
[1884]112    CHARACTER(LEN=20), DIMENSION(nfiles)  :: chtimestep = (/ 'Default', 'Default', 'Default', 'Default', 'Default', &
[2752]113                                                             'Default', 'Default', 'Default', 'Default', 'Default' /)
[1791]114    LOGICAL, DIMENSION(nfiles)            :: phys_out_filekeys
115    LOGICAL, DIMENSION(nfiles)            :: phys_out_filestations
[907]116
[4046]117    CHARACTER(LEN=maxlen) :: tnam, lnam, dn
118    INTEGER :: flag(nfiles)
119
[1065]120!!!!!!!!!! stockage dans une region limitee pour chaque fichier !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
[1562]121    !                 entre [phys_out_lonmin,phys_out_lonmax] et [phys_out_latmin,phys_out_latmax]
[4056]122    LOGICAL, DIMENSION(nfiles), SAVE :: &
123      phys_out_regfkey = [.FALSE., .FALSE., .FALSE., .FALSE., .FALSE., .FALSE., .FALSE., .FALSE., .FALSE., .FALSE.]
124    REAL,    DIMENSION(nfiles), SAVE :: &
125      phys_out_lonmin  = [  -180.,   -180.,   -180.,   -180.,   -180.,   -180.,   -180.,   -180.,   -180.,   -180.], &
126      phys_out_lonmax  = [   180.,    180.,    180.,    180.,    180.,    180.,    180.,    180.,    180.,    180.], &
127      phys_out_latmin  = [   -90.,    -90.,    -90.,    -90.,    -90.,    -90.,    -90.,    -90.,    -90.,    -90.], &
128      phys_out_latmax  = [    90.,     90.,     90.,     90.,     90.,     90.,     90.,     90.,     90.,     90.]
[3003]129    REAL, DIMENSION(klev,2) :: Ahyb_bounds, Bhyb_bounds
[3474]130    REAL, DIMENSION(klev+1)   :: lev_index
[3003]131               
[2110]132    ! ug Variables utilis\'ees pour r\'ecup\'erer le calendrier pour xios
[1825]133    INTEGER :: x_an, x_mois, x_jour
134    REAL :: x_heure
[2095]135    INTEGER :: ini_an, ini_mois, ini_jour
136    REAL :: ini_heure
[4619]137
[3048]138    INTEGER                         :: ISW
139    REAL, DIMENSION(NSW)            :: wl1_sun, wl2_sun !wavelength bounds (in um) for SW
140    REAL, DIMENSION(NSW)            :: wn1_sun, wn2_sun !wavenumber bounds (in m-1) for SW
141    REAL, DIMENSION(NSW)            :: spectband  !mean wavenumb. of each sp.band
142    REAL, DIMENSION(NSW,2)          :: spbnds_sun !bounds of spectband
[1825]143
[1791]144    WRITE(lunout,*) 'Debut phys_output_mod.F90'
[1562]145    ! Initialisations (Valeurs par defaut
[1403]146
[3003]147    DO ilev=1,klev
148      Ahyb_bounds(ilev,1) = ap(ilev)
149      Ahyb_bounds(ilev,2) = ap(ilev+1)
150      Bhyb_bounds(ilev,1) = bp(ilev)
151      Bhyb_bounds(ilev,2) = bp(ilev+1)
152      lev_index(ilev) = REAL(ilev)
153    END DO
[3474]154      lev_index(klev+1) = REAL(klev+1)
[3003]155
[1791]156    IF (.NOT. ALLOCATED(o_trac)) ALLOCATE(o_trac(nqtot))
157    IF (.NOT. ALLOCATED(o_trac_cum)) ALLOCATE(o_trac_cum(nqtot))
[1813]158    ALLOCATE(o_dtr_the(nqtot),o_dtr_con(nqtot),o_dtr_lessi_impa(nqtot))
159    ALLOCATE(o_dtr_lessi_nucl(nqtot),o_dtr_insc(nqtot),o_dtr_bcscav(nqtot))
160    ALLOCATE(o_dtr_evapls(nqtot),o_dtr_ls(nqtot),o_dtr_trsp(nqtot))
161    ALLOCATE(o_dtr_sscav(nqtot),o_dtr_sat(nqtot),o_dtr_uscav(nqtot))
162    ALLOCATE(o_dtr_dry(nqtot),o_dtr_vdf(nqtot))
[4998]163#ifdef CPP_StratAer
164    ALLOCATE(o_nd_mode(nbtr_bin),o_sulfmmr_mode(nbtr_bin))
165#endif
166   
[4056]167    levmax = [klev, klev, klev, klev, klev, klev, nlevSTD, nlevSTD, nlevSTD, klev]
[1813]168
[1562]169    phys_out_filenames(1) = 'histmth'
170    phys_out_filenames(2) = 'histday'
[2167]171    phys_out_filenames(3) = 'histhf6h'
172    phys_out_filenames(4) = 'histhf3h'
173    phys_out_filenames(5) = 'histhf3hm'
[1562]174    phys_out_filenames(6) = 'histstn'
[1828]175    phys_out_filenames(7) = 'histmthNMC'
176    phys_out_filenames(8) = 'histdayNMC'
[2752]177    phys_out_filenames(9) = 'histhfNMC'
178    phys_out_filenames(10)= 'histstrataer'
[907]179
[1562]180    type_ecri(1) = 'ave(X)'
181    type_ecri(2) = 'ave(X)'
[2167]182    type_ecri(3) = 'inst(X)'
[1562]183    type_ecri(4) = 'inst(X)'
184    type_ecri(5) = 'ave(X)'
185    type_ecri(6) = 'inst(X)'
[1828]186    type_ecri(7) = 'inst(X)'
187    type_ecri(8) = 'inst(X)'
188    type_ecri(9) = 'inst(X)'
[2752]189    type_ecri(10)= 'ave(X)'
[907]190
[1562]191    clef_files(1) = ok_mensuel
192    clef_files(2) = ok_journe
193    clef_files(3) = ok_hf
194    clef_files(4) = ok_instan
195    clef_files(5) = ok_LES
196    clef_files(6) = ok_instan
[1828]197    clef_files(7) = ok_histNMC(1)
198    clef_files(8) = ok_histNMC(2)
199    clef_files(9) = ok_histNMC(3)
[2752]200#ifdef CPP_StratAer
201    clef_files(10)= .TRUE.
202#else
203    clef_files(10)= .FALSE.
204#endif
[907]205
[1562]206    !sortir des fichiers "stations" si clef_stations(:)=.TRUE.
207    clef_stations(1) = .FALSE.
208    clef_stations(2) = .FALSE.
209    clef_stations(3) = .FALSE.
210    clef_stations(4) = .FALSE.
211    clef_stations(5) = .FALSE.
212    clef_stations(6) = .FALSE.
[1828]213    clef_stations(7) = .FALSE.
214    clef_stations(8) = .FALSE.
215    clef_stations(9) = .FALSE.
[2752]216    clef_stations(10)= .FALSE.
[1539]217
[1562]218    lev_files(1) = lev_histmth
219    lev_files(2) = lev_histday
220    lev_files(3) = lev_histhf
221    lev_files(4) = lev_histins
222    lev_files(5) = lev_histLES
223    lev_files(6) = lev_histins
[1828]224    lev_files(7) = levout_histNMC(1)
225    lev_files(8) = levout_histNMC(2)
226    lev_files(9) = levout_histNMC(3)
[2752]227    lev_files(10)= 5
[907]228
[1562]229    ecrit_files(1) = ecrit_mth
230    ecrit_files(2) = ecrit_day
231    ecrit_files(3) = ecrit_hf
232    ecrit_files(4) = ecrit_ins
233    ecrit_files(5) = ecrit_LES
234    ecrit_files(6) = ecrit_ins
[1912]235    ecrit_files(7) = freq_outNMC(1)
236    ecrit_files(8) = freq_outNMC(2)
237    ecrit_files(9) = freq_outNMC(3)
[2752]238    ecrit_files(10)= ecrit_mth
[1279]239
[1562]240    !! Lectures des parametres de sorties dans physiq.def
[1279]241
[1791]242    CALL getin('phys_out_regfkey',phys_out_regfkey)
243    CALL getin('phys_out_lonmin',phys_out_lonmin)
244    CALL getin('phys_out_lonmax',phys_out_lonmax)
245    CALL getin('phys_out_latmin',phys_out_latmin)
246    CALL getin('phys_out_latmax',phys_out_latmax)
[1562]247    phys_out_levmin(:)=levmin(:)
[1791]248    CALL getin('phys_out_levmin',levmin)
[1562]249    phys_out_levmax(:)=levmax(:)
[1791]250    CALL getin('phys_out_levmax',levmax)
251    CALL getin('phys_out_filenames',phys_out_filenames)
[1562]252    phys_out_filekeys(:)=clef_files(:)
[1791]253    CALL getin('phys_out_filekeys',clef_files)
[1562]254    phys_out_filestations(:)=clef_stations(:)
[1791]255    CALL getin('phys_out_filestations',clef_stations)
[1562]256    phys_out_filelevels(:)=lev_files(:)
[1791]257    CALL getin('phys_out_filelevels',lev_files)
258    CALL getin('phys_out_filetimesteps',chtimestep)
[1562]259    phys_out_filetypes(:)=type_ecri(:)
[1791]260    CALL getin('phys_out_filetypes',type_ecri)
[1279]261
[1562]262    type_ecri_files(:)=type_ecri(:)
[1279]263
[2114]264!    if (ok_all_xml) phys_out_filelevels = 999
265
[1791]266    WRITE(lunout,*)'phys_out_lonmin=',phys_out_lonmin
267    WRITE(lunout,*)'phys_out_lonmax=',phys_out_lonmax
268    WRITE(lunout,*)'phys_out_latmin=',phys_out_latmin
269    WRITE(lunout,*)'phys_out_latmax=',phys_out_latmax
270    WRITE(lunout,*)'phys_out_filenames=',phys_out_filenames
271    WRITE(lunout,*)'phys_out_filetypes=',type_ecri
272    WRITE(lunout,*)'phys_out_filekeys=',clef_files
273    WRITE(lunout,*)'phys_out_filestations=',clef_stations
274    WRITE(lunout,*)'phys_out_filelevels=',lev_files
[2752]275    WRITE(lunout,*)'phys_out_regfkey=',phys_out_regfkey
[1562]276
[1971]277! A noter pour
278! l heure initiale - dans les fichiers histoire hist* - on met comme 
279! heure de debut soit la vraie heure (pour le 1D) soit 0h (pour le 3D)
280! afin d avoir une seule sortie mensuelle par mois lorsque l on tourne
281! par annee (IM).
282!
283     idayref = day_ref
284     IF (klon_glo==1) THEN
[2491]285       ! current_time (used to compute hour) is updated at the begining of
286       ! the physics; to set the correct outputs "initial time" we thus
287       ! have to use (hour-dtphys).
288         CALL ymds2ju(annee_ref, 1, idayref, hour-pdtphys, zjulian)
289         print *,'phys_output_mod: annee,iday,hour,zjulian=',annee_ref,idayref, hour, zjulian
[1971]290     ELSE
291         CALL ymds2ju(annee_ref, 1, idayref, 0.0, zjulian)
[2551]292         CALL ymds2ju(annee_ref, 1, day_ini, start_time*rday, zjulian_start)
[2704]293     ENDIF
[1971]294
[4619]295    IF (using_xios) THEN
296      ! ug R\'eglage du calendrier xios
297      !Temps julian => an, mois, jour, heure
298      CALL ju2ymds(zjulian, x_an, x_mois, x_jour, x_heure)
299      CALL ju2ymds(zjulian_start, ini_an, ini_mois, ini_jour, ini_heure)
300      CALL wxios_set_cal(dtime, calend, x_an, x_mois, x_jour, x_heure, ini_an, &
301                         ini_mois, ini_jour, ini_heure )
302    ENDIF
[1825]303
[907]304!!!!!!!!!!!!!!!!!!!!!!! Boucle sur les fichiers !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
[1562]305    ! Appel de histbeg et histvert pour creer le fichier et les niveaux verticaux !!
306    ! Appel des histbeg pour definir les variables (nom, moy ou inst, freq de sortie ..
[907]307!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
308
[1807]309    zdtime_moy = dtime         ! Frequence ou l on moyenne
[1279]310
[2380]311
312  ecrit_files(7) = ecrit_files(1)
313  ecrit_files(8) = ecrit_files(2)
314  ecrit_files(9) = ecrit_files(3)
315
[1971]316  DO iff=1,nfiles
[929]317
[1641]318       ! Calculate ecrit_files for all files
[2704]319      IF ( chtimestep(iff).eq.'Default' ) THEN
[1884]320          ! Par defaut ecrit_files = (ecrit_mensuel ecrit_jour ecrit_hf
321          ! ...)*86400.
[1641]322          ecrit_files(iff)=ecrit_files(iff)*86400.
[2704]323      ELSE IF (chtimestep(iff).eq.'-1') THEN
[1912]324          PRINT*,'ecrit_files(',iff,') < 0 so IOIPSL work on different'
325          PRINT*,'months length'
326          ecrit_files(iff)=-1.
[2704]327      ELSE
[1884]328       CALL convers_timesteps(chtimestep(iff),dtime,ecrit_files(iff))
329      ENDIF
330
[1791]331       WRITE(lunout,*)'ecrit_files(',iff,')= ',ecrit_files(iff)
[1641]332       zoutm(iff) = ecrit_files(iff) ! Frequence ou l on ecrit en seconde
[1279]333
[1971]334
[4619]335    IF (using_xios) THEN
336      !!! Ouverture de chaque fichier XIOS !!!!!!!!!!!
337      IF (.not. ok_all_xml) THEN
338        IF (prt_level >= 10) THEN
339         print*,'phys_output_open: call wxios_add_file with phys_out_filenames(iff)=',trim(phys_out_filenames(iff))   
340        ENDIF
341        CALL wxios_add_file(phys_out_filenames(iff),chtimestep(iff),lev_files(iff)) 
342      ENDIF
343
344      !!! Declaration des axes verticaux de chaque fichier:
[2704]345      IF (prt_level >= 10) THEN
[4619]346        print*,'phys_output_open: Declare vertical axes for each file'
[2704]347      ENDIF
[1971]348
[4619]349      IF (iff.LE.6.OR.iff.EQ.10) THEN
350        CALL wxios_add_vaxis("presnivs", &
351              levmax(iff) - levmin(iff) + 1, presnivs(levmin(iff):levmax(iff)))
352        CALL wxios_add_vaxis("presinter", &
353              klev + 1, presinter(1:klev+1))
354        CALL wxios_add_vaxis("Ahyb", &
355              levmax(iff) - levmin(iff) + 1, aps(levmin(iff):levmax(iff)), positif='down', &
356              bnds=Ahyb_bounds(levmin(iff):levmax(iff),:))
357        CALL wxios_add_vaxis("Bhyb", &
358              levmax(iff) - levmin(iff) + 1, bps(levmin(iff):levmax(iff)), positif='down', &
359              bnds=Bhyb_bounds(levmin(iff):levmax(iff),:))
360        CALL wxios_add_vaxis("klev", levmax(iff) - levmin(iff) + 1, &
361                              lev_index(levmin(iff):levmax(iff)))
362        CALL wxios_add_vaxis("klevp1", klev+1, &
363                              lev_index(1:klev+1))
364        CALL wxios_add_vaxis("bnds", 2, (/1.,2./))
365 
366        CALL wxios_add_vaxis("Alt", &
367                levmax(iff) - levmin(iff) + 1, pseudoalt)
[3003]368
[4619]369        ! wl1_sun/wl2_sun: minimum/maximum bound of wavelength (in um)
370        SELECT CASE(NSW)
371          CASE(6)
372            wl1_sun(1:6) = [0.180, 0.250, 0.440, 0.690, 1.190, 2.380]
373            wl2_sun(1:6) = [0.250, 0.440, 0.690, 1.190, 2.380, 4.000]
374          CASE(2)
375            wl1_sun(1:2) = [0.250, 0.690]
376            wl2_sun(1:2) = [0.690, 4.000]
377        END SELECT
[3003]378
[4619]379        DO ISW=1, NSW
380          wn1_sun(ISW)=1.e+6/wl1_sun(ISW)
381          wn2_sun(ISW)=1.e+6/wl2_sun(ISW)
382          spbnds_sun(ISW,1)=wn2_sun(ISW)
383          spbnds_sun(ISW,2)=wn1_sun(ISW)
384          spectband(ISW)=(wn1_sun(ISW)+wn2_sun(ISW))/2
385        ENDDO
[3048]386!
387!!! ajout axe vertical spectband : solar band number
[4619]388        CALL wxios_add_vaxis("spectband", NSW, spectband, positif='down')
389      ELSE
390        ! NMC files
391        CALL wxios_add_vaxis("plev", &
392                levmax(iff) - levmin(iff) + 1, rlevSTD(levmin(iff):levmax(iff)))
393      ENDIF
394    ENDIF !using_xios
[1852]395
[2114]396        IF (clef_files(iff)) THEN
[907]397!!!!!!!!!!!!!!!!! Traitement dans le cas ou l'on veut stocker sur un domaine limite !!
398!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
[2704]399          IF (phys_out_regfkey(iff)) THEN
[1562]400             imin_ins=1
[2344]401             imax_ins=nbp_lon
[1562]402             jmin_ins=1
403             jmax_ins=jjmp1
[907]404
[1562]405             ! correction abderr       
[2704]406             DO i=1,nbp_lon
[1791]407                WRITE(lunout,*)'io_lon(i)=',io_lon(i)
408                IF (io_lon(i).le.phys_out_lonmin(iff)) imin_ins=i
409                IF (io_lon(i).le.phys_out_lonmax(iff)) imax_ins=i+1
[2704]410             ENDDO
[907]411
[2704]412             DO j=1,jjmp1
[1791]413                WRITE(lunout,*)'io_lat(j)=',io_lat(j)
414                IF (io_lat(j).ge.phys_out_latmin(iff)) jmax_ins=j+1
415                IF (io_lat(j).ge.phys_out_latmax(iff)) jmin_ins=j
[2704]416             ENDDO
[907]417
[1791]418             WRITE(lunout,*)'On stoke le fichier histoire numero ',iff,' sur ', &
[1562]419                  imin_ins,imax_ins,jmin_ins,jmax_ins
[1791]420             WRITE(lunout,*)'longitudes : ', &
[1562]421                  io_lon(imin_ins),io_lon(imax_ins), &
422                  'latitudes : ', &
423                  io_lat(jmax_ins),io_lat(jmin_ins)
[907]424
[2344]425             CALL histbeg(phys_out_filenames(iff),nbp_lon,io_lon,jjmp1,io_lat, &
[1562]426                  imin_ins,imax_ins-imin_ins+1, &
427                  jmin_ins,jmax_ins-jmin_ins+1, &
428                  itau_phy,zjulian,dtime,nhorim(iff),nid_files(iff))
[907]429!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
[1562]430             !IM fichiers stations
[2704]431          ELSE IF (clef_stations(iff)) THEN
[1539]432
[2704]433             IF (prt_level >= 10) THEN
[2001]434             WRITE(lunout,*)'phys_output_open: iff=',iff,'  phys_out_filenames(iff)=',phys_out_filenames(iff)
[2704]435             ENDIF
[2001]436             
[1791]437             CALL histbeg_phy_all(rlon,rlat,pim,tabij,ipt,jpt,plon,plat,plon_bounds,plat_bounds, &
[1562]438                  phys_out_filenames(iff), &
439                  itau_phy,zjulian,dtime,nhorim(iff),nid_files(iff))
[2704]440          ELSE
[2752]441
442             IF (prt_level >= 10) THEN
443             WRITE(lunout,*)'phys_output_open: iff=',iff,'  phys_out_filenames(iff)=',phys_out_filenames(iff)
444             ENDIF
445
[1825]446             CALL histbeg_phy_all(phys_out_filenames(iff),itau_phy,zjulian,&
[1852]447                 dtime,nhorim(iff),nid_files(iff))
[2704]448          ENDIF
[907]449
[2097]450#ifndef CPP_IOIPSL_NO_OUTPUT
[2752]451          IF (iff.LE.6.OR.iff.EQ.10) THEN
[1828]452             CALL histvert(nid_files(iff), "presnivs", "Vertical levels", "Pa", & 
[1562]453               levmax(iff) - levmin(iff) + 1, &
454               presnivs(levmin(iff):levmax(iff)), nvertm(iff),"down")
[1807]455!!!! Composantes de la coordonnee sigma-hybride
[1562]456          CALL histvert(nid_files(iff), "Ahyb","Ahyb comp of Hyb Cord ", "Pa", &
[2832]457               levmax(iff) - levmin(iff) + 1,aps,nvertap(iff))
[907]458
[1562]459          CALL histvert(nid_files(iff), "Bhyb","Bhyb comp of Hyb Cord", " ", &
[2832]460               levmax(iff) - levmin(iff) + 1,bps,nvertbp(iff))
[1279]461
[1828]462          CALL histvert(nid_files(iff), "Alt","Height approx for scale heigh of 8km at levels", "Km", &                       
[2833]463               levmax(iff) - levmin(iff) + 1,pseudoalt,nvertAlt(iff))
[1279]464
[2704]465          ELSE
[2752]466          ! NMC files
[1828]467             CALL histvert(nid_files(iff), "plev", "pressure", "Pa", &
468               levmax(iff) - levmin(iff) + 1, &
469              rlevSTD(levmin(iff):levmax(iff)), nvertm(iff), "down")
[2704]470          ENDIF
[1828]471#endif
[907]472
[2114]473     ENDIF ! clef_files
474
[4998]475          itr = 0; itrb = 0
[4056]476          DO iq = 1, nqtot
[4071]477            IF(.NOT.(tracers(iq)%isAdvected .AND. tracers(iq)%isInPhysics)) CYCLE
[4056]478            itr = itr + 1
479            dn = 'd'//TRIM(tracers(iq)%name)//'_'
[1813]480
[4046]481            flag = [1, 5, 5, 5, 10, 10, 11, 11, 11, 11]
[4056]482            lnam = 'Tracer '//TRIM(tracers(iq)%longName)
483            tnam = TRIM(tracers(iq)%name);  o_trac          (itr) = ctrl_out(flag, tnam, lnam, "-", [('',i=1,nfiles)])
484
[4046]485            flag = [4, 7, 7, 7, 10, 10, 11, 11, 11, 11]
[4056]486            lnam = 'Tendance tracer '//TRIM(tracers(iq)%longName)
487            tnam = TRIM(dn)//'vdf';         o_dtr_vdf       (itr) = ctrl_out(flag, tnam, lnam, "-", [('',i=1,nfiles)])
[1813]488
[4046]489            flag = [5, 7, 7, 7, 10, 10, 11, 11, 11, 11]
[4056]490            tnam = TRIM(dn)//'the';         o_dtr_the       (itr) = ctrl_out(flag, tnam, lnam, "-", [('',i=1,nfiles)])
491            tnam = TRIM(dn)//'con';         o_dtr_con       (itr) = ctrl_out(flag, tnam, lnam, "-", [('',i=1,nfiles)])
[1813]492
[4046]493            flag = [7, 7, 7, 7, 10, 10, 11, 11, 11, 11]
[4056]494            tnam = TRIM(dn)//'lessi_impa';  o_dtr_lessi_impa(itr) = ctrl_out(flag, tnam, lnam, "-", [('',i=1,nfiles)])
495            tnam = TRIM(dn)//'lessi_nucl';  o_dtr_lessi_nucl(itr) = ctrl_out(flag, tnam, lnam, "-", [('',i=1,nfiles)])
496            tnam = TRIM(dn)//'insc';        o_dtr_insc      (itr) = ctrl_out(flag, tnam, lnam, "-", [('',i=1,nfiles)])
497            tnam = TRIM(dn)//'bcscav';      o_dtr_bcscav    (itr) = ctrl_out(flag, tnam, lnam, "-", [('',i=1,nfiles)])
498            tnam = TRIM(dn)//'evapls';      o_dtr_evapls    (itr) = ctrl_out(flag, tnam, lnam, "-", [('',i=1,nfiles)])
499            tnam = TRIM(dn)//'ls';          o_dtr_ls        (itr) = ctrl_out(flag, tnam, lnam, "-", [('',i=1,nfiles)])
500            tnam = TRIM(dn)//'trsp';        o_dtr_trsp      (itr) = ctrl_out(flag, tnam, lnam, "-", [('',i=1,nfiles)])
501            tnam = TRIM(dn)//'sscav';       o_dtr_sscav     (itr) = ctrl_out(flag, tnam, lnam, "-", [('',i=1,nfiles)])
502            tnam = TRIM(dn)//'sat';         o_dtr_sat       (itr) = ctrl_out(flag, tnam, lnam, "-", [('',i=1,nfiles)])
503            tnam = TRIM(dn)//'uscav';       o_dtr_uscav     (itr) = ctrl_out(flag, tnam, lnam, "-", [('',i=1,nfiles)])
[1813]504
[4056]505            lnam = 'tracer tendency dry deposition'//TRIM(tracers(iq)%longName)
506            tnam = 'cum'//TRIM(dn)//'dry';  o_dtr_dry       (itr) = ctrl_out(flag, tnam, lnam, "-", [('',i=1,nfiles)])
[1813]507
[4046]508            flag = [1, 4, 10, 10, 10, 10, 11, 11, 11, 11]
[4056]509            lnam = 'Cumulated tracer '//TRIM(tracers(iq)%longName)
510            tnam = 'cum'//TRIM(tracers(iq)%name); o_trac_cum(itr) = ctrl_out(flag, tnam, lnam, "-", [('',i=1,nfiles)])
[4998]511           
512#ifdef CPP_StratAer
513            if(tracers(iq)%name(1:3)=='BIN') then
514               itrb = itrb + 1
515               flag = [11, 11, 11, 11, 11, 11, 11, 11, 11, 1]
516               lnam = 'Dry particle concentration in '//TRIM(tracers(iq)%longName)
517               tnam = TRIM(tracers(iq)%name)//'_nd_mode';     o_nd_mode       (itrb) = ctrl_out(flag, tnam, lnam, "part/m3", [('',i=1,nfiles)])
518               lnam = 'Sulfate MMR in '//TRIM(tracers(iq)%longName)
519               tnam = TRIM(tracers(iq)%name)//'_sulfmmr_mode';o_sulfmmr_mode  (itrb) = ctrl_out(flag, tnam, lnam, "kg(H2SO4)/kg(air)", [('',i=1,nfiles)])
520            endif
521#endif
522         ENDDO
[1813]523
[1971]524   ENDDO !  iff
[1539]525
[1641]526    ! Updated write frequencies due to phys_out_filetimesteps.
527    ! Write frequencies are now in seconds. 
528    ecrit_mth = ecrit_files(1)
529    ecrit_day = ecrit_files(2)
530    ecrit_hf  = ecrit_files(3)
531    ecrit_ins = ecrit_files(4)
532    ecrit_LES = ecrit_files(5)
533    ecrit_ins = ecrit_files(6)
534
[2704]535    IF (prt_level >= 10) THEN
[3082]536      WRITE(lunout,*)'swaerofree_diag=',swaerofree_diag
[2001]537      WRITE(lunout,*)'swaero_diag=',swaero_diag
[2854]538      WRITE(lunout,*)'dryaod_diag=',dryaod_diag
[2989]539      WRITE(lunout,*)'ok_4xCO2atm=',ok_4xCO2atm
[2001]540      WRITE(lunout,*)'phys_output_open: ends here'
[2704]541    ENDIF
[1920]542
[4056]543!  DO iq=1,nqtot
[4071]544!    IF(.NOT.(tracers(iq)%isAdvected .AND. tracers(iq)%isInPhysics)) CYCLE
[4056]545!    WRITE(*,'(a,i1,a,10i3)')'trac(',iq,')%flag = ',o_trac(iq)%flag
546!    WRITE(*,'(a,i1,a)')'trac(',iq,')%name = '//TRIM(o_trac(iq)%name)
547!    WRITE(*,'(a,i1,a)')'trac(',iq,')%description = '//TRIM(o_trac(iq)%description)
[4046]548!  END DO
549
[2704]550  END SUBROUTINE phys_output_open
[907]551
[1562]552  SUBROUTINE convers_timesteps(str,dtime,timestep)
[1279]553
[1562]554    use ioipsl
555    USE phys_cal_mod
[2344]556    USE time_phylmdz_mod, ONLY: day_ref, annee_ref
[2311]557    USE print_control_mod, ONLY: lunout
[1279]558
[1562]559    IMPLICIT NONE
[1279]560
[1791]561    CHARACTER(LEN=20)   :: str
562    CHARACTER(LEN=10)   :: type
563    INTEGER             :: ipos,il
[1562]564    real                :: ttt,xxx,timestep,dayseconde,dtime
565    parameter (dayseconde=86400.)
[1279]566
[1791]567    ipos=scan(str,'0123456789.',.TRUE.)
[1562]568    ! 
569    il=len_trim(str)
[1937]570    WRITE(lunout,*) "ipos = ", ipos
571    WRITE(lunout,*) "il = ", il
[2704]572    IF (ipos == 0) CALL abort_physic("convers_timesteps", "bad str", 1)
[1562]573    read(str(1:ipos),*) ttt
[1791]574    WRITE(lunout,*)ttt
[1562]575    type=str(ipos+1:il)
[1279]576
[2704]577    IF ( il == ipos ) THEN
[1562]578       type='day'
[2704]579    ENDIF
[1279]580
[1791]581    IF ( type == 'day'.or.type == 'days'.or.type == 'jours'.or.type == 'jour' ) timestep = ttt * dayseconde
[2704]582    IF ( type == 'mounths'.or.type == 'mth'.or.type == 'mois' ) THEN
[1791]583       WRITE(lunout,*)'annee_ref,day_ref mon_len',annee_ref,day_ref,mth_len
[1562]584       timestep = ttt * dayseconde * mth_len
[2704]585    ENDIF
[1791]586    IF ( type == 'hours'.or.type == 'hr'.or.type == 'heurs') timestep = ttt * dayseconde / 24.
587    IF ( type == 'mn'.or.type == 'minutes'  ) timestep = ttt * 60.
588    IF ( type == 's'.or.type == 'sec'.or.type == 'secondes'   ) timestep = ttt
589    IF ( type == 'TS' ) timestep = ttt * dtime
[1279]590
[1791]591    WRITE(lunout,*)'type =      ',type
592    WRITE(lunout,*)'nb j/h/m =  ',ttt
593    WRITE(lunout,*)'timestep(s)=',timestep
[1279]594
[1562]595  END SUBROUTINE convers_timesteps
[1279]596
[907]597END MODULE phys_output_mod
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