1 | ! |
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2 | ! $Id: sortvarc.F 2641 2016-09-29 21:26:46Z aborella $ |
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3 | ! |
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4 | SUBROUTINE sortvarc |
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5 | $(itau,ucov,teta,ps,masse,pk,phis,vorpot,phi,bern,dp,time , |
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6 | $ vcov ) |
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7 | |
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8 | USE control_mod, ONLY: resetvarc |
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9 | USE comconst_mod, ONLY: dtvr, daysec, g, rad, omeg |
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10 | USE logic_mod, ONLY: read_start |
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11 | USE ener_mod, ONLY: etot,ptot,ztot,stot,ang, |
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12 | & etot0,ptot0,ztot0,stot0,ang0, |
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13 | & rmsdpdt,rmsv |
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14 | IMPLICIT NONE |
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15 | |
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16 | |
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17 | c======================================================================= |
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18 | c |
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19 | c Auteur: P. Le Van |
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20 | c ------- |
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21 | c |
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22 | c Objet: |
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23 | c ------ |
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24 | c |
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25 | c sortie des variables de controle |
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26 | c |
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27 | c======================================================================= |
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28 | c----------------------------------------------------------------------- |
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29 | c Declarations: |
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30 | c ------------- |
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31 | |
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32 | INCLUDE "dimensions.h" |
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33 | INCLUDE "paramet.h" |
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34 | INCLUDE "comgeom.h" |
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35 | INCLUDE "iniprint.h" |
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36 | |
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37 | c Arguments: |
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38 | c ---------- |
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39 | |
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40 | INTEGER,INTENT(IN) :: itau |
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41 | REAL,INTENT(IN) :: ucov(ip1jmp1,llm) |
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42 | REAL,INTENT(IN) :: teta(ip1jmp1,llm) |
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43 | REAL,INTENT(IN) :: masse(ip1jmp1,llm) |
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44 | REAL,INTENT(IN) :: vcov(ip1jm,llm) |
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45 | REAL,INTENT(IN) :: ps(ip1jmp1) |
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46 | REAL,INTENT(IN) :: phis(ip1jmp1) |
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47 | REAL,INTENT(IN) :: vorpot(ip1jm,llm) |
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48 | REAL,INTENT(IN) :: phi(ip1jmp1,llm) |
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49 | REAL,INTENT(IN) :: bern(ip1jmp1,llm) |
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50 | REAL,INTENT(IN) :: dp(ip1jmp1) |
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51 | REAL,INTENT(IN) :: time |
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52 | REAL,INTENT(IN) :: pk(ip1jmp1,llm) |
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53 | |
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54 | c Local: |
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55 | c ------ |
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56 | |
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57 | REAL vor(ip1jm),bernf(ip1jmp1,llm),ztotl(llm) |
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58 | REAL etotl(llm),stotl(llm),rmsvl(llm),angl(llm),ge(ip1jmp1) |
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59 | REAL cosphi(ip1jm),omegcosp(ip1jm) |
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60 | REAL dtvrs1j,rjour,heure,radsg,radomeg |
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61 | REAL massebxy(ip1jm,llm) |
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62 | INTEGER l, ij, imjmp1 |
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63 | |
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64 | REAL SSUM |
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65 | LOGICAL,SAVE :: firstcal=.true. |
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66 | CHARACTER(LEN=*),PARAMETER :: modname="sortvarc" |
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67 | |
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68 | c----------------------------------------------------------------------- |
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69 | ! Ehouarn: when no initialization fields from file, resetvarc should be |
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70 | ! set to false |
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71 | if (firstcal) then |
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72 | if (.not.read_start) then |
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73 | resetvarc=.true. |
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74 | endif |
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75 | endif |
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76 | |
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77 | dtvrs1j = dtvr/daysec |
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78 | rjour = REAL( INT( itau * dtvrs1j )) |
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79 | heure = ( itau*dtvrs1j-rjour ) * 24. |
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80 | imjmp1 = iim * jjp1 |
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81 | IF(ABS(heure - 24.).LE.0.0001 ) heure = 0. |
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82 | c |
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83 | CALL massbarxy ( masse, massebxy ) |
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84 | |
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85 | c ..... Calcul de rmsdpdt ..... |
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86 | |
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87 | ge(:)=dp(:)*dp(:) |
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88 | |
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89 | rmsdpdt = SSUM(ip1jmp1,ge,1) - SSUM(jjp1,ge,iip1) |
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90 | c |
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91 | rmsdpdt = daysec* 1.e-2 * SQRT(rmsdpdt/imjmp1) |
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92 | |
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93 | CALL SCOPY( ijp1llm,bern,1,bernf,1 ) |
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94 | CALL filtreg(bernf,jjp1,llm,-2,2,.TRUE.,1) |
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95 | |
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96 | c ..... Calcul du moment angulaire ..... |
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97 | |
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98 | radsg = rad /g |
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99 | radomeg = rad * omeg |
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100 | c |
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101 | DO ij=iip2,ip1jm |
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102 | cosphi( ij ) = COS(rlatu((ij-1)/iip1+1)) |
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103 | omegcosp(ij) = radomeg * cosphi(ij) |
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104 | ENDDO |
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105 | |
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106 | c ... Calcul de l'energie,de l'enstrophie,de l'entropie et de rmsv . |
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107 | |
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108 | DO l=1,llm |
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109 | DO ij = 1,ip1jm |
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110 | vor(ij)=vorpot(ij,l)*vorpot(ij,l)*massebxy(ij,l) |
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111 | ENDDO |
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112 | ztotl(l)=(SSUM(ip1jm,vor,1)-SSUM(jjm,vor,iip1)) |
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113 | |
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114 | DO ij = 1,ip1jmp1 |
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115 | ge(ij)= masse(ij,l)*(phis(ij)+teta(ij,l)*pk(ij,l) + |
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116 | s bernf(ij,l)-phi(ij,l)) |
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117 | ENDDO |
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118 | etotl(l) = SSUM(ip1jmp1,ge,1) - SSUM(jjp1,ge,iip1) |
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119 | |
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120 | DO ij = 1, ip1jmp1 |
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121 | ge(ij) = masse(ij,l)*teta(ij,l) |
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122 | ENDDO |
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123 | stotl(l)= SSUM(ip1jmp1,ge,1) - SSUM(jjp1,ge,iip1) |
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124 | |
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125 | DO ij=1,ip1jmp1 |
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126 | ge(ij)=masse(ij,l)*AMAX1(bernf(ij,l)-phi(ij,l),0.) |
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127 | ENDDO |
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128 | rmsvl(l)=2.*(SSUM(ip1jmp1,ge,1)-SSUM(jjp1,ge,iip1)) |
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129 | |
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130 | DO ij =iip2,ip1jm |
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131 | ge(ij)=(ucov(ij,l)/cu(ij)+omegcosp(ij))*masse(ij,l) * |
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132 | * cosphi(ij) |
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133 | ENDDO |
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134 | angl(l) = rad * |
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135 | s (SSUM(ip1jm-iip1,ge(iip2),1)-SSUM(jjm-1,ge(iip2),iip1)) |
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136 | ENDDO |
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137 | |
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138 | DO ij=1,ip1jmp1 |
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139 | ge(ij)= ps(ij)*aire(ij) |
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140 | ENDDO |
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141 | ptot = SSUM(ip1jmp1,ge,1)-SSUM(jjp1,ge,iip1) |
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142 | etot = SSUM( llm, etotl, 1 ) |
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143 | ztot = SSUM( llm, ztotl, 1 ) |
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144 | stot = SSUM( llm, stotl, 1 ) |
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145 | rmsv = SSUM( llm, rmsvl, 1 ) |
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146 | ang = SSUM( llm, angl, 1 ) |
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147 | |
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148 | IF (firstcal.and.resetvarc) then |
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149 | WRITE(lunout,3500) itau, rjour, heure, time |
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150 | WRITE(lunout,*) trim(modname), |
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151 | & ' WARNING!!! Recomputing initial values of : ' |
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152 | WRITE(lunout,*) 'ptot,rmsdpdt,etot,ztot,stot,rmsv,ang' |
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153 | WRITE(lunout,*) ptot,rmsdpdt,etot,ztot,stot,rmsv,ang |
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154 | etot0 = etot |
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155 | ptot0 = ptot |
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156 | ztot0 = ztot |
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157 | stot0 = stot |
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158 | ang0 = ang |
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159 | END IF |
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160 | |
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161 | ! compute relative changes in etot,... (except if 'reference' values |
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162 | ! are zero, which can happen when using iniacademic) |
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163 | if (etot0.ne.0) then |
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164 | etot= etot/etot0 |
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165 | else |
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166 | etot=1. |
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167 | endif |
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168 | rmsv= SQRT(rmsv/ptot) |
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169 | if (ptot0.ne.0) then |
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170 | ptot= ptot/ptot0 |
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171 | else |
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172 | ptot=1. |
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173 | endif |
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174 | if (ztot0.ne.0) then |
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175 | ztot= ztot/ztot0 |
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176 | else |
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177 | ztot=1. |
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178 | endif |
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179 | if (stot0.ne.0) then |
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180 | stot= stot/stot0 |
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181 | else |
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182 | stot=1. |
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183 | endif |
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184 | if (ang0.ne.0) then |
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185 | ang = ang /ang0 |
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186 | else |
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187 | ang=1. |
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188 | endif |
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189 | |
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190 | firstcal = .false. |
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191 | |
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192 | WRITE(lunout,3500) itau, rjour, heure, time |
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193 | WRITE(lunout,4000) ptot,rmsdpdt,etot,ztot,stot,rmsv,ang |
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194 | |
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195 | 3500 FORMAT(10("*"),4x,'pas',i7,5x,'jour',f9.0,'heure',f5.1,4x |
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196 | * ,'date',f14.4,4x,10("*")) |
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197 | 4000 FORMAT(10x,'masse',4x,'rmsdpdt',7x,'energie',2x,'enstrophie' |
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198 | * ,2x,'entropie',3x,'rmsv',4x,'mt.ang',/,'GLOB ' |
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199 | . ,f10.6,e13.6,5f10.3/ |
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200 | * ) |
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201 | END |
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202 | |
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