The Cryosphere, 12, 1415–1431, 2018 https://doi.org/10.5194/tc-12-1415-2018 © Author(s) 2018. This work is distributed under the Creative Commons Attribution 4.0 License. Changes in flow of Crosson and Dotson ice shelves, West Antarctica, in response to elevated melt David A. Lilien1,2, Ian Joughin1, Benjamin Smith1, and David E. Shean1,3 1Polar Science Center, Applied Physics Lab, University of Washington, Seattle, Washington, USA 2Department of Earth and Space Sciences, University of Washington, Seattle, Washington, USA 3Department of Civil and Environmental Engineering, University of Washington, Seattle, Washington, USA Correspondence: David A. Lilien (
[email protected]) Received: 4 November 2017 – Discussion started: 2 January 2018 Revised: 21 March 2018 – Accepted: 24 March 2018 – Published: 19 April 2018 Abstract. Crosson and Dotson ice shelves are two of the 1 Introduction most rapidly changing outlets in West Antarctica, displaying both significant thinning and grounding-line retreat in recent Glaciers in the Amundsen Sea Embayment (ASE) are sus- decades. We used remotely sensed measurements of veloc- ceptible to internal instability triggered by increased ocean ity and ice geometry to investigate the processes controlling melting of buttressing ice shelves and are currently the dom- their changes in speed and grounding-line position over the inant source of sea level rise from Antarctica (Shepherd et past 20 years. We combined these observations with inverse al., 2012). Observations (Rignot et al., 2014) and modeling modeling of the viscosity of the ice shelves to understand (Favier et al., 2014; Joughin et al., 2010, 2014) suggest that how weakening of the shelves affected this speedup.