A study of the Würm glaciation focused on the Valais region (Alps)

During the Last Glacial Maximum (LGM), the glaciation in the European Alps reached maximum ice extent. We already simulated the steady states of the Alpine ice coverage for several climate drivers in Becker et al. (2016) and heighten in this article such studies for the Swiss Valais region. To this...

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Published in:Geographica Helvetica
Main Authors: Becker, Patrick, Funk, Martin, Schlüchter, Christian, Hutter, Kolumban
Format: Article in Journal/Newspaper
Language:English
Published: Copernicus Publications 2018
Subjects:
geo
Online Access:https://doi.org/10.5194/gh-72-421-2017
https://gh.copernicus.org/articles/72/421/2017/
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spelling fttriple:oai:gotriple.eu:b-KwLtgGuhftyVGUX3bwt 2023-05-15T16:03:05+02:00 A study of the Würm glaciation focused on the Valais region (Alps) Becker, Patrick Funk, Martin Schlüchter, Christian Hutter, Kolumban 2018-01-15 https://doi.org/10.5194/gh-72-421-2017 https://gh.copernicus.org/articles/72/421/2017/ en eng Copernicus Publications doi:10.5194/gh-72-421-2017 10670/1.wfcsy6 0016-7312 2194-8798 https://gh.copernicus.org/articles/72/421/2017/ undefined Geographica Helvetica - geography eISSN: 2194-8798 geo envir Text https://vocabularies.coar-repositories.org/resource_types/c_18cf/ Journal Article https://vocabularies.coar-repositories.org/resource_types/c_6501/ 2018 fttriple https://doi.org/10.5194/gh-72-421-2017 2023-01-22T17:52:01Z During the Last Glacial Maximum (LGM), the glaciation in the European Alps reached maximum ice extent. We already simulated the steady states of the Alpine ice coverage for several climate drivers in Becker et al. (2016) and heighten in this article such studies for the Swiss Valais region. To this end, we employ the Parallel Ice Sheet Model (PISM), which combines the shallow ice approximation (SIA) with basal sliding elements of the shallow shelf approximation (SSA), and subject this model to various external driving mechanisms. We further test the sensitivity of this kind of the ice coverage in the Valais region to a temporally constant climate and to monotonic ice sheet build-up from inception to steady state as well as to the Dye 3 temperature driving during the past 120 000 years. We also test differences in the precipitation patterns exerted to the northern and southern catchment areas of the Rhone and Toce rivers to possible transfluence changes in ice from the northern to the southern catchment areas and vice versa. Moreover, we study the effect of the ice deformability and estimate the removal up to 1000 m of sediment in the Rhone Valley and study the removal of rock hindering the flow through the valley cross section at the knee of Martigny. All these studies took place because of a discrepancy in the ice height prediction of the modelled ice sheet with its geomorphologically reconstructed counterpart with proxy data obtained by Bini et al. (2009) as well as a difference in ice height between the two of up to 800 m. Unfortunately, all the scenarios in the model do not sufficiently reduce this discrepancy in the height prediction and the geomorphological reconstruction. The model results have discovered an ice dynamical discrepancy with the land map in Bini et al. (2009). Article in Journal/Newspaper Dye 3 Dye-3 Ice Sheet Unknown Rhone ENVELOPE(158.733,158.733,-79.983,-79.983) Geographica Helvetica 72 4 421 442
institution Open Polar
collection Unknown
op_collection_id fttriple
language English
topic geo
envir
spellingShingle geo
envir
Becker, Patrick
Funk, Martin
Schlüchter, Christian
Hutter, Kolumban
A study of the Würm glaciation focused on the Valais region (Alps)
topic_facet geo
envir
description During the Last Glacial Maximum (LGM), the glaciation in the European Alps reached maximum ice extent. We already simulated the steady states of the Alpine ice coverage for several climate drivers in Becker et al. (2016) and heighten in this article such studies for the Swiss Valais region. To this end, we employ the Parallel Ice Sheet Model (PISM), which combines the shallow ice approximation (SIA) with basal sliding elements of the shallow shelf approximation (SSA), and subject this model to various external driving mechanisms. We further test the sensitivity of this kind of the ice coverage in the Valais region to a temporally constant climate and to monotonic ice sheet build-up from inception to steady state as well as to the Dye 3 temperature driving during the past 120 000 years. We also test differences in the precipitation patterns exerted to the northern and southern catchment areas of the Rhone and Toce rivers to possible transfluence changes in ice from the northern to the southern catchment areas and vice versa. Moreover, we study the effect of the ice deformability and estimate the removal up to 1000 m of sediment in the Rhone Valley and study the removal of rock hindering the flow through the valley cross section at the knee of Martigny. All these studies took place because of a discrepancy in the ice height prediction of the modelled ice sheet with its geomorphologically reconstructed counterpart with proxy data obtained by Bini et al. (2009) as well as a difference in ice height between the two of up to 800 m. Unfortunately, all the scenarios in the model do not sufficiently reduce this discrepancy in the height prediction and the geomorphological reconstruction. The model results have discovered an ice dynamical discrepancy with the land map in Bini et al. (2009).
format Article in Journal/Newspaper
author Becker, Patrick
Funk, Martin
Schlüchter, Christian
Hutter, Kolumban
author_facet Becker, Patrick
Funk, Martin
Schlüchter, Christian
Hutter, Kolumban
author_sort Becker, Patrick
title A study of the Würm glaciation focused on the Valais region (Alps)
title_short A study of the Würm glaciation focused on the Valais region (Alps)
title_full A study of the Würm glaciation focused on the Valais region (Alps)
title_fullStr A study of the Würm glaciation focused on the Valais region (Alps)
title_full_unstemmed A study of the Würm glaciation focused on the Valais region (Alps)
title_sort study of the würm glaciation focused on the valais region (alps)
publisher Copernicus Publications
publishDate 2018
url https://doi.org/10.5194/gh-72-421-2017
https://gh.copernicus.org/articles/72/421/2017/
long_lat ENVELOPE(158.733,158.733,-79.983,-79.983)
geographic Rhone
geographic_facet Rhone
genre Dye 3
Dye-3
Ice Sheet
genre_facet Dye 3
Dye-3
Ice Sheet
op_source Geographica Helvetica - geography
eISSN: 2194-8798
op_relation doi:10.5194/gh-72-421-2017
10670/1.wfcsy6
0016-7312
2194-8798
https://gh.copernicus.org/articles/72/421/2017/
op_rights undefined
op_doi https://doi.org/10.5194/gh-72-421-2017
container_title Geographica Helvetica
container_volume 72
container_issue 4
container_start_page 421
op_container_end_page 442
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