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END IF
!
IF( LUSERC .AND. LUSERI ) THEN
XRRS(:,:,:,2) = XRRS(:,:,:,2) + XRHODJ(:,:,:) * XDRCCONV(:,:,:)
XRRS(:,:,:,4) = XRRS(:,:,:,4) + XRHODJ(:,:,:) * XDRICONV(:,:,:)
!
ELSE IF ( LUSERC .AND. (.NOT. LUSERI) ) THEN
!
! If only cloud water but no cloud ice is used, the convective tendency
! for cloud ice is added to the tendency for cloud water
!
XRRS(:,:,:,2) = XRRS(:,:,:,2) + XRHODJ(:,:,:) * (XDRCCONV(:,:,:) + &
XDRICONV(:,:,:) )
! and cloud ice is melted
!
XRTHS(:,:,:) = XRTHS(:,:,:) - XRHODJ(:,:,:) * &
( XP00/XPABST(:,:,:) )**(XRD/XCPD) * XLMTT / XCPD * XDRICONV(:,:,:)
!
ELSE IF ( (.NOT. LUSERC) .AND. (.NOT. LUSERI) ) THEN
!
! If no cloud water and no cloud ice are used the convective tendencies for these
! variables are added to the water vapor tendency
!
XRRS(:,:,:,1) = XRRS(:,:,:,1) + XRHODJ(:,:,:) * (XDRCCONV(:,:,:) + &
XDRICONV(:,:,:) )
! and all cloud condensate is evaporated
!
XRTHS(:,:,:) = XRTHS(:,:,:) - XRHODJ(:,:,:) / XCPD * ( &
XLVTT * XDRCCONV(:,:,:) + XLSTT * XDRICONV(:,:,:) ) *&
( XP00 / XPABST(:,:,:) ) ** ( XRD / XCPD )
END IF
END IF
!
! budget storage
!
IF (CDCONV == 'KAFR' .OR. CSCONV == 'KAFR' ) THEN
IF (LBUDGET_TH) CALL BUDGET (XRTHS,4,'DCONV_BU_RTH')
IF (LBUDGET_RV) CALL BUDGET (XRRS(:,:,:,1),6,'DCONV_BU_RRV')
IF (LBUDGET_RC) CALL BUDGET (XRRS(:,:,:,2),7,'DCONV_BU_RRC')
IF (LBUDGET_RI) CALL BUDGET (XRRS(:,:,:,4),9,'DCONV_BU_RRI')
IF (LCHTRANS .AND. LBUDGET_SV) THEN
DO JSV = 1, SIZE(XRSVS,4)
CALL BUDGET (XRSVS(:,:,:,JSV),JSV+12,'DCONV_BU_RSV')
END DO
END IF
END IF
!
CALL SECOND_MNH2(ZTIME2)
!
PKAFR = PKAFR + ZTIME2 - ZTIME1 &
- XTIME_LES_BU_PROCESS - XTIME_BU_PROCESS
!
PTIME_BU = PTIME_BU + XTIME_LES_BU_PROCESS + XTIME_BU_PROCESS
!
!-----------------------------------------------------------------------------
!
!* 3. TURBULENT SURFACE FLUXES
! ------------------------
!
ZTIME1 = ZTIME2
!
IF (CSURF=='EXTE') THEN
CALL GOTO_SURFEX(IMI,.TRUE.)
!
IF( LTRANS ) THEN
XUT(:,:,1+JPVEXT) = XUT(:,:,1+JPVEXT) + XUTRANS
XVT(:,:,1+JPVEXT) = XVT(:,:,1+JPVEXT) + XVTRANS
XUM(:,:,1+JPVEXT) = XUM(:,:,1+JPVEXT) + XUTRANS
XVM(:,:,1+JPVEXT) = XVM(:,:,1+JPVEXT) + XVTRANS
END IF
!
ALLOCATE(ZDIR_ALB(IIU,IJU,NSWB_MNH))
ALLOCATE(ZSCA_ALB(IIU,IJU,NSWB_MNH))
ALLOCATE(ZEMIS (IIU,IJU))
ALLOCATE(ZTSRAD (IIU,IJU))
!
DO JKID = IMI+1,NMODEL ! min value of the possible kids
IF (IMI == NDAD(JKID) .AND. XWAY(JKID) == 2. .AND. &
CPROGRAM=='MESONH' .AND. &
(CCONF == 'RESTA' .OR. (CCONF == 'START' .AND. KTCOUNT /= 1))) THEN
! where kids exist, use the two-way output fields (i.e. OMASKkids true)
! rather than the farther calculations in radiation and convection schemes
IKIDM = JKID-IMI
IF (LUSERC .AND. ((LSEDIC .AND. CCLOUD(1:3) == 'ICE') .OR. &
(LSEDC .AND. (CCLOUD == 'C2R2' .OR. CCLOUD == 'KHKO')) )) THEN
WHERE (OMASKkids(:,:) )
XINPRC(:,:) = ZSAVE_INPRC(:,:,IKIDM)
ENDWHERE
END IF
IF (LUSERR) THEN
WHERE (OMASKkids(:,:) )
XINPRR(:,:) = ZSAVE_INPRR(:,:,IKIDM)
ENDWHERE
END IF
IF (LUSERS) THEN
WHERE (OMASKkids(:,:) )
XINPRS(:,:) = ZSAVE_INPRS(:,:,IKIDM)
ENDWHERE
END IF
IF (LUSERG) THEN
WHERE (OMASKkids(:,:) )
XINPRG(:,:) = ZSAVE_INPRG(:,:,IKIDM)
ENDWHERE
END IF
IF (LUSERH) THEN
WHERE (OMASKkids(:,:) )
XINPRH(:,:) = ZSAVE_INPRH(:,:,IKIDM)
ENDWHERE
END IF
IF (CDCONV /= 'NONE') THEN
WHERE (OMASKkids(:,:) )
XPRCONV(:,:) = ZSAVE_PRCONV(:,:,IKIDM)
XPRSCONV(:,:) = ZSAVE_PRSCONV(:,:,IKIDM)
ENDWHERE
END IF
IF (CRAD /= 'NONE') THEN
DO JSWB=1,NSWB_MNH
WHERE (OMASKkids(:,:) )
XDIRFLASWD(:,:,JSWB) = ZSAVE_DIRFLASWD(:,:,JSWB,IKIDM)
XSCAFLASWD(:,:,JSWB) = ZSAVE_SCAFLASWD(:,:,JSWB,IKIDM)
XDIRSRFSWD(:,:,JSWB) = ZSAVE_DIRSRFSWD(:,:,JSWB,IKIDM)
ENDWHERE
ENDDO
END IF
ENDIF
END DO
!
IF (IMODSON /= 0 ) THEN
DEALLOCATE( ZSAVE_INPRR,ZSAVE_INPRS,ZSAVE_INPRG,ZSAVE_INPRH)
DEALLOCATE( ZSAVE_INPRC,ZSAVE_PRCONV,ZSAVE_PRSCONV)
DEALLOCATE( ZSAVE_DIRFLASWD,ZSAVE_SCAFLASWD,ZSAVE_DIRSRFSWD)
END IF
CALL GROUND_PARAM_n(ZSFTH, ZSFRV, ZSFSV, ZSFCO2, ZSFU, ZSFV, &
ZDIR_ALB, ZSCA_ALB, ZEMIS, ZTSRAD )
!
IF (SIZE(XEMIS)>0) THEN
XDIR_ALB = ZDIR_ALB
XSCA_ALB = ZSCA_ALB
XEMIS = ZEMIS
XTSRAD = ZTSRAD
END IF
!
DEALLOCATE(ZDIR_ALB)
DEALLOCATE(ZSCA_ALB)
DEALLOCATE(ZEMIS )
DEALLOCATE(ZTSRAD )
!
YINST_SFU='M'
!
IF( LTRANS ) THEN
XUT(:,:,1+JPVEXT) = XUT(:,:,1+JPVEXT) - XUTRANS
XVT(:,:,1+JPVEXT) = XVT(:,:,1+JPVEXT) - XVTRANS
XUM(:,:,1+JPVEXT) = XUM(:,:,1+JPVEXT) - XUTRANS
XVM(:,:,1+JPVEXT) = XVM(:,:,1+JPVEXT) - XVTRANS
END IF
!
ELSE
ZSFTH = 0.
ZSFRV = 0.
ZSFSV = 0.
ZSFCO2 = 0.
ZSFU = 0.
ZSFV = 0.
END IF
!
CALL SECOND_MNH2(ZTIME2)
!
PGROUND = PGROUND + ZTIME2 - ZTIME1
!
!-----------------------------------------------------------------------------
!
!* 3.1 EDDY FLUXES PARAMETRIZATION
! ------------------
!
IF (IMI==1) THEN ! On calcule les flus turb. comme preconise par PP
! Heat eddy fluxes
IF ( LTH_FLX ) CALL EDDY_FLUX_n(IMI,KTCOUNT,XVM,XTHM,XRHODJ,XRTHS,XVTH_FLUX_M,XWTH_FLUX_M)
!
! Momentum eddy fluxes
IF ( LUV_FLX ) CALL EDDYUV_FLUX_n(IMI,CLUOUT,KTCOUNT,XVM,XTHM,XRHODJ,XRHODREF,XPABSM,XRVS,XVU_FLUX_M)
ELSE
! TEST pour maille infèrieure à 20km ?
! car pb d'instabilités ?
! Pour le modèle fils, on spawne les flux du modèle père
! Heat eddy fluxes
IF ( LTH_FLX ) CALL EDDY_FLUX_ONE_WAY_n (IMI,KTCOUNT,NDXRATIO_ALL(IMI),NDYRATIO_ALL(IMI),CLBCX,CLBCY)
!
! Momentum eddy fluxes
IF ( LUV_FLX ) CALL EDDYUV_FLUX_ONE_WAY_n (IMI,KTCOUNT,NDXRATIO_ALL(IMI),NDYRATIO_ALL(IMI),CLBCX,CLBCY)
!
END IF
!-----------------------------------------------------------------------------
!
!* 4. PASSIVE POLLUTANTS
! ------------------
!
ZTIME1 = ZTIME2
!
IF (LPASPOL) CALL PASPOL(PTSTEP_SV, ZSFSV, ILUOUT, NVERB, OCLOSE_OUT, HFMFILE, CLUOUT )
!
!
!* 4b. PASSIVE POLLUTANTS FOR MASS-FLUX SCHEME DIAGNOSTICS
! ---------------------------------------------------
!
IF (LCONDSAMP) CALL CONDSAMP(ZSFSV, ILUOUT, NVERB, OCLOSE_OUT, HFMFILE, CLUOUT)
!
CALL SECOND_MNH2(ZTIME2)
!
PTRACER = PTRACER + ZTIME2 - ZTIME1
!-----------------------------------------------------------------------------
!
!* 5. Drag force
! ----------
!
ZTIME1 = ZTIME2
XTIME_BU_PROCESS = 0.
XTIME_LES_BU_PROCESS = 0.
!
IF (LDRAGTREE) CALL DRAG_VEG(XUT,XVT,XTKET,XRHODJ,XZZ,XRUS, XRVS, XRTKES)
!
CALL SECOND_MNH2(ZTIME2)
!
PDRAG = PDRAG + ZTIME2 - ZTIME1 &
- XTIME_LES_BU_PROCESS - XTIME_BU_PROCESS
!
PTIME_BU = PTIME_BU + XTIME_LES_BU_PROCESS + XTIME_BU_PROCESS
!
!-----------------------------------------------------------------------------
!
!* 6. TURBULENCE SCHEME
! -----------------
!
ZTIME1 = ZTIME2
XTIME_BU_PROCESS = 0.
XTIME_LES_BU_PROCESS = 0.
!
ZSFTH(:,:) = ZSFTH(:,:) * XDIRCOSZW(:,:)
ZSFRV(:,:) = ZSFRV(:,:) * XDIRCOSZW(:,:)
DO JSV=1,NSV
ZSFSV(:,:,JSV) = ZSFSV(:,:,JSV) * XDIRCOSZW(:,:)
END DO
!
IF (LLES_CALL) CALL SWITCH_SBG_LES_n
!
!
IF ( CTURB == 'TKEL' ) THEN
!
!* 6.1 complete surface fluxe fields on the border
!
IF(NHALO == 1) THEN
CALL ADD2DFIELD_ll(TZFIELDS_ll,ZSFTH)
CALL ADD2DFIELD_ll(TZFIELDS_ll,ZSFRV)
CALL ADD2DFIELD_ll(TZFIELDS_ll,ZSFU)
CALL ADD2DFIELD_ll(TZFIELDS_ll,ZSFV)
IF(NSV >0)THEN
DO JSV=1,NSV
CALL ADD2DFIELD_ll(TZFIELDS_ll,ZSFSV(:,:,JSV))
END DO
END IF
CALL ADD2DFIELD_ll(TZFIELDS_ll,ZSFCO2)
CALL UPDATE_HALO_ll(TZFIELDS_ll,IINFO_ll)
CALL CLEANLIST_ll(TZFIELDS_ll)
END IF
!
IF ( CLBCX(1) /= "CYCL" .AND. LWEST_ll()) THEN
ZSFTH(IIB-1,:)=ZSFTH(IIB,:)
ZSFRV(IIB-1,:)=ZSFRV(IIB,:)
ZSFU(IIB-1,:)=ZSFU(IIB,:)
ZSFV(IIB-1,:)=ZSFV(IIB,:)
IF (NSV>0) ZSFSV(IIB-1,:,:)=ZSFSV(IIB,:,:)
ZSFCO2(IIB-1,:)=ZSFCO2(IIB,:)
END IF
IF ( CLBCX(2) /= "CYCL" .AND. LEAST_ll()) THEN
ZSFTH(IIE+1,:)=ZSFTH(IIE,:)
ZSFRV(IIE+1,:)=ZSFRV(IIE,:)
ZSFU(IIE+1,:)=ZSFU(IIE,:)
ZSFV(IIE+1,:)=ZSFV(IIE,:)
IF (NSV>0) ZSFSV(IIE+1,:,:)=ZSFSV(IIE,:,:)
ZSFCO2(IIE+1,:)=ZSFCO2(IIE,:)
END IF
IF ( CLBCY(1) /= "CYCL" .AND. LSOUTH_ll()) THEN
ZSFTH(:,IJB-1)=ZSFTH(:,IJB)
ZSFRV(:,IJB-1)=ZSFRV(:,IJB)
ZSFU(:,IJB-1)=ZSFU(:,IJB)
ZSFV(:,IJB-1)=ZSFV(:,IJB)
IF (NSV>0) ZSFSV(:,IJB-1,:)=ZSFSV(:,IJB,:)
ZSFCO2(:,IJB-1)=ZSFCO2(:,IJB)
END IF
IF ( CLBCY(2) /= "CYCL" .AND. LNORTH_ll()) THEN
ZSFTH(:,IJE+1)=ZSFTH(:,IJE)
ZSFRV(:,IJE+1)=ZSFRV(:,IJE)
ZSFU(:,IJE+1)=ZSFU(:,IJE)
ZSFV(:,IJE+1)=ZSFV(:,IJE)
IF (NSV>0) ZSFSV(:,IJE+1,:)=ZSFSV(:,IJE,:)
ZSFCO2(:,IJE+1)=ZSFCO2(:,IJE)
END IF
!
IF( LTRANS ) THEN
XUT(:,:,:) = XUT(:,:,:) + XUTRANS
XVT(:,:,:) = XVT(:,:,:) + XVTRANS
XUM(:,:,:) = XUM(:,:,:) + XUTRANS
XVM(:,:,:) = XVM(:,:,:) + XVTRANS
END IF
!
!
IF(ALLOCATED(XTHW_FLUX)) THEN
DEALLOCATE(XTHW_FLUX)
ALLOCATE(XTHW_FLUX(SIZE(XTHM,1),SIZE(XTHM,2),SIZE(XTHM,3)))
ELSE
ALLOCATE(XTHW_FLUX(SIZE(XTHM,1),SIZE(XTHM,2),SIZE(XTHM,3)))
END IF
IF(ALLOCATED(XRCW_FLUX)) THEN
DEALLOCATE(XRCW_FLUX)
ALLOCATE(XRCW_FLUX(SIZE(XTHM,1),SIZE(XTHM,2),SIZE(XTHM,3)))
ELSE
ALLOCATE(XRCW_FLUX(SIZE(XTHM,1),SIZE(XTHM,2),SIZE(XTHM,3)))
END IF
!
IF(ALLOCATED(XSVW_FLUX)) THEN
DEALLOCATE(XSVW_FLUX)
ALLOCATE(XSVW_FLUX(SIZE(XSVM,1),SIZE(XSVM,2),SIZE(XSVM,3),SIZE(XSVM,4)))
ELSE
ALLOCATE(XSVW_FLUX(SIZE(XSVM,1),SIZE(XSVM,2),SIZE(XSVM,3),SIZE(XSVM,4)))
END IF
!
IF (HMET_ADV_SCHEME(1:3) == 'PPM') THEN
IF (HSV_ADV_SCHEME(1:3) == 'PPM') THEN
CALL TURB(1,IKU,1,IMI,NRR, NRRL, NRRI, CLBCX, CLBCY, 1,NMODEL_CLOUD, &
OCLOSE_OUT,LTURB_FLX,LTURB_DIAG,LSUBG_COND,LRMC01, &
CTURBDIM,CTURBLEN,CTOM,CTURBLEN_CLOUD,YINST_SFU,XIMPL, &
PTSTEP,PTSTEP_MET, PTSTEP_SV,HFMFILE,CLUOUT, &
XDXX,XDYY,XDZZ,XDZX,XDZY,XZZ, &
XDIRCOSXW,XDIRCOSYW,XDIRCOSZW,XCOSSLOPE,XSINSLOPE, &
XRHODJ,XTHVREF,XRHODREF, &
ZSFTH,ZSFRV,ZSFSV,ZSFU,ZSFV, &
XPABSM,XUM,XVM,XWM,XTKET,XSVT,XSRCM,XBL_DEPTH,XSBL_DEPTH, &
XUT,XVT,XWT,XCEI,XCEI_MIN,XCEI_MAX,XCOEF_AMPL_SAT, &
XTHT,XRT, &
XRUS,XRVS,XRWS,XRTHS,XRRS,XRSVS,XRTKES,XSIGS, XWTHVMF, &
XTHW_FLUX, XRCW_FLUX, XSVW_FLUX )
ELSE
CALL TURB(1,IKU,1,IMI,NRR, NRRL, NRRI, CLBCX, CLBCY, 1,NMODEL_CLOUD, &
OCLOSE_OUT,LTURB_FLX,LTURB_DIAG,LSUBG_COND,LRMC01, &
CTURBDIM,CTURBLEN,CTOM,CTURBLEN_CLOUD,YINST_SFU,XIMPL, &
PTSTEP,PTSTEP_MET, PTSTEP_SV,HFMFILE,CLUOUT, &
XDXX,XDYY,XDZZ,XDZX,XDZY,XZZ, &
XDIRCOSXW,XDIRCOSYW,XDIRCOSZW,XCOSSLOPE,XSINSLOPE, &
XRHODJ,XTHVREF,XRHODREF, &
ZSFTH,ZSFRV,ZSFSV,ZSFU,ZSFV, &
XPABSM,XUM,XVM,XWM,XTKET,XSVM,XSRCM,XBL_DEPTH,XSBL_DEPTH, &
XUT,XVT,XWT,XCEI,XCEI_MIN,XCEI_MAX,XCOEF_AMPL_SAT, &
XTHT,XRT, &
XRUS,XRVS,XRWS,XRTHS,XRRS,XRSVS,XRTKES,XSIGS, XWTHVMF, &
XTHW_FLUX, XRCW_FLUX, XSVW_FLUX )
END IF
ELSE
CALL TURB(1,IKU,1,IMI,NRR, NRRL, NRRI, CLBCX, CLBCY, 1,NMODEL_CLOUD, &
OCLOSE_OUT,LTURB_FLX,LTURB_DIAG,LSUBG_COND,LRMC01, &
CTURBDIM,CTURBLEN,CTOM,CTURBLEN_CLOUD,YINST_SFU,XIMPL, &
PTSTEP,PTSTEP_MET, PTSTEP_SV,HFMFILE,CLUOUT, &
XDXX,XDYY,XDZZ,XDZX,XDZY,XZZ, &
XDIRCOSXW,XDIRCOSYW,XDIRCOSZW,XCOSSLOPE,XSINSLOPE, &
XRHODJ,XTHVREF,XRHODREF, &
ZSFTH,ZSFRV,ZSFSV,ZSFU,ZSFV, &
XPABSM,XUM,XVM,XWM,XTKEM,XSVM,XSRCM,XBL_DEPTH,XSBL_DEPTH, &
XUT,XVT,XWT,XCEI,XCEI_MIN,XCEI_MAX,XCOEF_AMPL_SAT, &
XTHM,XRM, &
XRUS,XRVS,XRWS,XRTHS,XRRS,XRSVS,XRTKES,XSIGS, XWTHVMF, &
XTHW_FLUX, XRCW_FLUX, XSVW_FLUX )
END IF
!
IF (LRMC01) THEN
CALL ADD2DFIELD_ll(TZFIELDS_ll,XSBL_DEPTH)
CALL UPDATE_HALO_ll(TZFIELDS_ll,IINFO_ll)
CALL CLEANLIST_ll(TZFIELDS_ll)
IF ( CLBCX(1) /= "CYCL" .AND. LWEST_ll()) THEN
XSBL_DEPTH(IIB-1,:)=XSBL_DEPTH(IIB,:)
END IF
IF ( CLBCX(2) /= "CYCL" .AND. LEAST_ll()) THEN
XSBL_DEPTH(IIE+1,:)=XSBL_DEPTH(IIE,:)
END IF
IF ( CLBCY(1) /= "CYCL" .AND. LSOUTH_ll()) THEN
XSBL_DEPTH(:,IJB-1)=XSBL_DEPTH(:,IJB)
END IF
IF ( CLBCY(2) /= "CYCL" .AND. LNORTH_ll()) THEN
XSBL_DEPTH(:,IJE+1)=XSBL_DEPTH(:,IJE)
END IF
END IF
!
CALL SECOND_MNH2(ZTIME3)
!
!-----------------------------------------------------------------------------
!
!* 7. EDMF SCHEME
! -----------
!
IF (CSCONV == 'EDKF') THEN
ALLOCATE(ZEXN (IIU,IJU,IKU))
ALLOCATE(ZSIGMF (IIU,IJU,IKU))
ZSIGMF(:,:,:)=0.
ZEXN(:,:,:)=(XPABSM(:,:,:)/XP00)**(XRD/XCPD)
IF (HMET_ADV_SCHEME(1:3) == 'PPM') THEN
IF (HSV_ADV_SCHEME(1:3) == 'PPM') THEN
CALL SHALLOW_MF_PACK(NRR,NRRL,NRRI, CMF_UPDRAFT, CMF_CLOUD, LMIXUV, &
OCLOSE_OUT,LMF_FLX,HFMFILE,CLUOUT,ZTIME_LES_MF, &
XIMPL_MF, PTSTEP, PTSTEP_MET, PTSTEP_SV, &
XDZZ, XZZ, &
XRHODJ, XRHODREF, XPABSM, ZEXN, ZSFTH, ZSFRV, &
XTHT,XRT,XUM,XVM,XTKET,XSVT, &
XRTHS,XRRS,XRUS,XRVS,XRSVS, &
ZSIGMF,XRC_MF, XRI_MF, XCF_MF, XWTHVMF)
ELSE
CALL SHALLOW_MF_PACK(NRR,NRRL,NRRI, CMF_UPDRAFT, CMF_CLOUD, LMIXUV, &
OCLOSE_OUT,LMF_FLX,HFMFILE,CLUOUT,ZTIME_LES_MF, &
XIMPL_MF, PTSTEP, PTSTEP_MET, PTSTEP_SV, &
XDZZ, XZZ, &
XRHODJ, XRHODREF, XPABSM, ZEXN, ZSFTH, ZSFRV, &
XTHT,XRT,XUM,XVM,XTKET,XSVM, &
XRTHS,XRRS,XRUS,XRVS,XRSVS, &
ZSIGMF,XRC_MF, XRI_MF, XCF_MF, XWTHVMF)
END IF
ELSE
CALL SHALLOW_MF_PACK(NRR,NRRL,NRRI, CMF_UPDRAFT, CMF_CLOUD, LMIXUV, &
OCLOSE_OUT,LMF_FLX,HFMFILE,CLUOUT,ZTIME_LES_MF, &
XIMPL_MF, PTSTEP, PTSTEP_MET, PTSTEP_SV, &
XDZZ, XZZ, &
XRHODJ, XRHODREF, XPABSM, ZEXN, ZSFTH, ZSFRV, &
XTHM,XRM,XUM,XVM,XTKEM,XSVM, &
XRTHS,XRRS,XRUS,XRVS,XRSVS, &
ZSIGMF,XRC_MF, XRI_MF, XCF_MF, XWTHVMF)
END IF
!
ELSE
XWTHVMF(:,:,:)=0.
XRC_MF(:,:,:)=0.
XRI_MF(:,:,:)=0.
XCF_MF(:,:,:)=0.
ENDIF
!
CALL SECOND_MNH2(ZTIME4)
IF( LTRANS ) THEN
XUT(:,:,:) = XUT(:,:,:) - XUTRANS
XVT(:,:,:) = XVT(:,:,:) - XVTRANS
XUM(:,:,:) = XUM(:,:,:) - XUTRANS
XVM(:,:,:) = XVM(:,:,:) - XVTRANS
END IF
IF (CMF_CLOUD == 'STAT') THEN
XSIGS =SQRT( XSIGS**2 + ZSIGMF**2 )
ENDIF
IF (CSCONV == 'EDKF') THEN
DEALLOCATE(ZSIGMF)
DEALLOCATE(ZEXN)
ENDIF
END IF
!
IF (LLES_CALL) CALL SWITCH_SBG_LES_n
!
CALL SECOND_MNH2(ZTIME2)
!
PTURB = PTURB + ZTIME2 - ZTIME1 - (XTIME_LES-ZTIME_LES_MF) - XTIME_LES_BU_PROCESS &
- XTIME_BU_PROCESS - (ZTIME4 - ZTIME3)
!
PMAFL = PMAFL + ZTIME4 - ZTIME3 - ZTIME_LES_MF
!
PTIME_BU = PTIME_BU + XTIME_LES_BU_PROCESS + XTIME_BU_PROCESS
!
!-------------------------------------------------------------------------------
!
!* 8. CHEMISTRY-AEROSOLS
! ------------------
!
ZTIME1 = ZTIME2
XTIME_BU_PROCESS = 0.
XTIME_LES_BU_PROCESS = 0.
!
IF (LUSECHEM) THEN
CALL CH_MONITOR_n(ZWETDEPAER,KTCOUNT,PTSTEP_SV, ILUOUT, NVERB)
END IF
!
! For inert aerosol (dust and sea salt) => aer_monitor_n
IF ((LDUST).OR.(LSALT)) THEN
!
! tests to see if any cloud exists
!
GCLD=.TRUE.
IF (GCLD .AND. NRR.LE.3 ) THEN
IF( MAXVAL(XCLDFR(:,:,:)).LE. 1.E-10 .AND. GCLOUD_ONLY ) THEN
GCLD = .FALSE. ! only the cloudy verticals would be
! refreshed but there is no clouds
END IF
END IF
!
IF (GCLD .AND. NRR.GE.4 ) THEN
IF( CCLOUD(1:3)=='ICE' )THEN
IF( MAXVAL(XRT(:,:,:,2)).LE.XRTMIN(2) .AND. &
MAXVAL(XRT(:,:,:,4)).LE.XRTMIN(4) .AND. GCLOUD_ONLY ) THEN
GCLD = .FALSE. ! only the cloudy verticals would be
! refreshed but there is no cloudwater and ice
END IF
END IF
IF( CCLOUD=='C3R5' )THEN
IF( MAXVAL(XRT(:,:,:,2)).LE.XRTMIN_C1R3(2) .AND. &
MAXVAL(XRT(:,:,:,4)).LE.XRTMIN_C1R3(4) .AND. GCLOUD_ONLY ) THEN
GCLD = .FALSE. ! only the cloudy verticals would be
! refreshed but there is no cloudwater and ice
END IF
END IF
END IF
!
CALL AER_MONITOR_n(KTCOUNT,PTSTEP_SV, ILUOUT, NVERB, GCLD)
END IF
!
!
CALL SECOND_MNH2(ZTIME2)
!
PCHEM = PCHEM + ZTIME2 - ZTIME1 &
- XTIME_LES_BU_PROCESS - XTIME_BU_PROCESS
!
PTIME_BU = PTIME_BU + XTIME_LES_BU_PROCESS + XTIME_BU_PROCESS
!
!
!-------------------------------------------------------------------------------
!
!* deallocation of variables used in more than one parameterization
!
DEALLOCATE(ZSFU ) ! surface schemes + turbulence
DEALLOCATE(ZSFV )
DEALLOCATE(ZSFTH )
DEALLOCATE(ZSFRV )
DEALLOCATE(ZSFSV )
DEALLOCATE(ZSFCO2)
!
!-------------------------------------------------------------------------------
!
END SUBROUTINE PHYS_PARAM_n