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trunk/Sources/phylmd/physiq.f revision 252 by guez, Mon Jan 22 15:02:56 2018 UTC trunk/phylmd/physiq.f revision 302 by guez, Thu Sep 6 13:19:51 2018 UTC
# Line 20  contains Line 20  contains
20      use calltherm_m, only: calltherm      use calltherm_m, only: calltherm
21      USE clesphys, ONLY: cdhmax, cdmmax, ecrit_ins, ok_instan      USE clesphys, ONLY: cdhmax, cdmmax, ecrit_ins, ok_instan
22      USE clesphys2, ONLY: conv_emanuel, nbapp_rad, new_oliq, ok_orodr, ok_orolf      USE clesphys2, ONLY: conv_emanuel, nbapp_rad, new_oliq, ok_orodr, ok_orolf
23      USE clmain_m, ONLY: clmain      USE conf_interface_m, ONLY: conf_interface
24        USE pbl_surface_m, ONLY: pbl_surface
25      use clouds_gno_m, only: clouds_gno      use clouds_gno_m, only: clouds_gno
26      use comconst, only: dtphys      use comconst, only: dtphys
27      USE comgeomphy, ONLY: airephy      USE comgeomphy, ONLY: airephy
# Line 30  contains Line 31  contains
31      use conflx_m, only: conflx      use conflx_m, only: conflx
32      USE ctherm, ONLY: iflag_thermals, nsplit_thermals      USE ctherm, ONLY: iflag_thermals, nsplit_thermals
33      use diagcld2_m, only: diagcld2      use diagcld2_m, only: diagcld2
34      USE dimens_m, ONLY: llm, nqmx      USE dimensions, ONLY: llm, nqmx
35      USE dimphy, ONLY: klon      USE dimphy, ONLY: klon
36      USE dimsoil, ONLY: nsoilmx      USE dimsoil, ONLY: nsoilmx
37      use drag_noro_m, only: drag_noro      use drag_noro_m, only: drag_noro
# Line 176  contains Line 177  contains
177    
178      ! Variables li\'ees \`a la convection d'Emanuel :      ! Variables li\'ees \`a la convection d'Emanuel :
179      REAL, save:: Ma(klon, llm) ! undilute upward mass flux      REAL, save:: Ma(klon, llm) ! undilute upward mass flux
     REAL, save:: qcondc(klon, llm) ! in-cld water content from convect  
180      REAL, save:: sig1(klon, llm), w01(klon, llm)      REAL, save:: sig1(klon, llm), w01(klon, llm)
181    
182      ! Variables pour la couche limite (Alain Lahellec) :      ! Variables pour la couche limite (Alain Lahellec) :
# Line 188  contains Line 188  contains
188      REAL, save:: ffonte(klon, nbsrf)      REAL, save:: ffonte(klon, nbsrf)
189      ! flux thermique utilise pour fondre la neige      ! flux thermique utilise pour fondre la neige
190    
191      REAL, save:: fqcalving(klon, nbsrf)      REAL fqcalving(klon, nbsrf)
192      ! flux d'eau "perdue" par la surface et necessaire pour limiter la      ! flux d'eau "perdue" par la surface et n\'ecessaire pour limiter
193      ! hauteur de neige, en kg / m2 / s      ! la hauteur de neige, en kg / m2 / s
194    
195      REAL zxffonte(klon), zxfqcalving(klon)      REAL zxffonte(klon)
196    
197      REAL, save:: pfrac_impa(klon, llm)! Produits des coefs lessivage impaction      REAL, save:: pfrac_impa(klon, llm)! Produits des coefs lessivage impaction
198      REAL, save:: pfrac_nucl(klon, llm)! Produits des coefs lessivage nucleation      REAL, save:: pfrac_nucl(klon, llm)! Produits des coefs lessivage nucleation
# Line 212  contains Line 212  contains
212      REAL rain_tiedtke(klon), snow_tiedtke(klon)      REAL rain_tiedtke(klon), snow_tiedtke(klon)
213    
214      REAL evap(klon) ! flux d'\'evaporation au sol      REAL evap(klon) ! flux d'\'evaporation au sol
215      real devap(klon) ! derivative of the evaporation flux at the surface      real dflux_q(klon) ! derivative of the evaporation flux at the surface
216      REAL sens(klon) ! flux de chaleur sensible au sol      REAL sens(klon) ! flux de chaleur sensible au sol
217      real dsens(klon) ! derivee du flux de chaleur sensible au sol      real dflux_t(klon) ! derivee du flux de chaleur sensible au sol
218      REAL, save:: dlw(klon) ! derivative of infra-red flux      REAL, save:: dlw(klon) ! derivative of infra-red flux
219      REAL bils(klon) ! bilan de chaleur au sol      REAL bils(klon) ! bilan de chaleur au sol
220      REAL fder(klon) ! Derive de flux (sensible et latente)      REAL fder(klon) ! Derive de flux (sensible et latente)
# Line 237  contains Line 237  contains
237      real, save:: clwcon(klon, llm), rnebcon(klon, llm)      real, save:: clwcon(klon, llm), rnebcon(klon, llm)
238      real, save:: clwcon0(klon, llm), rnebcon0(klon, llm)      real, save:: clwcon0(klon, llm), rnebcon0(klon, llm)
239    
240      REAL rhcl(klon, llm) ! humiditi relative ciel clair      REAL rhcl(klon, llm) ! humidit\'e relative ciel clair
241      REAL dialiq(klon, llm) ! eau liquide nuageuse      REAL dialiq(klon, llm) ! eau liquide nuageuse
242      REAL diafra(klon, llm) ! fraction nuageuse      REAL diafra(klon, llm) ! fraction nuageuse
243      REAL cldliq(klon, llm) ! eau liquide nuageuse      REAL cldliq(klon, llm) ! eau liquide nuageuse
# Line 372  contains Line 372  contains
372      REAL ue_lay(klon, llm) ! transport zonal de l'energie a chaque niveau vert.      REAL ue_lay(klon, llm) ! transport zonal de l'energie a chaque niveau vert.
373      REAL uq_lay(klon, llm) ! transport zonal de l'eau a chaque niveau vert.      REAL uq_lay(klon, llm) ! transport zonal de l'eau a chaque niveau vert.
374    
     real date0  
375      REAL tsol(klon)      REAL tsol(klon)
376    
377      REAL d_t_ec(klon, llm)      REAL d_t_ec(klon, llm)
# Line 419  contains Line 418  contains
418         t2m = 0.         t2m = 0.
419         q2m = 0.         q2m = 0.
420         ffonte = 0.         ffonte = 0.
        fqcalving = 0.  
421         rain_con = 0.         rain_con = 0.
422         snow_con = 0.         snow_con = 0.
423         d_u_con = 0.         d_u_con = 0.
# Line 472  contains Line 470  contains
470            rugoro = 0.            rugoro = 0.
471         ENDIF         ENDIF
472    
        ecrit_ins = NINT(ecrit_ins / dtphys)  
   
473         ! Initialisation des sorties         ! Initialisation des sorties
474           call ini_histins(ok_newmicro)
        call ini_histins(dtphys, ok_newmicro)  
        CALL ymds2ju(annee_ref, 1, day_ref, 0., date0)  
        ! Positionner date0 pour initialisation de ORCHIDEE  
        print *, 'physiq date0: ', date0  
475         CALL phyredem0         CALL phyredem0
476           call conf_interface
477      ENDIF test_firstcal      ENDIF test_firstcal
478    
479      ! We will modify variables *_seri and we will not touch variables      ! We will modify variables *_seri and we will not touch variables
# Line 558  contains Line 551  contains
551         fsolsw(:, nsrf) = solsw * (1. - falbe(:, nsrf)) / (1. - albsol)         fsolsw(:, nsrf) = solsw * (1. - falbe(:, nsrf)) / (1. - albsol)
552      END forall      END forall
553    
554      CALL clmain(dtphys, pctsrf, t_seri, q_seri, u_seri, v_seri, julien, mu0, &      CALL pbl_surface(pctsrf, t_seri, q_seri, u_seri, v_seri, julien, mu0, &
555           ftsol, cdmmax, cdhmax, ftsoil, qsol, paprs, play, fsnow, fqsurf, &           ftsol, cdmmax, cdhmax, ftsoil, qsol, paprs, play, fsnow, fqsurf, &
556           fevap, falbe, fluxlat, rain_fall, snow_fall, fsolsw, fsollw, frugs, &           fevap, falbe, fluxlat, rain_fall, snow_fall, fsolsw, fsollw, frugs, &
557           agesno, rugoro, d_t_vdf, d_q_vdf, d_u_vdf, d_v_vdf, d_ts, flux_t, &           agesno, rugoro, d_t_vdf, d_q_vdf, d_u_vdf, d_v_vdf, d_ts, flux_t, &
558           flux_q, flux_u, flux_v, cdragh, cdragm, q2, dsens, devap, coefh, t2m, &           flux_q, flux_u, flux_v, cdragh, cdragm, q2, dflux_t, dflux_q, coefh, &
559           q2m, u10m_srf, v10m_srf, pblh, capCL, oliqCL, cteiCL, pblT, therm, &           t2m, q2m, u10m_srf, v10m_srf, pblh, capCL, oliqCL, cteiCL, pblT, &
560           plcl, fqcalving, ffonte, run_off_lic_0)           therm, plcl, fqcalving, ffonte, run_off_lic_0)
561    
562      ! Incr\'ementation des flux      ! Incr\'ementation des flux
563    
564      sens = - sum(flux_t * pctsrf, dim = 2)      sens = - sum(flux_t * pctsrf, dim = 2)
565      evap = - sum(flux_q * pctsrf, dim = 2)      evap = - sum(flux_q * pctsrf, dim = 2)
566      fder = dlw + dsens + devap      fder = dlw + dflux_t + dflux_q
567    
568      DO k = 1, llm      DO k = 1, llm
569         DO i = 1, klon         DO i = 1, klon
# Line 581  contains Line 574  contains
574         ENDDO         ENDDO
575      ENDDO      ENDDO
576    
     ! Update surface temperature:  
   
577      call assert(abs(sum(pctsrf, dim = 2) - 1.) <= EPSFRA, 'physiq: pctsrf')      call assert(abs(sum(pctsrf, dim = 2) - 1.) <= EPSFRA, 'physiq: pctsrf')
578      ftsol = ftsol + d_ts      ftsol = ftsol + d_ts ! update surface temperature
579      tsol = sum(ftsol * pctsrf, dim = 2)      tsol = sum(ftsol * pctsrf, dim = 2)
580      zxfluxlat = sum(fluxlat * pctsrf, dim = 2)      zxfluxlat = sum(fluxlat * pctsrf, dim = 2)
581      zt2m = sum(t2m * pctsrf, dim = 2)      zt2m = sum(t2m * pctsrf, dim = 2)
# Line 592  contains Line 583  contains
583      u10m = sum(u10m_srf * pctsrf, dim = 2)      u10m = sum(u10m_srf * pctsrf, dim = 2)
584      v10m = sum(v10m_srf * pctsrf, dim = 2)      v10m = sum(v10m_srf * pctsrf, dim = 2)
585      zxffonte = sum(ffonte * pctsrf, dim = 2)      zxffonte = sum(ffonte * pctsrf, dim = 2)
     zxfqcalving = sum(fqcalving * pctsrf, dim = 2)  
586      s_pblh = sum(pblh * pctsrf, dim = 2)      s_pblh = sum(pblh * pctsrf, dim = 2)
587      s_lcl = sum(plcl * pctsrf, dim = 2)      s_lcl = sum(plcl * pctsrf, dim = 2)
588      s_capCL = sum(capCL * pctsrf, dim = 2)      s_capCL = sum(capCL * pctsrf, dim = 2)
# Line 611  contains Line 601  contains
601               u10m_srf(i, nsrf) = u10m(i)               u10m_srf(i, nsrf) = u10m(i)
602               v10m_srf(i, nsrf) = v10m(i)               v10m_srf(i, nsrf) = v10m(i)
603               ffonte(i, nsrf) = zxffonte(i)               ffonte(i, nsrf) = zxffonte(i)
              fqcalving(i, nsrf) = zxfqcalving(i)  
604               pblh(i, nsrf) = s_pblh(i)               pblh(i, nsrf) = s_pblh(i)
605               plcl(i, nsrf) = s_lcl(i)               plcl(i, nsrf) = s_lcl(i)
606               capCL(i, nsrf) = s_capCL(i)               capCL(i, nsrf) = s_capCL(i)
# Line 630  contains Line 619  contains
619      if (conv_emanuel) then      if (conv_emanuel) then
620         CALL concvl(paprs, play, t_seri, q_seri, u_seri, v_seri, sig1, w01, &         CALL concvl(paprs, play, t_seri, q_seri, u_seri, v_seri, sig1, w01, &
621              d_t_con, d_q_con, d_u_con, d_v_con, rain_con, ibas_con, itop_con, &              d_t_con, d_q_con, d_u_con, d_v_con, rain_con, ibas_con, itop_con, &
622              upwd, dnwd, Ma, cape, iflagctrl, qcondc, pmflxr, da, phi, mp)              upwd, dnwd, Ma, cape, iflagctrl, clwcon0, pmflxr, da, phi, mp)
623         snow_con = 0.         snow_con = 0.
        clwcon0 = qcondc  
624         mfu = upwd + dnwd         mfu = upwd + dnwd
625    
626         zqsat = MIN(0.5, r2es * FOEEW(t_seri, rtt >= t_seri) / play)         zqsat = MIN(0.5, r2es * FOEEW(t_seri, rtt >= t_seri) / play)
# Line 653  contains Line 641  contains
641         conv_q = d_q_dyn + d_q_vdf / dtphys         conv_q = d_q_dyn + d_q_vdf / dtphys
642         conv_t = d_t_dyn + d_t_vdf / dtphys         conv_t = d_t_dyn + d_t_vdf / dtphys
643         z_avant = sum((q_seri + ql_seri) * zmasse, dim=2)         z_avant = sum((q_seri + ql_seri) * zmasse, dim=2)
644         CALL conflx(dtphys, paprs, play, t_seri(:, llm:1:- 1), &         CALL conflx(paprs, play, t_seri(:, llm:1:- 1), q_seri(:, llm:1:- 1), &
645              q_seri(:, llm:1:- 1), conv_t, conv_q, - evap, omega, d_t_con, &              conv_t, conv_q, - evap, omega, d_t_con, d_q_con, rain_con, &
646              d_q_con, rain_con, snow_con, mfu(:, llm:1:- 1), mfd(:, llm:1:- 1), &              snow_con, mfu(:, llm:1:- 1), mfd(:, llm:1:- 1), pen_u, pde_u, &
647              pen_u, pde_u, pen_d, pde_d, kcbot, kctop, kdtop, pmflxr, pmflxs)              pen_d, pde_d, kcbot, kctop, kdtop, pmflxr, pmflxs)
648         WHERE (rain_con < 0.) rain_con = 0.         WHERE (rain_con < 0.) rain_con = 0.
649         WHERE (snow_con < 0.) snow_con = 0.         WHERE (snow_con < 0.) snow_con = 0.
650         ibas_con = llm + 1 - kcbot         ibas_con = llm + 1 - kcbot
# Line 699  contains Line 687  contains
687         t_seri = t_seri + d_t_ajs         t_seri = t_seri + d_t_ajs
688         q_seri = q_seri + d_q_ajs         q_seri = q_seri + d_q_ajs
689      else      else
690         call calltherm(dtphys, play, paprs, pphi, u_seri, v_seri, t_seri, &         call calltherm(play, paprs, pphi, u_seri, v_seri, t_seri, q_seri, &
691              q_seri, d_u_ajs, d_v_ajs, d_t_ajs, d_q_ajs, fm_therm, entr_therm)              d_u_ajs, d_v_ajs, d_t_ajs, d_q_ajs, fm_therm, entr_therm)
692      endif      endif
693    
694      ! Caclul des ratqs      ! Caclul des ratqs
695    
     ! ratqs convectifs \`a l'ancienne en fonction de (q(z = 0) - q) / q  
     ! on \'ecrase le tableau ratqsc calcul\'e par clouds_gno  
696      if (iflag_cldcon == 1) then      if (iflag_cldcon == 1) then
697           ! ratqs convectifs \`a l'ancienne en fonction de (q(z = 0) - q) / q
698           ! on \'ecrase le tableau ratqsc calcul\'e par clouds_gno
699         do k = 1, llm         do k = 1, llm
700            do i = 1, klon            do i = 1, klon
701               if(ptconv(i, k)) then               if(ptconv(i, k)) then
# Line 741  contains Line 729  contains
729         ratqs = ratqss         ratqs = ratqss
730      endif      endif
731    
732      CALL fisrtilp(dtphys, paprs, play, t_seri, q_seri, ptconv, ratqs, &      CALL fisrtilp(paprs, play, t_seri, q_seri, ptconv, ratqs, d_t_lsc, &
733           d_t_lsc, d_q_lsc, d_ql_lsc, rneb, cldliq, rain_lsc, snow_lsc, &           d_q_lsc, d_ql_lsc, rneb, cldliq, rain_lsc, snow_lsc, pfrac_impa, &
734           pfrac_impa, pfrac_nucl, pfrac_1nucl, frac_impa, frac_nucl, prfl, &           pfrac_nucl, pfrac_1nucl, frac_impa, frac_nucl, prfl, psfl, rhcl)
          psfl, rhcl)  
735    
736      WHERE (rain_lsc < 0) rain_lsc = 0.      WHERE (rain_lsc < 0) rain_lsc = 0.
737      WHERE (snow_lsc < 0) snow_lsc = 0.      WHERE (snow_lsc < 0) snow_lsc = 0.
# Line 888  contains Line 875  contains
875            ENDIF            ENDIF
876         ENDDO         ENDDO
877    
878         CALL drag_noro(dtphys, paprs, play, zmea, zstd, zsig, zgam, zthe, &         CALL drag_noro(paprs, play, zmea, zstd, zsig, zgam, zthe, zpic, zval, &
879              zpic, zval, ktest, t_seri, u_seri, v_seri, zulow, zvlow, zustrdr, &              ktest, t_seri, u_seri, v_seri, zulow, zvlow, zustrdr, zvstrdr, &
880              zvstrdr, d_t_oro, d_u_oro, d_v_oro)              d_t_oro, d_u_oro, d_v_oro)
881    
882         ! ajout des tendances         ! ajout des tendances
883         DO k = 1, llm         DO k = 1, llm
# Line 911  contains Line 898  contains
898            ENDIF            ENDIF
899         ENDDO         ENDDO
900    
901         CALL lift_noro(dtphys, paprs, play, zmea, zstd, zpic, ktest, t_seri, &         CALL lift_noro(paprs, play, zmea, zstd, zpic, ktest, t_seri, u_seri, &
902              u_seri, v_seri, zulow, zvlow, zustrli, zvstrli, d_t_lif, &              v_seri, zulow, zvlow, zustrli, zvstrli, d_t_lif, d_u_lif, d_v_lif)
             d_u_lif, d_v_lif)  
903    
904         ! Ajout des tendances :         ! Ajout des tendances :
905         DO k = 1, llm         DO k = 1, llm
# Line 931  contains Line 917  contains
917           aam, torsfc)           aam, torsfc)
918    
919      ! Calcul des tendances traceurs      ! Calcul des tendances traceurs
920      call phytrac(julien, time, firstcal, lafin, dtphys, t, paprs, play, mfu, &      call phytrac(julien, time, firstcal, lafin, t, paprs, play, mfu, mfd, &
921           mfd, pde_u, pen_d, coefh, cdragh, fm_therm, entr_therm, u(:, 1), &           pde_u, pen_d, coefh, cdragh, fm_therm, entr_therm, u(:, 1), v(:, 1), &
922           v(:, 1), ftsol, pctsrf, frac_impa, frac_nucl, da, phi, mp, upwd, &           ftsol, pctsrf, frac_impa, frac_nucl, da, phi, mp, upwd, dnwd, &
923           dnwd, tr_seri, zmasse, ncid_startphy)           tr_seri, zmasse, ncid_startphy)
924    
925      ! Calculer le transport de l'eau et de l'energie (diagnostique)      ! Calculer le transport de l'eau et de l'energie (diagnostique)
926      CALL transp(paprs, t_seri, q_seri, u_seri, v_seri, zphi, ve, vq, ue, uq)      CALL transp(paprs, t_seri, q_seri, u_seri, v_seri, zphi, ve, vq, ue, uq)
# Line 1020  contains Line 1006  contains
1006      CALL histwrite_phy("dtsvdft", d_ts(:, is_ter))      CALL histwrite_phy("dtsvdft", d_ts(:, is_ter))
1007      CALL histwrite_phy("dtsvdfg", d_ts(:, is_lic))      CALL histwrite_phy("dtsvdfg", d_ts(:, is_lic))
1008      CALL histwrite_phy("dtsvdfi", d_ts(:, is_sic))      CALL histwrite_phy("dtsvdfi", d_ts(:, is_sic))
1009        CALL histwrite_phy("zxfqcalving", sum(fqcalving * pctsrf, dim = 2))
1010    
1011      DO nsrf = 1, nbsrf      DO nsrf = 1, nbsrf
1012         CALL histwrite_phy("pourc_"//clnsurf(nsrf), pctsrf(:, nsrf) * 100.)         CALL histwrite_phy("pourc_"//clnsurf(nsrf), pctsrf(:, nsrf) * 100.)

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