Numerical estimation of 10000 years later equilibrium ice sheet profile in the Shirase Glacier drainage basin, East Antarctica

Recent observations show that the ice sheet in the Shirase Glacier drainage basin, East Antarctica, is thinning. If the observed thinning is assumed to be a transitional process in which the ice sheet is adjusting to the present climate, an equilibrium ice sheet profile which adjusts to the present...

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Bibliographic Details
Main Authors: Shuji Fujita, Norikazu Ikeda, Nobuhiko Azuma, Takeo Hondoh, Shinji Mae
Format: Article in Journal/Newspaper
Language:English
Published: National Institute of Polar Research 1991
Subjects:
geo
Online Access:https://doi.org/10.15094/00008708
https://doaj.org/article/b450009961274bd7aa2cad14a6319213
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spelling fttriple:oai:gotriple.eu:oai:doaj.org/article:b450009961274bd7aa2cad14a6319213 2023-05-15T13:50:08+02:00 Numerical estimation of 10000 years later equilibrium ice sheet profile in the Shirase Glacier drainage basin, East Antarctica Shuji Fujita Norikazu Ikeda Nobuhiko Azuma Takeo Hondoh Shinji Mae 1991-03-01 https://doi.org/10.15094/00008708 https://doaj.org/article/b450009961274bd7aa2cad14a6319213 en other eng National Institute of Polar Research doi:10.15094/00008708 0085-7289 2432-079X https://doaj.org/article/b450009961274bd7aa2cad14a6319213 undefined Antarctic Record, Vol 35, Iss 1, Pp 12-29 (1991) geo envir Journal Article https://vocabularies.coar-repositories.org/resource_types/c_6501/ 1991 fttriple https://doi.org/10.15094/00008708 2023-01-22T17:06:17Z Recent observations show that the ice sheet in the Shirase Glacier drainage basin, East Antarctica, is thinning. If the observed thinning is assumed to be a transitional process in which the ice sheet is adjusting to the present climate, an equilibrium ice sheet profile which adjusts to the present climate would provide us with information for understanding the present behavior of the ice sheet. The equilibrium ice sheet profile was estimated by using a three-dimensional non-steady state ice sheet model. Estimations were carried out with data based on observations of bedrock topography, surface elevation, accumulation rate and surface temperatures, and their extrapolation for areas where there is no field data. And the equilibrium ice sheet profile against various parameters, e.g. surface temperatures, accumulation rate and geothermal heat flux, was investigated. Results of the calculation showed that an almost stationary state of the ice sheet was achieved after (10)^4 model years when started from the present profile of the ice sheet. The equilibrium ice sheet profile depended on bedrock topography and tested parameters sensitively, but the calculations indicated that ice-thickness tend to decrease in the middle-stream region in general. It was also revealed that the ice sheet in the vicinity of the Yamato Mountains was relatively stable even if the parameters were changed. Article in Journal/Newspaper Antarc* Antarctica East Antarctica Ice Sheet Shirase Glacier Unknown East Antarctica Shirase Glacier ENVELOPE(39.000,39.000,-70.333,-70.333) Yamato ENVELOPE(35.583,35.583,-71.417,-71.417)
institution Open Polar
collection Unknown
op_collection_id fttriple
language English
topic geo
envir
spellingShingle geo
envir
Shuji Fujita
Norikazu Ikeda
Nobuhiko Azuma
Takeo Hondoh
Shinji Mae
Numerical estimation of 10000 years later equilibrium ice sheet profile in the Shirase Glacier drainage basin, East Antarctica
topic_facet geo
envir
description Recent observations show that the ice sheet in the Shirase Glacier drainage basin, East Antarctica, is thinning. If the observed thinning is assumed to be a transitional process in which the ice sheet is adjusting to the present climate, an equilibrium ice sheet profile which adjusts to the present climate would provide us with information for understanding the present behavior of the ice sheet. The equilibrium ice sheet profile was estimated by using a three-dimensional non-steady state ice sheet model. Estimations were carried out with data based on observations of bedrock topography, surface elevation, accumulation rate and surface temperatures, and their extrapolation for areas where there is no field data. And the equilibrium ice sheet profile against various parameters, e.g. surface temperatures, accumulation rate and geothermal heat flux, was investigated. Results of the calculation showed that an almost stationary state of the ice sheet was achieved after (10)^4 model years when started from the present profile of the ice sheet. The equilibrium ice sheet profile depended on bedrock topography and tested parameters sensitively, but the calculations indicated that ice-thickness tend to decrease in the middle-stream region in general. It was also revealed that the ice sheet in the vicinity of the Yamato Mountains was relatively stable even if the parameters were changed.
format Article in Journal/Newspaper
author Shuji Fujita
Norikazu Ikeda
Nobuhiko Azuma
Takeo Hondoh
Shinji Mae
author_facet Shuji Fujita
Norikazu Ikeda
Nobuhiko Azuma
Takeo Hondoh
Shinji Mae
author_sort Shuji Fujita
title Numerical estimation of 10000 years later equilibrium ice sheet profile in the Shirase Glacier drainage basin, East Antarctica
title_short Numerical estimation of 10000 years later equilibrium ice sheet profile in the Shirase Glacier drainage basin, East Antarctica
title_full Numerical estimation of 10000 years later equilibrium ice sheet profile in the Shirase Glacier drainage basin, East Antarctica
title_fullStr Numerical estimation of 10000 years later equilibrium ice sheet profile in the Shirase Glacier drainage basin, East Antarctica
title_full_unstemmed Numerical estimation of 10000 years later equilibrium ice sheet profile in the Shirase Glacier drainage basin, East Antarctica
title_sort numerical estimation of 10000 years later equilibrium ice sheet profile in the shirase glacier drainage basin, east antarctica
publisher National Institute of Polar Research
publishDate 1991
url https://doi.org/10.15094/00008708
https://doaj.org/article/b450009961274bd7aa2cad14a6319213
long_lat ENVELOPE(39.000,39.000,-70.333,-70.333)
ENVELOPE(35.583,35.583,-71.417,-71.417)
geographic East Antarctica
Shirase Glacier
Yamato
geographic_facet East Antarctica
Shirase Glacier
Yamato
genre Antarc*
Antarctica
East Antarctica
Ice Sheet
Shirase Glacier
genre_facet Antarc*
Antarctica
East Antarctica
Ice Sheet
Shirase Glacier
op_source Antarctic Record, Vol 35, Iss 1, Pp 12-29 (1991)
op_relation doi:10.15094/00008708
0085-7289
2432-079X
https://doaj.org/article/b450009961274bd7aa2cad14a6319213
op_rights undefined
op_doi https://doi.org/10.15094/00008708
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