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The West Antarctic Ice Sheet may not be vulnerable to marine ice cliff instability during the 21st century

Mathieu Morlighem, Daniel Goldberg, Jowan Barnes, J. N. Bassis, Douglas I. Benn, Anna Crawford, G. Hilmar Gudmundsson, Hélène Seroussi

2024Science Advances38 citationsDOIOpen Access PDF

Abstract

The collapse of ice shelves could expose tall ice cliffs at ice sheet margins. The marine ice cliff instability (MICI) is a hypothesis that predicts that, if these cliffs are tall enough, ice may fail structurally leading to self-sustained retreat. To date, projections that include MICI have been performed with a single model based on a simple parameterization. Here, we implement a physically motivated parameterization in three ice sheet models and simulate the response of the Amundsen Sea Embayment after a hypothetical collapse of floating ice. All models show that Thwaites Glacier would not retreat further in the 21st century. In another set of simulations, we force the grounding line to retreat into Thwaites' deeper basin to expose a taller cliff. In these simulations, rapid thinning and velocity increase reduce the calving rate, stabilizing the cliff. These experiments show that Thwaites may be less vulnerable to MICI than previously thought, and model projections that include this process should be re-evaluated.

Topics & Concepts

GeologyCliffIce sheetIce shelfAntarctic ice sheetIce divideAntarctic sea iceIcebergIce streamIce calvingGlacierIce-sheet modelSea iceIce tongueOceanographyGeomorphologyPhysical geographyCryospherePaleontologyGeographyBiologyGeneticsPregnancyLactationCryospheric studies and observationsArctic and Antarctic ice dynamicsWinter Sports Injuries and Performance
The West Antarctic Ice Sheet may not be vulnerable to marine ice cliff instability during the 21st century | Litcius