An estimate of ice wedge volume for a High Arctic polar desert environment, Fosheim Peninsula, Ellesmere Island
Quantifying ground-ice volume on a regional scale is necessary to assess the vulnerability of permafrost landscapes to thaw-induced disturbance like terrain subsidence and to quantify potential carbon release. Ice wedges (IWs) are a ubiquitous ground-ice landform in the Arctic. Their high spatial va...
Published in: | The Cryosphere |
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Format: | Article in Journal/Newspaper |
Language: | English |
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Copernicus Publications
2018
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Online Access: | https://doi.org/10.5194/tc-12-3589-2018 https://www.the-cryosphere.net/12/3589/2018/tc-12-3589-2018.pdf https://doaj.org/article/91e4356678e54595b63a929ea480a55a |
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fttriple:oai:gotriple.eu:oai:doaj.org/article:91e4356678e54595b63a929ea480a55a 2023-05-15T14:57:51+02:00 An estimate of ice wedge volume for a High Arctic polar desert environment, Fosheim Peninsula, Ellesmere Island C. Bernard-Grand'Maison W. Pollard 2018-11-01 https://doi.org/10.5194/tc-12-3589-2018 https://www.the-cryosphere.net/12/3589/2018/tc-12-3589-2018.pdf https://doaj.org/article/91e4356678e54595b63a929ea480a55a en eng Copernicus Publications doi:10.5194/tc-12-3589-2018 1994-0416 1994-0424 https://www.the-cryosphere.net/12/3589/2018/tc-12-3589-2018.pdf https://doaj.org/article/91e4356678e54595b63a929ea480a55a undefined The Cryosphere, Vol 12, Pp 3589-3604 (2018) geo envir Journal Article https://vocabularies.coar-repositories.org/resource_types/c_6501/ 2018 fttriple https://doi.org/10.5194/tc-12-3589-2018 2023-01-22T16:48:27Z Quantifying ground-ice volume on a regional scale is necessary to assess the vulnerability of permafrost landscapes to thaw-induced disturbance like terrain subsidence and to quantify potential carbon release. Ice wedges (IWs) are a ubiquitous ground-ice landform in the Arctic. Their high spatial variability makes generalizing their potential role in landscape change problematic. IWs form polygonal networks that are visible on satellite imagery from surface troughs. This study provides a first approximation of IW ice volume for the Fosheim Peninsula, Ellesmere Island, a continuous permafrost area characterized by polar desert conditions and extensive ground ice. We perform basic GIS analyses on high-resolution satellite imagery to delineate IW troughs and estimate the associated IW ice volume using a 3-D subsurface model. We demonstrate the potential of two semi-automated IW trough delineation methods, one newly developed and one marginally used in previous studies, to increase the time efficiency of this process compared to manual delineation. Our methods yield acceptable IW ice volume estimates, validating the value of GIS to estimate IW volume on much larger scales. We estimate that IWs are potentially present on 50 % of the Fosheim Peninsula (∼3000 km2), where 3.81 % of the top 5.9 m of permafrost could be IW ice. Article in Journal/Newspaper Arctic Ellesmere Island Fosheim Peninsula Ice permafrost polar desert The Cryosphere wedge* Unknown Arctic Ellesmere Island Fosheim Peninsula ENVELOPE(-83.749,-83.749,79.669,79.669) The Cryosphere 12 11 3589 3604 |
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Open Polar |
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fttriple |
language |
English |
topic |
geo envir |
spellingShingle |
geo envir C. Bernard-Grand'Maison W. Pollard An estimate of ice wedge volume for a High Arctic polar desert environment, Fosheim Peninsula, Ellesmere Island |
topic_facet |
geo envir |
description |
Quantifying ground-ice volume on a regional scale is necessary to assess the vulnerability of permafrost landscapes to thaw-induced disturbance like terrain subsidence and to quantify potential carbon release. Ice wedges (IWs) are a ubiquitous ground-ice landform in the Arctic. Their high spatial variability makes generalizing their potential role in landscape change problematic. IWs form polygonal networks that are visible on satellite imagery from surface troughs. This study provides a first approximation of IW ice volume for the Fosheim Peninsula, Ellesmere Island, a continuous permafrost area characterized by polar desert conditions and extensive ground ice. We perform basic GIS analyses on high-resolution satellite imagery to delineate IW troughs and estimate the associated IW ice volume using a 3-D subsurface model. We demonstrate the potential of two semi-automated IW trough delineation methods, one newly developed and one marginally used in previous studies, to increase the time efficiency of this process compared to manual delineation. Our methods yield acceptable IW ice volume estimates, validating the value of GIS to estimate IW volume on much larger scales. We estimate that IWs are potentially present on 50 % of the Fosheim Peninsula (∼3000 km2), where 3.81 % of the top 5.9 m of permafrost could be IW ice. |
format |
Article in Journal/Newspaper |
author |
C. Bernard-Grand'Maison W. Pollard |
author_facet |
C. Bernard-Grand'Maison W. Pollard |
author_sort |
C. Bernard-Grand'Maison |
title |
An estimate of ice wedge volume for a High Arctic polar desert environment, Fosheim Peninsula, Ellesmere Island |
title_short |
An estimate of ice wedge volume for a High Arctic polar desert environment, Fosheim Peninsula, Ellesmere Island |
title_full |
An estimate of ice wedge volume for a High Arctic polar desert environment, Fosheim Peninsula, Ellesmere Island |
title_fullStr |
An estimate of ice wedge volume for a High Arctic polar desert environment, Fosheim Peninsula, Ellesmere Island |
title_full_unstemmed |
An estimate of ice wedge volume for a High Arctic polar desert environment, Fosheim Peninsula, Ellesmere Island |
title_sort |
estimate of ice wedge volume for a high arctic polar desert environment, fosheim peninsula, ellesmere island |
publisher |
Copernicus Publications |
publishDate |
2018 |
url |
https://doi.org/10.5194/tc-12-3589-2018 https://www.the-cryosphere.net/12/3589/2018/tc-12-3589-2018.pdf https://doaj.org/article/91e4356678e54595b63a929ea480a55a |
long_lat |
ENVELOPE(-83.749,-83.749,79.669,79.669) |
geographic |
Arctic Ellesmere Island Fosheim Peninsula |
geographic_facet |
Arctic Ellesmere Island Fosheim Peninsula |
genre |
Arctic Ellesmere Island Fosheim Peninsula Ice permafrost polar desert The Cryosphere wedge* |
genre_facet |
Arctic Ellesmere Island Fosheim Peninsula Ice permafrost polar desert The Cryosphere wedge* |
op_source |
The Cryosphere, Vol 12, Pp 3589-3604 (2018) |
op_relation |
doi:10.5194/tc-12-3589-2018 1994-0416 1994-0424 https://www.the-cryosphere.net/12/3589/2018/tc-12-3589-2018.pdf https://doaj.org/article/91e4356678e54595b63a929ea480a55a |
op_rights |
undefined |
op_doi |
https://doi.org/10.5194/tc-12-3589-2018 |
container_title |
The Cryosphere |
container_volume |
12 |
container_issue |
11 |
container_start_page |
3589 |
op_container_end_page |
3604 |
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1766329962727473152 |