[644] | 1 | c |
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| 2 | c $Header$ |
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| 3 | c |
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| 4 | cIM 090704 BEG |
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| 5 | c nbapp_isccp=48 |
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| 6 | c nbapp_isccp=8 |
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| 7 | c nbapp_isccp=6 |
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| 8 | c nbapp_isccp=4 !CPU < 30min pour 9pdt/jour |
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| 9 | nbapp_isccp=3 !CPU ?? 10pdt/jour |
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| 10 | c nbapp_isccp=2 |
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| 11 | c nbapp_isccp=1 |
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| 12 | isccppas=NINT(86400./dtime/nbapp_isccp) |
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| 13 | cIM 010904 BEG |
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| 14 | cIM IF (MOD(itap,isccppas).EQ.0) THEN |
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| 15 | c PRINT*,'itap,isccppas,xjour',itap,isccppas,xjour |
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| 16 | c |
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| 17 | cIM initialisation nbsunlit pour calculs simulateur ISCCP pdt la journee |
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| 18 | c |
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| 19 | DO i=1, klon |
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| 20 | sunlit(i)=1 |
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| 21 | IF(rmu0(i).EQ.0.) sunlit(i)=0 |
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| 22 | nbsunlit(1,i)=FLOAT(sunlit(i)) |
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| 23 | ENDDO |
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| 24 | c |
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| 25 | cIM calcul tau, emissivite nuages convectifs |
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| 26 | c |
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| 27 | convfra(:,:)=rnebcon(:,:) |
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| 28 | convliq(:,:)=rnebcon(:,:)*clwcon(:,:) |
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| 29 | cIM Amip2 beg |
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| 30 | c |
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| 31 | CALL newmicro (paprs, pplay,ok_newmicro, |
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| 32 | . t_seri, convliq, convfra, dtau_c, dem_c, |
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| 33 | . cldh_c, cldl_c, cldm_c, cldt_c, cldq_c, |
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| 34 | . flwp_c, fiwp_c, flwc_c, fiwc_c, |
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| 35 | e ok_aie, |
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| 36 | e sulfate, sulfate_pi, |
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| 37 | e bl95_b0, bl95_b1, |
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| 38 | s cldtaupi, re, fl) |
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| 39 | c |
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| 40 | cIM Amip2 end |
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| 41 | |
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| 42 | c |
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| 43 | cIM calcul tau, emissivite nuages startiformes |
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| 44 | c |
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| 45 | cIM Amip2 beg |
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| 46 | c |
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| 47 | CALL newmicro (paprs, pplay,ok_newmicro, |
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| 48 | . t_seri, cldliq, cldfra, dtau_s, dem_s, |
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| 49 | . cldh_s, cldl_s, cldm_s, cldt_s, cldq_s, |
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| 50 | . flwp_s, fiwp_s, flwc_s, fiwc_s, |
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| 51 | e ok_aie, |
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| 52 | e sulfate, sulfate_pi, |
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| 53 | e bl95_b0, bl95_b1, |
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| 54 | s cldtaupi, re, fl) |
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| 55 | c |
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| 56 | cIM Amip2 end |
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| 57 | c |
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| 58 | cldtot(:,:)=min(max(cldfra(:,:),rnebcon(:,:)),1.) |
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| 59 | c |
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| 60 | cIM inversion des niveaux de pression ==> de haut en bas |
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| 61 | c |
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| 62 | CALL haut2bas(klon, klev, pplay, pfull) |
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| 63 | CALL haut2bas(klon, klev, q_seri, qv) |
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| 64 | CALL haut2bas(klon, klev, cldtot, cc) |
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| 65 | CALL haut2bas(klon, klev, rnebcon, conv) |
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| 66 | CALL haut2bas(klon, klev, dtau_s, dtau_sH2B) |
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| 67 | CALL haut2bas(klon, klev, dtau_c, dtau_cH2B) |
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| 68 | CALL haut2bas(klon, klev, t_seri, at) |
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| 69 | CALL haut2bas(klon, klev, dem_s, dem_sH2B) |
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| 70 | CALL haut2bas(klon, klev, dem_c, dem_cH2B) |
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| 71 | CALL haut2bas(klon, klevp1, paprs, phalf) |
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| 72 | c |
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| 73 | cIM lecture invtau, tautab des fichiers formattes |
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| 74 | c |
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| 75 | IF (debut) THEN |
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| 76 | c open(99,file='tautab.bin',access='sequential', |
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| 77 | c $ form='unformatted',status='old') |
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| 78 | c read(99) tautab |
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| 79 | c |
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| 80 | open(99,file='tautab.formatted', FORM='FORMATTED') |
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| 81 | read(99,'(f30.20)') tautab |
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| 82 | close(99) |
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| 83 | c |
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| 84 | open(99,file='invtau.formatted',form='FORMATTED') |
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| 85 | read(99,'(i10)') invtau |
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| 86 | close(99) |
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| 87 | c |
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| 88 | ENDIF !debut |
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| 89 | c |
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[738] | 90 | cIM: initialisation de seed |
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| 91 | c DO i=1, klon |
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| 92 | c seed(i)=i+100 |
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| 93 | c ENDDO |
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| 94 | c |
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[644] | 95 | DO i=1, klon |
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[738] | 96 | c |
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| 97 | aa=ABS(paprs(i,2)-NINT(paprs(i,2))) |
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| 98 | seed_re(i)=1000.*aa+1. |
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| 99 | seed(i)=NINT(seed_re(i)) |
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| 100 | c |
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| 101 | IF(seed(i).LT.50) THEN |
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| 102 | c print*,'seed<50 avant i seed itap paprs',i, |
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| 103 | c . seed(i),itap,paprs(i,2) |
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| 104 | seed(i)=50+seed(i)+i+itap |
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| 105 | seed_old(i)=seed(i) |
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| 106 | c |
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| 107 | IF(itap.GT.1) then |
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| 108 | IF(seed(i).EQ.seed_old(i)) THEN |
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| 109 | seed(i)=seed(i)+10 |
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| 110 | seed_old(i)=seed(i) |
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| 111 | ENDIF |
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| 112 | ENDIF |
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| 113 | c |
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| 114 | c print*,'seed<50 apres i seed itap paprs',i, |
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| 115 | c . seed(i),itap,paprs(i,2) |
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| 116 | c |
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| 117 | ELSE IF(seed(i).EQ.0) THEN |
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| 118 | print*,'seed=0 i paprs aa seed_re', |
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| 119 | . i,paprs(i,2),aa,seed_re(i) |
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| 120 | STOP |
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| 121 | ELSE IF(seed(i).LT.0) THEN |
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| 122 | print*,'seed < 0, i seed itap paprs',i, |
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| 123 | . seed(i),itap,paprs(i,2) |
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| 124 | STOP |
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| 125 | ENDIF |
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| 126 | c |
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[644] | 127 | ENDDO |
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| 128 | c |
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| 129 | cIM: pas de debug, debugcol |
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| 130 | debug=0 |
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| 131 | debugcol=0 |
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| 132 | c |
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| 133 | cIM recalcule les nuages vus par satellite, via le simulateur ISCCP |
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| 134 | c |
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| 135 | CALL ISCCP_CLOUD_TYPES( |
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| 136 | & debug, |
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| 137 | & debugcol, |
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| 138 | cIM 300704 & itap, debut, |
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| 139 | cIM 300604 klon !BAD |
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| 140 | & klon, |
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| 141 | & sunlit, |
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| 142 | & klev, |
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| 143 | & ncol, |
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| 144 | & seed, |
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| 145 | & pfull, |
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| 146 | & phalf, |
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| 147 | & qv, cc, conv, dtau_sH2B, dtau_cH2B, |
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| 148 | & top_height, |
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| 149 | & overlap, |
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| 150 | & tautab, |
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| 151 | & invtau, |
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| 152 | & ztsol, |
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| 153 | & emsfc_lw, |
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| 154 | & at, dem_sH2B, dem_cH2B, |
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| 155 | & fq_isccp, |
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| 156 | & totalcldarea, |
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| 157 | & meanptop, |
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| 158 | & meantaucld, |
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| 159 | & boxtau, |
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| 160 | & boxptop) |
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| 161 | c |
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| 162 | cIM ENDIF !(MOD(itaprad,radpas).EQ.0) THEN |
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| 163 | cIM 010904 END |
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