| [3308] | 1 | #------------------------------------# |
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| 2 | # Run control parameters for the PEM # |
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| 3 | #------------------------------------# |
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| [2963] | 4 | |
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| [3308] | 5 | #---------- Planet type ----------# |
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| 6 | planet_type=mars |
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| 7 | |
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| [3082] | 8 | #---------- Output parameters ----------# |
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| [3989] | 9 | # Output rate? Default = 1 |
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| 10 | output_rate=1 |
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| [3082] | 11 | |
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| [3038] | 12 | #---------- Orbital parameters ----------# |
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| 13 | # Do you want to follow an orbital forcing read in "obl_ecc_lsp.asc"? Default = .false. |
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| [3989] | 14 | # evol_orbit=.false. |
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| [2963] | 15 | |
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| [3989] | 16 | # If evol_orbit=.true., number of Earth years before present to start the PEM run. Default = 0 |
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| [4065] | 17 | # pem_ini_earth_date=0 |
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| [2963] | 18 | |
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| [4074] | 19 | # Do you want the obliquity to evolve when following "obl_ecc_lsp.asc"? Default = .true. |
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| [4065] | 20 | # evol_obl=.true. |
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| [2963] | 21 | |
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| [4065] | 22 | # Do you want the eccentricity to evolve when following "obl_ecc_lsp.asc"? Default = .true. |
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| 23 | # evol_ecc=.true. |
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| [2963] | 24 | |
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| [4065] | 25 | # Do you want the ls perihelie to evolve when following "obl_ecc_lsp.asc"? Default = .true. |
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| 26 | # evol_lsp=.true. |
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| [2963] | 27 | |
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| [3791] | 28 | # Time step length of the PEM in Martian years? Default = 1. |
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| 29 | # dt=1 |
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| 30 | |
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| [3038] | 31 | #---------- Stopping criteria parameters ----------# |
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| [3989] | 32 | # If evol_orbit=.false., maximal number of iterations if no stopping criterion is reached. Default=100000000. |
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| [4065] | 33 | # nmax_yr_run=100000000 |
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| [2963] | 34 | |
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| [3821] | 35 | # Acceptance rate of sublimating H2O ice surface change. Default = 0.2 |
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| [3989] | 36 | # h2oice_crit=0.2 |
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| [2963] | 37 | |
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| [3821] | 38 | # Acceptance rate of sublimating CO2 ice surface change. Default = 0.2 |
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| [3989] | 39 | # co2ice_crit=0.2 |
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| [2963] | 40 | |
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| [3821] | 41 | # Acceptance rate of pressure surface change. Default = 0.15 |
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| [3989] | 42 | # ps_crit = 0.15 |
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| [2963] | 43 | |
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| [3821] | 44 | # Acceptance of change for obliquity. Default = 1. |
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| [3791] | 45 | # max_change_obl=1. |
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| [2963] | 46 | |
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| [3791] | 47 | # Acceptance of change for eccentricity? Default = 5.e-3 |
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| 48 | # max_change_ecc=5.e-3 |
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| 49 | |
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| 50 | # Acceptance of change for Lsp? Default = 20. |
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| 51 | # max_change_lsp=20. |
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| 52 | |
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| [3038] | 53 | #---------- Subsurface parameters ----------# |
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| 54 | # Do you want to run with subsurface physical processes in the PEM? Default = .true. |
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| [3989] | 55 | # do_soil=.true. |
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| [2963] | 56 | |
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| [3989] | 57 | # Do you want to run with adsorption/desorption in the PEM? Default = .false. |
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| [4074] | 58 | # do_sorption=.false. |
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| [2963] | 59 | |
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| [3038] | 60 | # Do you want to modify the soil thermal properties with the pressure? Default = .false. |
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| 61 | # reg_thprop_dependp=.false. |
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| [2963] | 62 | |
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| [3821] | 63 | # Value of the geothermal flux. Default = 0. |
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| [4065] | 64 | # flux_geo=0. |
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| [2963] | 65 | |
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| [3821] | 66 | # Depth at which the breccia layer begins. Default = 10 m |
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| [3038] | 67 | # depth_breccia=10. |
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| [2963] | 68 | |
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| [3821] | 69 | # Depth at which the bedrock layer begins. Default = 1000 m |
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| [3038] | 70 | # depth_bedrock=1000. |
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| [2963] | 71 | |
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| [3038] | 72 | # Is the ice table computed at equilibrium? Default = .true. |
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| [3840] | 73 | # icetable_equilibrium=.true. |
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| [2963] | 74 | |
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| [3038] | 75 | # Is the ice table computed with the dynamic method? Default = .false. |
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| 76 | # icetable_dynamic=.false. |
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| [2963] | 77 | |
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| [3159] | 78 | #---------- Ice management parameters ----------# |
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| [3989] | 79 | # Amount of H2O ice to initialize the huge reservoir if the variable is not present in "startpem.nc". Default = 9200. kg.m-2 (= 10 m) |
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| 80 | # h2oice_huge_ini=9200. |
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| [3136] | 81 | |
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| [3821] | 82 | # Threshold to consider the amount of H2O ice as an infinite reservoir. Default = 460. kg.m-2 (= 0.5 m) |
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| [4065] | 83 | # threshold_h2oice_cap=460. |
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| [3159] | 84 | |
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| [3161] | 85 | # Do you want the H2O ice to flow along subslope inside a cell? Default = .true. |
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| 86 | # h2oice_flow=.true. |
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| 87 | |
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| 88 | # Do you want the CO2 ice to flow along subslope inside a cell? Default = .true. |
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| [3840] | 89 | # co2ice_flow=.true. |
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| [3161] | 90 | |
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| [3320] | 91 | #---------- Layering parameters ----------# |
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| [3319] | 92 | # Do you want to run with the layering algorithm? Default = .false. |
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| [4065] | 93 | # do_layering=.false. |
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| [3821] | 94 | |
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| [3926] | 95 | # Value of the dust tendency. Default = 5.78e-2 kg.m-2.y-1 |
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| 96 | # d_dust=5.78e-2 |
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| [3821] | 97 | |
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| 98 | # Do you want to impose a dust-to-ice ratio instead of a dust tendency? Default = .false. |
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| [3840] | 99 | # impose_dust_ratio=.false. |
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| [3821] | 100 | |
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| [3926] | 101 | # If impose_dust_ratio=.true., value of the dust-to-ice ratio. Default = 0.1 |
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| 102 | # dust2ice_ratio=0.1 |
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| [3319] | 103 | |
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| [4074] | 104 | # Some definitions for the physics in file "run_pcm.def" |
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| 105 | INCLUDEDEF=run_pcm.def |
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