[1102] | 1 | # |
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| 2 | ## $Header: /home/ioipsl/CVSROOT/IPSLCM4_v1/EXP00/physiq.def,v 1.1.2.3 |
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| 3 | 2004/01/23 16:45:45 adm Exp $ |
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| 4 | # |
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| 5 | # |
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| 6 | # Automatically generated make config: don t edit |
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| 7 | # |
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[1101] | 8 | type_ocean=force |
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[1102] | 9 | # avec ou sans orchidee |
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[1101] | 10 | VEGET=n |
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[1102] | 11 | #type_run = AMIP, ENSP, clim |
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| 12 | type_run=AMIP |
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[524] | 13 | # |
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[1102] | 14 | # Controle des sorties |
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| 15 | # sorties moyennees tous les jours dans histday.nc |
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[1101] | 16 | OK_journe=y |
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[1102] | 17 | # sorties moyennees tous les mois dans histmth.nc |
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[524] | 18 | OK_mensuel=y |
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[1102] | 19 | # sorties moyennees toutes les 6 ou bien 3h dans histhf.nc |
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| 20 | ok_hf=n |
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| 21 | # sorties moyennees tous les pas de temps de la physique dans histins.nc |
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[524] | 22 | OK_instan=n |
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[1101] | 23 | # |
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[1102] | 24 | ecrit_mth=30. |
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[1101] | 25 | ecrit_day=1. |
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[1102] | 26 | ecrit_hf=0.25 |
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[524] | 27 | # |
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[1102] | 28 | #niveau de sortie "hf" lev_histhf |
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| 29 | lev_histhf=4 |
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| 30 | #niveau de sortie "day" lev_histday |
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| 31 | lev_histday=5 |
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| 32 | #niveau de sortie "mth" lev_histmth |
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| 33 | lev_histmth=4 |
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| 34 | |
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[524] | 35 | # parametres KE |
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[1102] | 36 | if_ebil=0 |
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[524] | 37 | epmax = .99 |
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| 38 | ok_adj_ema = n |
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| 39 | iflag_clw = 1 |
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| 40 | # |
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| 41 | # parametres nuages |
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[1101] | 42 | cld_lc_lsc = 2.6e-4 |
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| 43 | cld_lc_con = 2.6e-4 |
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[524] | 44 | cld_tau_lsc = 3600. |
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| 45 | cld_tau_con = 3600. |
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| 46 | ffallv_lsc = 1. |
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| 47 | ffallv_con = 1. |
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[1101] | 48 | coef_eva = 2.e-5 |
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[524] | 49 | reevap_ice = y |
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| 50 | iflag_cldcon = 3 |
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| 51 | iflag_pdf = 1 |
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| 52 | fact_cldcon = 1. |
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[1101] | 53 | facttemps = 1.e-4 |
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[524] | 54 | ok_newmicro = y |
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[1102] | 55 | iflag_ratqs=0 |
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[524] | 56 | ratqsbas = 0.005 |
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| 57 | ratqshaut = 0.33 |
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| 58 | rad_froid = 35 |
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| 59 | rad_chau1=12 |
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| 60 | rad_chau2=11 |
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[1101] | 61 | ksta_ter=1.e-7 |
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[1102] | 62 | ksta=1.e-10 |
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| 63 | #ok_kzmin : calcul Kzmin dans la CL de surface |
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| 64 | ok_kzmin=y |
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[524] | 65 | # |
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[1102] | 66 | # parametres climatique |
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[524] | 67 | R_ecc = 0.016715 |
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| 68 | R_peri = 102.7 |
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| 69 | R_incl = 23.441 |
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| 70 | solaire = 1365. |
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| 71 | co2_ppm = 348. |
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[1102] | 72 | #RCO2 = co2_ppm * 1.0e-06 * 44.011/28.97 |
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| 73 | #RCO2 = 348. * 1.0e-06 * 44.011/28.97 |
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| 74 | #RCO2 = 5.286789092164308E-04 |
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| 75 | #RCO2 = 425.43e-06 |
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[524] | 76 | CH4_ppb = 1650. |
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[1102] | 77 | #RCH4 = 1.65E-06* 16.043/28.97 |
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| 78 | #RCH4 = 9.137366240938903E-07 |
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[524] | 79 | N2O_ppb = 306. |
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[1102] | 80 | #RN2O = 306.E-09* 44.013/28.97 |
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| 81 | #RN2O = 4.648939592682085E-07 |
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[524] | 82 | CFC11_ppt = 280. |
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[1102] | 83 | #RCFC11 = 280.E-12* 137.3686/28.97 |
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| 84 | #RCFC11 = 1.327690990680013E-09 |
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[524] | 85 | CFC12_ppt = 484. |
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[1102] | 86 | #RCFC12 = 484.E-12* 120.9140/28.97 |
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| 87 | #RCFC12 = 2.020102726958923E-09 |
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[524] | 88 | # |
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[1102] | 89 | # effets direct et indirect des aerosols |
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[1101] | 90 | ok_ade=n |
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| 91 | ok_aie=n |
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| 92 | bl95_b0=1.7 |
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| 93 | bl95_b1=0.2 |
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| 94 | # |
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[1102] | 95 | # parametres simulateur ISCCP |
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| 96 | #ok_isccp : y/n avec/sans simulateur ISCCP |
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[1101] | 97 | ok_isccp=n |
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[1102] | 98 | #top_height = 1 ou 3 |
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[1101] | 99 | top_height = 1 |
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[1102] | 100 | #overlap = 1, 2 ou 3 |
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[524] | 101 | overlap = 3 |
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[1102] | 102 | #cdmmax |
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| 103 | cdmmax = 2.5E-3 |
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| 104 | #cdhmax |
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| 105 | cdhmax = 2.0E-3 |
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| 106 | # |
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| 107 | #ok_regdyn : y/n calcul/non des regymes dynamiques sur regions pre-definies |
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| 108 | ok_regdyn=y |
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| 109 | # |
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| 110 | # Flag pour la convection (1 pour LMD, 2 pour Tiedtke, 3 KE nouvelle physique, 30 KE IPCC) |
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| 111 | iflag_con=30 |
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| 112 | # |
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| 113 | # activation thermiques wake, ... |
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| 114 | iflag_thermals = 0 |
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| 115 | nsplit_thermals =1 |
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| 116 | tau_thermals=1800. |
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| 117 | iflag_pbl = 1 |
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| 118 | iflag_coupl=0 |
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| 119 | iflag_wake=0 |
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| 120 | iflag_clos=0 |
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| 121 | iflag_mix=1 |
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| 122 | qqa1=0. |
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| 123 | qqa2=1. |
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