1 | SUBROUTINE GPPREF(KPROMA,KSTART,KPROF,KFLEV,PVAH,PVBH,PALPH,PRESH,PRESF) |
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2 | |
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3 | !**** *GPPREF* - Computes full level pressure |
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4 | |
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5 | ! Purpose. |
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6 | ! -------- |
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7 | ! Computes pressures at half and full model levels. |
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8 | |
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9 | !** Interface. |
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10 | ! ---------- |
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11 | ! *CALL* *GPPREF(...) |
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12 | |
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13 | ! Explicit arguments : |
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14 | ! -------------------- |
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15 | ! KPROMA : dimensioning |
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16 | ! KSTART : start of work |
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17 | ! KPROF : depth of work |
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18 | ! KFLEV : vert. dimensioning |
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19 | ! PVAH(KFLEV),PVBH(KFLEV)- vertical coordinate |
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20 | ! PALPH (KPROMA,KFLEV) - COEFF OF THE HYDROST |
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21 | ! PRESH(KPROMA,0:KFLEV) - HALF LEVEL PRESSURE |
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22 | ! PRESF(KPROMA,KFLEV) - FULL LEVEL PRESSURE |
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23 | |
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24 | ! Implicit arguments : NONE. |
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25 | ! -------------------- |
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26 | |
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27 | ! Method. |
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28 | ! ------- |
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29 | ! See documentation |
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30 | |
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31 | ! Externals. None. |
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32 | ! ---------- |
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33 | |
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34 | ! Reference. |
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35 | ! ---------- |
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36 | ! ECMWF Research Department documentation of the IFS |
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37 | |
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38 | ! PHk*ln(PHk) - PHk-1*ln(PHk-1) |
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39 | ! Full level P: ln(PFk) = [ ------------------------------- - 1. ] |
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40 | ! PHk - PHk-1 |
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41 | |
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42 | ! which simplifies to: PFk = Pk+1/2 * exp(-ALPHA) |
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43 | |
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44 | ! In case of NDLNPR=1 it becomes even simpler (no need of LAPRXP any |
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45 | ! more in principle !) : |
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46 | ! PFk = Pk+1/2 * (1.-ALPHA) except at the top |
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47 | ! level : |
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48 | ! PF1 = P1.5 / (2+Cv/R) |
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49 | |
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50 | ! Author. |
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51 | ! ------- |
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52 | ! Erik Andersson, Mats Hamrud and Philippe Courtier *ECMWF* |
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53 | |
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54 | ! Modifications. |
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55 | ! -------------- |
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56 | ! Original : 92-11-23 |
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57 | ! Modified : 95-01-31 by Radmila Bubnova: correction in the case |
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58 | ! of the other approximation of d (ln p). |
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59 | ! Modified : 00-11-22 by Agathe Untch: modifications for vertical |
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60 | ! finite elements |
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61 | ! M.Hamrud 01-Oct-2003 CY28 Cleaning |
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62 | ! Modified : 04-11-15 by K. YESSAD: improve the hierarchy of tests |
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63 | ! Modified : 15-Feb-2005 by K. YESSAD: ZTOPPRES becomes TOPPRES |
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64 | ! ------------------------------------------------------------------ |
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65 | |
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66 | USE PARKIND1 ,ONLY : JPIM ,JPRB |
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67 | USE YOMHOOK ,ONLY : LHOOK, DR_HOOK |
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68 | |
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69 | USE YOMCT0 , ONLY : LAPRXPK |
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70 | USE YOMDYN , ONLY : NDLNPR |
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71 | USE YOMCST , ONLY : RD ,RCVD |
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72 | USE YOMCVER , ONLY : LVERTFE |
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73 | USE YOMGEM , ONLY : VAF ,VBF ,TOPPRES |
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74 | |
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75 | ! ------------------------------------------------------------------ |
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76 | |
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77 | IMPLICIT NONE |
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78 | |
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79 | INTEGER(KIND=JPIM),INTENT(IN) :: KPROMA |
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80 | INTEGER(KIND=JPIM),INTENT(IN) :: KFLEV |
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81 | INTEGER(KIND=JPIM),INTENT(IN) :: KSTART |
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82 | INTEGER(KIND=JPIM),INTENT(IN) :: KPROF |
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83 | REAL(KIND=JPRB) :: PVAH(0:KFLEV) ! Argument NOT used |
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84 | REAL(KIND=JPRB) :: PVBH(0:KFLEV) ! Argument NOT used |
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85 | REAL(KIND=JPRB) ,INTENT(IN) :: PALPH(KPROMA,KFLEV) |
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86 | REAL(KIND=JPRB) ,INTENT(IN) :: PRESH(KPROMA,0:KFLEV) |
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87 | REAL(KIND=JPRB) ,INTENT(OUT) :: PRESF(KPROMA,KFLEV) |
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88 | |
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89 | ! ------------------------------------------------------------------ |
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90 | |
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91 | INTEGER(KIND=JPIM) :: IFIRST, JLEV, JLON |
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92 | REAL(KIND=JPRB) :: ZMUL |
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93 | REAL(KIND=JPRB) :: ZHOOK_HANDLE |
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94 | |
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95 | ! ------------------------------------------------------------------ |
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96 | |
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97 | IF (LHOOK) CALL DR_HOOK('GPPREF',0,ZHOOK_HANDLE) |
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98 | |
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99 | ! ------------------------------------------------------------------ |
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100 | |
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101 | !* 1. Level to begin normal computations |
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102 | ! ---------------------------------- |
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103 | |
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104 | ! This is introduced to allow the use of GPPREF without the implicit |
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105 | ! assumption that the top level input for pressure is 0 hPa. |
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106 | ! This restriction is only necessary in the case of use of NDLNPR=1. |
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107 | |
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108 | ! LVERTFE : .T./.F. Finite element/conventional vertical discretisation. |
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109 | ! NDLNPR : NDLNPR=0: conventional formulation of delta, i.e. ln(P(l)/P(l-1)). |
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110 | ! NDLNPR=1: formulation of delta used in non hydrostatic model, |
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111 | ! LAPRXPK : way of computing full-levels pressures in primitive equation |
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112 | |
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113 | LVERTFE=.TRUE. !!!!! A REVOIR (MPL) comment faut-il vraiment calculer PRESF ? |
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114 | |
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115 | IF ((.NOT.LVERTFE).AND.(NDLNPR == 1)) THEN |
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116 | IF(PRESH(KSTART,0) <= TOPPRES)THEN |
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117 | IFIRST=2 |
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118 | ELSE |
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119 | IFIRST=1 |
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120 | DO JLON=KSTART,KPROF |
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121 | IF(PRESH(JLON,0) <= TOPPRES)THEN |
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122 | IFIRST=2 |
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123 | EXIT |
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124 | ENDIF |
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125 | ENDDO |
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126 | ENDIF |
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127 | ENDIF |
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128 | |
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129 | ! ------------------------------------------------------------------ |
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130 | |
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131 | !* 2. COMPUTES FULL LEVEL PRESSURES. |
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132 | ! ------------------------------ |
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133 | |
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134 | IF (LVERTFE) THEN |
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135 | DO JLEV=1,KFLEV |
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136 | ! print *,'GPPREF: LVERTFE KFLEV KSTART KPROF JLEV',LVERTFE,KFLEV,KSTART,KPROF,JLEV |
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137 | PRESF(KSTART:KPROF,JLEV)=VAF(JLEV)+VBF(JLEV)*PRESH(KSTART:KPROF,KFLEV) |
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138 | ENDDO |
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139 | ELSE |
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140 | IF (NDLNPR == 0) THEN |
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141 | IF (LAPRXPK) THEN |
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142 | DO JLEV=1,KFLEV |
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143 | DO JLON=KSTART,KPROF |
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144 | PRESF(JLON,JLEV)=(PRESH(JLON,JLEV-1)+PRESH(JLON,JLEV))*0.5_JPRB |
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145 | ENDDO |
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146 | ENDDO |
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147 | ELSE |
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148 | DO JLEV=1,KFLEV |
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149 | DO JLON=KSTART,KPROF |
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150 | PRESF(JLON,JLEV)=EXP(-PALPH(JLON,JLEV))*PRESH(JLON,JLEV) |
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151 | ENDDO |
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152 | ENDDO |
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153 | ENDIF |
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154 | ELSEIF (NDLNPR == 1) THEN |
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155 | DO JLEV=IFIRST,KFLEV |
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156 | DO JLON=KSTART,KPROF |
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157 | PRESF(JLON,JLEV)=(1.0_JPRB-PALPH(JLON,JLEV))*PRESH(JLON,JLEV) |
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158 | ENDDO |
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159 | ENDDO |
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160 | ZMUL=1.0_JPRB/(2.0_JPRB+RCVD/RD) |
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161 | DO JLEV=1,IFIRST-1 |
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162 | DO JLON=KSTART,KPROF |
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163 | PRESF(JLON,JLEV)=PRESH(JLON,JLEV)*ZMUL |
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164 | ENDDO |
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165 | ENDDO |
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166 | ENDIF |
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167 | ENDIF |
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168 | |
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169 | ! ------------------------------------------------------------------ |
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170 | |
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171 | IF (LHOOK) CALL DR_HOOK('GPPREF',1,ZHOOK_HANDLE) |
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172 | END SUBROUTINE GPPREF |
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