1 | !---------------------------------------------------------------------------- |
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2 | SUBROUTINE RRTM_TAUMOL6 (KLEV,TAU,WX,& |
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3 | &TAUAERL,FAC00,FAC01,FAC10,FAC11,JP,JT,JT1,& |
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4 | &COLH2O,CO2MULT,LAYTROP,SELFFAC,SELFFRAC,INDSELF,PFRAC) |
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5 | |
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6 | ! BAND 6: 820-980 cm-1 (low - H2O; high - nothing) |
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7 | |
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8 | ! Modifications |
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9 | ! |
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10 | ! D Salmond 2000-05-15 speed-up |
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11 | ! JJMorcrette 2000-05-17 speed-up |
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12 | |
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13 | |
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14 | #include "tsmbkind.h" |
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15 | |
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16 | USE PARRRTM , ONLY : JPLAY ,JPBAND ,JPGPT ,JPXSEC , NGS5 |
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17 | USE YOERRTWN , ONLY : NG ,NSPA ,NSPB |
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18 | USE YOERRTA6 , ONLY : NG6 ,ABSA ,ABSCO2 ,CFC11ADJ , CFC12 ,& |
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19 | &FRACREFA, KA ,SELFREF |
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20 | |
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21 | ! Input |
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22 | !#include "yoeratm.h" |
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23 | |
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24 | ! REAL TAUAER(JPLAY) |
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25 | |
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26 | IMPLICIT NONE |
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27 | |
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28 | REAL_B :: WX(JPXSEC,JPLAY) ! Amount of trace gases |
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29 | ! Output |
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30 | REAL_B :: TAU (JPGPT,JPLAY) |
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31 | |
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32 | ! DUMMY INTEGER SCALARS |
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33 | INTEGER_M :: KLEV |
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34 | |
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35 | !- from AER |
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36 | REAL_B :: TAUAERL(JPLAY,JPBAND) |
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37 | |
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38 | !- from INTFAC |
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39 | REAL_B :: FAC00(JPLAY) |
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40 | REAL_B :: FAC01(JPLAY) |
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41 | REAL_B :: FAC10(JPLAY) |
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42 | REAL_B :: FAC11(JPLAY) |
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43 | |
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44 | !- from INTIND |
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45 | INTEGER_M :: JP(JPLAY) |
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46 | INTEGER_M :: JT(JPLAY) |
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47 | INTEGER_M :: JT1(JPLAY) |
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48 | |
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49 | !- from PROFDATA |
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50 | REAL_B :: COLH2O(JPLAY) |
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51 | REAL_B :: CO2MULT(JPLAY) |
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52 | INTEGER_M :: LAYTROP |
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53 | |
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54 | !- from SELF |
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55 | REAL_B :: SELFFAC(JPLAY) |
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56 | REAL_B :: SELFFRAC(JPLAY) |
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57 | INTEGER_M :: INDSELF(JPLAY) |
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58 | |
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59 | !- from SP |
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60 | REAL_B :: PFRAC(JPGPT,JPLAY) |
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61 | |
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62 | INTEGER_M :: IND0(JPLAY),IND1(JPLAY),INDS(JPLAY) |
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63 | |
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64 | ! LOCAL INTEGER SCALARS |
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65 | INTEGER_M :: IG, LAY |
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66 | |
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67 | ! EQUIVALENCE (TAUAERL(1,6),TAUAER) |
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68 | |
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69 | ! Compute the optical depth by interpolating in ln(pressure) and |
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70 | ! temperature. The water vapor self-continuum is interpolated |
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71 | ! (in temperature) separately. |
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72 | |
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73 | DO LAY = 1, LAYTROP |
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74 | IND0(LAY) = ((JP(LAY)-1)*5+(JT(LAY)-1))*NSPA(6) + 1 |
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75 | IND1(LAY) = (JP(LAY)*5+(JT1(LAY)-1))*NSPA(6) + 1 |
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76 | INDS(LAY) = INDSELF(LAY) |
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77 | ENDDO |
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78 | |
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79 | !-- DS_000515 |
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80 | DO IG = 1, NG6 |
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81 | DO LAY = 1, LAYTROP |
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82 | !-- DS_000515 |
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83 | TAU (NGS5+IG,LAY) = COLH2O(LAY) *& |
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84 | &(FAC00(LAY) * ABSA(IND0(LAY) ,IG) +& |
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85 | & FAC10(LAY) * ABSA(IND0(LAY)+1,IG) +& |
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86 | & FAC01(LAY) * ABSA(IND1(LAY) ,IG) +& |
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87 | & FAC11(LAY) * ABSA(IND1(LAY)+1,IG) +& |
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88 | &SELFFAC(LAY) * (SELFREF(INDS(LAY),IG) + & |
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89 | &SELFFRAC(LAY)*& |
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90 | &(SELFREF(INDS(LAY)+1,IG)-SELFREF(INDS(LAY),IG))))& |
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91 | &+ WX(2,LAY) * CFC11ADJ(IG)& |
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92 | &+ WX(3,LAY) * CFC12(IG)& |
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93 | &+ CO2MULT(LAY) * ABSCO2(IG)& |
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94 | &+ TAUAERL(LAY,6) |
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95 | PFRAC(NGS5+IG,LAY) = FRACREFA(IG) |
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96 | ENDDO |
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97 | ENDDO |
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98 | |
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99 | ! Nothing important goes on above LAYTROP in this band. |
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100 | !-- JJM_000517 |
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101 | DO IG = 1, NG6 |
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102 | DO LAY = LAYTROP+1, KLEV |
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103 | !-- JJM_000517 |
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104 | TAU (NGS5+IG,LAY) = _ZERO_ & |
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105 | &+ WX(2,LAY) * CFC11ADJ(IG)& |
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106 | &+ WX(3,LAY) * CFC12(IG)& |
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107 | &+ TAUAERL(LAY,6) |
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108 | PFRAC(NGS5+IG,LAY) = FRACREFA(IG) |
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109 | ENDDO |
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110 | ENDDO |
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111 | |
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112 | RETURN |
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113 | END SUBROUTINE RRTM_TAUMOL6 |
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