[3908] | 1 | !*************************************************************************** |
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| 2 | SUBROUTINE RRTM_CMBGB1 |
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| 3 | !*************************************************************************** |
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| 4 | |
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| 5 | ! The subroutines CMBGB1->CMBGB16 input the absorption coefficient |
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| 6 | ! data for each band, which are defined for 16 g-points and 16 spectral |
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| 7 | ! bands. The data are combined with appropriate weighting following the |
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| 8 | ! g-point mapping arrays specified in RRTMINIT. Plank fraction data |
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| 9 | ! in arrays FRACREFA and FRACREFB are combined without weighting. All |
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| 10 | ! g-point reduced data are put into new arrays for use in RRTM. |
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| 11 | |
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| 12 | ! BAND 1: 10-250 cm-1 (low - H2O; high - H2O) |
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| 13 | |
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| 14 | ! ABozzo may 2013 update to the last version of rrtmg |
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| 15 | |
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| 16 | !band 1: 10-350 cm-1 (low key - h2o; low minor - n2) |
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| 17 | ! (high key - h2o; high minor - n2) |
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| 18 | !*************************************************************************** |
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| 19 | |
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| 20 | ! Parameters |
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| 21 | USE PARKIND1 ,ONLY : JPIM ,JPRB |
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| 22 | USE YOMHOOK ,ONLY : LHOOK, DR_HOOK |
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| 23 | |
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| 24 | USE YOERRTO1 , ONLY : KAO, KBO, SELFREFO, FORREFO, FRACREFAO,FRACREFBO,KAO_MN2, KBO_MN2 |
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| 25 | USE YOERRTA1 , ONLY : KA , KB , SELFREF , FORREF , FRACREFA ,FRACREFB, KA_MN2, KB_MN2 |
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| 26 | USE YOERRTRWT, ONLY : RWGT |
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| 27 | USE YOERRTFTR, ONLY : NGC ,NGN |
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| 28 | |
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| 29 | IMPLICIT NONE |
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| 30 | |
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| 31 | INTEGER(KIND=JPIM) :: IGC, IPR, IPRSM, JP, JT |
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| 32 | |
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| 33 | REAL(KIND=JPRB) :: Z_SUMF1, Z_SUMF2, Z_SUMK, Z_SUMK1, Z_SUMK2 |
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| 34 | REAL(KIND=JPRB) :: ZHOOK_HANDLE |
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| 35 | |
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| 36 | IF (LHOOK) CALL DR_HOOK('RRTM_CMBGB1',0,ZHOOK_HANDLE) |
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| 37 | DO JT = 1,5 |
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| 38 | DO JP = 1,13 |
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| 39 | IPRSM = 0 |
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| 40 | DO IGC = 1,NGC(1) |
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| 41 | Z_SUMK = 0.0_JPRB |
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| 42 | DO IPR = 1, NGN(IGC) |
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| 43 | IPRSM = IPRSM + 1 |
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| 44 | |
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| 45 | Z_SUMK = Z_SUMK + KAO(JT,JP,IPRSM)*RWGT(IPRSM) |
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| 46 | ENDDO |
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| 47 | |
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| 48 | KA(JT,JP,IGC) = Z_SUMK |
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| 49 | ENDDO |
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| 50 | ENDDO |
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| 51 | DO JP = 13,59 |
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| 52 | IPRSM = 0 |
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| 53 | DO IGC = 1,NGC(1) |
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| 54 | Z_SUMK = 0.0_JPRB |
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| 55 | DO IPR = 1, NGN(IGC) |
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| 56 | IPRSM = IPRSM + 1 |
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| 57 | |
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| 58 | Z_SUMK = Z_SUMK + KBO(JT,JP,IPRSM)*RWGT(IPRSM) |
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| 59 | ENDDO |
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| 60 | |
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| 61 | KB(JT,JP,IGC) = Z_SUMK |
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| 62 | ENDDO |
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| 63 | ENDDO |
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| 64 | ENDDO |
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| 65 | |
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| 66 | DO JT = 1,10 |
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| 67 | IPRSM = 0 |
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| 68 | DO IGC = 1,NGC(1) |
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| 69 | Z_SUMK = 0.0_JPRB |
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| 70 | DO IPR = 1, NGN(IGC) |
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| 71 | IPRSM = IPRSM + 1 |
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| 72 | |
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| 73 | Z_SUMK = Z_SUMK + SELFREFO(JT,IPRSM)*RWGT(IPRSM) |
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| 74 | ENDDO |
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| 75 | |
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| 76 | SELFREF(JT,IGC) = Z_SUMK |
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| 77 | ENDDO |
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| 78 | ENDDO |
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| 79 | |
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| 80 | DO JT = 1,4 |
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| 81 | IPRSM = 0 |
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| 82 | DO IGC = 1,NGC(1) |
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| 83 | Z_SUMK = 0.0_JPRB |
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| 84 | DO IPR = 1, NGN(IGC) |
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| 85 | IPRSM = IPRSM + 1 |
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| 86 | Z_SUMK = Z_SUMK + FORREFO(JT,IPRSM)*RWGT(IPRSM) |
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| 87 | ENDDO |
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| 88 | FORREF(JT,IGC) = Z_SUMK |
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| 89 | ENDDO |
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| 90 | ENDDO |
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| 91 | |
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| 92 | DO JT = 1,19 |
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| 93 | IPRSM = 0 |
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| 94 | DO IGC = 1,NGC(1) |
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| 95 | Z_SUMK1 = 0.0_JPRB |
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| 96 | Z_SUMK2 = 0.0_JPRB |
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| 97 | DO IPR = 1, NGN(IGC) |
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| 98 | IPRSM = IPRSM + 1 |
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| 99 | Z_SUMK1 = Z_SUMK1 + KAO_MN2(JT,IPRSM)*RWGT(IPRSM) |
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| 100 | Z_SUMK2 = Z_SUMK2 + KBO_MN2(JT,IPRSM)*RWGT(IPRSM) |
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| 101 | ENDDO |
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| 102 | KA_MN2(JT,IGC) = Z_SUMK1 |
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| 103 | KB_MN2(JT,IGC) = Z_SUMK2 |
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| 104 | ENDDO |
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| 105 | ENDDO |
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| 106 | |
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| 107 | IPRSM = 0 |
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| 108 | DO IGC = 1,NGC(1) |
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| 109 | Z_SUMF1 = 0.0_JPRB |
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| 110 | Z_SUMF2 = 0.0_JPRB |
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| 111 | DO IPR = 1, NGN(IGC) |
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| 112 | IPRSM = IPRSM + 1 |
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| 113 | |
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| 114 | Z_SUMF1= Z_SUMF1+ FRACREFAO(IPRSM) |
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| 115 | Z_SUMF2= Z_SUMF2+ FRACREFBO(IPRSM) |
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| 116 | ENDDO |
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| 117 | |
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| 118 | FRACREFA(IGC) = Z_SUMF1 |
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| 119 | FRACREFB(IGC) = Z_SUMF2 |
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| 120 | ENDDO |
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| 121 | |
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| 122 | |
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| 123 | IF (LHOOK) CALL DR_HOOK('RRTM_CMBGB1',1,ZHOOK_HANDLE) |
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| 124 | END SUBROUTINE RRTM_CMBGB1 |
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