1 | subroutine PHY_SISVAT_UBC(FlagRT,FlagAT,FlagCM,FlagCP) |
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2 | |
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3 | !------------------------------------------------------------------------------+ |
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4 | ! Sat 29-Jun-2013 MAR | |
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5 | ! SubRoutine PHY_SISVAT_UBC provides Upper Boundary Conditions to | |
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6 | ! SISVAT (Soil | |
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7 | ! Ice | |
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8 | ! Snow | |
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9 | ! Vegetation | |
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10 | ! Atmosphere | |
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11 | ! Transfer Scheme) | |
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12 | ! | |
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13 | ! USING DATA | |
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14 | ! | |
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15 | ! Here DATA mimic the behaviour of non-active part of PHYsical package | |
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16 | ! (radiative transfert, | |
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17 | ! (convective precipitation, | |
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18 | ! (stratiform precipitation, | |
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19 | ! and are generated by a Driver designed to test MARthusalem version | |
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20 | ! of SISVAT | |
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21 | ! Air Temperature, specific humidity and wind are provided as INPUT | |
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22 | ! of PHYsical package | |
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23 | ! | |
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24 | ! version 3.p.4.1 created by H. Gallee, Fri 3-May-2013 | |
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25 | ! Last Modification by H. Gallee, Sat 29-Jun-2013 | |
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26 | ! | |
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27 | !------------------------------------------------------------------------------+ |
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28 | |
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29 | |
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30 | ! Global Variables |
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31 | ! ================= |
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32 | |
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33 | use Mod_Real |
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34 | use Mod_PHY____grd |
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35 | use Mod_SISVAT_ctr |
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36 | use Mod_SISVAT_grd |
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37 | use Mod_SISVAT_kkl |
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38 | use Mod_SISVAT_gpt |
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39 | use Mod_PHY_RT_kkl |
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40 | use Mod_PHY_CM_kkl |
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41 | use Mod_PHY_AT_kkl |
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42 | |
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43 | |
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44 | logical :: FlagAT ! Flag (Turbulent Transfer) |
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45 | logical :: FlagCM ! Flag (Cloud Microphysics) |
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46 | logical :: FlagCP ! Flag (Convection Param. ) |
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47 | logical :: FlagRT ! Flag (Radiative Transfer) |
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48 | |
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49 | |
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50 | ! real(kind=real8),ALLOCATABLE ,dimension(:,:,:) :: LAI____xyn ! Leaf Area Index (Mosaic) [m2/m2] |
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51 | ! real(kind=real8),ALLOCATABLE ,dimension(:,:,:) :: GLF____xyn ! Green Leaf Fraction (Mosaic) [-] |
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52 | |
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53 | |
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54 | ! allocate ( LAI____xyn(ixp1:mxpp,jyp1:mypp,mwp) ) ! Leaf Area Index (Mosaic) [m2/m2] |
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55 | ! allocate ( GLF____xyn(ixp1:mxpp,jyp1:mypp,mwp) ) ! Green Leaf Fraction (Mosaic) [-] |
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56 | |
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57 | |
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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 | ! Local Variables |
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63 | ! ================= |
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64 | |
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65 | integer :: i ,j ,n ,ikp |
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66 | integer :: k |
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67 | |
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68 | |
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69 | |
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70 | |
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71 | ! UPPER BOUNDARY CONDITIONS (second term must be verified and modified if needed) |
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72 | ! ========================= |
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73 | |
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74 | DO ikp = 1,kcolp |
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75 | |
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76 | i = ii__AP(ikp) |
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77 | j = jj__AP(ikp) |
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78 | |
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79 | IF (.NOT. FlagAT) THEN |
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80 | DO k=1,mzp |
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81 | Kzh_AT(ikp,k) = 1.35e-5 ! Turbulent Diffusion Coefficient for Scalars [m2/s] |
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82 | ! Air Viscosity |
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83 | ENDDO |
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84 | END IF |
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85 | |
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86 | IF (.NOT. FlagCM) THEN |
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87 | SnowCM(ikp) = 0.0 ! Snow Accumulation (time t ) [m w.e.] |
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88 | SnobCM(ikp) = 0.0 ! Snow Accumulation (time t-dt, after snow erosion) [m w.e.] |
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89 | Sno0CM(ikp) = 0.0 ! Snow Accumulation (time t-dt, before snow erosion) [m w.e.] |
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90 | RainCM(ikp) = 0.0 ! Rain Accumulation (time t ) [m w.e.] |
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91 | Rai0CM(ikp) = 0.0 ! Rain Accumulation (time t-dt) [m w.e.] |
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92 | END IF |
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93 | |
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94 | IF (.NOT. FlagRT) THEN |
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95 | SWDsRT(ikp) = 0.0 ! Surface ShrtWave Heat Flux (+) (Downward) [W/m2] |
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96 | LWDsRT(ikp) = 0.0 ! Surface LongWave Heat Flux (+) (Downward) [W/m2] |
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97 | ClouRT(ikp) = 0.0 ! Total Cloudiness above lowest Atmospheric Level [-] |
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98 | END IF |
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99 | |
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100 | sst_SB(ikp) = 271.2 ! Ocean FORCING (SST) [K] |
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101 | sif_SB(ikp) = 0.0 ! Ocean FORCING (Sea-Ice Fraction) [-] |
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102 | |
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103 | DO n=1,mwp |
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104 | ! s_T_AO_xyn(i,j,n) = 271.2 ! Ocean COUPLING (SST) [K] |
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105 | ! s_T_AO (ikp,n) = s_T_AO_xyn(i,j,n) ! |
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106 | ! Alb_AO_xyn(i,j,n) = 0.0 ! Ocean COUPLING (Surface Albedo) [-] |
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107 | ! Alb_AO (ikp,n) = Alb_AO_xyn(i,j,n) ! Ocean COUPLING (Surface Albedo) [-] |
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108 | ! LAI____xyn(i,j,n) = 3.0 ! Leaf Area Index (Mosaic) [m2/m2] |
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109 | ! LAI0SV (ikp,n) = LAI_SV_xyn(i,j,n) ! |
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110 | LAI0SV (ikp,n) = 3.0 |
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111 | ! GLF____xyn(i,j,n) = 1.0 ! Green Leaf Fraction (Mosaic) [-] |
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112 | ! glf0SV (ikp,n) = GLF_SV_xyn(i,j,n) ! Green Leaf Frac. |
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113 | glf0SV (ikp,n) = 1.0 ! Green Leaf Frac. |
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114 | |
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115 | |
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116 | ! s_T_AO_xyn(i,j,n) = 271.2 ! Ocean COUPLING (SST) |
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117 | ! s_T_AO (ikp,n) = s_T_AO_xyn(i,j,n) ! |
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118 | ENDDO |
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119 | |
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120 | |
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121 | ENDDO |
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122 | |
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123 | end subroutine PHY_SISVAT_UBC |
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