source: trunk/LMDZ.UNIVERSAL/deftank/PROTO_saturn_tropostrato/callphys.def @ 996

Last change on this file since 996 was 996, checked in by aslmd, 12 years ago

LMDZ.GIANT R.I.P. (but moved def files in LMDZ.UNIVERSAL for the record). LMDZ.GENERIC added a mode in newstart to initialize with a 1D profile. added Ls in outputs. LMDZ.UNIVERSAL added def for saturn_tropo_strato

File size: 5.5 KB
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1## Orbit / general options
2## ~~~~~~~~~~~~~~~~~~~~~~~
3# Run with or without tracer transport ?
4tracer    = .false.
5# Diurnal cycle ?  if diurnal=false, diurnally averaged solar heating
6diurnal   = .false. #.true.
7# Seasonal cycle ? if season=false, Ls stays constant, to value set in "start"
8season    = .true.
9# Tidally resonant orbit ? must have diurnal=false, correct rotation rate in newstart
10tlocked   = .false.
11# Tidal resonance ratio ? ratio T_orbit to T_rotation
12nres      = 1
13# Write some more output on the screen ?
14lwrite    = .false.
15# Save statistics in file "stats.nc" ?
16callstats = .false.
17# Test energy conservation of model physics ?
18enertest  = .false.
19# Check to see if cpp, mugaz values used match gas mixture defined in gases.def (recommended) ?
20check_cpp_match=.false.
21
22## Directory where external input files are
23## ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
24#datadir     = /san/home/spiga/DATAGENERIC
25#datadir      = /san/home/spiga/COMMON/DATAGENERIC/
26datadir     = /home/spiga/datagcm
27
28## Radiative transfer options
29## ~~~~~~~~~~~~~~~~~~~~~~~~~~
30# call radiative transfer?
31callrad    = .true.
32# the rad. transfer is computed every "iradia" physical timestep
33iradia     = 160
34# call multilayer correlated-k radiative transfer ?
35corrk      = .true.
36# Include continuum absorption in radiative transfer (note CO2 is treated separately) ?
37continuum  = .true.
38# folder in which correlated-k data is stored ?
39corrkdir   = CH4_C2H6_C2H2_Profils
40corrkdir   = CH4_C2H6_C2H2_T_70-400K
41# call visible gaseous absorption in radiative transfer ?
42callgasvis = .true.
43# Include Rayleigh scattering in the visible ?
44rayleigh   = .true.
45# Uniform absorption coefficient in radiative transfer?
46graybody     = .false.
47# Characteristic planetary equilibrium (black body) temperature
48# This is used only in the aerosol radiative transfer setup. (see aerave.F)
49tplanet    = 215.
50# Output spectral OLR in 1D/3D?
51specOLR    = .false.
52# Output global radiative balance in file 'rad_bal.out' - slow for 1D!!
53meanOLR    = .false.
54# Variable gas species: Radiatively active ?
55varactive  = .false.
56# Variable gas species: Fixed vertical distribution ?
57#   (not to be used in time integration mode)
58varfixed   = .false.
59# Variable gas species: Saturation percentage value at ground ?
60satval     = 0.0
61# Force specific heat capacity and molecular mass values
62force_cpp      = .false.
63# Specific heat capacity in J K-1 kg-1 [only used if force_cpp = T]
64cpp            = 14000.
65# Molecular mass in g mol-1 [only used if force_cpp = T]
66mugaz          = 2.14
67
68## Star type
69## ~~~~~~~~~
70startype = 1
71# ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
72# The choices are:
73#
74#       startype = 1            Sol        (G2V-class main sequence)
75#       startype = 2            Ad Leo     (M-class, synthetic)
76#       startype = 3            GJ644
77#       startype = 4            HD128167
78# ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
79# Stellar flux at 1 AU. Examples:
80# 1366.0 W m-2          Sol today
81# 1024.5 W m-2          Sol today x 0.75 = weak early Sun
82# 18.462 W m-2          The feeble Gl581
83# 19.960 W m-2          Gl581 with e=0.38 orbital average
84Fat1AU = 1366.0
85
86## Tracer and aerosol options
87## ~~~~~~~~~~~~~~~~~~~~~~~~~~
88# Gravitational sedimentation of tracers (just H2O ice for now) ?
89sedimentation = .false.
90
91## Other physics options
92## ~~~~~~~~~~~~~~~~~~~~~
93# call turbulent vertical diffusion ?
94calldifv = .true.
95# use turbdiff instead of vdifc ?
96UseTurbDiff = .true.
97# call convective adjustment ?
98calladj  = .true.
99# call thermal conduction in the soil ?
100callsoil = .false.
101# Internal heat flux (matters only if callsoil=F)
102intheat = 2.0
103# Remove lower boundary (e.g. for gas giant sims)
104nosurf = .true.
105
106#########################################################################
107## extra non-standard definitions for Earth
108#########################################################################
109 
110## Tracer and aerosol options
111## ~~~~~~~~~~~~~~~~~~~~~~~~~~
112# Radiatively active CO2 aerosol?
113aeroco2       = .false.
114# Fixed CO2 aerosol distribution?
115aerofixco2    = .false.
116# Radiatively active water aerosol?
117aeroh2o       = .false.
118# Fixed water aerosol distribution?
119aerofixh2o    = .false.
120# basic dust opacity
121dusttau       = 0.0
122# Varying H2O cloud fraction?
123CLFvarying    = .false.
124# H2O cloud fraction if fixed?
125CLFfixval     = 0.0
126# fixed radii for cloud particles?
127radfixed=.false.
128# number mixing ratio of CO2 ice particles
129Nmix_co2      = 100000.
130# number mixing ratio of water particles (for rafixed=.false.)
131Nmix_h2o      = 1.e7
132# number mixing ratio of water ice particles (for rafixed=.false.)
133Nmix_h2o_ice  = 5.e5
134# radius of H2O water particles (for rafixed=.true.):
135rad_h2o=10.e-6
136# radius of H2O ice particles (for rafixed=.true.):
137rad_h2o_ice=35.e-6
138# atm mass update due to tracer evaporation/condensation?
139mass_redistrib = .false.
140
141## Water options
142## ~~~~~~~~~~~~~
143# Model water cycle
144water         = .false.
145# Model water cloud formation
146watercond     = .false.
147# Model water precipitation (including coagulation etc.)
148waterrain     = .false.
149# Use simple precipitation scheme?
150precip_scheme=4
151# multiplicative constant in Boucher 95 precip scheme
152Cboucher=1.
153# Include hydrology ?
154hydrology     = .false.
155# H2O snow (and ice) albedo ?
156albedosnow    = 0.6
157# Maximum sea ice thickness ?
158maxicethick   = 10.
159# Freezing point of seawater (degrees C) ?
160Tsaldiff      = 0.0
161# Evolve surface water sources ?
162sourceevol    = .false.
163
164## CO2 options
165## ~~~~~~~~~~~
166# call CO2 condensation ?
167co2cond       = .false.
168# Set initial temperature profile to 1 K above CO2 condensation everywhere?
169nearco2cond   = .false.
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