[1632] | 1 | ! |
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[1673] | 2 | ! $Id$ |
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[1632] | 3 | ! |
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| 4 | c |
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| 5 | c |
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| 6 | #define DEBUG_IO |
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| 7 | #undef DEBUG_IO |
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| 8 | SUBROUTINE advtrac_loc(pbarug,pbarvg ,wg, |
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| 9 | * p, massem,q,teta, |
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| 10 | * pk ) |
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| 11 | |
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| 12 | c Auteur : F. Hourdin |
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| 13 | c |
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| 14 | c Modif. P. Le Van (20/12/97) |
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| 15 | c F. Codron (10/99) |
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| 16 | c D. Le Croller (07/2001) |
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| 17 | c M.A Filiberti (04/2002) |
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| 18 | c |
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[1823] | 19 | USE parallel_lmdz |
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[1632] | 20 | USE Write_Field_loc |
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| 21 | USE Write_Field |
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| 22 | USE Bands |
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| 23 | USE mod_hallo |
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| 24 | USE Vampir |
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| 25 | USE times |
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[2270] | 26 | USE infotrac, ONLY: nqtot, iadv, ok_iso_verif |
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[1987] | 27 | USE control_mod, ONLY: iapp_tracvl, day_step, planet_type |
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| 28 | USE advtrac_mod, ONLY: finmasse |
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[2597] | 29 | USE comconst_mod, ONLY: dtvr |
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[1632] | 30 | IMPLICIT NONE |
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| 31 | c |
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[2597] | 32 | include "dimensions.h" |
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| 33 | include "paramet.h" |
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| 34 | include "comdissip.h" |
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| 35 | include "comgeom2.h" |
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| 36 | include "description.h" |
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[1632] | 37 | |
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| 38 | c------------------------------------------------------------------- |
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| 39 | c Arguments |
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| 40 | c------------------------------------------------------------------- |
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| 41 | c Ajout PPM |
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| 42 | c-------------------------------------------------------- |
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| 43 | REAL massebx(ijb_u:ije_u,llm),masseby(ijb_v:ije_v,llm) |
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| 44 | c-------------------------------------------------------- |
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| 45 | INTEGER iapptrac |
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| 46 | REAL pbarug(ijb_u:ije_u,llm),pbarvg(ijb_v:ije_v,llm) |
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| 47 | REAL wg(ijb_u:ije_u,llm) |
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| 48 | REAL q(ijb_u:ije_u,llm,nqtot),massem(ijb_u:ije_u,llm) |
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| 49 | REAL p( ijb_u:ije_u,llmp1 ),teta(ijb_u:ije_u,llm) |
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| 50 | REAL pk(ijb_u:ije_u,llm) |
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| 51 | |
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| 52 | c------------------------------------------------------------- |
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| 53 | c Variables locales |
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| 54 | c------------------------------------------------------------- |
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| 55 | |
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| 56 | REAL zdp(ijb_u:ije_u) |
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| 57 | REAL (kind=kind(1.d0)) :: t_initial, t_final, tps_cpu |
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| 58 | INTEGER,SAVE :: iadvtr=0 |
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| 59 | c$OMP THREADPRIVATE(iadvtr) |
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| 60 | INTEGER ij,l,iq,iiq |
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| 61 | REAL zdpmin, zdpmax |
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| 62 | c---------------------------------------------------------- |
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| 63 | c Rajouts pour PPM |
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| 64 | c---------------------------------------------------------- |
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| 65 | INTEGER indice,n |
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| 66 | REAL dtbon ! Pas de temps adaptatif pour que CFL<1 |
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| 67 | REAL CFLmaxz,aaa,bbb ! CFL maximum |
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| 68 | REAL psppm(iim,jjb_u:jje_u) ! pression au sol |
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| 69 | REAL unatppm(iim,jjb_u:jje_u,llm),vnatppm(iim,jjb_u:jje_u,llm) |
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| 70 | REAL qppm(iim*jjnb_u,llm,nqtot) |
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| 71 | REAL fluxwppm(iim,jjb_u:jje_u,llm) |
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| 72 | REAL apppm(llmp1), bpppm(llmp1) |
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| 73 | LOGICAL dum,fill |
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| 74 | DATA fill/.true./ |
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| 75 | DATA dum/.true./ |
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| 76 | integer ijb,ije,ijbu,ijbv,ijeu,ijev,j |
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[1848] | 77 | type(Request),SAVE :: testRequest |
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| 78 | !$OMP THREADPRIVATE(testRequest) |
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[1632] | 79 | |
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[2270] | 80 | c test sur l''eventuelle creation de valeurs negatives de la masse |
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[1632] | 81 | ijb=ij_begin |
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| 82 | ije=ij_end |
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| 83 | if (pole_nord) ijb=ij_begin+iip1 |
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| 84 | if (pole_sud) ije=ij_end-iip1 |
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| 85 | |
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| 86 | c$OMP DO SCHEDULE(STATIC,OMP_CHUNK) |
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| 87 | DO l=1,llm-1 |
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| 88 | DO ij = ijb+1,ije |
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| 89 | zdp(ij) = pbarug(ij-1,l) - pbarug(ij,l) |
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| 90 | s - pbarvg(ij-iip1,l) + pbarvg(ij,l) |
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| 91 | s + wg(ij,l+1) - wg(ij,l) |
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| 92 | ENDDO |
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| 93 | |
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| 94 | c CALL SCOPY( jjm -1 ,zdp(iip1+iip1),iip1,zdp(iip2),iip1 ) |
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| 95 | c ym ---> pourquoi jjm-1 et non jjm ? a cause du pole ? |
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| 96 | |
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| 97 | do ij=ijb,ije-iip1+1,iip1 |
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| 98 | zdp(ij)=zdp(ij+iip1-1) |
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| 99 | enddo |
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| 100 | |
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| 101 | DO ij = ijb,ije |
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| 102 | zdp(ij)= zdp(ij)*dtvr/ massem(ij,l) |
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| 103 | ENDDO |
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| 104 | |
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| 105 | |
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| 106 | c CALL minmax ( ip1jm-iip1, zdp(iip2), zdpmin,zdpmax ) |
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| 107 | c ym ---> eventuellement a revoir |
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| 108 | CALL minmax ( ije-ijb+1, zdp(ijb), zdpmin,zdpmax ) |
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| 109 | |
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| 110 | IF(MAX(ABS(zdpmin),ABS(zdpmax)).GT.0.5) THEN |
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| 111 | PRINT*,'WARNING DP/P l=',l,' MIN:',zdpmin, |
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| 112 | s ' MAX:', zdpmax |
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| 113 | ENDIF |
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| 114 | |
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| 115 | ENDDO |
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| 116 | c$OMP END DO NOWAIT |
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| 117 | |
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| 118 | c------------------------------------------------------------------- |
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| 119 | c Advection proprement dite (Modification Le Croller (07/2001) |
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| 120 | c------------------------------------------------------------------- |
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| 121 | |
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| 122 | c---------------------------------------------------- |
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| 123 | c Calcul des moyennes basées sur la masse |
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| 124 | c---------------------------------------------------- |
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| 125 | |
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| 126 | cym ----> Normalement, inutile pour les schémas classiques |
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| 127 | cym ----> Revérifier lors de la parallélisation des autres schemas |
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| 128 | |
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| 129 | cym call massbar_p(massem,massebx,masseby) |
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| 130 | |
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| 131 | #ifdef DEBUG_IO |
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| 132 | CALL WriteField_u('massem',massem) |
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| 133 | CALL WriteField_u('wg',wg) |
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| 134 | CALL WriteField_u('pbarug',pbarug) |
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| 135 | CALL WriteField_v('pbarvg',pbarvg) |
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| 136 | CALL WriteField_u('p_tmp',p) |
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| 137 | CALL WriteField_u('pk_tmp',pk) |
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| 138 | CALL WriteField_u('teta_tmp',teta) |
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| 139 | do j=1,nqtot |
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| 140 | call WriteField_u('q_adv'//trim(int2str(j)), |
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| 141 | . q(:,:,j)) |
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| 142 | enddo |
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| 143 | #endif |
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| 144 | |
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| 145 | ! |
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| 146 | ! call Register_Hallo_v(pbarvg,llm,1,1,1,1,TestRequest) |
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| 147 | ! |
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| 148 | ! call SendRequest(TestRequest) |
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| 149 | !c$OMP BARRIER |
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| 150 | ! call WaitRequest(TestRequest) |
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| 151 | c$OMP BARRIER |
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| 152 | |
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[2286] | 153 | !write(*,*) 'advtrac 157: appel de vlspltgen_loc' |
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[1632] | 154 | call vlspltgen_loc( q,iadv, 2., massem, wg , |
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| 155 | * pbarug,pbarvg,dtvr,p, |
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| 156 | * pk,teta ) |
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| 157 | |
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[2286] | 158 | !write(*,*) 'advtrac 162: apres appel vlspltgen_loc' |
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[2270] | 159 | if (ok_iso_verif) then |
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| 160 | call check_isotopes(q,ijb_u,ije_u,'advtrac 162') |
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| 161 | endif !if (ok_iso_verif) then |
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| 162 | |
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[1632] | 163 | #ifdef DEBUG_IO |
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| 164 | do j=1,nqtot |
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| 165 | call WriteField_u('q_adv'//trim(int2str(j)), |
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| 166 | . q(:,:,j)) |
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| 167 | enddo |
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| 168 | #endif |
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| 169 | |
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[2600] | 170 | GOTO 1234 |
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[1632] | 171 | c----------------------------------------------------------- |
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| 172 | c Appel des sous programmes d'advection |
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| 173 | c----------------------------------------------------------- |
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| 174 | do iq=1,nqtot |
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| 175 | c call clock(t_initial) |
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| 176 | if(iadv(iq) == 0) cycle |
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| 177 | c ---------------------------------------------------------------- |
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| 178 | c Schema de Van Leer I MUSCL |
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| 179 | c ---------------------------------------------------------------- |
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| 180 | if(iadv(iq).eq.10) THEN |
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| 181 | |
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[2600] | 182 | !LF call vlsplt_p(q(1,1,iq),2.,massem,wg,pbarug,pbarvg,dtvr) |
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[1632] | 183 | |
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| 184 | c ---------------------------------------------------------------- |
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| 185 | c Schema "pseudo amont" + test sur humidite specifique |
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| 186 | C pour la vapeur d'eau. F. Codron |
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| 187 | c ---------------------------------------------------------------- |
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| 188 | else if(iadv(iq).eq.14) then |
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| 189 | c |
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| 190 | cym stop 'advtrac : appel à vlspltqs :schema non parallelise' |
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| 191 | !LF CALL vlspltqs_p( q(1,1,1), 2., massem, wg , |
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| 192 | !LF * pbarug,pbarvg,dtvr,p,pk,teta ) |
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| 193 | c ---------------------------------------------------------------- |
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| 194 | c Schema de Frederic Hourdin |
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| 195 | c ---------------------------------------------------------------- |
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| 196 | else if(iadv(iq).eq.12) then |
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| 197 | stop 'advtrac : schema non parallelise' |
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| 198 | c Pas de temps adaptatif |
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| 199 | call adaptdt(iadv(iq),dtbon,n,pbarug,massem) |
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| 200 | if (n.GT.1) then |
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| 201 | write(*,*) 'WARNING horizontal dt=',dtbon,'dtvr=', |
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| 202 | s dtvr,'n=',n |
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| 203 | endif |
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| 204 | do indice=1,n |
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| 205 | call advn(q(1,1,iq),massem,wg,pbarug,pbarvg,dtbon,1) |
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| 206 | end do |
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| 207 | else if(iadv(iq).eq.13) then |
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| 208 | stop 'advtrac : schema non parallelise' |
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| 209 | c Pas de temps adaptatif |
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| 210 | call adaptdt(iadv(iq),dtbon,n,pbarug,massem) |
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| 211 | if (n.GT.1) then |
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| 212 | write(*,*) 'WARNING horizontal dt=',dtbon,'dtvr=', |
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| 213 | s dtvr,'n=',n |
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| 214 | endif |
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| 215 | do indice=1,n |
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| 216 | call advn(q(1,1,iq),massem,wg,pbarug,pbarvg,dtbon,2) |
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| 217 | end do |
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| 218 | c ---------------------------------------------------------------- |
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| 219 | c Schema de pente SLOPES |
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| 220 | c ---------------------------------------------------------------- |
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| 221 | else if (iadv(iq).eq.20) then |
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| 222 | stop 'advtrac : schema non parallelise' |
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| 223 | |
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| 224 | call pentes_ini (q(1,1,iq),wg,massem,pbarug,pbarvg,0) |
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| 225 | |
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| 226 | c ---------------------------------------------------------------- |
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| 227 | c Schema de Prather |
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| 228 | c ---------------------------------------------------------------- |
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| 229 | else if (iadv(iq).eq.30) then |
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| 230 | stop 'advtrac : schema non parallelise' |
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| 231 | c Pas de temps adaptatif |
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| 232 | call adaptdt(iadv(iq),dtbon,n,pbarug,massem) |
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| 233 | if (n.GT.1) then |
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| 234 | write(*,*) 'WARNING horizontal dt=',dtbon,'dtvr=', |
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| 235 | s dtvr,'n=',n |
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| 236 | endif |
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| 237 | call prather(q(1,1,iq),wg,massem,pbarug,pbarvg, |
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| 238 | s n,dtbon) |
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| 239 | c ---------------------------------------------------------------- |
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| 240 | c Schemas PPM Lin et Rood |
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| 241 | c ---------------------------------------------------------------- |
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| 242 | else if (iadv(iq).eq.11.OR.(iadv(iq).GE.16.AND. |
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| 243 | s iadv(iq).LE.18)) then |
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| 244 | |
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| 245 | stop 'advtrac : schema non parallelise' |
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| 246 | |
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| 247 | c Test sur le flux horizontal |
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| 248 | c Pas de temps adaptatif |
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| 249 | call adaptdt(iadv(iq),dtbon,n,pbarug,massem) |
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| 250 | if (n.GT.1) then |
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| 251 | write(*,*) 'WARNING horizontal dt=',dtbon,'dtvr=', |
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| 252 | s dtvr,'n=',n |
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| 253 | endif |
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| 254 | c Test sur le flux vertical |
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| 255 | CFLmaxz=0. |
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| 256 | do l=2,llm |
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| 257 | do ij=iip2,ip1jm |
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| 258 | aaa=wg(ij,l)*dtvr/massem(ij,l) |
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| 259 | CFLmaxz=max(CFLmaxz,aaa) |
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| 260 | bbb=-wg(ij,l)*dtvr/massem(ij,l-1) |
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| 261 | CFLmaxz=max(CFLmaxz,bbb) |
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| 262 | enddo |
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| 263 | enddo |
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| 264 | if (CFLmaxz.GE.1) then |
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| 265 | write(*,*) 'WARNING vertical','CFLmaxz=', CFLmaxz |
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| 266 | endif |
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| 267 | |
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| 268 | c----------------------------------------------------------- |
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| 269 | c Ss-prg interface LMDZ.4->PPM3d |
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| 270 | c----------------------------------------------------------- |
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| 271 | |
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| 272 | call interpre(q(1,1,iq),qppm(1,1,iq),wg,fluxwppm,massem, |
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| 273 | s apppm,bpppm,massebx,masseby,pbarug,pbarvg, |
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| 274 | s unatppm,vnatppm,psppm) |
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| 275 | |
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| 276 | do indice=1,n |
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| 277 | c--------------------------------------------------------------------- |
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| 278 | c VL (version PPM) horiz. et PPM vert. |
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| 279 | c--------------------------------------------------------------------- |
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| 280 | if (iadv(iq).eq.11) then |
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| 281 | c Ss-prg PPM3d de Lin |
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| 282 | call ppm3d(1,qppm(1,1,iq), |
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| 283 | s psppm,psppm, |
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| 284 | s unatppm,vnatppm,fluxwppm,dtbon,2,2,2,1, |
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| 285 | s iim,jjp1,2,llm,apppm,bpppm,0.01,6400000, |
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| 286 | s fill,dum,220.) |
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| 287 | |
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| 288 | c---------------------------------------------------------------------- |
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| 289 | c Monotonic PPM |
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| 290 | c---------------------------------------------------------------------- |
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| 291 | else if (iadv(iq).eq.16) then |
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| 292 | c Ss-prg PPM3d de Lin |
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| 293 | call ppm3d(1,qppm(1,1,iq), |
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| 294 | s psppm,psppm, |
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| 295 | s unatppm,vnatppm,fluxwppm,dtbon,3,3,3,1, |
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| 296 | s iim,jjp1,2,llm,apppm,bpppm,0.01,6400000, |
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| 297 | s fill,dum,220.) |
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| 298 | c--------------------------------------------------------------------- |
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| 299 | |
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| 300 | c--------------------------------------------------------------------- |
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| 301 | c Semi Monotonic PPM |
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| 302 | c--------------------------------------------------------------------- |
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| 303 | else if (iadv(iq).eq.17) then |
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| 304 | c Ss-prg PPM3d de Lin |
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| 305 | call ppm3d(1,qppm(1,1,iq), |
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| 306 | s psppm,psppm, |
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| 307 | s unatppm,vnatppm,fluxwppm,dtbon,4,4,4,1, |
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| 308 | s iim,jjp1,2,llm,apppm,bpppm,0.01,6400000, |
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| 309 | s fill,dum,220.) |
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| 310 | c--------------------------------------------------------------------- |
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| 311 | |
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| 312 | c--------------------------------------------------------------------- |
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| 313 | c Positive Definite PPM |
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| 314 | c--------------------------------------------------------------------- |
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| 315 | else if (iadv(iq).eq.18) then |
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| 316 | c Ss-prg PPM3d de Lin |
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| 317 | call ppm3d(1,qppm(1,1,iq), |
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| 318 | s psppm,psppm, |
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| 319 | s unatppm,vnatppm,fluxwppm,dtbon,5,5,5,1, |
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| 320 | s iim,jjp1,2,llm,apppm,bpppm,0.01,6400000, |
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| 321 | s fill,dum,220.) |
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| 322 | c--------------------------------------------------------------------- |
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| 323 | endif |
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| 324 | enddo |
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| 325 | c----------------------------------------------------------------- |
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| 326 | c Ss-prg interface PPM3d-LMDZ.4 |
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| 327 | c----------------------------------------------------------------- |
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| 328 | call interpost(q(1,1,iq),qppm(1,1,iq)) |
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| 329 | endif |
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| 330 | c---------------------------------------------------------------------- |
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| 331 | |
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| 332 | c----------------------------------------------------------------- |
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| 333 | c On impose une seule valeur du traceur au pôle Sud j=jjm+1=jjp1 |
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| 334 | c et Nord j=1 |
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| 335 | c----------------------------------------------------------------- |
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| 336 | |
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| 337 | c call traceurpole(q(1,1,iq),massem) |
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| 338 | |
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| 339 | c calcul du temps cpu pour un schema donne |
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| 340 | |
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| 341 | |
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| 342 | end DO |
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| 343 | |
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| 344 | 1234 CONTINUE |
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| 345 | c$OMP BARRIER |
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| 346 | |
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[1673] | 347 | if (planet_type=="earth") then |
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| 348 | |
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[1632] | 349 | ijb=ij_begin |
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| 350 | ije=ij_end |
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| 351 | |
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| 352 | c$OMP DO SCHEDULE(STATIC,OMP_CHUNK) |
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| 353 | DO l = 1, llm |
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| 354 | DO ij = ijb, ije |
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| 355 | finmasse(ij,l) = p(ij,l) - p(ij,l+1) |
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| 356 | ENDDO |
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| 357 | ENDDO |
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| 358 | c$OMP END DO |
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| 359 | |
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[2270] | 360 | ! CRisi: on passe nqtot et non nq |
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| 361 | CALL qminimum_loc( q, nqtot, finmasse ) |
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[1632] | 362 | |
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[1673] | 363 | endif ! of if (planet_type=="earth") |
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[1632] | 364 | |
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| 365 | RETURN |
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| 366 | END |
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| 367 | |
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