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      An Efficient Ice Sheet/Earth System Model Spin‐up Procedure for CESM2‐CISM2: Description, Evaluation, and Broader Applicability

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          Abstract

          Spinning up a highly complex, coupled Earth system model (ESM) is a time consuming and computationally demanding exercise. For models with interactive ice sheet components, this becomes a major challenge, as ice sheets are sensitive to bidirectional feedback processes and equilibrate over glacial timescales of up to many millennia. This work describes and demonstrates a computationally tractable, iterative procedure for spinning up a contemporary, highly complex ESM that includes an interactive ice sheet component. The procedure alternates between a computationally expensive coupled configuration and a computationally cheaper configuration where the atmospheric component is replaced by a data model. By periodically regenerating atmospheric forcing consistent with the coupled system, the data atmosphere remains adequately constrained to ensure that the broader model state evolves realistically. The applicability of the method is demonstrated by spinning up the preindustrial climate in the Community Earth System Model Version 2 (CESM2), coupled to the Community Ice Sheet Model Version 2 (CISM2) over Greenland. The equilibrium climate state is similar to the control climate from a coupled simulation with a prescribed Greenland ice sheet, indicating that the iterative procedure is consistent with a traditional spin‐up approach without interactive ice sheets. These results suggest that the iterative method presented here provides a faster and computationally cheaper method for spinning up a highly complex ESM, with or without interactive ice sheet components. The method described here has been used to develop the climate/ice sheet initial conditions for transient, ice sheet‐enabled simulations with CESM2‐CISM2 in the Coupled Model Intercomparison Project Phase 6 (CMIP6).

          Key Points

          • We describe a computationally tractable, iterative procedure for spinning up a coupled Earth system‐ice sheet model

          • Equilibrium state from the iterative procedure is similar to a more expensive traditional model spin‐up with prescribed ice sheets

          • The procedure is used for developing initial conditions for transient, fully coupled simulations in the Coupled Model Intercomparison Project phase 6

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          Bedmap2: improved ice bed, surface and thickness datasets for Antarctica

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            Changes in the velocity structure of the Greenland Ice Sheet.

            Using satellite radar interferometry observations of Greenland, we detected widespread glacier acceleration below 66 degrees north between 1996 and 2000, which rapidly expanded to 70 degrees north in 2005. Accelerated ice discharge in the west and particularly in the east doubled the ice sheet mass deficit in the last decade from 90 to 220 cubic kilometers per year. As more glaciers accelerate farther north, the contribution of Greenland to sea-level rise will continue to increase.
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              The Arctic Amplification Debate

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                Author and article information

                Contributors
                lofverstrom@arizona.edu
                Journal
                J Adv Model Earth Syst
                J Adv Model Earth Syst
                10.1002/(ISSN)1942-2466
                JAME
                Journal of Advances in Modeling Earth Systems
                John Wiley and Sons Inc. (Hoboken )
                1942-2466
                22 August 2020
                August 2020
                : 12
                : 8 ( doiID: 10.1002/jame.v12.8 )
                : e2019MS001984
                Affiliations
                [ 1 ] Department of Geosciences University of Arizona Tucson AZ USA
                [ 2 ] Climate and Global Dynamics Laboratory National Center for Atmospheric Research Boulder CO USA
                [ 3 ] Associated Engineering Group Ltd. Calgary Alberta Canada
                [ 4 ] Department of Atmospheric and Oceanic Sciences University of Colorado Boulder Boulder CO USA
                [ 5 ] Department of Geoscience and Remote Sensing Delft University of Technology Delft Netherlands
                [ 6 ] Department of Geography University of Sheffield Sheffield UK
                Author notes
                [*] [* ] Correspondence to:

                M. Lofverstrom,

                lofverstrom@ 123456arizona.edu

                Author information
                https://orcid.org/0000-0002-8016-865X
                https://orcid.org/0000-0002-4522-3019
                https://orcid.org/0000-0002-1501-8444
                https://orcid.org/0000-0002-1969-5899
                https://orcid.org/0000-0002-9553-7104
                https://orcid.org/0000-0003-2902-5263
                https://orcid.org/0000-0002-7100-3730
                https://orcid.org/0000-0003-1911-1598
                https://orcid.org/0000-0003-3740-5696
                Article
                JAME21192 10.1029/2019MS001984
                10.1029/2019MS001984
                7507768
                df6ebe83-560c-49c1-a11e-8b6e004fc2dc
                ©2020. The Authors.

                This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.

                History
                : 06 December 2019
                : 02 July 2020
                : 17 July 2020
                Page count
                Figures: 7, Tables: 4, Pages: 23, Words: 11636
                Funding
                Funded by: University of Arizona (UA) , open-funder-registry 10.13039/100007899;
                Funded by: National Science Foundation , open-funder-registry 10.13039/100000001;
                Award ID: 1852977
                Funded by: European Research Council , open-funder-registry 10.13039/100010663;
                Award ID: ERC‐StG‐678145‐CoupledIceClim
                Categories
                Community Earth System Model version 2 (CESM2) Special Collection
                Biogeosciences
                Climate Dynamics
                Cryosphere
                Mass Balance
                Modeling
                Geodesy and Gravity
                Mass Balance
                Ocean/Earth/atmosphere/hydrosphere/cryosphere interactions
                Global Change from Geodesy
                Global Change
                Climate Dynamics
                Earth System Modeling
                Informatics
                Modeling
                Atmospheric Processes
                Climatology
                General Circulation
                Natural Hazards
                Physical Modeling
                Oceanography: Physical
                Ocean influence of Earth rotation
                Research Article
                Research Articles
                Custom metadata
                2.0
                August 2020
                Converter:WILEY_ML3GV2_TO_JATSPMC version:5.9.1 mode:remove_FC converted:22.09.2020

                community earth system model version 2 (cesm2),coupled ice‐sheet/earth system modeling,interactive ice sheets,spin‐up simulation

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