1 | ! |
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2 | ! $Id$ |
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3 | ! |
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4 | SUBROUTINE freinage(knon, uu, vv, & |
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5 | tt,veget,lai, height,ypaprs,ypplay,drag_pro,d_u,d_v) |
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6 | |
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7 | !ONLINE: |
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8 | USE yoegwd_mod_h |
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9 | USE dimpft_mod_h |
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10 | USE compbl_mod_h |
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11 | USE clesphys_mod_h |
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12 | use dimphy, only: klon, klev |
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13 | ! USE control, ONLY: nvm |
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14 | ! USE indice_sol_mod, only : nvm_orch |
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15 | |
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16 | USE yomcst_mod_h |
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17 | IMPLICIT NONE |
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18 | |
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19 | |
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20 | |
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21 | !FC |
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22 | |
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23 | ! 0. DECLARATIONS: |
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24 | |
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25 | ! 0.1 INPUTS |
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26 | |
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27 | REAL, DIMENSION(klon,klev), INTENT(IN) :: ypplay |
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28 | REAL, DIMENSION(klon,klev+1), INTENT(IN) :: ypaprs |
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29 | |
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30 | |
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31 | REAL, DIMENSION(klon, klev), INTENT(IN) :: uu |
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32 | REAL, DIMENSION(klon, klev), INTENT(IN) :: vv |
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33 | REAL, DIMENSION(klon, klev), INTENT(IN) :: tt |
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34 | REAL, DIMENSION(klon,nvm_lmdz), INTENT(IN) :: veget,lai |
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35 | REAL, DIMENSION(klon,nvm_lmdz), INTENT(IN) :: height |
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36 | |
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37 | REAL, DIMENSION(klon,klev) :: wind |
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38 | REAL, DIMENSION(klon, klev) :: yzlay |
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39 | INTEGER knon |
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40 | |
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41 | ! 0.2 OUTPUTS |
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42 | |
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43 | REAL, DIMENSION(klon, klev), INTENT(OUT) :: d_v ! change in v |
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44 | REAL, DIMENSION(klon, klev), INTENT(OUT) :: d_u ! change in v |
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45 | !knon nombre de points concernes |
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46 | REAL, DIMENSION(klon,klev) :: sumveg ! change in v |
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47 | |
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48 | REAL, DIMENSION(klon,klev), INTENT(OUT) :: drag_pro |
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49 | ! (KLON, KLEV) tendencies on winds |
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50 | |
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51 | |
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52 | INTEGER k,jv,i |
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53 | |
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54 | |
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55 | !FCCCC REAL Cd_frein |
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56 | |
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57 | ! 0.3.1 LOCAL VARIABLE |
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58 | |
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59 | |
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60 | !----------------------------------------------------------------- |
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61 | |
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62 | ! 1. INITIALISATIONS |
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63 | |
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64 | |
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65 | ! Cd_frein = 7.5E-2 ! (0.075) ! Drag from MASSON 2009 |
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66 | !FC ESSAI |
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67 | ! Cd_frein = 1.5E-2 ! (0.075) ! Drag from MASSON 2009 |
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68 | ! Cd_frein = 0.005 ! (0.075) ! Drag from MASSON 2009 |
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69 | |
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70 | ! initialisation |
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71 | d_u(:,:) =0. |
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72 | d_v(:,:) =0. |
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73 | drag_pro(:,:) =0. |
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74 | sumveg(:,:) =0. |
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75 | !! print*, "Cd_frein" , Cd_frein |
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76 | |
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77 | wind(:,:)= sqrt(uu(:,:)*uu(:,:)+vv(:,:)*vv(:,:)) |
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78 | |
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79 | yzlay(1:knon,1)= & |
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80 | RD*tt(1:knon,1)/(0.5*(ypaprs(1:knon,1)+ypplay(1:knon,1))) & |
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81 | *(ypaprs(1:knon,1)-ypplay(1:knon,1))/RG |
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82 | DO k=2,klev |
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83 | yzlay(1:knon,k)= & |
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84 | yzlay(1:knon,k-1)+RD*0.5*(tt(1:knon,k-1)+tt(1:knon,k)) & |
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85 | /ypaprs(1:knon,k)*(ypplay(1:knon,k-1)-ypplay(1:knon,k))/RG |
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86 | END DO |
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87 | |
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88 | ! verifier les indexes ..... |
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89 | !! print*, " calcul de drag_pro FC " |
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90 | |
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91 | do k= 1,klev |
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92 | |
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93 | do jv=2,nvm_lmdz ! (on peut faire 9 ?) |
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94 | |
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95 | do i=1,knon |
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96 | |
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97 | sumveg(i,k)= sumveg(i,k)+ veget(i,jv) |
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98 | |
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99 | ! if ( (height(i,jv) .gt. yzlay(i,k)) .AND. (height(i,jv) .gt. 0.1) .and. LAI(i,jv).gt.0. ) then |
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100 | if ( (height(i,jv) .gt. yzlay(i,k)) .AND. (height(i,jv) .gt. 0.1) ) then |
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101 | !FC attention veut on le test sur le LAI ? |
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102 | if (ifl_pbltree.eq.1) then |
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103 | drag_pro(i,k)= drag_pro(i,k)+ & |
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104 | veget(i,jv) |
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105 | elseif (ifl_pbltree.eq.2) then |
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106 | drag_pro(i,k)= drag_pro(i,k)+ & |
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107 | 6*LAI(i,jv)*veget(i,jv)*( yzlay(i,k)*(height(i,jv)-yzlay(i,k))/(height(i,jv)*height(i,jv)+ 0.01)) |
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108 | elseif (ifl_pbltree.eq.3) then |
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109 | drag_pro(i,k)= drag_pro(i,k)+ & |
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110 | veget(i,jv)*( yzlay(i,k)*(height(i,jv)-yzlay(i,k))/(height(i,jv)*height(i,jv)+ 0.01)) |
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111 | elseif (ifl_pbltree.eq.0) then |
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112 | drag_pro(i,k)=0.0 |
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113 | endif |
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114 | else |
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115 | drag_pro(i,k)= drag_pro(i,k) |
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116 | endif |
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117 | |
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118 | |
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119 | enddo |
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120 | enddo |
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121 | enddo |
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122 | do k=1,klev |
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123 | where (sumveg(1:knon,k) > 0.05 ) |
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124 | ! drag_pro(1:knon,k)=Cd_frein*drag_pro(1:knon,k)/sumveg(1:knon,k) |
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125 | drag_pro(1:knon,k)=Cd_frein*drag_pro(1:knon,k) |
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126 | elsewhere |
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127 | drag_pro(1:knon,k)=0.0 |
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128 | endwhere |
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129 | d_u(1:knon,k) =(-1)*drag_pro(1:knon,k)*uu(1:knon,k)*wind(1:knon,k) |
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130 | d_v(1:knon,k) =(-1)*drag_pro(1:knon,k)*vv(1:knon,k)*wind(1:knon,k) |
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131 | enddo |
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132 | return |
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133 | |
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134 | END SUBROUTINE freinage |
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135 | |
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