[3] | 1 | SUBROUTINE OPTCI(ykim,nmicro,IPRINT) |
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| 2 | #include "dimensions.h" |
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| 3 | #include "dimphy.h" |
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| 4 | #include "microtab.h" |
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| 5 | #include "numchimrad.h" |
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| 6 | #include "clesphys.h" |
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| 7 | |
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| 8 | c Arguments: |
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| 9 | c --------- |
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| 10 | REAL ykim(klon,klev,nqmx) |
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| 11 | integer nmicro |
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| 12 | c --------- |
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| 13 | |
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| 14 | PARAMETER(NLAYER=llm,NLEVEL=NLAYER+1) |
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| 15 | PARAMETER (NSPECI=46,NSPC1I=47,NSPECV=24,NSPC1V=25) |
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| 16 | |
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| 17 | COMMON /ATM/ Z(NLEVEL),PRESS(NLEVEL),DEN(NLEVEL),TEMP(NLEVEL) |
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| 18 | |
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| 19 | COMMON /GASS/ CH4(NLEVEL),XN2(NLEVEL),H2(NLEVEL),AR(NLEVEL) |
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| 20 | & ,XMU(NLEVEL),GAS1(NLAYER),COLDEN(NLAYER) |
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| 21 | |
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| 22 | COMMON /STRATO/ C2H2(NLAYER),C2H6(NLAYER) |
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| 23 | COMMON /STRAT2/ HCN(NLAYER) |
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| 24 | |
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| 25 | COMMON /AERSOL/ RADIUS(NLAYER), XNUMB(NLAYER) |
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| 26 | & , REALI(NSPECI), XIMGI(NSPECI), REALV(NSPECV), XIMGV(NSPECV) |
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| 27 | |
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| 28 | COMMON /CLOUD/ RADCLD(NLAYER), XNCLD(NLAYER) |
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| 29 | & , RCLDI(NSPECI), XICLDI(NSPECI), RCLDV(NSPECV), XICLDV(NSPECV) |
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| 30 | |
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| 31 | COMMON /TAUS/ TAUHI(klon,NSPECI),TAUCI(klon,NSPECI), |
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| 32 | & TAUGI(klon,NSPECI),TAURV(klon,NSPECV), |
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| 33 | & TAUHV(klon,NSPECV),TAUCV(klon,NSPECV), |
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| 34 | & TAUGV(klon,NSPECV) |
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| 35 | |
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| 36 | COMMON /TAUD/ TAUHID(klon,NLAYER,NSPECI) |
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| 37 | & ,TAUGID(klon,NLAYER,NSPECI) |
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| 38 | & ,TAUHVD(klon,NLAYER,NSPECV) |
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| 39 | & ,TAUGVD(klon,NLAYER,NSPECV) |
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| 40 | |
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| 41 | |
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| 42 | COMMON /OPTICI/ DTAUI(klon,NLAYER,NSPECI) |
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| 43 | & ,TAUI (klon,NLEVEL,NSPECI) |
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| 44 | & ,WBARI(klon,NLAYER,NSPECI) |
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| 45 | & ,COSBI(klon,NLAYER,NSPECI) |
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| 46 | |
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| 47 | COMMON /SPECTI/ BWNI(NSPC1I), WNOI(NSPECI), |
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| 48 | & DWNI(NSPECI), WLNI(NSPECI) |
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| 49 | |
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| 50 | COMMON /PLANT/ CSUBP,RSFI,RSFV,F0PI |
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| 51 | COMMON /ADJUST/ RHCH4,FH2,FHAZE,FHVIS,FHIR,TAUFAC,RCLOUD,FARGON |
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| 52 | COMMON /CONST/RGAS,RHOP,PI,SIGMA |
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| 53 | COMMON /traceurs/qaer |
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| 54 | COMMON /part/v,rayon,vrat,dr,dv |
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| 55 | |
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| 56 | DIMENSION PROD(NLEVEL) |
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| 57 | * nrad dans microtab.h |
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| 58 | real qaer(klon,nlayer,nqmx) |
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| 59 | real v(nrad),rayon(nrad),vrat,dr(nrad),dv(nrad) |
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| 60 | real xv1(klev,nspeci),xv2(klev,nspeci) |
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| 61 | real xv3(klev,nspeci) |
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| 62 | REAL QF1(nrad,NSPECI),QF2(nrad,NSPECI) |
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| 63 | REAL QF3(nrad,NSPECI),QF4(nrad,NSPECI) |
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| 64 | REAL QM1(nrad,NSPECI),QM2(nrad,NSPECI) |
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| 65 | REAL QM3(nrad,NSPECI),QM4(nrad,NSPECI) |
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| 66 | real emu |
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| 67 | REAL TAEROSM1(NSPECI),TAEROSCATM1(NSPECI),DELTAZM1(NSPECI) |
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| 68 | |
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| 69 | save qf1,qf2,qf3,qf4,qm1,qm2,qm3,qm4 |
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| 70 | |
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| 71 | integer iopti,iwarning ! iopti: premier appel, une seule boucle sur les l.d'o. |
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| 72 | integer ig_,seulmtunpt |
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| 73 | save iopti,iwarning,seulmtunpt |
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| 74 | data iopti,iwarning,seulmtunpt/0,0,0/ |
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| 75 | |
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| 76 | real zqaer_1pt(NLAYER,nrad) |
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| 77 | real TAUHID_1pt(NLAYER,NSPECI) |
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| 78 | real TAUGID_1pt(NLAYER,NSPECI) |
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| 79 | real TAUHI_1pt(NSPECI),TAUCI_1pt(NSPECI) |
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| 80 | real TAUGI_1pt(NSPECI) |
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| 81 | real DTAUI_1pt(NLAYER,NSPECI),TAUI_1pt(NLEVEL,NSPECI) |
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| 82 | real WBARI_1pt(NLAYER,NSPECI) |
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| 83 | real COSBI_1pt(NLAYER,NSPECI) |
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| 84 | character*100 dummy |
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| 85 | real dummy2,dummy3 |
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| 86 | |
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| 87 | C THE PRESSURE INDUCED TRANSITIONS ARE FROM REGIS |
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| 88 | C THE LAST SEVENTEEN INTERVALS ARE THE BANDS FROM GNF. |
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| 89 | C |
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| 90 | C THIS SUBROUTINE SETS THE OPTICAL CONSTANTS IN THE INFRARED |
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| 91 | C IT CALCUALTES FOR EACH LAYER, FOR EACH SPECRAL INTERVAL IN THE IR |
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| 92 | C LAYER: WBAR, DTAU, COSBAR |
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| 93 | C LEVEL: TAU |
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| 94 | C |
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| 95 | print*,'START OPTCI' |
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| 96 | |
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| 97 | c Diagnostic eventuellement: |
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| 98 | c if (nmicro.gt.0) then |
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| 99 | c sum=0. |
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| 100 | c do nng=2,klon |
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| 101 | c do i=1,klev |
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| 102 | c do j=1,nmicro |
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| 103 | c print*,'j,rj',j,rayon(j) |
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| 104 | c print*,'paer',qaer(nng,i,j) |
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| 105 | c sum=sum+qaer(nng,i,j)*rayon(j)**3.*1.3333*3.1415*1000. |
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| 106 | c enddo |
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| 107 | c enddo |
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| 108 | c enddo |
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| 109 | c print*,sum/(klon-1),'SOMME COLONNE/OPTCI' |
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| 110 | c endif |
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| 111 | |
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| 112 | |
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| 113 | c do inq=1,nrad |
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| 114 | c print*,inq,rayon(inq),vrat,qaer(12,25,inq) |
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| 115 | c enddo |
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| 116 | |
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| 117 | C++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ |
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| 118 | c INITIALISATIONS UNE SEULE FOIS |
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| 119 | C++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ |
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| 120 | |
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| 121 | if (iopti.eq.0) then |
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| 122 | |
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| 123 | c verif pour taille zqaer_1pt, sachant que si microfi=0 et nqmx=1, |
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| 124 | c il faut quand meme qu on lise la look-up table de dim nrad=10 |
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| 125 | c et si microfi=1, on doit avoir nmicro=nrad (dans microtab.h) |
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| 126 | if ((nmicro.ne.nrad).and.(microfi.eq.1)) then |
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| 127 | print*,"nmicro.ne.nrad",nmicro,nrad |
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| 128 | print*,"PROBLEME pour zqaer_1pt dans optci !!" |
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| 129 | stop |
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| 130 | endif |
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| 131 | |
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| 132 | |
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| 133 | DO 420 K=1,NSPECI |
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| 134 | C LETS USE THE THOLIN OPTICAL CONSTANTS FOR THE HAZE. |
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| 135 | CALL THOLIN(WLNI(K),TNR,TNI) |
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| 136 | REALI(K)=TNR |
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| 137 | XIMGI(K)=TNI*FHIR |
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| 138 | C SET UP THE OPTICAL CONSTANTS FOR THE CLOUD |
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| 139 | RCLDI(K)=1.27 |
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| 140 | XICLDI(K)=REFLIQ(WNOI(K)) |
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| 141 | 420 CONTINUE |
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| 142 | |
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| 143 | C |
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| 144 | C ZERO ALL OPTICAL DEPTHS. |
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| 145 | C ??FLAG? FOR SOME APPLCIATIONS THE TOP OPACITY MAY NOT VANISH |
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| 146 | |
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| 147 | c open (unit=1,file='xsetupi') |
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| 148 | c do i=1,klev |
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| 149 | c read(1,*) a |
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| 150 | c do j=1,nspeci |
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| 151 | c read(1,*) xv1(i,j),xv2(i,j),xv3(i,j) |
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| 152 | c enddo |
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| 153 | c enddo |
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| 154 | c close(1) |
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| 155 | |
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| 156 | endif ! fin initialisations premier appel |
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| 157 | |
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| 158 | c************************************************************************ |
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| 159 | c************************************************************************ |
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| 160 | DO 79 ig=1,klon ! BOUCLE SUR GRILLE HORIZONTALE |
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| 161 | c print*,'ig NEW optci',ig |
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| 162 | c************************************************************************ |
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| 163 | c************************************************************************ |
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| 164 | |
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| 165 | if (.not.ylellouch) then |
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| 166 | |
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| 167 | XN2(1) = ykim(ig,1,iradn2) |
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| 168 | CH4(1) = ykim(ig,1,iradch4) |
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| 169 | H2(1) = ykim(ig,1,iradh2) |
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| 170 | do j=2,nlayer |
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| 171 | XN2(j) = (ykim(ig,j,iradn2)+ykim(ig,j-1,iradn2))/2. |
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| 172 | CH4(j) = (ykim(ig,j,iradch4)+ykim(ig,j-1,iradch4))/2. |
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| 173 | H2(j) = (ykim(ig,j,iradh2)+ykim(ig,j-1,iradh2))/2. |
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| 174 | enddo |
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| 175 | XN2(nlevel) = ykim(ig,nlayer,iradn2) |
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| 176 | CH4(nlevel) = ykim(ig,nlayer,iradch4) |
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| 177 | H2(nlevel) = ykim(ig,nlayer,iradh2) |
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| 178 | |
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| 179 | do j=1,nlayer |
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| 180 | emu = ( xmu(j) + xmu(j+1) )/2. |
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| 181 | C2H2(j) = ykim(ig,j,iradc2h2) * 26./emu |
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| 182 | C2H6(j) = ykim(ig,j,iradc2h6) * 30./emu |
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| 183 | HCN(j) = ykim(ig,j,iradhcn ) * 27./emu |
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| 184 | enddo |
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| 185 | |
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| 186 | endif |
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| 187 | |
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| 188 | c if ((.not.ylellouch).and.(ig.eq.klon/2)) then |
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| 189 | c print*,' LAYER C2H2 C2H6 HCN masmix ratios' |
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| 190 | c do j=1,nlayer |
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| 191 | c print*,j,C2H2(j),C2H6(j),HCN(j) |
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| 192 | c enddo |
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| 193 | c endif |
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| 194 | |
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| 195 | if (microfi.eq.1) then |
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| 196 | do iq=1,nrad |
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| 197 | do j=1,NLAYER |
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| 198 | zqaer_1pt(j,iq)=qaer(ig,j,iq) |
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| 199 | enddo |
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| 200 | enddo |
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| 201 | else |
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| 202 | if (ig.eq.1) then |
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| 203 | c initialisation zqaer_1pt a partir d une look-up table (uniforme en ig) |
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| 204 | c boucle sur nrad=10 (dans microtab.h) |
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| 205 | open(10,file="qaer_eq_1d.dat") |
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| 206 | do iq=1,15 |
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| 207 | read(10,'(A100)') dummy |
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| 208 | enddo |
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| 209 | do j=NLAYER,1,-1 |
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| 210 | read(10,*) dummy2,dummy3,(zqaer_1pt(j,iq),iq=1,nrad) |
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| 211 | enddo |
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| 212 | close(10) |
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| 213 | c ici, les tableaux definissant la structure des aerosols sont |
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| 214 | c remplis: rf,df(nq),rayon(nq,)v(nq)...... |
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| 215 | call rdf() |
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| 216 | endif |
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| 217 | endif |
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| 218 | |
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| 219 | c if ((ig.eq.klon/2).or.(microfi.eq.0)) then |
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| 220 | c print*,"Q01=",zqaer_1pt(:,1) |
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| 221 | c print*,"Q05=",zqaer_1pt(:,5) |
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| 222 | c print*,"Q10=",zqaer_1pt(:,10) |
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| 223 | c stop |
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| 224 | c endif |
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| 225 | |
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| 226 | if (seulmtunpt.eq.0) then |
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| 227 | call optci_1pt(zqaer_1pt,iopti, |
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| 228 | . COSBI_1pt,DTAUI_1pt,TAUHI_1pt,TAUHID_1pt,TAUCI_1pt, |
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| 229 | . TAUGI_1pt,TAUGID_1pt,WBARI_1pt,TAUI_1pt,IPRINT) |
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| 230 | iopti = 1 |
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| 231 | endif |
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| 232 | |
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| 233 | c Pas de microphysique, ni de composition variable: un seul passage |
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| 234 | c dans optci_1pt. |
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| 235 | if ((microfi.eq.0).and.(ylellouch)) then |
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| 236 | seulmtunpt = 1 |
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| 237 | endif |
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| 238 | |
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| 239 | COSBI(ig,:,:) = COSBI_1pt(:,:) |
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| 240 | WBARI(ig,:,:) = WBARI_1pt(:,:) |
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| 241 | DTAUI(ig,:,:) = DTAUI_1pt(:,:) |
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| 242 | TAUHI(ig,:) = TAUHI_1pt(:) |
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| 243 | TAUCI(ig,:) = TAUCI_1pt(:) |
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| 244 | TAUGI(ig,:) = TAUGI_1pt(:) |
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| 245 | TAUI(ig,:,:) = TAUI_1pt(:,:) |
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| 246 | TAUHID(ig,:,:) = TAUHID_1pt(:,:) |
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| 247 | TAUGID(ig,:,:) = TAUGID_1pt(:,:) |
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| 248 | |
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| 249 | c************************************************************************ |
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| 250 | c************************************************************************ |
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| 251 | 79 CONTINUE ! FIN BOUCLE GRILLE HORIZONTALE |
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| 252 | c************************************************************************ |
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| 253 | c************************************************************************ |
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| 254 | |
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| 255 | print*, 'FIN OPTCI' |
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| 256 | |
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| 257 | RETURN |
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| 258 | END |
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