Investigations of meltwater refreezing and density variations in the snowpack and firn within the percolation zone of the Greenland ice sheet

The mass balance of polythermal ice masses is critically dependent on the proportion of surface-generated meltwater that subsequently refreezes in the snowpack and firn. In order to quantify this effect and to characterize its spatial variability, we measured near-surface (< 10 m) snow and firn d...

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Main Authors: Parry, V, Nienow, P, Mair, D, Scott, J, Hubbard, B, Steffen, K, Wingham, D
Other Authors: Sharp, M
Format: Article in Journal/Newspaper
Language:unknown
Published: INT GLACIOLOGICAL SOC 2007
Subjects:
Online Access:http://discovery.ucl.ac.uk/75793/
id ftucl:oai:eprints.ucl.ac.uk.OAI2:75793
record_format openpolar
spelling ftucl:oai:eprints.ucl.ac.uk.OAI2:75793 2023-05-15T13:29:06+02:00 Investigations of meltwater refreezing and density variations in the snowpack and firn within the percolation zone of the Greenland ice sheet Parry, V Nienow, P Mair, D Scott, J Hubbard, B Steffen, K Wingham, D Sharp, M 2007 http://discovery.ucl.ac.uk/75793/ unknown INT GLACIOLOGICAL SOC ANNALS OF GLACIOLOGY, VOL 46, 2007 , 46 61 - 68. (2007) WEST GREENLAND CLIMATE MODEL ACCUMULATION SCATTERING LINE Article 2007 ftucl 2017-02-09T23:11:02Z The mass balance of polythermal ice masses is critically dependent on the proportion of surface-generated meltwater that subsequently refreezes in the snowpack and firn. In order to quantify this effect and to characterize its spatial variability, we measured near-surface (< 10 m) snow and firn densities at an elevation of similar to 1945 m a.s.l. in the percolation zone of the Greenland ice sheet in spring and autumn 2004. Results indicate that local snowpack depth above the previous end-of-summer 2003 melt surface increased by similar to 5% (7.6 cm) from spring to autumn while, over the same period, snowpack density increased by > 26%, resulting in a 32% increase in net accumulation. This 'seasonal densification' increased at lower elevations, rising to 47% 10km closer to the ice-sheet margin at 1860 m a.s.l. Density/depth profiles from nine sites within 1 km(2) at similar to 1945ma.s.l. reveal complex stratigraphies that change over short spatial scales and seasonally. We conclude that estimates of massbalance change cannot be calculated solely from observed changes in surface elevation, but that near-surface densification must also be considered. However, predicting spatial and temporal variations in densification may not be straightforward. Further, the development of complex firn-density profiles both masks discernible annual layers in the near-surface firn and ice stratigraphy and is likely to introduce error into radar-derived estimates of surface elevation. Article in Journal/Newspaper Annals of Glaciology Greenland Ice Sheet University College London: UCL Discovery Greenland
institution Open Polar
collection University College London: UCL Discovery
op_collection_id ftucl
language unknown
topic WEST GREENLAND
CLIMATE
MODEL
ACCUMULATION
SCATTERING
LINE
spellingShingle WEST GREENLAND
CLIMATE
MODEL
ACCUMULATION
SCATTERING
LINE
Parry, V
Nienow, P
Mair, D
Scott, J
Hubbard, B
Steffen, K
Wingham, D
Investigations of meltwater refreezing and density variations in the snowpack and firn within the percolation zone of the Greenland ice sheet
topic_facet WEST GREENLAND
CLIMATE
MODEL
ACCUMULATION
SCATTERING
LINE
description The mass balance of polythermal ice masses is critically dependent on the proportion of surface-generated meltwater that subsequently refreezes in the snowpack and firn. In order to quantify this effect and to characterize its spatial variability, we measured near-surface (< 10 m) snow and firn densities at an elevation of similar to 1945 m a.s.l. in the percolation zone of the Greenland ice sheet in spring and autumn 2004. Results indicate that local snowpack depth above the previous end-of-summer 2003 melt surface increased by similar to 5% (7.6 cm) from spring to autumn while, over the same period, snowpack density increased by > 26%, resulting in a 32% increase in net accumulation. This 'seasonal densification' increased at lower elevations, rising to 47% 10km closer to the ice-sheet margin at 1860 m a.s.l. Density/depth profiles from nine sites within 1 km(2) at similar to 1945ma.s.l. reveal complex stratigraphies that change over short spatial scales and seasonally. We conclude that estimates of massbalance change cannot be calculated solely from observed changes in surface elevation, but that near-surface densification must also be considered. However, predicting spatial and temporal variations in densification may not be straightforward. Further, the development of complex firn-density profiles both masks discernible annual layers in the near-surface firn and ice stratigraphy and is likely to introduce error into radar-derived estimates of surface elevation.
author2 Sharp, M
format Article in Journal/Newspaper
author Parry, V
Nienow, P
Mair, D
Scott, J
Hubbard, B
Steffen, K
Wingham, D
author_facet Parry, V
Nienow, P
Mair, D
Scott, J
Hubbard, B
Steffen, K
Wingham, D
author_sort Parry, V
title Investigations of meltwater refreezing and density variations in the snowpack and firn within the percolation zone of the Greenland ice sheet
title_short Investigations of meltwater refreezing and density variations in the snowpack and firn within the percolation zone of the Greenland ice sheet
title_full Investigations of meltwater refreezing and density variations in the snowpack and firn within the percolation zone of the Greenland ice sheet
title_fullStr Investigations of meltwater refreezing and density variations in the snowpack and firn within the percolation zone of the Greenland ice sheet
title_full_unstemmed Investigations of meltwater refreezing and density variations in the snowpack and firn within the percolation zone of the Greenland ice sheet
title_sort investigations of meltwater refreezing and density variations in the snowpack and firn within the percolation zone of the greenland ice sheet
publisher INT GLACIOLOGICAL SOC
publishDate 2007
url http://discovery.ucl.ac.uk/75793/
geographic Greenland
geographic_facet Greenland
genre Annals of Glaciology
Greenland
Ice Sheet
genre_facet Annals of Glaciology
Greenland
Ice Sheet
op_source ANNALS OF GLACIOLOGY, VOL 46, 2007 , 46 61 - 68. (2007)
_version_ 1765998507578097664