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RE: Data analysis ยป BotsV1.in

Khumo Monaka, 2019-04-12 15:40

 
!Southern Africa
&dimparam
iy = 85,
jx = 115,
kz = 18,
nsg = 1,
/
&geoparam
iproj = 'NORMER',
ds = 60.0,
ptop = 5.0,
clat = -24,
clon = 35,
plat = 45.39,
plon = 13.48,
truelatl = 30.0,
truelath = 60.0,
i_band = 0,
/
&terrainparam
domname = 'Southern_Africa',
lakedpth = .false.,
fudge_lnd = .false.,
fudge_lnd_s = .false.,
fudge_tex = .false.,
fudge_tex_s = .false.,
dirter = 'input',
inpter = '/home/regcm/RegCM-4.6.1/data',
/
&debugparam
debug_level = 1,
dbgfrq = 3,
/
&boundaryparam
nspgx = 12,
nspgd = 12,
/
&globdatparam
ibdyfrq = 6,
ssttyp = 'OI_WK',
dattyp = 'EIN75',
gdate1 = 2015070100,
gdate2 = 2016063000
dirglob = 'input',
inpglob = '/home/regcm/RegCM-4.6.1/data',
/
&globwindow
lat0 = 0.0
lat1 = 0.0
lon0 = 0.0
lon1 = 0.0
/
&restartparam
ifrest = .false. ,
mdate0 = 2015070100,
mdate1 = 2015070100,
mdate2 = 2016060100,
/
&timeparam
dtrad = 30.,
dtabem = 18.,
dtsrf = 600.,
dt = 120.,
/
&outparam
ifsave = .true. ,
savfrq = 0.,
ifatm = .true. ,
atmfrq = 6.,
ifrad = .true. ,
radfrq = 6.,
ifsrf = .true. ,
ifsub = .true. ,
srffrq = 3.,
ifchem = .false.,
chemfrq = 6.,
dirout = 'output/',
/
&physicsparam
iboudy = 5,
ibltyp = 1,
icup_lnd = 2,
icup_ocn = 2,
ipptls = 1,
iocnflx = 2,
ipgf = 0,
iemiss = 0,
lakemod = 0,
ichem = 0,
scenario = 'A1B',
idcsst = 0,
iseaice = 0,
idesseas = 0,
iconvlwp = 0,
/
&subexparam
qck1land = .250E-03,
qck1oce = .250E-03,
cevaplnd = .100E-02,
caccrlnd = 3.000,
cftotmax = 0.75,
/
&grellparam
igcc = 2, ! Cumulus closure scheme
! 1 => Arakawa & Schubert (1974)
! 2 => Fritsch & Chappell (1980)
gcr0 = 0.0020, ! Conversion rate from cloud to rain
edtmin = 0.20, ! Minimum Precipitation Efficiency land
edtmin_ocn = 0.20, ! Minimum Precipitation Efficiency ocean
edtmax = 0.80, ! Maximum Precipitation Efficiency land
edtmax_ocn = 0.80, ! Maximum Precipitation Efficiency ocean
edtmino = 0.20, ! Minimum Tendency Efficiency (o var) land
edtmino_ocn = 0.20, ! Minimum Tendency Efficiency (o var) ocean
edtmaxo = 0.80, ! Maximum Tendency Efficiency (o var) land
edtmaxo_ocn = 0.80, ! Maximum Tendency Efficiency (o var) ocean
edtminx = 0.20, ! Minimum Tendency Efficiency (x var) land
edtminx_ocn = 0.20, ! Minimum Tendency Efficiency (x var) ocean
edtmaxx = 0.80, ! Maximum Tendency Efficiency (x var) land
edtmaxx_ocn = 0.80, ! Maximum Tendency Efficiency (x var) ocean
shrmin = 0.30, ! Minimum Shear effect on precip eff. land
shrmin_ocn = 0.30, ! Minimum Shear effect on precip eff. ocean
shrmax = 0.90, ! Maximum Shear effect on precip eff. land
shrmax_ocn = 0.90, ! Maximum Shear effect on precip eff. ocean
pbcmax = 50.0, ! Max depth (mb) of stable layer b/twn LCL & LFC
mincld = 150.0, ! Min cloud depth (mb).
htmin = -250.0, ! Min convective heating
htmax = 500.0, ! Max convective heating
skbmax = 0.4, ! Max cloud base height in sigma
dtauc = 30.0D0 ! Fritsch & Chappell (1980) ABE Removal Timescale (min)
/
&holtslagparam
/
&clm_inparm
fpftcon = 'pft-physiology.c130503.nc',
fsnowoptics = 'snicar_optics_5bnd_c090915.nc',
fsnowaging = 'snicar_drdt_bst_fit_60_c070416.nc',
/
&clm_soilhydrology_inparm
/
&clm_hydrology1_inparm
/
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