[1989] | 1 | !---------------------------------------------------------------------------- |
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| 2 | SUBROUTINE RRTM_TAUMOL9 (KLEV,P_TAU,& |
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| 3 | & P_TAUAERL,P_FAC00,P_FAC01,P_FAC10,P_FAC11,K_JP,K_JT,K_JT1,P_ONEMINUS,& |
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| 4 | & P_COLH2O,P_COLN2O,P_COLCH4,K_LAYTROP,K_LAYSWTCH,K_LAYLOW,P_SELFFAC,P_SELFFRAC,K_INDSELF,PFRAC) |
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| 5 | |
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| 6 | ! BAND 9: 1180-1390 cm-1 (low - H2O,CH4; high - CH4) |
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| 7 | |
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| 8 | ! Modifications |
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| 9 | ! M.Hamrud 01-Oct-2003 CY28 Cleaning |
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| 10 | |
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| 11 | ! D Salmond 2000-05-15 speed-up |
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| 12 | ! JJMorcrette 2000-05-17 speed-up |
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| 13 | |
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| 14 | USE PARKIND1 ,ONLY : JPIM ,JPRB |
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| 15 | USE YOMHOOK ,ONLY : LHOOK, DR_HOOK |
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| 16 | |
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| 17 | USE PARRRTM , ONLY : JPLAY ,JPBAND ,JPGPT ,NG9 ,NGS8 |
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| 18 | USE YOERRTWN , ONLY : NSPA ,NSPB |
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| 19 | USE YOERRTA9 , ONLY : ABSA ,ABSB ,FRACREFA, FRACREFB,SELFREF,ABSN2O , CH4REF ,& |
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| 20 | & ETAREF , H2OREF ,N2OREF ,STRRAT |
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| 21 | |
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| 22 | ! Input |
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| 23 | !#include "yoeratm.h" |
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| 24 | |
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| 25 | IMPLICIT NONE |
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| 26 | |
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| 27 | ! Output |
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| 28 | INTEGER(KIND=JPIM),INTENT(IN) :: KLEV |
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| 29 | REAL(KIND=JPRB) ,INTENT(OUT) :: P_TAU(JPGPT,JPLAY) |
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| 30 | REAL(KIND=JPRB) ,INTENT(IN) :: P_TAUAERL(JPLAY,JPBAND) |
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| 31 | REAL(KIND=JPRB) ,INTENT(IN) :: P_FAC00(JPLAY) |
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| 32 | REAL(KIND=JPRB) ,INTENT(IN) :: P_FAC01(JPLAY) |
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| 33 | REAL(KIND=JPRB) ,INTENT(IN) :: P_FAC10(JPLAY) |
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| 34 | REAL(KIND=JPRB) ,INTENT(IN) :: P_FAC11(JPLAY) |
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| 35 | INTEGER(KIND=JPIM),INTENT(IN) :: K_JP(JPLAY) |
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| 36 | INTEGER(KIND=JPIM),INTENT(IN) :: K_JT(JPLAY) |
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| 37 | INTEGER(KIND=JPIM),INTENT(IN) :: K_JT1(JPLAY) |
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| 38 | REAL(KIND=JPRB) ,INTENT(IN) :: P_ONEMINUS |
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| 39 | REAL(KIND=JPRB) ,INTENT(IN) :: P_COLH2O(JPLAY) |
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| 40 | REAL(KIND=JPRB) ,INTENT(IN) :: P_COLN2O(JPLAY) |
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| 41 | REAL(KIND=JPRB) ,INTENT(IN) :: P_COLCH4(JPLAY) |
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| 42 | INTEGER(KIND=JPIM),INTENT(IN) :: K_LAYTROP |
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| 43 | INTEGER(KIND=JPIM),INTENT(IN) :: K_LAYSWTCH |
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| 44 | INTEGER(KIND=JPIM),INTENT(IN) :: K_LAYLOW |
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| 45 | REAL(KIND=JPRB) ,INTENT(IN) :: P_SELFFAC(JPLAY) |
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| 46 | REAL(KIND=JPRB) ,INTENT(IN) :: P_SELFFRAC(JPLAY) |
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| 47 | INTEGER(KIND=JPIM),INTENT(IN) :: K_INDSELF(JPLAY) |
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| 48 | REAL(KIND=JPRB) ,INTENT(OUT) :: PFRAC(JPGPT,JPLAY) |
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| 49 | !- from AER |
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| 50 | !- from INTFAC |
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| 51 | !- from INTIND |
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| 52 | !- from PRECISE |
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| 53 | !- from PROFDATA |
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| 54 | !- from SELF |
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| 55 | !- from SP |
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| 56 | INTEGER(KIND=JPIM) :: JFRAC(JPLAY) |
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| 57 | REAL(KIND=JPRB) :: Z_FFRAC(JPLAY),ZFS(JPLAY),Z_SPECCOMB(JPLAY) |
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| 58 | INTEGER(KIND=JPIM) :: IND0(JPLAY),IND1(JPLAY),INDS(JPLAY),IIOFF(JPLAY) |
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| 59 | |
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| 60 | ! REAL TAUAER(JPLAY) |
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| 61 | REAL(KIND=JPRB) :: Z_N2OMULT(JPLAY) |
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| 62 | |
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| 63 | INTEGER(KIND=JPIM) :: IG, IOFF, JS, I_LAY, I_NS |
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| 64 | |
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| 65 | REAL(KIND=JPRB) :: Z_COLREF1, Z_COLREF2, Z_CURRN2O, Z_FAC000, Z_FAC001,& |
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| 66 | & Z_FAC010, Z_FAC011, Z_FAC100, Z_FAC101, Z_FAC110, Z_FAC111, & |
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| 67 | & Z_FP, Z_FS, Z_RATIO, Z_SPECMULT, Z_SPECPARM, Z_WCOMB1, & |
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| 68 | & Z_WCOMB2 |
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| 69 | REAL(KIND=JPRB) :: ZHOOK_HANDLE |
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| 70 | |
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| 71 | ! EQUIVALENCE (TAUAERL(1,9),TAUAER) |
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| 72 | |
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| 73 | IF (LHOOK) CALL DR_HOOK('RRTM_TAUMOL9',0,ZHOOK_HANDLE) |
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| 74 | IOFF = 0 |
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| 75 | |
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| 76 | ! Compute the optical depth by interpolating in ln(pressure), |
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| 77 | ! temperature, and appropriate species. Below LAYTROP, the water |
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| 78 | ! vapor self-continuum is interpolated (in temperature) separately. |
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| 79 | |
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| 80 | DO I_LAY = 1, K_LAYTROP |
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| 81 | Z_SPECCOMB(I_LAY) = P_COLH2O(I_LAY) + STRRAT*P_COLCH4(I_LAY) |
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| 82 | Z_SPECPARM = P_COLH2O(I_LAY)/Z_SPECCOMB(I_LAY) |
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| 83 | Z_SPECPARM=MIN(P_ONEMINUS,Z_SPECPARM) |
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| 84 | Z_SPECMULT = 8._JPRB*(Z_SPECPARM) |
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| 85 | JS = 1 + INT(Z_SPECMULT) |
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| 86 | JFRAC(I_LAY) = JS |
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| 87 | Z_FS = MOD(Z_SPECMULT,1.0_JPRB) |
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| 88 | Z_FFRAC(I_LAY) = Z_FS |
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| 89 | IF (JS == 8) THEN |
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| 90 | IF (Z_FS <= 0.68_JPRB) THEN |
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| 91 | Z_FS = Z_FS/0.68_JPRB |
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| 92 | ELSEIF (Z_FS <= 0.92_JPRB) THEN |
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| 93 | JS = JS + 1 |
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| 94 | Z_FS = (Z_FS-0.68_JPRB)/0.24_JPRB |
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| 95 | ELSE |
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| 96 | JS = JS + 2 |
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| 97 | Z_FS = (Z_FS-0.92_JPRB)/0.08_JPRB |
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| 98 | ENDIF |
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| 99 | ELSEIF (JS == 9) THEN |
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| 100 | JS = 10 |
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| 101 | Z_FS = 1.0_JPRB |
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| 102 | JFRAC(I_LAY) = 8 |
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| 103 | Z_FFRAC(I_LAY) = 1.0_JPRB |
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| 104 | ENDIF |
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| 105 | Z_FP = P_FAC01(I_LAY) + P_FAC11(I_LAY) |
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| 106 | I_NS = JS + INT(Z_FS + 0.5_JPRB) |
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| 107 | IND0(I_LAY) = ((K_JP(I_LAY)-1)*5+(K_JT(I_LAY)-1))*NSPA(9) + JS |
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| 108 | IND1(I_LAY) = (K_JP(I_LAY)*5+(K_JT1(I_LAY)-1))*NSPA(9) + JS |
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| 109 | INDS(I_LAY) = K_INDSELF(I_LAY) |
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| 110 | IF (I_LAY == K_LAYLOW) IOFF = NG9 |
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| 111 | IF (I_LAY == K_LAYSWTCH) IOFF = 2*NG9 |
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| 112 | Z_COLREF1 = N2OREF(K_JP(I_LAY)) |
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| 113 | Z_COLREF2 = N2OREF(K_JP(I_LAY)+1) |
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| 114 | IF (I_NS == 11) THEN |
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| 115 | Z_WCOMB1 = 1.0_JPRB/H2OREF(K_JP(I_LAY)) |
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| 116 | Z_WCOMB2 = 1.0_JPRB/H2OREF(K_JP(I_LAY)+1) |
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| 117 | ELSE |
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| 118 | Z_WCOMB1 = (1.0_JPRB-ETAREF(I_NS))/(STRRAT * CH4REF(K_JP(I_LAY))) |
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| 119 | Z_WCOMB2 = (1.0_JPRB-ETAREF(I_NS))/(STRRAT * CH4REF(K_JP(I_LAY)+1)) |
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| 120 | ENDIF |
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| 121 | Z_RATIO = (Z_COLREF1*Z_WCOMB1)+Z_FP*((Z_COLREF2*Z_WCOMB2)-(Z_COLREF1*Z_WCOMB1)) |
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| 122 | Z_CURRN2O = Z_SPECCOMB(I_LAY) * Z_RATIO |
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| 123 | Z_N2OMULT(I_LAY) = P_COLN2O(I_LAY) - Z_CURRN2O |
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| 124 | |
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| 125 | ZFS(I_LAY)=Z_FS |
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| 126 | IIOFF(I_LAY)=IOFF |
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| 127 | |
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| 128 | ENDDO |
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| 129 | |
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| 130 | !-- DS_000515 |
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| 131 | DO IG = 1, NG9 |
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| 132 | DO I_LAY = 1, K_LAYTROP |
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| 133 | !-- DS_000515 |
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| 134 | |
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| 135 | Z_FS=ZFS(I_LAY) |
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| 136 | IOFF=IIOFF(I_LAY) |
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| 137 | !---jjm |
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| 138 | ! FAC000 = (_ONE_ - FS) * FAC00(LAY) |
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| 139 | ! FAC010 = (_ONE_ - FS) * FAC10(LAY) |
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| 140 | ! FAC100 = FS * FAC00(LAY) |
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| 141 | ! FAC110 = FS * FAC10(LAY) |
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| 142 | ! FAC001 = (_ONE_ - FS) * FAC01(LAY) |
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| 143 | ! FAC011 = (_ONE_ - FS) * FAC11(LAY) |
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| 144 | ! FAC101 = FS * FAC01(LAY) |
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| 145 | ! FAC111 = FS * FAC11(LAY) |
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| 146 | !------ |
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| 147 | |
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| 148 | P_TAU (NGS8+IG,I_LAY) = Z_SPECCOMB(I_LAY) *& |
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| 149 | !-- DS_000515 |
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| 150 | ! &(Z_FAC000 * ABSA(IND0(I_LAY) ,IG) +& |
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| 151 | ! & Z_FAC100 * ABSA(IND0(I_LAY)+ 1,IG) +& |
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| 152 | ! & Z_FAC010 * ABSA(IND0(I_LAY)+11,IG) +& |
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| 153 | ! & Z_FAC110 * ABSA(IND0(I_LAY)+12,IG) +& |
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| 154 | ! & Z_FAC001 * ABSA(IND1(I_LAY) ,IG) +& |
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| 155 | ! & Z_FAC101 * ABSA(IND1(I_LAY)+ 1,IG) +& |
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| 156 | ! & Z_FAC011 * ABSA(IND1(I_LAY)+11,IG) +& |
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| 157 | ! & Z_FAC111 * ABSA(IND1(I_LAY)+12,IG))+& |
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| 158 | & ( (1. - Z_FS) *(P_FAC00(I_LAY) * ABSA(IND0(I_LAY) ,IG) + & |
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| 159 | & P_FAC10(I_LAY) * ABSA(IND0(I_LAY)+11,IG) + & |
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| 160 | & P_FAC01(I_LAY) * ABSA(IND1(I_LAY) ,IG) + & |
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| 161 | & P_FAC11(I_LAY) * ABSA(IND1(I_LAY)+11,IG))+ & |
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| 162 | & Z_FS *(P_FAC00(I_LAY) * ABSA(IND0(I_LAY)+ 1,IG) + & |
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| 163 | & P_FAC10(I_LAY) * ABSA(IND0(I_LAY)+12,IG) + & |
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| 164 | & P_FAC01(I_LAY) * ABSA(IND1(I_LAY)+ 1,IG) + & |
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| 165 | & P_FAC11(I_LAY) * ABSA(IND1(I_LAY)+12,IG))) + & |
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| 166 | !-- DS_000515 |
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| 167 | & P_COLH2O(I_LAY) * & |
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| 168 | & P_SELFFAC(I_LAY) * (SELFREF(INDS(I_LAY),IG) + & |
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| 169 | & P_SELFFRAC(I_LAY) *& |
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| 170 | & (SELFREF(INDS(I_LAY)+1,IG) - SELFREF(INDS(I_LAY),IG)))& |
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| 171 | & + Z_N2OMULT(I_LAY) * ABSN2O(IG+IOFF)& |
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| 172 | & + P_TAUAERL(I_LAY,9) |
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| 173 | PFRAC(NGS8+IG,I_LAY) = FRACREFA(IG,JFRAC(I_LAY)) + Z_FFRAC(I_LAY) *& |
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| 174 | & (FRACREFA(IG,JFRAC(I_LAY)+1) - FRACREFA(IG,JFRAC(I_LAY))) |
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| 175 | ENDDO |
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| 176 | ENDDO |
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| 177 | |
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| 178 | DO I_LAY = K_LAYTROP+1, KLEV |
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| 179 | IND0(I_LAY) = ((K_JP(I_LAY)-13)*5+(K_JT(I_LAY)-1))*NSPB(9) + 1 |
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| 180 | IND1(I_LAY) = ((K_JP(I_LAY)-12)*5+(K_JT1(I_LAY)-1))*NSPB(9) + 1 |
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| 181 | ENDDO |
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| 182 | |
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| 183 | !-- JJM_000517 |
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| 184 | DO IG = 1, NG9 |
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| 185 | DO I_LAY = K_LAYTROP+1, KLEV |
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| 186 | !-- JJM_000517 |
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| 187 | P_TAU (NGS8+IG,I_LAY) = P_COLCH4(I_LAY) *& |
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| 188 | & (P_FAC00(I_LAY) * ABSB(IND0(I_LAY) ,IG) +& |
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| 189 | & P_FAC10(I_LAY) * ABSB(IND0(I_LAY)+1,IG) +& |
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| 190 | & P_FAC01(I_LAY) * ABSB(IND1(I_LAY) ,IG) +& |
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| 191 | & P_FAC11(I_LAY) * ABSB(IND1(I_LAY)+1,IG))& |
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| 192 | & + P_TAUAERL(I_LAY,9) |
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| 193 | PFRAC(NGS8+IG,I_LAY) = FRACREFB(IG) |
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| 194 | ENDDO |
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| 195 | ENDDO |
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| 196 | |
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| 197 | IF (LHOOK) CALL DR_HOOK('RRTM_TAUMOL9',1,ZHOOK_HANDLE) |
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| 198 | END SUBROUTINE RRTM_TAUMOL9 |
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