1 | ! radiation_ice_optics_yi.F90 - Yi et al. (2013) ice optical properties |
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2 | ! |
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3 | ! (C) Copyright 2017- ECMWF. |
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4 | ! |
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5 | ! This software is licensed under the terms of the Apache Licence Version 2.0 |
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6 | ! which can be obtained at http://www.apache.org/licenses/LICENSE-2.0. |
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7 | ! |
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8 | ! In applying this licence, ECMWF does not waive the privileges and immunities |
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9 | ! granted to it by virtue of its status as an intergovernmental organisation |
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10 | ! nor does it submit to any jurisdiction. |
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11 | ! |
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12 | ! Authors: Mark Fielding and Robin Hogan |
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13 | ! Email: r.j.hogan@ecmwf.int |
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14 | ! |
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15 | ! The reference for this ice optics parameterization is Yi, B., |
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16 | ! P. Yang, B.A. Baum, T. L'Ecuyer, L. Oreopoulos, E.J. Mlawer, |
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17 | ! A.J. Heymsfield, and K. Liou, 2013: Influence of Ice Particle |
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18 | ! Surface Roughening on the Global Cloud Radiative |
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19 | ! Effect. J. Atmos. Sci., 70, 2794-2807, |
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20 | ! https://doi.org/10.1175/JAS-D-13-020.1 |
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21 | |
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22 | module radiation_ice_optics_yi |
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23 | |
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24 | implicit none |
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25 | public |
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26 | |
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27 | ! The number of ice coefficients depends on the parameterization |
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28 | integer, parameter :: NIceOpticsCoeffsYiSW = 69 |
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29 | integer, parameter :: NIceOpticsCoeffsYiLW = 69 |
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30 | |
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31 | integer, parameter :: NSingleCoeffs = 23 |
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32 | |
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33 | contains |
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34 | |
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35 | !--------------------------------------------------------------------- |
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36 | ! Compute shortwave ice-particle scattering properties using Yi et |
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37 | ! al. (2013) parameterization |
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38 | subroutine calc_ice_optics_yi_sw(nb, coeff, ice_wp, & |
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39 | & re, od, scat_od, g) |
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40 | |
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41 | use parkind1, only : jprb, jpim |
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42 | !use yomhook, only : lhook, dr_hook, jphook |
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43 | |
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44 | ! Number of bands |
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45 | integer, intent(in) :: nb |
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46 | ! Coefficients read from a data file |
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47 | real(jprb), intent(in) :: coeff(:,:) |
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48 | ! Ice water path (kg m-2) |
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49 | real(jprb), intent(in) :: ice_wp |
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50 | ! Effective radius (m) |
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51 | real(jprb), intent(in) :: re |
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52 | ! Total optical depth, scattering optical depth and asymmetry factor |
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53 | real(jprb), intent(out) :: od(nb), scat_od(nb), g(nb) |
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54 | |
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55 | ! Yi's effective diameter (microns) |
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56 | real(jprb) :: de_um |
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57 | ! Ice water path in g m-2 |
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58 | real (jprb) :: iwp_gm_2 |
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59 | ! LUT temp variables |
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60 | real(jprb) :: wts_1, wts_2 |
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61 | integer(jpim) :: lu_idx |
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62 | real(kind=jprb), parameter :: lu_scale = 0.2_jprb |
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63 | real(kind=jprb), parameter :: lu_offset = 1.0_jprb |
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64 | !real(jphook) :: hook_handle |
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65 | |
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66 | !if (lhook) call dr_hook('radiation_ice_optics:calc_ice_optics_yi_sw',0,hook_handle) |
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67 | |
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68 | ! Convert to effective diameter using the relationship in the IFS |
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69 | !de_um = re * (1.0e6_jprb / 0.64952_jprb) |
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70 | de_um = re * 2.0e6_jprb |
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71 | |
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72 | ! limit de_um to validity of LUT |
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73 | de_um = max(de_um,10.0_jprb) |
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74 | de_um = min(de_um,119.99_jprb) !avoid greater than or equal to 120 um |
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75 | |
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76 | iwp_gm_2 = ice_wp * 1000.0_jprb |
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77 | |
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78 | lu_idx = floor(de_um * lu_scale - lu_offset) |
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79 | wts_2 = (de_um * lu_scale - lu_offset) - lu_idx |
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80 | wts_1 = 1.0_jprb - wts_2 |
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81 | od = 0.001_jprb * iwp_gm_2 * & |
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82 | & ( wts_1 * coeff(1:nb,lu_idx) + wts_2 * coeff(1:nb,lu_idx+1) ) |
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83 | scat_od = od * & |
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84 | & ( wts_1 * coeff(1:nb,lu_idx+NSingleCoeffs) + wts_2 * coeff(1:nb,lu_idx+NSingleCoeffs+1) ) |
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85 | g = wts_1 * coeff(1:nb,lu_idx+2*NSingleCoeffs) + wts_2 * coeff(1:nb,lu_idx+2*NSingleCoeffs+1) |
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86 | |
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87 | !if (lhook) call dr_hook('radiation_ice_optics:calc_ice_optics_yi_sw',1,hook_handle) |
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88 | |
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89 | end subroutine calc_ice_optics_yi_sw |
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90 | |
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91 | |
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92 | !--------------------------------------------------------------------- |
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93 | ! Compute longwave ice-particle scattering properties using Yi et |
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94 | ! al. (2013) parameterization |
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95 | subroutine calc_ice_optics_yi_lw(nb, coeff, ice_wp, & |
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96 | & re, od, scat_od, g) |
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97 | |
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98 | use parkind1, only : jprb, jpim |
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99 | !use yomhook, only : lhook, dr_hook, jphook |
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100 | |
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101 | ! Number of bands |
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102 | integer, intent(in) :: nb |
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103 | ! Coefficients read from a data file |
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104 | real(jprb), intent(in) :: coeff(:,:) |
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105 | ! Ice water path (kg m-2) |
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106 | real(jprb), intent(in) :: ice_wp |
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107 | ! Effective radius (m) |
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108 | real(jprb), intent(in) :: re |
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109 | ! Total optical depth, scattering optical depth and asymmetry factor |
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110 | real(jprb), intent(out) :: od(nb), scat_od(nb), g(nb) |
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111 | |
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112 | ! Yi's effective diameter (microns) |
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113 | real(jprb) :: de_um |
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114 | ! Ice water path in g m-2 |
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115 | real (jprb) :: iwp_gm_2 |
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116 | ! LUT temp variables |
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117 | real(jprb) :: wts_1, wts_2 |
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118 | integer(jpim) :: lu_idx |
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119 | real(kind=jprb), parameter :: lu_scale = 0.2_jprb |
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120 | real(kind=jprb), parameter :: lu_offset = 1.0_jprb |
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121 | !real(jphook) :: hook_handle |
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122 | |
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123 | !if (lhook) call dr_hook('radiation_ice_optics:calc_ice_optics_yi_sw',0,hook_handle) |
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124 | |
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125 | ! Convert to effective diameter using the relationship in the IFS |
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126 | !de_um = re * (1.0e6_jprb / 0.64952_jprb) |
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127 | de_um = re * 2.0e6_jprb |
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128 | |
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129 | ! limit de_um to validity of LUT |
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130 | de_um = max(de_um,10.0_jprb) |
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131 | de_um = min(de_um,119.99_jprb) !avoid greater than or equal to 120 um |
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132 | |
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133 | iwp_gm_2 = ice_wp * 1000.0_jprb |
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134 | |
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135 | lu_idx = floor(de_um * lu_scale - lu_offset) |
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136 | wts_2 = (de_um * lu_scale - lu_offset) - lu_idx |
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137 | wts_1 = 1.0_jprb - wts_2 |
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138 | od = 0.001_jprb * iwp_gm_2 * & |
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139 | & ( wts_1 * coeff(1:nb,lu_idx) + wts_2 * coeff(1:nb,lu_idx+1) ) |
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140 | scat_od = od * & |
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141 | & ( wts_1 * coeff(1:nb,lu_idx+NSingleCoeffs) + wts_2 * coeff(1:nb,lu_idx+NSingleCoeffs+1) ) |
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142 | g = wts_1 * coeff(1:nb,lu_idx+2*NSingleCoeffs) + wts_2 * coeff(1:nb,lu_idx+2*NSingleCoeffs+1) |
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143 | |
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144 | !if (lhook) call dr_hook('radiation_ice_optics:calc_ice_optics_yi_lw',1,hook_handle) |
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145 | |
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146 | end subroutine calc_ice_optics_yi_lw |
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147 | |
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148 | end module radiation_ice_optics_yi |
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