1 | !* |
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2 | ! ------------------------------------------------------------------ |
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3 | #ifdef DOC |
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4 | |
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5 | ! This COMDECK includes the Thermodynamical functions for the cy39 |
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6 | ! ECMWF Physics package. |
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7 | ! Consistent with YOMCST Basic physics constants, assuming the |
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8 | ! partial pressure of water vapour is given by a first order |
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9 | ! Taylor expansion of Qs(T) w.r.t. to Temperature, using constants |
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10 | ! in YOETHF |
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11 | ! Two sets of functions are available. In the first set only the |
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12 | ! cases water or ice are distinguished by temperature. This set |
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13 | ! consists of the functions FOEDELTA,FOEEW,FOEDE and FOELH. |
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14 | ! The second set considers, besides the two cases water and ice |
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15 | ! also a mix of both for the temperature range RTICE < T < RTWAT. |
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16 | ! This set contains FOEALFA,FOEEWM,FOEDEM,FOELDCPM and FOELHM. |
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17 | |
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18 | ! Depending on the consideration of mixed phases either the first |
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19 | ! set (e.g. surface, post-processing) or the second set |
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20 | ! (e.g. clouds, condensation, convection) should be used. |
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21 | |
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22 | ! ------------------------------------------------------------------ |
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23 | ! ***************************************************************** |
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24 | |
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25 | ! NO CONSIDERATION OF MIXED PHASES |
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26 | |
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27 | ! ***************************************************************** |
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28 | #endif |
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29 | REAL_B :: FOEDELTA |
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30 | REAL_B :: PTARE |
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31 | FOEDELTA (PTARE) = MAX (_ZERO_,SIGN(_ONE_,PTARE-RTT)) |
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32 | #ifdef DOC |
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33 | |
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34 | ! FOEDELTA = 1 water |
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35 | ! FOEDELTA = 0 ice |
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36 | |
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37 | ! THERMODYNAMICAL FUNCTIONS . |
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38 | |
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39 | ! Pressure of water vapour at saturation |
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40 | ! INPUT : PTARE = TEMPERATURE |
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41 | #endif |
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42 | REAL_B :: FOEEW,FOEDE,FOEDESU,FOELH,FOELDCP |
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43 | FOEEW ( PTARE ) = R2ES*EXP (& |
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44 | &(R3LES*FOEDELTA(PTARE)+R3IES*(_ONE_-FOEDELTA(PTARE)))*(PTARE-RTT)& |
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45 | &/ (PTARE-(R4LES*FOEDELTA(PTARE)+R4IES*(_ONE_-FOEDELTA(PTARE))))) |
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46 | |
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47 | FOEDE ( PTARE ) = & |
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48 | &(FOEDELTA(PTARE)*R5ALVCP+(_ONE_-FOEDELTA(PTARE))*R5ALSCP)& |
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49 | &/ (PTARE-(R4LES*FOEDELTA(PTARE)+R4IES*(_ONE_-FOEDELTA(PTARE))))**2 |
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50 | |
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51 | FOEDESU ( PTARE ) = & |
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52 | &(FOEDELTA(PTARE)*R5LES+(_ONE_-FOEDELTA(PTARE))*R5IES)& |
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53 | &/ (PTARE-(R4LES*FOEDELTA(PTARE)+R4IES*(_ONE_-FOEDELTA(PTARE))))**2 |
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54 | |
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55 | FOELH ( PTARE ) =& |
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56 | &FOEDELTA(PTARE)*RLVTT + (_ONE_-FOEDELTA(PTARE))*RLSTT |
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57 | |
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58 | FOELDCP ( PTARE ) = & |
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59 | &FOEDELTA(PTARE)*RALVDCP + (_ONE_-FOEDELTA(PTARE))*RALSDCP |
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60 | #ifdef DOC |
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61 | |
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62 | ! ***************************************************************** |
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63 | |
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64 | ! CONSIDERATION OF MIXED PHASES |
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65 | |
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66 | ! ***************************************************************** |
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67 | |
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68 | ! FOEALFA is calculated to distinguish the three cases: |
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69 | |
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70 | ! FOEALFA=1 water phase |
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71 | ! FOEALFA=0 ice phase |
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72 | ! 0 < FOEALFA < 1 mixed phase |
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73 | |
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74 | ! INPUT : PTARE = TEMPERATURE |
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75 | #endif |
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76 | REAL_B :: FOEALFA |
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77 | FOEALFA (PTARE) = MIN(_ONE_,((MAX(RTICE,MIN(RTWAT,PTARE))-RTICE)& |
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78 | &/(RTWAT-RTICE))**2) |
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79 | |
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80 | #ifdef DOC |
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81 | |
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82 | ! Pressure of water vapour at saturation |
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83 | ! INPUT : PTARE = TEMPERATURE |
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84 | #endif |
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85 | REAL_B :: FOEEWM,FOEDEM,FOELDCPM,FOELHM |
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86 | FOEEWM ( PTARE ) = R2ES *& |
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87 | &(FOEALFA(PTARE)*EXP(R3LES*(PTARE-RTT)/(PTARE-R4LES))+& |
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88 | &(_ONE_-FOEALFA(PTARE))*EXP(R3IES*(PTARE-RTT)/(PTARE-R4IES))) |
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89 | |
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90 | FOEDEM ( PTARE ) = FOEALFA(PTARE)*R5ALVCP*(_ONE_/(PTARE-R4LES)**2)+& |
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91 | &(_ONE_-FOEALFA(PTARE))*R5ALSCP*(_ONE_/(PTARE-R4IES)**2) |
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92 | |
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93 | FOELDCPM ( PTARE ) = FOEALFA(PTARE)*RALVDCP+& |
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94 | &(_ONE_-FOEALFA(PTARE))*RALSDCP |
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95 | |
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96 | FOELHM ( PTARE ) =& |
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97 | &FOEALFA(PTARE)*RLVTT+(_ONE_-FOEALFA(PTARE))*RLSTT |
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98 | #ifdef DOC |
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99 | ! ------------------------------------------------------------------ |
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100 | ! ***************************************************************** |
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101 | |
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102 | ! CONSIDERATION OF DIFFERENT MIXED PHASE FOR CONV |
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103 | |
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104 | ! ***************************************************************** |
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105 | |
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106 | ! FOEALFCU is calculated to distinguish the three cases: |
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107 | |
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108 | ! FOEALFCU=1 water phase |
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109 | ! FOEALFCU=0 ice phase |
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110 | ! 0 < FOEALFCU < 1 mixed phase |
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111 | |
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112 | ! INPUT : PTARE = TEMPERATURE |
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113 | #endif |
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114 | REAL_B :: FOEALFCU |
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115 | FOEALFCU (PTARE) = MIN(_ONE_,((MAX(RTICECU,MIN(RTWAT,PTARE))& |
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116 | &-RTICECU)/(RTWAT-RTICECU))**2) |
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117 | |
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118 | #ifdef DOC |
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119 | |
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120 | ! Pressure of water vapour at saturation |
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121 | ! INPUT : PTARE = TEMPERATURE |
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122 | #endif |
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123 | REAL_B :: FOEEWMCU,FOEDEMCU,FOELDCPMCU,FOELHMCU |
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124 | FOEEWMCU ( PTARE ) = R2ES *& |
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125 | &(FOEALFCU(PTARE)*EXP(R3LES*(PTARE-RTT)/(PTARE-R4LES))+& |
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126 | &(_ONE_-FOEALFCU(PTARE))*EXP(R3IES*(PTARE-RTT)/(PTARE-R4IES))) |
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127 | |
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128 | FOEDEMCU ( PTARE )=FOEALFCU(PTARE)*R5ALVCP*(_ONE_/(PTARE-R4LES)**2)+& |
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129 | &(_ONE_-FOEALFCU(PTARE))*R5ALSCP*(_ONE_/(PTARE-R4IES)**2) |
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130 | |
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131 | FOELDCPMCU ( PTARE ) = FOEALFCU(PTARE)*RALVDCP+& |
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132 | &(_ONE_-FOEALFCU(PTARE))*RALSDCP |
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133 | |
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134 | FOELHMCU ( PTARE ) =& |
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135 | &FOEALFCU(PTARE)*RLVTT+(_ONE_-FOEALFCU(PTARE))*RLSTT |
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136 | ! ------------------------------------------------------------------ |
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137 | #ifdef DOC |
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138 | |
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139 | ! Pressure of water vapour at saturation |
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140 | ! This one is for the WMO definition of saturation, i.e. always |
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141 | ! with respect to water. |
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142 | #endif |
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143 | REAL_B :: FOEEWMO |
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144 | FOEEWMO( PTARE ) = R2ES*EXP(R3LES*(PTARE-RTT)/(PTARE-R4LES)) |
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