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OA = fixed
OAV = interactive
Modern
Modern
Pre-industrial concentrations (around 1750)
CO2 = 280 ppm
CH4 = 760 ppb
N20 = 270 ppb
CFC = 0
03 = Modern - 10 DU
Solar constant = 1365 W m-2
Eccentricity = 0.016724
Obliquity = 23.446 °
Angular precession = 102.04 °
Modern
Initialize 3-D ocean temperature and salinity from the Levitus 1998 datasets
Each group has its own spinup methodology, which we ask they document.
The model should be run long enough for any trends to be small, and the control run should be at least as long as any anomaly integrations.
OA = Same as control run
OAV = interactive
Same as control run
Same as control run
CO2 = 280 ppm
CH4 = 650 ppb
N20 = 270 ppb
CFC = 0
03 = Same as control run
Solar constant = 1365 W m-2 (Same as control run)
Eccentricity = 0.018682
Obliquity = 24.105 °
Angular precession = 0.87 °
Initialize 3-D ocean temperature and salinity either from the Levitus 1998 datasets or from year 100 of the control run
Same as control run
OA = Same as control run
OAV = interactive
ICE-5G v1.1
From ICE-5G v1.1 data set
CO2 = 185 ppm
CH4 = 350 ppb
N20 = 200 ppb
CFC = 0
03 = Same as control run
Modified according to a river pathway map
Same as control run, or add excess LGM freshwater
Solar constant = 1365 W m-2 (Same as control run)
Eccentricity = 0.018994
Obliquity = 22.949 °
Angular precession = 114.42 °
Mean ocean salinity = Same as control run
but see model spinup below
If initializing from modern conditions (Option 1):
For both Options 1 and 2:
Run the OAGCM (initialized from either the end of Option 1, or from the cold state of an existing LGM simulation) for long enough for any trends to be small.
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