A high-resolution record of Greenland mass balance

Publication date

2016

Authors

McMillan, Malcolm
Leeson, Amber
Shepherd, Andrew
Briggs, Kate
Armitage, Thomas
Hogg, Anna
Kuipers Munneke, PeterISNI 0000000392156952
van den Broeke, MichielORCID 0000-0003-4662-7565ISNI 0000000389564445
Noël, BriceISNI 0000000492916939
Van De Berg, Willem JanORCID 0000-0002-8232-2040ISNI 0000000419423214

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Article
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Abstract

We map recent Greenland Ice Sheet elevation change at high spatial (5 km) and temporal (monthly) resolution using CryoSat-2 altimetry. After correcting for the impact of changing snowpack properties associated with unprecedented surface melting in 2012, we find good agreement (3 cm/yr bias) with airborne measurements. With the aid of regional climate and firn modeling, we compute high spatial and temporal resolution records of Greenland mass evolution, which correlate (R = 0.96) with monthly satellite gravimetry and reveal glacier dynamic imbalance. During 2011–2014, Greenland mass loss averaged 269 ± 51 Gt/yr. Atmospherically driven losses were widespread, with surface melt variability driving large fluctuations in the annual mass deficit. Terminus regions of five dynamically thinning glaciers, which constitute less than 1% of Greenland’s area, contributed more than 12% of the net ice loss. This high-resolution record demonstrates that mass deficits extending over small spatial and temporal scales have made a relatively large contribution to recent ice sheet imbalance.

Keywords

SDG 13 - Climate Action

Citation

McMillan, M, Leeson, A, Shepherd, A, Briggs, K, Armitage, T, Hogg, A, Kuipers Munneke, P, van den Broeke, M R, Noël, B P Y, van de Berg, W J, Ligtenberg, S R M, Horwath, M, Groh, A, Muir, A & Gilbert, L 2016, 'A high-resolution record of Greenland mass balance', Geophysical Research Letters, vol. 43, pp. 7002-7010. https://doi.org/10.1002/2016GL069666