Registration of synchronously coupled transient simulation of MIS3 with interactive ice sheets and solid earth dynamics
"institution_id":"MPI-M", "source_id":"MPI-ESM1.2-CR-mPISM-VILMA", "source":"MPI-ESM1.2-CR: aerosol: none, prescribed Kinne\n atmos: ECHAM6.3 (spectral T31; 96 x 48 longitude/latitude; 31 levels; top level 10 hPa)\n atmosChem: none\n land: JSBACH3.20\n landIce: mPISM 0.7 (10 km x 10 km (NH), 15 km x 15 km (SH), 121 levels)\n ocean: MPIOM1.63 (bipolar GR3.0, approximately 3.0deg; 122 x 101 longitude/latitude; 40 levels; top grid cell 0-15 m)\n ocnBgchem: none\n seaIce: unnamed (thermodynamic (Semtner zero-layer) dynamic (Hibler 79) sea ice model)\n solidLand: VILMA-1D" },
The data are from a synchronously coupled model simulation, starting at marine isotope stage 3 until preindustrial conditions with the MPI-ESM1.2-CR-mPISM-VILMA setup, hence, including interactive ice sheets and solid earth components. The setup is the same as in the test dataset submitted in issue #6 (closed) (#6 (closed)). The model version is the same as pmo0016.
"experiment_id":{ "transient_mis3_interactive_r1i1p1f1-CR":{ "activity_id":[ "PalMod2" ], "experiment":"synchronously coupled transient simulation of marine isotope stage 3 (MIS3) with interactive ice sheets and solid earth","experiment_family":"All, paleo", "required_model_components":[ "AOGCM", "ISM",”VILMA” ]}
Additional metadata that should be added is a link and description of the 1D Earth Structure (from visko.inp), as it is used as a boundary condition for the simulation (VILMA). To be discussed how to best implement it in the metadata.
Variables to cmorize correspond to all variables in #6 (closed), #5 (closed), as well as the first batch of the latter experiments (#5 (closed)) that was communicated over email previous to the communication over git. Additional variables to cmorize are the relative sea level RSL (
Experiment information:
- Experiment name: pmo0029a-pmo0029d
- Path on HPC: /arch/ba0989/k203124/mpi-esm/pmo0029*
- Reference period: 49,000-26,000 years BP
Experimental times: Pmo0029a: model year 2000 = 49000 years BP Pmo0029b: model year 2000 = 42000 years BP Pmo0029c: model year 2000 = 35000 years BP Pmo0029d: model year 2000 = 28000 years BP
Note! The data should not be uploaded to ESGF without permission.