A high-resolution record of Greenland mass balance
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Publication date
2016
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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.
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SDG 13 - Climate Action
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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