Ice flow along land-terminating margins of the Greenland Ice Sheet (GIS) varies considerably in response to fluctuating inputs of surface meltwater to the bed of the ice sheet. Such inputs lubricate the ice-bed interface, transiently speeding up the flow of ice. Greater melting results in faster ice motion during summer, but slower motion over the subsequent winter, owing to the evolution of an efficient drainage system that enables water to drain from regions of the ice-sheet bed that have a high basal water pressure. However, the impact of hydrodynamic coupling on ice motion over decadal timescales remains poorly constrained. Here we show that annual ice motion across an 8,000-km2 land-terminating region of the west GIS margin, extending ...
Changes to the dynamics of the Greenland ice sheet can be forced by various mechanisms including sur...
Coupling between runoff, hydrology, basal motion, and mass loss (“hydrology-dynamics”) is a critical...
Coupling between runoff, hydrology, basal motion, and mass loss (“hydrology-dynamics”) is a critical...
Ice flow along land-terminating margins of the Greenland Ice Sheet (GIS) varies considerably in resp...
International audienceIce flow along land-terminating margins of the Greenland Ice Sheet (GIS) varie...
Fluctuations in surface melting are known to affect the speed of glaciers and ice sheets, but their ...
During summer, meltwater generated on the Greenland ice sheet surface accesses the ice sheet bed, lu...
We present global positioning system observations that capture the full inland extent of ice motion ...
Since the 1990\u27s the Greenland Ice Sheet (GrIS) has been losing mass at an accelerating rate in r...
Since the 1990\u27s the Greenland Ice Sheet (GrIS) has been losing mass at an accelerating rate in r...
We present ice velocities from a land-terminating transect extending >115 km into the western Greenl...
We present ice velocities from a land-terminating transect extending >115?km into the western Gre...
An improved understanding of the processes controlling the dynamics of the Greenland Ice Sheet is ne...
We present ice velocities from a land-terminating transect extending >115 km into the western Gre...
Changes to the dynamics of the Greenland ice sheet can be forced by various mechanisms including sur...
Changes to the dynamics of the Greenland ice sheet can be forced by various mechanisms including sur...
Coupling between runoff, hydrology, basal motion, and mass loss (“hydrology-dynamics”) is a critical...
Coupling between runoff, hydrology, basal motion, and mass loss (“hydrology-dynamics”) is a critical...
Ice flow along land-terminating margins of the Greenland Ice Sheet (GIS) varies considerably in resp...
International audienceIce flow along land-terminating margins of the Greenland Ice Sheet (GIS) varie...
Fluctuations in surface melting are known to affect the speed of glaciers and ice sheets, but their ...
During summer, meltwater generated on the Greenland ice sheet surface accesses the ice sheet bed, lu...
We present global positioning system observations that capture the full inland extent of ice motion ...
Since the 1990\u27s the Greenland Ice Sheet (GrIS) has been losing mass at an accelerating rate in r...
Since the 1990\u27s the Greenland Ice Sheet (GrIS) has been losing mass at an accelerating rate in r...
We present ice velocities from a land-terminating transect extending >115 km into the western Greenl...
We present ice velocities from a land-terminating transect extending >115?km into the western Gre...
An improved understanding of the processes controlling the dynamics of the Greenland Ice Sheet is ne...
We present ice velocities from a land-terminating transect extending >115 km into the western Gre...
Changes to the dynamics of the Greenland ice sheet can be forced by various mechanisms including sur...
Changes to the dynamics of the Greenland ice sheet can be forced by various mechanisms including sur...
Coupling between runoff, hydrology, basal motion, and mass loss (“hydrology-dynamics”) is a critical...
Coupling between runoff, hydrology, basal motion, and mass loss (“hydrology-dynamics”) is a critical...