Partitioning of melt energy and meltwater fluxes in the ablation zone of the west Greenland ice sheet
Preprint
- 21 August 2008
- preprint
- Published by Copernicus GmbH in EGUsphere
Abstract
We present four years of surface mass balance data from the ablation zone of the west Greenland ice sheet along the 67° N latitude circle. Sonic height rangers and automatic weather stations continuously measured accumulation/ablation and near-surface climate at distances of 6, 38 and 88 km from the ice sheet margin at elevations of 490, 1020 and 1520 m a.s.l. Using a melt model and reasonable assumptions about snow density and percolation characteristics, these data are used to quantify the partitioning of energy and mass fluxes during melt episodes. The lowest site receives very little winter accumulation, and ice melting is nearly continuous in June, July and August. Due to the lack of snow accumulation, little refreezing occurs and virtually all melt energy is invested in runoff. Higher up the ice sheet, the ice sheet surface freezes up during the night, making summer melting intermittent. At the intermediate site, refreezing in snow consumes about 10% of the melt energy, increasing to 40% at the highest site. The sum of these effects is that total melt and runoff increase exponentially towards the ice sheet margin, each time doubling between the stations. At the two lower sites, we estimate that radiation penetration causes 20–30% of the ice melt to occur below the surface.Keywords
All Related Versions
- Published version: The Cryosphere, 2 (2), 179.
This publication has 33 references indexed in Scilit:
- Impact of model physics on estimating the surface mass balance of the Greenland ice sheetGeophysical Research Letters, 2007
- How Fast Are the Ice Sheets Melting?Science, 2006
- Greenland Ice Sheet Surface Mass Balance Variability (1988–2004) from Calibrated Polar MM5 Output*Journal of Climate, 2006
- A surface mass balance model for the Greenland Ice SheetJournal of Geophysical Research: Earth Surface, 2005
- Evaluation of Polar MM5 simulations of Greenland's atmospheric circulationJournal of Geophysical Research: Atmospheres, 2001
- A new, high‐resolution digital elevation model of Greenland fully validated with airborne laser altimeter dataJournal of Geophysical Research, 2001
- Positive degree-day factors for ablation on the Greenland ice sheet studied by energy-balance modellingJournal of Glaciology, 1995
- Modelling ablation and mass-balance sensitivity to climate change of Storstrømmen, northeast greenlandGlobal and Planetary Change, 1994
- Solar-heating rates and temperature profiles in Antarctic snow and iceJournal of Glaciology, 1993
- A theory for the scalar roughness and the scalar transfer coefficients over snow and sea iceBoundary-Layer Meteorology, 1987