(氷床モデ ル SICOPOLISを用いたハインリッヒ・イベントの数値実験およびモデル間相互比較)

Heinrich events (HEs) are large scale surges of the Laurentide Ice Sheet (LIS) over Hudson Bay and Hudson Strait. These surges are thought to be triggered by the internal dynamics of the ice sheet. Therefore it is important to investigate HEs in order to estimate the effect on climate variability. I...

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Main Author: Ryoji Takahama
Other Authors: The Pennsylvania State University CiteSeerX Archives
Format: Text
Language:English
Published: 2006
Subjects:
Online Access:http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.519.1717
http://eprints.lib.hokudai.ac.jp/dspace/bitstream/2115/28749/1/%E5%AD%A6%E4%BD%8D%E8%AB%96%E6%96%872006.pdf
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spelling ftciteseerx:oai:CiteSeerX.psu:10.1.1.519.1717 2023-05-15T16:35:29+02:00 (氷床モデ ル SICOPOLISを用いたハインリッヒ・イベントの数値実験およびモデル間相互比較) Ryoji Takahama The Pennsylvania State University CiteSeerX Archives 2006 application/pdf http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.519.1717 http://eprints.lib.hokudai.ac.jp/dspace/bitstream/2115/28749/1/%E5%AD%A6%E4%BD%8D%E8%AB%96%E6%96%872006.pdf en eng http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.519.1717 http://eprints.lib.hokudai.ac.jp/dspace/bitstream/2115/28749/1/%E5%AD%A6%E4%BD%8D%E8%AB%96%E6%96%872006.pdf Metadata may be used without restrictions as long as the oai identifier remains attached to it. http://eprints.lib.hokudai.ac.jp/dspace/bitstream/2115/28749/1/%E5%AD%A6%E4%BD%8D%E8%AB%96%E6%96%872006.pdf text 2006 ftciteseerx 2016-01-08T10:00:16Z Heinrich events (HEs) are large scale surges of the Laurentide Ice Sheet (LIS) over Hudson Bay and Hudson Strait. These surges are thought to be triggered by the internal dynamics of the ice sheet. Therefore it is important to investigate HEs in order to estimate the effect on climate variability. It will be tested whether the 3D ice sheet model SICOPOLIS is able to simulate such large scale surges, and what is their sensitivity to change in surface and basal boundary conditions. The model domain is a flat horizontal square. The ice sheet is built up from zero ice thickness over 200 ka, with a temporally constant glacial-climate forcing. The bedrock elevation remains flat throughout the simulations. Further, the geothermal heat flux is applied directly at the bottom of the ice sheet. We could generate many saw-shape oscillations of the ice sheet expressing a series of growth phases and HEs from the standard run. The growth time is about 7 ka, whereas the subsequent HE collapse lasts only for several hundred years. Parameter studies showed that surface temperature affects the ice volume, and surface accumulation affects the periodicity of HEs. Further, the strength of the subglacial sediment affects the amplitude of ice-volume changes. Therefore, surface and basal conditions of the LIS are crucial elements for HEs. Text Hudson Bay Hudson Strait Ice Sheet Unknown Hudson Hudson Bay Hudson Strait ENVELOPE(-70.000,-70.000,62.000,62.000)
institution Open Polar
collection Unknown
op_collection_id ftciteseerx
language English
description Heinrich events (HEs) are large scale surges of the Laurentide Ice Sheet (LIS) over Hudson Bay and Hudson Strait. These surges are thought to be triggered by the internal dynamics of the ice sheet. Therefore it is important to investigate HEs in order to estimate the effect on climate variability. It will be tested whether the 3D ice sheet model SICOPOLIS is able to simulate such large scale surges, and what is their sensitivity to change in surface and basal boundary conditions. The model domain is a flat horizontal square. The ice sheet is built up from zero ice thickness over 200 ka, with a temporally constant glacial-climate forcing. The bedrock elevation remains flat throughout the simulations. Further, the geothermal heat flux is applied directly at the bottom of the ice sheet. We could generate many saw-shape oscillations of the ice sheet expressing a series of growth phases and HEs from the standard run. The growth time is about 7 ka, whereas the subsequent HE collapse lasts only for several hundred years. Parameter studies showed that surface temperature affects the ice volume, and surface accumulation affects the periodicity of HEs. Further, the strength of the subglacial sediment affects the amplitude of ice-volume changes. Therefore, surface and basal conditions of the LIS are crucial elements for HEs.
author2 The Pennsylvania State University CiteSeerX Archives
format Text
author Ryoji Takahama
spellingShingle Ryoji Takahama
(氷床モデ ル SICOPOLISを用いたハインリッヒ・イベントの数値実験およびモデル間相互比較)
author_facet Ryoji Takahama
author_sort Ryoji Takahama
title (氷床モデ ル SICOPOLISを用いたハインリッヒ・イベントの数値実験およびモデル間相互比較)
title_short (氷床モデ ル SICOPOLISを用いたハインリッヒ・イベントの数値実験およびモデル間相互比較)
title_full (氷床モデ ル SICOPOLISを用いたハインリッヒ・イベントの数値実験およびモデル間相互比較)
title_fullStr (氷床モデ ル SICOPOLISを用いたハインリッヒ・イベントの数値実験およびモデル間相互比較)
title_full_unstemmed (氷床モデ ル SICOPOLISを用いたハインリッヒ・イベントの数値実験およびモデル間相互比較)
title_sort (氷床モデ ル sicopolisを用いたハインリッヒ・イベントの数値実験およびモデル間相互比較)
publishDate 2006
url http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.519.1717
http://eprints.lib.hokudai.ac.jp/dspace/bitstream/2115/28749/1/%E5%AD%A6%E4%BD%8D%E8%AB%96%E6%96%872006.pdf
long_lat ENVELOPE(-70.000,-70.000,62.000,62.000)
geographic Hudson
Hudson Bay
Hudson Strait
geographic_facet Hudson
Hudson Bay
Hudson Strait
genre Hudson Bay
Hudson Strait
Ice Sheet
genre_facet Hudson Bay
Hudson Strait
Ice Sheet
op_source http://eprints.lib.hokudai.ac.jp/dspace/bitstream/2115/28749/1/%E5%AD%A6%E4%BD%8D%E8%AB%96%E6%96%872006.pdf
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