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Datasets and protocols for including anomalous freshwater from melting ice sheets in climate simulations
Journal article   Open access   Peer reviewed

Datasets and protocols for including anomalous freshwater from melting ice sheets in climate simulations

Gavin A Schmidt, Kenneth D Mankoff, Jonathan L Bamber, Clara Burgard, Dustin Carroll, David M Chandler, Violaine Coulon, Benjamin J Davison, Matthew H England, Paul R Holland, …
Geoscientific Model Development, Vol.18(21), pp.8333-8361
07/11/2025
Handle:
https://hdl.handle.net/10523/48717

Abstract

Antarctic ice sheet Climate Climate models Cryosphere Fluxes Freshwater Freshwater ice Glaciation Glaciers Ice sheets Ice shelves Icebergs Inland water environment Land ice Mass balance of ice sheets Ocean circulation Oceans Sea ice Sea ice temperatures Sea level trends Sea surface temperature Simulation Surface temperature
Anomalous freshwater fluxes from the Greenland and Antarctic ice sheets and ice shelves are impacting the surrounding oceans, and we need to be able to account for these effects in climate model simulations over the historical period and in future projections. In previous phases of the Coupled Model Intercomparison Project (CMIP), models mostly either assumed that the ice sheets were in mass balance, or that discharge from the ice sheets was constant, but in neither case was the observed increasing discharge over the historical period properly represented. In this paper, we present data products of absolute and anomalous freshwater mass fluxes from both major ice sheets, and recommendations for their use in historical simulations. These fluxes can be implemented in climate simulations as a forcing for models that do not (yet) include interactive ice sheets, or used to evaluate models that do. We also make recommendations for how climatological and anomalous fluxes can be implemented in climate models that may have different approaches to interactions with the ice sheets. These forcings are available for CMIP7 simulations and should lead to more robust and coherent simulation of sea surface temperature, sea ice and regional sea level trends in the recent historical period and, as these data are extended, improve the credibility of projections.
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gmd-18-8333-20255.12 MBDownloadView
Published (Version of record) Open Access CC BY V4.0
url
https://doi.org/10.5194/gmd-18-8333-2025View
Published (Version of record) Open CC BY V4.0

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