Winds and Meltwater Together Lead to Southern Ocean Surface Cooling and Sea Ice Expansion

Author:

Roach Lettie A.12ORCID,Mankoff Kenneth D.23ORCID,Romanou Anastasia2,Blanchard‐Wrigglesworth Edward4ORCID,Haine Thomas W. N.5ORCID,Schmidt Gavin. A.2ORCID

Affiliation:

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

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

3. Autonomic Integra LLC New York NY USA

4. Department of Atmospheric Sciences University of Washington Seattle WA USA

5. Earth and Planetary Sciences Johns Hopkins University Baltimore MD USA

Abstract

AbstractSouthern Ocean surface cooling and Antarctic sea ice expansion from 1979 through 2015 have been linked both to changing atmospheric circulation and melting of Antarctica's grounded ice and ice shelves. However, climate models have largely been unable to reproduce this behavior. Here we examine the contribution of observed wind variability and Antarctic meltwater to Southern Ocean sea surface temperature (SST) and Antarctic sea ice. The free‐running, CMIP6‐class GISS‐E2.1‐G climate model can simulate regional cooling and neutral sea ice trends due to internal variability, but they are unlikely. Constraining the model to observed winds and meltwater fluxes from 1990 through 2021 gives SST variability and trends consistent with observations. Meltwater and winds contribute a similar amount to the SST trend, and winds contribute more to the sea ice trend than meltwater. However, while the constrained model captures much of the observed sea ice variability, it only partially captures the post‐2015 sea ice reduction.

Funder

Goddard Institute for Space Studies

National Science Foundation

National Aeronautics and Space Administration

Publisher

American Geophysical Union (AGU)

Subject

General Earth and Planetary Sciences,Geophysics

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