MPI/UW ESM emissions B1_1 ECHAM3(T21)/LSG2/HAMMOCC3/LPJ/SICOPOLIS

Mikolajewicz, Uwe

Experiment
Summary
Simulation of long-term anthropogenic climate change with the MPI/UW earth system model. The model was driven with emissions corresponding to the SRES B1 scenario with an exponential decay with a time-constant of 150 years after 2100. This simulation has been performed within the DEKLIM-CLIMCYC project.
The MPI/UW earthsystem model is build up by the coupled atmosphere (ECHAM3.6, T21)- ocean (LSG2, 64x64) - vegetation (LPJ) - marine biogeochemistry (HAMOCC 3) and interactive ice sheet (SICOPOLIS) models. The latter two models encompass the complete carbon cycle permitting a predictive atmospheric pCO2 simulation.
The simulation was run on a NEC-SX6 (hurrikan).
A synchronous coupling scheme was applied.
Project
CMS_MPI (Climate Model Simulations at MPI)
Location(s)
World
Spatial Coverage
Longitude 0 to 360 Latitude -90 to 90 Altitude: 1013.25 hPa to 10 hPa
Temporal Coverage
1751-01-01 to 5000-12-30 (periodically synchronous coupling)
Use constraints
For scientific use only
Data Catalog
World Data Center for Climate
Size
425.24 MiB (445891542 Byte)
Format
GRIB, ascii
Status
completely archived
Creation Date
Cite as
Mikolajewicz, Uwe (2007). MPI/UW ESM emissions B1_1 ECHAM3(T21)/LSG2/HAMMOCC3/LPJ/SICOPOLIS. World Data Center for Climate (WDCC) at DKRZ. http://cera-www.dkrz.de/WDCC/ui/Compact.jsp?acronym=MPIUW_ESM_ATM_B1_1

BibTeX RIS
[Entry acronym: MPIUW_ESM_ATM_B1_1] [Entry id: 2141914]
Description
model data
Fortran 90 version
NEC SX-6 (hurrikan.dkrz.de)
Description
spatially complete; complet in time domain
Description
exact
Contact typePersonORCIDInstitute
Investigator Dr. Uwe Mikolajewicz-Max-Planck-Institut fuer Meteorologie
Originator Dr. Uwe Mikolajewicz-Max-Planck-Institut fuer Meteorologie

Cites

[1] DOI Mikolajewicz, Uwe; Gröger, Matthias; Maier-Reimer, Ernst; Schurgers, Guy; Vizcaíno, Miren; Winguth, Arne M. E. (2007). Long-term effects of anthropogenic CO2 emissions simulated with a complex earth system model. doi:10.1007/s00382-006-0204-y

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