1 | MODULE trc_oce |
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2 | !!====================================================================== |
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3 | !! *** MODULE trc_oce *** |
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4 | !! Ocean passive tracer : share SMS/Ocean variables |
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5 | !!====================================================================== |
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6 | !! History : 1.0 ! 2004-03 (C. Ethe) Original code |
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7 | !!---------------------------------------------------------------------- |
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8 | |
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9 | !!---------------------------------------------------------------------- |
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10 | !! trc_oce_rgb : tabulated attenuation coefficients for RGB light penetration |
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11 | !!---------------------------------------------------------------------- |
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12 | USE par_oce ! ocean parameters |
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13 | USE dom_oce ! ocean space and time domain |
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14 | ! |
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15 | USE in_out_manager ! I/O manager |
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16 | USE lib_mpp ! MPP library |
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17 | |
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18 | IMPLICIT NONE |
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19 | PRIVATE |
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20 | |
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21 | PUBLIC trc_oce_rgb ! routine called by traqsr.F90 |
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22 | PUBLIC trc_oce_rgb_read ! routine called by traqsr.F90 |
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23 | PUBLIC trc_oce_ext_lev ! function called by traqsr.F90 at least |
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24 | PUBLIC trc_oce_alloc ! function called by nemogcm.F90 |
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25 | |
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26 | LOGICAL , PUBLIC :: l_co2cpl = .false. !: atmospheric pco2 recieved from oasis |
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27 | LOGICAL , PUBLIC :: l_offline = .false. !: offline passive tracers flag |
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28 | INTEGER , PUBLIC :: nn_dttrc !: frequency of step on passive tracers |
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29 | REAL(wp), PUBLIC :: r_si2 !: largest depth of extinction (blue & 0.01 mg.m-3) (RGB) |
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30 | ! |
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31 | REAL(wp), PUBLIC, SAVE, ALLOCATABLE, DIMENSION(:,:,:) :: etot3 !: light absortion coefficient |
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32 | REAL(wp), PUBLIC, SAVE, ALLOCATABLE, DIMENSION(:,:) :: oce_co2 !: ocean carbon flux |
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33 | |
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34 | #if defined key_top |
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35 | !!---------------------------------------------------------------------- |
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36 | !! 'key_top' bio-model |
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37 | !!---------------------------------------------------------------------- |
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38 | LOGICAL, PUBLIC, PARAMETER :: lk_top = .TRUE. !: TOP model |
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39 | #else |
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40 | !!---------------------------------------------------------------------- |
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41 | !! Default option No bio-model light absorption |
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42 | !!---------------------------------------------------------------------- |
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43 | LOGICAL, PUBLIC, PARAMETER :: lk_top = .FALSE. !: TOP model |
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44 | #endif |
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45 | !!---------------------------------------------------------------------- |
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46 | !! NEMO/OCE 4.0 , NEMO Consortium (2018) |
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47 | !! $Id$ |
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48 | !! Software governed by the CeCILL license (see ./LICENSE) |
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49 | !!---------------------------------------------------------------------- |
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50 | CONTAINS |
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51 | |
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52 | INTEGER FUNCTION trc_oce_alloc() |
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53 | !!---------------------------------------------------------------------- |
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54 | !! *** trc_oce_alloc *** |
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55 | !!---------------------------------------------------------------------- |
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56 | ALLOCATE( etot3(jpi,jpj,jpk), oce_co2(jpi,jpj), STAT=trc_oce_alloc ) |
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57 | IF( trc_oce_alloc /= 0 ) CALL ctl_warn('trc_oce_alloc: failed to allocate etot3 array') |
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58 | ! |
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59 | END FUNCTION trc_oce_alloc |
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60 | |
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61 | |
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62 | SUBROUTINE trc_oce_rgb( prgb ) |
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63 | !!--------------------------------------------------------------------- |
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64 | !! *** ROUTINE p4z_opt_init *** |
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65 | !! |
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66 | !! ** Purpose : Initialization of of the optical scheme |
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67 | !! |
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68 | !! ** Method : Set a look up table for the optical coefficients |
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69 | !! i.e. the attenuation coefficient for R-G-B light |
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70 | !! tabulated in Chlorophyll class (from JM Andre) |
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71 | !! |
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72 | !! ** Action : prgb(3,61) tabulated R-G-B attenuation coef. |
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73 | !! |
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74 | !! Reference : Lengaigne et al. 2007, Clim. Dyn., V28, 5, 503-516. |
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75 | !!---------------------------------------------------------------------- |
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76 | REAL(wp), DIMENSION(3,61), INTENT(out) :: prgb ! tabulated attenuation coefficient |
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77 | ! |
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78 | INTEGER :: jc ! dummy loop indice |
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79 | INTEGER :: irgb ! temporary integer |
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80 | REAL(wp) :: zchl ! temporary scalar |
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81 | REAL(wp), DIMENSION(4,61) :: zrgb ! tabulated attenuation coefficient (formerly read in 'kRGB61.txt') |
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82 | !!---------------------------------------------------------------------- |
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83 | ! |
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84 | IF(lwp) THEN |
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85 | WRITE(numout,*) |
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86 | WRITE(numout,*) ' trc_oce_rgb : Initialisation of the optical look-up table' |
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87 | WRITE(numout,*) ' ~~~~~~~~~~~ ' |
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88 | ENDIF |
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89 | ! |
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90 | ! Chlorophyll ! Blue attenuation ! Green attenuation ! Red attenuation ! |
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91 | zrgb(1, 1) = 0.010 ; zrgb(2, 1) = 0.01618 ; zrgb(3, 1) = 0.07464 ; zrgb(4, 1) = 0.37807 |
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92 | zrgb(1, 2) = 0.011 ; zrgb(2, 2) = 0.01654 ; zrgb(3, 2) = 0.07480 ; zrgb(4, 2) = 0.37823 |
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93 | zrgb(1, 3) = 0.013 ; zrgb(2, 3) = 0.01693 ; zrgb(3, 3) = 0.07499 ; zrgb(4, 3) = 0.37840 |
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94 | zrgb(1, 4) = 0.014 ; zrgb(2, 4) = 0.01736 ; zrgb(3, 4) = 0.07518 ; zrgb(4, 4) = 0.37859 |
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95 | zrgb(1, 5) = 0.016 ; zrgb(2, 5) = 0.01782 ; zrgb(3, 5) = 0.07539 ; zrgb(4, 5) = 0.37879 |
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96 | zrgb(1, 6) = 0.018 ; zrgb(2, 6) = 0.01831 ; zrgb(3, 6) = 0.07562 ; zrgb(4, 6) = 0.37900 |
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97 | zrgb(1, 7) = 0.020 ; zrgb(2, 7) = 0.01885 ; zrgb(3, 7) = 0.07586 ; zrgb(4, 7) = 0.37923 |
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98 | zrgb(1, 8) = 0.022 ; zrgb(2, 8) = 0.01943 ; zrgb(3, 8) = 0.07613 ; zrgb(4, 8) = 0.37948 |
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99 | zrgb(1, 9) = 0.025 ; zrgb(2, 9) = 0.02005 ; zrgb(3, 9) = 0.07641 ; zrgb(4, 9) = 0.37976 |
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100 | zrgb(1,10) = 0.028 ; zrgb(2,10) = 0.02073 ; zrgb(3,10) = 0.07672 ; zrgb(4,10) = 0.38005 |
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101 | zrgb(1,11) = 0.032 ; zrgb(2,11) = 0.02146 ; zrgb(3,11) = 0.07705 ; zrgb(4,11) = 0.38036 |
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102 | zrgb(1,12) = 0.035 ; zrgb(2,12) = 0.02224 ; zrgb(3,12) = 0.07741 ; zrgb(4,12) = 0.38070 |
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103 | zrgb(1,13) = 0.040 ; zrgb(2,13) = 0.02310 ; zrgb(3,13) = 0.07780 ; zrgb(4,13) = 0.38107 |
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104 | zrgb(1,14) = 0.045 ; zrgb(2,14) = 0.02402 ; zrgb(3,14) = 0.07821 ; zrgb(4,14) = 0.38146 |
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105 | zrgb(1,15) = 0.050 ; zrgb(2,15) = 0.02501 ; zrgb(3,15) = 0.07866 ; zrgb(4,15) = 0.38189 |
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106 | zrgb(1,16) = 0.056 ; zrgb(2,16) = 0.02608 ; zrgb(3,16) = 0.07914 ; zrgb(4,16) = 0.38235 |
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107 | zrgb(1,17) = 0.063 ; zrgb(2,17) = 0.02724 ; zrgb(3,17) = 0.07967 ; zrgb(4,17) = 0.38285 |
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108 | zrgb(1,18) = 0.071 ; zrgb(2,18) = 0.02849 ; zrgb(3,18) = 0.08023 ; zrgb(4,18) = 0.38338 |
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109 | zrgb(1,19) = 0.079 ; zrgb(2,19) = 0.02984 ; zrgb(3,19) = 0.08083 ; zrgb(4,19) = 0.38396 |
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110 | zrgb(1,20) = 0.089 ; zrgb(2,20) = 0.03131 ; zrgb(3,20) = 0.08149 ; zrgb(4,20) = 0.38458 |
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111 | zrgb(1,21) = 0.100 ; zrgb(2,21) = 0.03288 ; zrgb(3,21) = 0.08219 ; zrgb(4,21) = 0.38526 |
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112 | zrgb(1,22) = 0.112 ; zrgb(2,22) = 0.03459 ; zrgb(3,22) = 0.08295 ; zrgb(4,22) = 0.38598 |
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113 | zrgb(1,23) = 0.126 ; zrgb(2,23) = 0.03643 ; zrgb(3,23) = 0.08377 ; zrgb(4,23) = 0.38676 |
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114 | zrgb(1,24) = 0.141 ; zrgb(2,24) = 0.03842 ; zrgb(3,24) = 0.08466 ; zrgb(4,24) = 0.38761 |
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115 | zrgb(1,25) = 0.158 ; zrgb(2,25) = 0.04057 ; zrgb(3,25) = 0.08561 ; zrgb(4,25) = 0.38852 |
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116 | zrgb(1,26) = 0.178 ; zrgb(2,26) = 0.04289 ; zrgb(3,26) = 0.08664 ; zrgb(4,26) = 0.38950 |
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117 | zrgb(1,27) = 0.200 ; zrgb(2,27) = 0.04540 ; zrgb(3,27) = 0.08775 ; zrgb(4,27) = 0.39056 |
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118 | zrgb(1,28) = 0.224 ; zrgb(2,28) = 0.04811 ; zrgb(3,28) = 0.08894 ; zrgb(4,28) = 0.39171 |
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119 | zrgb(1,29) = 0.251 ; zrgb(2,29) = 0.05103 ; zrgb(3,29) = 0.09023 ; zrgb(4,29) = 0.39294 |
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120 | zrgb(1,30) = 0.282 ; zrgb(2,30) = 0.05420 ; zrgb(3,30) = 0.09162 ; zrgb(4,30) = 0.39428 |
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121 | zrgb(1,31) = 0.316 ; zrgb(2,31) = 0.05761 ; zrgb(3,31) = 0.09312 ; zrgb(4,31) = 0.39572 |
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122 | zrgb(1,32) = 0.355 ; zrgb(2,32) = 0.06130 ; zrgb(3,32) = 0.09474 ; zrgb(4,32) = 0.39727 |
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123 | zrgb(1,33) = 0.398 ; zrgb(2,33) = 0.06529 ; zrgb(3,33) = 0.09649 ; zrgb(4,33) = 0.39894 |
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124 | zrgb(1,34) = 0.447 ; zrgb(2,34) = 0.06959 ; zrgb(3,34) = 0.09837 ; zrgb(4,34) = 0.40075 |
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125 | zrgb(1,35) = 0.501 ; zrgb(2,35) = 0.07424 ; zrgb(3,35) = 0.10040 ; zrgb(4,35) = 0.40270 |
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126 | zrgb(1,36) = 0.562 ; zrgb(2,36) = 0.07927 ; zrgb(3,36) = 0.10259 ; zrgb(4,36) = 0.40480 |
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127 | zrgb(1,37) = 0.631 ; zrgb(2,37) = 0.08470 ; zrgb(3,37) = 0.10495 ; zrgb(4,37) = 0.40707 |
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128 | zrgb(1,38) = 0.708 ; zrgb(2,38) = 0.09056 ; zrgb(3,38) = 0.10749 ; zrgb(4,38) = 0.40952 |
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129 | zrgb(1,39) = 0.794 ; zrgb(2,39) = 0.09690 ; zrgb(3,39) = 0.11024 ; zrgb(4,39) = 0.41216 |
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130 | zrgb(1,40) = 0.891 ; zrgb(2,40) = 0.10374 ; zrgb(3,40) = 0.11320 ; zrgb(4,40) = 0.41502 |
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131 | zrgb(1,41) = 1.000 ; zrgb(2,41) = 0.11114 ; zrgb(3,41) = 0.11639 ; zrgb(4,41) = 0.41809 |
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132 | zrgb(1,42) = 1.122 ; zrgb(2,42) = 0.11912 ; zrgb(3,42) = 0.11984 ; zrgb(4,42) = 0.42142 |
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133 | zrgb(1,43) = 1.259 ; zrgb(2,43) = 0.12775 ; zrgb(3,43) = 0.12356 ; zrgb(4,43) = 0.42500 |
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134 | zrgb(1,44) = 1.413 ; zrgb(2,44) = 0.13707 ; zrgb(3,44) = 0.12757 ; zrgb(4,44) = 0.42887 |
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135 | zrgb(1,45) = 1.585 ; zrgb(2,45) = 0.14715 ; zrgb(3,45) = 0.13189 ; zrgb(4,45) = 0.43304 |
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136 | zrgb(1,46) = 1.778 ; zrgb(2,46) = 0.15803 ; zrgb(3,46) = 0.13655 ; zrgb(4,46) = 0.43754 |
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137 | zrgb(1,47) = 1.995 ; zrgb(2,47) = 0.16978 ; zrgb(3,47) = 0.14158 ; zrgb(4,47) = 0.44240 |
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138 | zrgb(1,48) = 2.239 ; zrgb(2,48) = 0.18248 ; zrgb(3,48) = 0.14701 ; zrgb(4,48) = 0.44765 |
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139 | zrgb(1,49) = 2.512 ; zrgb(2,49) = 0.19620 ; zrgb(3,49) = 0.15286 ; zrgb(4,49) = 0.45331 |
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140 | zrgb(1,50) = 2.818 ; zrgb(2,50) = 0.21102 ; zrgb(3,50) = 0.15918 ; zrgb(4,50) = 0.45942 |
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141 | zrgb(1,51) = 3.162 ; zrgb(2,51) = 0.22703 ; zrgb(3,51) = 0.16599 ; zrgb(4,51) = 0.46601 |
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142 | zrgb(1,52) = 3.548 ; zrgb(2,52) = 0.24433 ; zrgb(3,52) = 0.17334 ; zrgb(4,52) = 0.47313 |
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143 | zrgb(1,53) = 3.981 ; zrgb(2,53) = 0.26301 ; zrgb(3,53) = 0.18126 ; zrgb(4,53) = 0.48080 |
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144 | zrgb(1,54) = 4.467 ; zrgb(2,54) = 0.28320 ; zrgb(3,54) = 0.18981 ; zrgb(4,54) = 0.48909 |
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145 | zrgb(1,55) = 5.012 ; zrgb(2,55) = 0.30502 ; zrgb(3,55) = 0.19903 ; zrgb(4,55) = 0.49803 |
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146 | zrgb(1,56) = 5.623 ; zrgb(2,56) = 0.32858 ; zrgb(3,56) = 0.20898 ; zrgb(4,56) = 0.50768 |
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147 | zrgb(1,57) = 6.310 ; zrgb(2,57) = 0.35404 ; zrgb(3,57) = 0.21971 ; zrgb(4,57) = 0.51810 |
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148 | zrgb(1,58) = 7.079 ; zrgb(2,58) = 0.38154 ; zrgb(3,58) = 0.23129 ; zrgb(4,58) = 0.52934 |
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149 | zrgb(1,59) = 7.943 ; zrgb(2,59) = 0.41125 ; zrgb(3,59) = 0.24378 ; zrgb(4,59) = 0.54147 |
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150 | zrgb(1,60) = 8.912 ; zrgb(2,60) = 0.44336 ; zrgb(3,60) = 0.25725 ; zrgb(4,60) = 0.55457 |
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151 | zrgb(1,61) = 10.000 ; zrgb(2,61) = 0.47804 ; zrgb(3,61) = 0.27178 ; zrgb(4,61) = 0.56870 |
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152 | ! |
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153 | prgb(:,:) = zrgb(2:4,:) |
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154 | ! |
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155 | r_si2 = 1.e0 / zrgb(2, 1) ! blue with the smallest chlorophyll concentration) |
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156 | IF(lwp) WRITE(numout,*) ' RGB longest depth of extinction r_si2 = ', r_si2 |
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157 | ! |
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158 | DO jc = 1, 61 ! check |
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159 | zchl = zrgb(1,jc) |
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160 | irgb = NINT( 41 + 20.* LOG10( zchl ) + 1.e-15 ) |
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161 | IF(lwp .AND. nn_print >= 1 ) WRITE(numout,*) ' jc =', jc, ' Chl = ', zchl, ' irgb = ', irgb |
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162 | IF( irgb /= jc ) THEN |
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163 | IF(lwp) WRITE(numout,*) ' jc =', jc, ' Chl = ', zchl, ' Chl class = ', irgb |
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164 | CALL ctl_stop( 'trc_oce_rgb : inconsistency in Chl tabulated attenuation coeff.' ) |
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165 | ENDIF |
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166 | END DO |
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167 | ! |
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168 | END SUBROUTINE trc_oce_rgb |
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169 | |
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170 | |
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171 | SUBROUTINE trc_oce_rgb_read( prgb ) |
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172 | !!---------------------------------------------------------------------- |
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173 | !! *** ROUTINE p4z_opt_init *** |
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174 | !! |
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175 | !! ** Purpose : Initialization of of the optical scheme |
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176 | !! |
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177 | !! ** Method : read the look up table for the optical coefficients |
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178 | !! |
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179 | !! ** input : xkrgb(61) precomputed array corresponding to the |
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180 | !! attenuation coefficient (from JM Andre) |
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181 | !!---------------------------------------------------------------------- |
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182 | REAL(wp), DIMENSION(3,61), INTENT(out) :: prgb ! tabulated attenuation coefficient |
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183 | ! |
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184 | INTEGER :: jc, jb ! dummy loop indice |
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185 | INTEGER :: irgb ! temporary integer |
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186 | REAL(wp) :: zchl ! temporary scalar |
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187 | INTEGER :: numlight |
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188 | !!---------------------------------------------------------------------- |
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189 | ! |
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190 | IF(lwp) THEN ! control print |
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191 | WRITE(numout,*) |
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192 | WRITE(numout,*) ' trc_oce_rgb_read : optical look-up table read in kRGB61.txt file' |
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193 | WRITE(numout,*) ' ~~~~~~~~~~~~~~~~' |
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194 | WRITE(numout,*) |
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195 | ENDIF |
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196 | ! |
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197 | CALL ctl_opn( numlight, 'kRGB61.txt', 'OLD', 'FORMATTED', 'SEQUENTIAL', -1, numout, lwp ) |
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198 | DO jc = 1, 61 |
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199 | READ(numlight,*) zchl, ( prgb(jb,jc), jb = 1, 3 ) |
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200 | irgb = NINT( 41 + 20.* LOG10( zchl ) + 1.e-15 ) |
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201 | IF(lwp) WRITE(numout,*) ' jc =', jc, ' Chl = ', zchl, ' irgb = ', irgb |
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202 | IF( irgb /= jc ) THEN |
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203 | IF(lwp) WRITE(numout,*) ' jc =', jc, ' Chl = ', zchl, ' Chl class = ', irgb |
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204 | CALL ctl_stop( 'trc_oce_rgb_read : inconsistency in Chl tabulated attenuation coeff.' ) |
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205 | ENDIF |
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206 | END DO |
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207 | CLOSE( numlight ) |
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208 | ! |
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209 | r_si2 = 1.e0 / prgb(1, 1) ! blue with the smallest chlorophyll concentration) |
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210 | IF(lwp) WRITE(numout,*) ' RGB longest depth of extinction r_si2 = ', r_si2 |
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211 | ! |
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212 | END SUBROUTINE trc_oce_rgb_read |
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213 | |
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214 | |
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215 | FUNCTION trc_oce_ext_lev( prldex, pqsr_frc ) RESULT( pjl ) |
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216 | !!---------------------------------------------------------------------- |
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217 | !! *** ROUTINE trc_oce_ext_lev *** |
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218 | !! |
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219 | !! ** Purpose : compute max. level for light penetration |
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220 | !! |
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221 | !! ** Method : the function provides the level at which irradiance |
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222 | !! becomes negligible (i.e. = 1.e-15 W/m2) for 3 or 2 bands light |
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223 | !! penetration: I(z) = pqsr_frc * EXP(hext/prldex) = 1.e-15 W/m2 |
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224 | !! # prldex is the longest depth of extinction: |
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225 | !! - prldex = 23 m (2 bands case) |
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226 | !! - prldex = 62 m (3 bands case: blue waveband & 0.01 mg/m2 for the chlorophyll) |
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227 | !! # pqsr_frc is the fraction of solar radiation which penetrates, |
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228 | !! considering Qsr=240 W/m2 and rn_abs = 0.58: |
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229 | !! - pqsr_frc = Qsr * (1-rn_abs) = 1.00e2 W/m2 (2 bands case) |
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230 | !! - pqsr_frc = Qsr * (1-rn_abs)/3 = 0.33e2 W/m2 (3 bands case & equi-partition) |
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231 | !! |
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232 | !!---------------------------------------------------------------------- |
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233 | REAL(wp), INTENT(in) :: prldex ! longest depth of extinction |
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234 | REAL(wp), INTENT(in) :: pqsr_frc ! frac. solar radiation which penetrates |
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235 | ! |
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236 | INTEGER :: jk, pjl ! levels |
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237 | REAL(wp) :: zhext ! deepest level till which light penetrates |
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238 | REAL(wp) :: zprec = 15._wp ! precision to reach -LOG10(1.e-15) |
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239 | REAL(wp) :: zem ! temporary scalar |
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240 | !!---------------------------------------------------------------------- |
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241 | ! |
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242 | ! It is not necessary to compute anything below the following depth |
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243 | zhext = prldex * ( LOG(10._wp) * zprec + LOG(pqsr_frc) ) |
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244 | ! |
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245 | ! Level of light extinction |
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246 | pjl = jpkm1 |
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247 | DO jk = jpkm1, 1, -1 |
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248 | IF(SUM(tmask(:,:,jk)) > 0 ) THEN |
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249 | zem = MAXVAL( gdepw_0(:,:,jk+1) * tmask(:,:,jk) ) |
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250 | IF( zem >= zhext ) pjl = jk ! last T-level reached by Qsr |
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251 | ELSE |
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252 | pjl = jk ! or regional sea-bed depth |
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253 | ENDIF |
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254 | END DO |
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255 | ! |
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256 | END FUNCTION trc_oce_ext_lev |
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257 | |
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258 | !!====================================================================== |
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259 | END MODULE trc_oce |
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