Greenland Mass Trends From Airborne and Satellite Altimetry During 2011–2020

Publication date

2022-04

Authors

Khan, Shfaqat A.
Bamber, Jonathan L.
Rignot, Eric
Helm, Veit
Aschwanden, Andy
Holland, David M.
van den Broeke, MichielORCID 0000-0003-4662-7565ISNI 0000000389564445
King, Michalea
Noël, B.P.Y.ISNI 0000000492916939
Truffer, Martin

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by_nc

Abstract

We use satellite and airborne altimetry to estimate annual mass changes of the Greenland Ice Sheet. We estimate ice loss corresponding to a sea-level rise of 6.9 ± 0.4 mm from April 2011 to April 2020, with a highest annual ice loss rate of 1.4 mm/yr sea-level equivalent from April 2019 to April 2020. On a regional scale, our annual mass loss timeseries reveals 10–15 m/yr dynamic thickening at the terminus of Jakobshavn Isbræ from April 2016 to April 2018, followed by a return to dynamic thinning. We observe contrasting patterns of mass loss acceleration in different basins across the ice sheet and suggest that these spatiotemporal trends could be useful for calibrating and validating prognostic ice sheet models. In addition to resolving the spatial and temporal fingerprint of Greenland's recent ice loss, these mass loss grids are key for partitioning contemporary elastic vertical land motion from longer-term glacial isostatic adjustment (GIA) trends at GPS stations around the ice sheet. Our ice-loss product results in a significantly different GIA interpretation from a previous ice-loss product.

Keywords

Greenland Ice Sheet, ice dynamics, mass loss, satellite altimetry, surface mass balance, vertical land motion, Earth-Surface Processes, Geophysics

Citation

Khan, S A, Bamber, J L, Rignot, E, Helm, V, Aschwanden, A, Holland, D M, van den Broeke, M, King, M, Noël, B, Truffer, M, Humbert, A, Colgan, W, Vijay, S & Kuipers Munneke, P 2022, 'Greenland Mass Trends From Airborne and Satellite Altimetry During 2011–2020', Journal of Geophysical Research: Earth Surface, vol. 127, no. 4, e2021JF006505, pp. 1-20. https://doi.org/10.1029/2021JF006505