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Supraglacial lakes on the Greenland ice sheet advance inland under warming climate

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Supraglacial lakes on the Greenland ice sheet advance inland under warming climate. / Leeson, A. A.; Shepherd, A.; Briggs, K. et al.
In: Nature Climate Change, Vol. 5, No. 1, 01.01.2015, p. 51-55.

Research output: Contribution to Journal/MagazineLetterpeer-review

Harvard

Leeson, AA, Shepherd, A, Briggs, K, Howat, I, Fettweis, X, Morlighem, M & Rignot, E 2015, 'Supraglacial lakes on the Greenland ice sheet advance inland under warming climate', Nature Climate Change, vol. 5, no. 1, pp. 51-55. https://doi.org/10.1038/nclimate2463

APA

Leeson, A. A., Shepherd, A., Briggs, K., Howat, I., Fettweis, X., Morlighem, M., & Rignot, E. (2015). Supraglacial lakes on the Greenland ice sheet advance inland under warming climate. Nature Climate Change, 5(1), 51-55. https://doi.org/10.1038/nclimate2463

Vancouver

Leeson AA, Shepherd A, Briggs K, Howat I, Fettweis X, Morlighem M et al. Supraglacial lakes on the Greenland ice sheet advance inland under warming climate. Nature Climate Change. 2015 Jan 1;5(1):51-55. Epub 2014 Dec 14. doi: 10.1038/nclimate2463

Author

Leeson, A. A. ; Shepherd, A. ; Briggs, K. et al. / Supraglacial lakes on the Greenland ice sheet advance inland under warming climate. In: Nature Climate Change. 2015 ; Vol. 5, No. 1. pp. 51-55.

Bibtex

@article{ca9da3c791604b1f8c1745e6fe136398,
title = "Supraglacial lakes on the Greenland ice sheet advance inland under warming climate",
abstract = "Supraglacial lakes (SGLs) form annually on the Greenland ice sheet and, when they drain, their discharge enhances ice-sheet flow by lubricating the base and potentially by warming the ice. Today, SGLs tend to form within the ablation zone, where enhanced lubrication is offset by efficient subglacial drainage. However, it is not clear what impact a warming climate will have on this arrangement. Here, we use an SGL initiation and growth model to show that lakes form at higher altitudes as temperatures rise, consistent with satellite observations. Our simulations show that in southwest Greenland, SGLs spread 103 and 110 km further inland by the year 2060 under moderate (RCP 4.5) and extreme (RCP 8.5) climate change scenarios, respectively, leading to an estimated 48-53% increase in the area over which they are distributed across the ice sheet as a whole. Up to half of these new lakes may be large enough to drain, potentially delivering water and heat to the ice-sheet base in regions where subglacial drainage is inefficient. In such places, ice flow responds positively to increases in surface water delivered to the bed through enhanced basal lubrication and warming of the ice, and so the inland advance of SGLs should be considered in projections of ice-sheet change.",
author = "Leeson, {A. A.} and A. Shepherd and K. Briggs and I. Howat and X. Fettweis and M. Morlighem and E. Rignot",
year = "2015",
month = jan,
day = "1",
doi = "10.1038/nclimate2463",
language = "English",
volume = "5",
pages = "51--55",
journal = "Nature Climate Change",
issn = "1758-678X",
publisher = "Nature Publishing Group",
number = "1",

}

RIS

TY - JOUR

T1 - Supraglacial lakes on the Greenland ice sheet advance inland under warming climate

AU - Leeson, A. A.

AU - Shepherd, A.

AU - Briggs, K.

AU - Howat, I.

AU - Fettweis, X.

AU - Morlighem, M.

AU - Rignot, E.

PY - 2015/1/1

Y1 - 2015/1/1

N2 - Supraglacial lakes (SGLs) form annually on the Greenland ice sheet and, when they drain, their discharge enhances ice-sheet flow by lubricating the base and potentially by warming the ice. Today, SGLs tend to form within the ablation zone, where enhanced lubrication is offset by efficient subglacial drainage. However, it is not clear what impact a warming climate will have on this arrangement. Here, we use an SGL initiation and growth model to show that lakes form at higher altitudes as temperatures rise, consistent with satellite observations. Our simulations show that in southwest Greenland, SGLs spread 103 and 110 km further inland by the year 2060 under moderate (RCP 4.5) and extreme (RCP 8.5) climate change scenarios, respectively, leading to an estimated 48-53% increase in the area over which they are distributed across the ice sheet as a whole. Up to half of these new lakes may be large enough to drain, potentially delivering water and heat to the ice-sheet base in regions where subglacial drainage is inefficient. In such places, ice flow responds positively to increases in surface water delivered to the bed through enhanced basal lubrication and warming of the ice, and so the inland advance of SGLs should be considered in projections of ice-sheet change.

AB - Supraglacial lakes (SGLs) form annually on the Greenland ice sheet and, when they drain, their discharge enhances ice-sheet flow by lubricating the base and potentially by warming the ice. Today, SGLs tend to form within the ablation zone, where enhanced lubrication is offset by efficient subglacial drainage. However, it is not clear what impact a warming climate will have on this arrangement. Here, we use an SGL initiation and growth model to show that lakes form at higher altitudes as temperatures rise, consistent with satellite observations. Our simulations show that in southwest Greenland, SGLs spread 103 and 110 km further inland by the year 2060 under moderate (RCP 4.5) and extreme (RCP 8.5) climate change scenarios, respectively, leading to an estimated 48-53% increase in the area over which they are distributed across the ice sheet as a whole. Up to half of these new lakes may be large enough to drain, potentially delivering water and heat to the ice-sheet base in regions where subglacial drainage is inefficient. In such places, ice flow responds positively to increases in surface water delivered to the bed through enhanced basal lubrication and warming of the ice, and so the inland advance of SGLs should be considered in projections of ice-sheet change.

U2 - 10.1038/nclimate2463

DO - 10.1038/nclimate2463

M3 - Letter

AN - SCOPUS:84927611548

VL - 5

SP - 51

EP - 55

JO - Nature Climate Change

JF - Nature Climate Change

SN - 1758-678X

IS - 1

ER -