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Tidewater-glacier response to supraglacial lake drainage.


ABSTRACT: The flow speed of the Greenland Ice Sheet changes dramatically in inland regions when surface meltwater drains to the bed. But ice-sheet discharge to the ocean is dominated by fast-flowing outlet glaciers, where the effect of increasing surface melt on annual discharge is unknown. Observations of a supraglacial lake drainage at Helheim Glacier, and a consequent velocity pulse propagating down-glacier, provide a natural experiment for assessing the impact of changes in injected meltwater, and allow us to interrogate the subglacial hydrological system. We find a highly efficient subglacial drainage system, such that summertime lake drainage has little net effect on ice discharge. Our results question the validity of common remote-sensing approaches for inferring subglacial conditions, knowledge of which is needed for improved projections of sea-level rise.

SUBMITTER: Stevens LA 

PROVIDER: S-EPMC9568665 | biostudies-literature | 2022 Oct

REPOSITORIES: biostudies-literature

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Tidewater-glacier response to supraglacial lake drainage.

Stevens Laura A LA   Nettles Meredith M   Davis James L JL   Creyts Timothy T TT   Kingslake Jonathan J   Hewitt Ian J IJ   Stubblefield Aaron A  

Nature communications 20221014 1


The flow speed of the Greenland Ice Sheet changes dramatically in inland regions when surface meltwater drains to the bed. But ice-sheet discharge to the ocean is dominated by fast-flowing outlet glaciers, where the effect of increasing surface melt on annual discharge is unknown. Observations of a supraglacial lake drainage at Helheim Glacier, and a consequent velocity pulse propagating down-glacier, provide a natural experiment for assessing the impact of changes in injected meltwater, and all  ...[more]

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