Heterogeneous Basal Thermal Conditions Underpinning the Adélie‐George V Coast, East Antarctica

Author:

Dawson Eliza J.1ORCID,Schroeder Dustin M.12ORCID,Chu Winnie3ORCID,Mantelli Elisa45,Seroussi Helene6ORCID

Affiliation:

1. Department of Geophysics Stanford University Stanford CA USA

2. Department of Electrical Engineering Stanford University Stanford CA USA

3. School of Earth and Atmospheric Science Georgia Institute of Technology Atlanta GA USA

4. Alfred Wegener Institute for Polar and Marine Research Bremerhaven Germany

5. Department of Earth and Environmental Sciences Ludwig‐Maximillians‐Universitaet Munich Germany

6. Thayer School of Engineering Dartmouth College Hanover NH USA

Abstract

AbstractAdélie‐George V Land in East Antarctica, encompassing the vast Wilkes Subglacial Basin, has a configuration that could be prone to ice sheet instability: the basin's retrograde bed slope could make its marine terminating glaciers vulnerable to warm seawater intrusion and irreversible retreat under predicted climate forcing. However, future projections are uncertain, due in part to limited subglacial observations near the grounding zone. Here, we develop a novel statistical approach to characterize subglacial conditions from radar sounding observations. Our method reveals intermixed frozen and thawed bed within 100 km of the grounding‐zone near the Wilkes Subglacial Basin outflow, and enables comparisons to ice sheet model‐inferred thermal states. The signs of intermixed or near thawed conditions raises the possibility that changes in basal thermal state could impact the stability of Adélie‐George V Land, adding to the region's potentially vulnerable topographic configuration and sensitivity to ocean forcing driven grounding line retreat.

Publisher

American Geophysical Union (AGU)

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