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CESM3-SP test (b.e23_alpha16b BLT1850 ne30_t232 034SP) #6

@wwieder

Description

@wwieder

Description:
Same as b.e23_alpha16b.BLT1850.ne30_t232.034 (cloned) but with CLM satellite phenology (SP) instead of BGC.
Purpose is to see if increased vegetation at high northern latitudes can lower albedo in spring/early summer and cause earlier melt-out of the snowpack, and warm up the simulation at these latitudes.


Case directory:
Locally:
/glade/work/oleson/cesm2_3_alpha16b_runs/b.e23_alpha16b.BLT1850.ne30_t232.034SP


Sandbox:
Locally:
/glade/work/hannay/cesm_tags/cesm2_3_alpha16b


user_nl_ changes:
use_init_interp = .true.
fsurdat = '/glade/work/slevis/git/mksurfdata_toolchain/tools/mksurfdata_esmf/surfdata_ne30np4.pg3_SSP5-8.5_78pfts_CMIP6_1850-2100_c230227.nc'
finidat='/glade/p/cgd/tss/people/oleson/CLM5_restarts/ctsm51_cesm23a14a_ne30pg3ne30pg3mg17_CPLHIST_1850pAD.clm2.r.0561-01-01-00000.nc'


SourceMods:
src.clm/clm_varpar.F90: nlevurb=5 -> nlevurb=10
src.clm/surfrdMod.F90: Remove read of PFTDATA_MASK


Diagnostics:
Diags (if available)

Here


Output:
Output:
/glade/campaign/cgd/tss/common/Coupled_Simulations/CTSM52_DEV/b.e23_alpha16b.BLT1850.ne30_t232.034SP


Contacts:
@olyson


Extra details:
See discussion in #3
Complete

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