[1] | 1 | ! |
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| 2 | ! $Header$ |
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| 3 | ! |
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| 4 | SUBROUTINE thermcell_init(ngrid,nlay,ztv,zlay,zlev, & |
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| 5 | & lalim,lmin,alim_star,alim_star_tot,lev_out) |
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| 6 | |
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| 7 | !---------------------------------------------------------------------- |
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| 8 | !thermcell_init: calcul du profil d alimentation du thermique |
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| 9 | !---------------------------------------------------------------------- |
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| 10 | IMPLICIT NONE |
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| 11 | #include "iniprint.h" |
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| 12 | #include "thermcell.h" |
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| 13 | |
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| 14 | INTEGER l,ig |
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| 15 | !arguments d entree |
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| 16 | INTEGER ngrid,nlay |
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| 17 | REAL ztv(ngrid,nlay) |
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| 18 | REAL zlay(ngrid,nlay) |
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| 19 | REAL zlev(ngrid,nlay+1) |
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| 20 | !arguments de sortie |
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| 21 | INTEGER lalim(ngrid) |
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| 22 | INTEGER lmin(ngrid) |
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| 23 | REAL alim_star(ngrid,nlay) |
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| 24 | REAL alim_star_tot(ngrid) |
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| 25 | integer lev_out ! niveau pour les print |
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| 26 | |
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| 27 | REAL zzalim(ngrid) |
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| 28 | !CR: ponderation entrainement des couches instables |
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| 29 | !def des alim_star tels que alim=f*alim_star |
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| 30 | |
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| 31 | |
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| 32 | write(lunout,*)'THERM INIT V20C ' |
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| 33 | |
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| 34 | alim_star_tot(:)=0. |
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| 35 | alim_star(:,:)=0. |
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| 36 | lmin(:)=1 |
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| 37 | lalim(:)=1 |
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| 38 | |
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| 39 | do l=1,nlay-1 |
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| 40 | do ig=1,ngrid |
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| 41 | if (ztv(ig,l)> ztv(ig,l+1) .and. ztv(ig,1)>=ztv(ig,l) ) then |
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| 42 | alim_star(ig,l)=MAX((ztv(ig,l)-ztv(ig,l+1)),0.) & |
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| 43 | & *sqrt(zlev(ig,l+1)) |
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| 44 | lalim(:)=l+1 |
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| 45 | alim_star_tot(ig)=alim_star_tot(ig)+alim_star(ig,l) |
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| 46 | endif |
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| 47 | enddo |
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| 48 | enddo |
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| 49 | do l=1,nlay |
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| 50 | do ig=1,ngrid |
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| 51 | if (alim_star_tot(ig) > 1.e-10 ) then |
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| 52 | alim_star(ig,l)=alim_star(ig,l)/alim_star_tot(ig) |
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| 53 | endif |
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| 54 | enddo |
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| 55 | enddo |
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| 56 | alim_star_tot(:)=1. |
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| 57 | |
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| 58 | return |
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| 59 | end |
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