[976] | 1 | #---------------------------------# |
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| 2 | # Run parameters for the 1D model # |
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| 3 | #---------------------------------# |
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| 4 | |
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| 5 | ## Planetary constants |
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| 6 | ## ~~~~~~~~~~~~~~~~~~~~~~~ |
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| 7 | ## NB: those are mandatory |
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| 8 | ## ~~~~~~~~~~~~~~~~~~~~~~~ |
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| 9 | ## LENGTH OF A DAY in s |
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| 10 | #daysec = 38362. # Voyager System III |
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| 11 | #daysec = 38640. # Cassini System IIIa |
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| 12 | daysec = 38052. # Read System IIIw |
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| 13 | ## GRAVITY in m s-2 |
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| 14 | g = 10.44 |
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| 15 | ## LENGTH OF A YEAR in days |
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| 16 | #year_day = 24232. # Voyager System III |
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| 17 | #year_day = 24058. # Cassini System IIIa |
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| 18 | year_day = 24430. # Read System IIIw |
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| 19 | ## MIN DIST STAR-PLANET in AU [periastron] |
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[995] | 20 | periastr = 9.02152 |
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[976] | 21 | ## MAX DIST STAR-PLANET in AU [apoastron] |
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[995] | 22 | apoastr = 10.05448 |
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[976] | 23 | ## DATE OF PERIASTRON in days |
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[995] | 24 | peri_day = 19280. |
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[976] | 25 | ## OBLIQUITY in deg |
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| 26 | obliquit = 26.73 |
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| 27 | ## SURFACE PRESSURE in Pa |
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| 28 | psurf = 1.e6 |
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| 29 | |
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[995] | 30 | |
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[976] | 31 | ## Time integration parameters |
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| 32 | ## ~~~~~~~~~~~~~~~~~~~~~~~~~~~ |
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| 33 | # Initial date (in solar days,=0 at Ls=0) |
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| 34 | day0 = 0 |
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| 35 | # Initial local time (in hours, between 0 and 24) |
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| 36 | time = 12 |
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| 37 | # Number of time steps per sol |
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| 38 | day_step = 1 |
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| 39 | # Number of sols to run |
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[995] | 40 | ndt = 342020 |
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[976] | 41 | # Number of steps between each writing in diagfi |
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| 42 | ecritphy=5000 |
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| 43 | |
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| 44 | |
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| 45 | ## Vertical levels |
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| 46 | ## ~~~~~~~~~~~~~~~ |
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| 47 | # hybrid vertical coordinate ? (.true. for hybrid and .false. for sigma levels) |
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| 48 | hybrid = .false. |
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| 49 | # autocompute vertical discretisation? (useful for exoplanet runs) |
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| 50 | autozlevs = .true. |
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| 51 | autozlevs = .false. |
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| 52 | # Ceiling pressure (Pa) ? (only used if autozlevs = .true.) |
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| 53 | pceil = 10. |
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| 54 | |
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| 55 | ## Thermal properties |
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| 56 | ## ~~~~~~~~~~~~~~~~~~ |
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| 57 | # Simulate global averaged conditions ? |
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| 58 | global1d = .true. |
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| 59 | # Latitude (deg) [only used if global1d = F] |
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| 60 | latitude = 0.0 |
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| 61 | # Solar Zenith angle (deg) [only used if global1d = T] |
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| 62 | szangle = 45. |
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| 63 | # Albedo of bare ground |
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| 64 | albedo = 0.0 |
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| 65 | # Emissivity of bare ground |
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| 66 | emis = 1.0 |
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| 67 | # Soil thermal inertia (SI) |
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| 68 | inertia = 0.001 |
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| 69 | # Initial CO2 ice on the surface (kg.m-2) |
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| 70 | co2ice = 0. |
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| 71 | |
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| 72 | ## Wind profile |
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| 73 | ## ~~~~~~~~~~~~ |
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| 74 | ## zonal eastward component of the geostrophic wind (m/s) |
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| 75 | u = 0. |
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| 76 | # meridional northward component of the geostrophic wind (m/s) |
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| 77 | v = 0. |
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| 78 | |
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| 79 | ## Initial atmospheric temperature profile |
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| 80 | ## ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ |
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| 81 | # |
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| 82 | # Type of initial temperature profile |
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| 83 | # ichoice=1 Constant Temperature: T=tref |
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| 84 | # [Mars] ichoice=2 Savidjari profile (as Seiff but with dT/dz=cte) |
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| 85 | # [Mars] ichoice=3 Lindner (polar profile) |
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| 86 | # [Mars] ichoice=4 inversion |
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| 87 | # [Mars] ichoice=5 Seiff (standard profile, based on Viking entry) |
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| 88 | # ichoice=6 constant T + gaussian perturbation (levels) |
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| 89 | # ichoice=7 constant T + gaussian perturbation (km) |
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| 90 | # ichoice=8 Read in an ascii file "profile" |
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| 91 | ichoice = 1 |
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| 92 | # Reference temperature tref (K) |
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| 93 | tref = 200. |
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| 94 | # Add a perturbation to profile if isin=1 |
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| 95 | isin = 0 |
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| 96 | # peak of gaussian perturbation (for ichoice=6 or 7) |
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| 97 | pic = 26.522 |
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| 98 | # width of the gaussian perturbation (for ichoice=6 or 7) |
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| 99 | largeur = 10 |
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| 100 | # height of the gaussian perturbation (for ichoice=6 or 7) |
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| 101 | hauteur = 30. |
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| 102 | |
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