Anomalous Meltwater From Ice Sheets and Ice Shelves Is a Historical Forcing

Author:

Schmidt Gavin. A.1ORCID,Romanou Anastasia1ORCID,Roach Lettie A.12ORCID,Mankoff Kenneth D.13ORCID,Li Qian4,Rye Craig D.12ORCID,Kelley Maxwell1,Marshall John C.4ORCID,Busecke Julius J. M.5ORCID

Affiliation:

1. NASA Goddard Institute for Space Studies New York NY USA

2. Center for Climate Systems Research Columbia University New York NY USA

3. Autonomic Integra LLC New York NY USA

4. MIT Cambridge MA USA

5. Lamont‐Doherty Earth Observatory Columbia University Palisades NY USA

Abstract

AbstractRecent mass loss from ice sheets and ice shelves is now persistent and prolonged enough that it impacts downstream oceanographic conditions. To demonstrate this, we use an ensemble of coupled GISS‐E2.1‐G simulations forced with historical estimates of anomalous freshwater, in addition to other climate forcings, from 1990 through 2019. There are detectable differences in zonal‐mean sea surface temperatures (SST) and sea ice in the Southern Ocean, and in regional sea level around Antarctica and in the western North Atlantic. These impacts mostly improve the model's representation of historical changes, including reversing the forced trends in Antarctic sea ice. The changes in SST may have implications for estimates of the SST pattern effect on climate sensitivity and for cloud feedbacks. We conclude that the changes are sufficiently large that model groups should strive to include more accurate estimates of these drivers in all‐forcing historical simulations in future coupled model intercomparisons.

Funder

Division of Atmospheric and Geospace Sciences

Publisher

American Geophysical Union (AGU)

Subject

General Earth and Planetary Sciences,Geophysics

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