Short-term variations in glacier flow controlled by subglacial water pressure at Lauteraargletscher, Bernese Alps, Switzerland

Short-term variations in horizontal and vertical surface motion were studied with high temporal resolution during the ablation season in Lauteraargletscher, Bernese Alps, Switzerland. Horizontal surface flow speed oscillated diurnally, showing a correlation with the water level in a borehole. Flow s...

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Published in:Journal of Glaciology
Main Authors: Sugiyama, Shin, Gudmundsson, Hilmar
Format: Article in Journal/Newspaper
Language:unknown
Published: International Glaciological Society 2004
Subjects:
Online Access:https://nrl.northumbria.ac.uk/id/eprint/38164/
https://doi.org/10.3189/172756504781829846
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spelling ftunivnorthumb:oai:nrl.northumbria.ac.uk:38164 2023-05-15T16:57:30+02:00 Short-term variations in glacier flow controlled by subglacial water pressure at Lauteraargletscher, Bernese Alps, Switzerland Sugiyama, Shin Gudmundsson, Hilmar 2004 https://nrl.northumbria.ac.uk/id/eprint/38164/ https://doi.org/10.3189/172756504781829846 unknown International Glaciological Society Sugiyama, Shin and Gudmundsson, Hilmar (2004) Short-term variations in glacier flow controlled by subglacial water pressure at Lauteraargletscher, Bernese Alps, Switzerland. Journal of Glaciology, 50 (170). pp. 353-362. ISSN 0022-1430 F800 Physical and Terrestrial Geographical and Environmental Sciences Article PeerReviewed 2004 ftunivnorthumb https://doi.org/10.3189/172756504781829846 2022-09-25T06:09:19Z Short-term variations in horizontal and vertical surface motion were studied with high temporal resolution during the ablation season in Lauteraargletscher, Bernese Alps, Switzerland. Horizontal surface flow speed oscillated diurnally, showing a correlation with the water level in a borehole. Flow speed increased as a function of the water level, with an asymptote at the ice overburden level. This observation implied that the flow variations were principally controlled by the local water pressure which enhanced basal motions. Detailed examination of the diurnal variations, however, showed that the speed was larger when the pressure was increasing than when it was decreasing. Greater speed with increasing pressure was interpreted by subglacial water-cavity opening and/or longitudinal stress coupling with the upper reaches of the glacier. Upward surface movements were observed when the glacier flow speed increased. Simultaneous measurement of internal vertical strain in a borehole showed that the uplift had two different sources: vertical straining of ice and volume increase of subglacial water cavities. The vertical surface movement was largely affected by the vertical strain, and the uplift events could not be simply attributed to cavity opening. Article in Journal/Newspaper Journal of Glaciology Northumbria University, Newcastle: Northumbria Research Link (NRL) Journal of Glaciology 50 170 353 362
institution Open Polar
collection Northumbria University, Newcastle: Northumbria Research Link (NRL)
op_collection_id ftunivnorthumb
language unknown
topic F800 Physical and Terrestrial Geographical and Environmental Sciences
spellingShingle F800 Physical and Terrestrial Geographical and Environmental Sciences
Sugiyama, Shin
Gudmundsson, Hilmar
Short-term variations in glacier flow controlled by subglacial water pressure at Lauteraargletscher, Bernese Alps, Switzerland
topic_facet F800 Physical and Terrestrial Geographical and Environmental Sciences
description Short-term variations in horizontal and vertical surface motion were studied with high temporal resolution during the ablation season in Lauteraargletscher, Bernese Alps, Switzerland. Horizontal surface flow speed oscillated diurnally, showing a correlation with the water level in a borehole. Flow speed increased as a function of the water level, with an asymptote at the ice overburden level. This observation implied that the flow variations were principally controlled by the local water pressure which enhanced basal motions. Detailed examination of the diurnal variations, however, showed that the speed was larger when the pressure was increasing than when it was decreasing. Greater speed with increasing pressure was interpreted by subglacial water-cavity opening and/or longitudinal stress coupling with the upper reaches of the glacier. Upward surface movements were observed when the glacier flow speed increased. Simultaneous measurement of internal vertical strain in a borehole showed that the uplift had two different sources: vertical straining of ice and volume increase of subglacial water cavities. The vertical surface movement was largely affected by the vertical strain, and the uplift events could not be simply attributed to cavity opening.
format Article in Journal/Newspaper
author Sugiyama, Shin
Gudmundsson, Hilmar
author_facet Sugiyama, Shin
Gudmundsson, Hilmar
author_sort Sugiyama, Shin
title Short-term variations in glacier flow controlled by subglacial water pressure at Lauteraargletscher, Bernese Alps, Switzerland
title_short Short-term variations in glacier flow controlled by subglacial water pressure at Lauteraargletscher, Bernese Alps, Switzerland
title_full Short-term variations in glacier flow controlled by subglacial water pressure at Lauteraargletscher, Bernese Alps, Switzerland
title_fullStr Short-term variations in glacier flow controlled by subglacial water pressure at Lauteraargletscher, Bernese Alps, Switzerland
title_full_unstemmed Short-term variations in glacier flow controlled by subglacial water pressure at Lauteraargletscher, Bernese Alps, Switzerland
title_sort short-term variations in glacier flow controlled by subglacial water pressure at lauteraargletscher, bernese alps, switzerland
publisher International Glaciological Society
publishDate 2004
url https://nrl.northumbria.ac.uk/id/eprint/38164/
https://doi.org/10.3189/172756504781829846
genre Journal of Glaciology
genre_facet Journal of Glaciology
op_relation Sugiyama, Shin and Gudmundsson, Hilmar (2004) Short-term variations in glacier flow controlled by subglacial water pressure at Lauteraargletscher, Bernese Alps, Switzerland. Journal of Glaciology, 50 (170). pp. 353-362. ISSN 0022-1430
op_doi https://doi.org/10.3189/172756504781829846
container_title Journal of Glaciology
container_volume 50
container_issue 170
container_start_page 353
op_container_end_page 362
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