Seasonally intermittent water flow through deep fractures in an Alpine Rock Ridge: Gemsstock, Central Swiss Alps

Geological investigations and seismic refraction tomography reveal a series of 70° steep, parallel and continuous fractures at 2950 m asl within the Gemsstock rock ridge (Central Swiss Alps), at the lower fringe of alpine permafrost. Temperature measurements in a 40 m horizontal borehole through the...

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Main Authors: Phillips, Marcia, Haberkorn, , Anna, Draebing, Daniel, Krautblatter, Michael, Rhyner, Hansueli, Kenner, Robert
Language:English
Published: 2016
Subjects:
Ice
Online Access:http://doc.rero.ch/record/261106/files/hab_siw.pdf
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spelling ftreroch:oai:doc.rero.ch:20160701082741-SY 2023-05-15T16:37:49+02:00 Seasonally intermittent water flow through deep fractures in an Alpine Rock Ridge: Gemsstock, Central Swiss Alps Phillips, Marcia Haberkorn, , Anna Draebing, Daniel Krautblatter, Michael Rhyner, Hansueli Kenner, Robert 2016-07-01T06:29:30Z http://doc.rero.ch/record/261106/files/hab_siw.pdf eng eng http://doc.rero.ch/record/261106/files/hab_siw.pdf 2016 ftreroch 2023-02-16T17:26:51Z Geological investigations and seismic refraction tomography reveal a series of 70° steep, parallel and continuous fractures at 2950 m asl within the Gemsstock rock ridge (Central Swiss Alps), at the lower fringe of alpine permafrost. Temperature measurements in a 40 m horizontal borehole through the base of the ridge show that whilst conductive heat transfer dominates within the rock mass, brief negative and positive temperature anomalies are registered in summer. These have very small amplitudes and coincide with summer rainfall events lasting longer than 12 h. In contrast, a complete lack of anomalous thermal signals during spring snowmelt suggests that runoff does not penetrate the open joints, despite high snow water equivalents of around 400 mm. This is attributed to the development of an approximately 20 cm thick, continuous and impermeable basal ice layer which forms at the interface between the snow cover and the cold rock on the shady North facing rock wall during snowmelt. Spring snowmelt water therefore does not affect rock temperatures in the centre of the rock mass, despite the presence of deep open joints. The mechanical impact of snowmelt infiltration on rock wall stability at depth is thus assumed to be negligible at this site. Other/Unknown Material Ice permafrost RERO DOC Digital Library
institution Open Polar
collection RERO DOC Digital Library
op_collection_id ftreroch
language English
description Geological investigations and seismic refraction tomography reveal a series of 70° steep, parallel and continuous fractures at 2950 m asl within the Gemsstock rock ridge (Central Swiss Alps), at the lower fringe of alpine permafrost. Temperature measurements in a 40 m horizontal borehole through the base of the ridge show that whilst conductive heat transfer dominates within the rock mass, brief negative and positive temperature anomalies are registered in summer. These have very small amplitudes and coincide with summer rainfall events lasting longer than 12 h. In contrast, a complete lack of anomalous thermal signals during spring snowmelt suggests that runoff does not penetrate the open joints, despite high snow water equivalents of around 400 mm. This is attributed to the development of an approximately 20 cm thick, continuous and impermeable basal ice layer which forms at the interface between the snow cover and the cold rock on the shady North facing rock wall during snowmelt. Spring snowmelt water therefore does not affect rock temperatures in the centre of the rock mass, despite the presence of deep open joints. The mechanical impact of snowmelt infiltration on rock wall stability at depth is thus assumed to be negligible at this site.
author Phillips, Marcia
Haberkorn, , Anna
Draebing, Daniel
Krautblatter, Michael
Rhyner, Hansueli
Kenner, Robert
spellingShingle Phillips, Marcia
Haberkorn, , Anna
Draebing, Daniel
Krautblatter, Michael
Rhyner, Hansueli
Kenner, Robert
Seasonally intermittent water flow through deep fractures in an Alpine Rock Ridge: Gemsstock, Central Swiss Alps
author_facet Phillips, Marcia
Haberkorn, , Anna
Draebing, Daniel
Krautblatter, Michael
Rhyner, Hansueli
Kenner, Robert
author_sort Phillips, Marcia
title Seasonally intermittent water flow through deep fractures in an Alpine Rock Ridge: Gemsstock, Central Swiss Alps
title_short Seasonally intermittent water flow through deep fractures in an Alpine Rock Ridge: Gemsstock, Central Swiss Alps
title_full Seasonally intermittent water flow through deep fractures in an Alpine Rock Ridge: Gemsstock, Central Swiss Alps
title_fullStr Seasonally intermittent water flow through deep fractures in an Alpine Rock Ridge: Gemsstock, Central Swiss Alps
title_full_unstemmed Seasonally intermittent water flow through deep fractures in an Alpine Rock Ridge: Gemsstock, Central Swiss Alps
title_sort seasonally intermittent water flow through deep fractures in an alpine rock ridge: gemsstock, central swiss alps
publishDate 2016
url http://doc.rero.ch/record/261106/files/hab_siw.pdf
genre Ice
permafrost
genre_facet Ice
permafrost
op_relation http://doc.rero.ch/record/261106/files/hab_siw.pdf
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