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Extensive Liquid Meltwater Storage in Firn Within the Greenland Ice SheetThe accelerating loss of mass from the Greenland ice sheet is a major contribution to current sea level rise. Increased melt water runoff is responsible for half of Greenlands mass loss increase. Surface melt has been increasing in extent and intensity, setting a record for surface area melt and runoff in 2012. The mechanisms and timescales involved in allowing surface melt water to reach the ocean where it can contribute to sea level rise are poorly understood. The potential capacity to store this water in liquid or frozen form in the firn (multi-year snow layer) is significant, and could delay its sea-level contribution. Here we describe direct observation of water within a perennial firn aquifer persisting throughout the winter in the southern ice sheet,where snow accumulation and melt rates are high. This represents a previously unknown storagemode for water within the ice sheet. Ice cores, groundairborne radar and a regional climatemodel are used to estimate aquifer area (70 plue or minus 10 x 10(exp 3) square kilometers ) and water table depth (5-50 m). The perennial firn aquifer represents a new glacier facies to be considered 29 in future ice sheet mass 30 and energy budget calculations.
Document ID
20140011561
Acquisition Source
Goddard Space Flight Center
Document Type
Preprint (Draft being sent to journal)
Authors
Forster, Richard R.
(Utah Univ. Salt Lake City, UT, United States)
Box, Jason E.
(Geological Survey of Denmark and Greeland Copenhagen, Denmark)
vandenBroeke, Michael R.
(Utrecht Univ. Utrecht, Netherlands)
Miege, Clement
(Utah Univ. Salt Lake City, UT, United States)
Burgess, Evan W.
(Utah Univ. Salt Lake City, UT, United States)
vanAngelen, Jan H.
(Utrecht Univ. Utrecht, Netherlands)
Lenaerts, Jan T. M.
(Utrecht Univ. Utrecht, Netherlands)
Koenig, Lora S.
(NASA Goddard Space Flight Center Greenbelt, MD United States)
Paden, John
(Kansas Univ. Lawrence, KS, United States)
Lewis, Cameron
(Kansas Univ. Lawrence, KS, United States)
Gogineni, S. Prasad
(Kansas Univ. Lawrence, KS, United States)
Leuschen, Carl
(Kansas Univ. Lawrence, KS, United States)
McConnell, Joseph R.
(Nevada Univ. Reno, NV, United States)
Date Acquired
September 10, 2014
Publication Date
January 1, 2013
Subject Category
Geosciences (General)
Report/Patent Number
GSFC-E-DAA-TN12183
Funding Number(s)
CONTRACT_GRANT: NNX10AT68G
CONTRACT_GRANT: NSF ANT-0424589
Distribution Limits
Public
Copyright
Public Use Permitted.
Keywords
meltwater
Greenland
Ice Sheet
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