Joint geodetic and seismic analysis of surface crevassing near a seasonal glacier-dammed lake at Gornergletscher, Switzerland

Seasonal lake Gornersee forms at the confluence of Gornergletscher and Grenzgletscher, Switzerland, and experiences outburst floods annually in midsummer. To study the interplay between lake drainage, glacier movement and crevasse activity, high-frequency seismometers and GPS receivers were deployed...

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Published in:Annals of Glaciology
Main Authors: Louis Garcia, Karen Luttrell, Debi Kilb, Fabian Walter
Format: Article
Language:English
Published: Cambridge University Press 2019-09-01
Subjects:
Online Access:https://www.cambridge.org/core/product/identifier/S0260305518000320/type/journal_article
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author Louis Garcia
Karen Luttrell
Debi Kilb
Fabian Walter
author_facet Louis Garcia
Karen Luttrell
Debi Kilb
Fabian Walter
author_sort Louis Garcia
collection DOAJ
container_title Annals of Glaciology
description Seasonal lake Gornersee forms at the confluence of Gornergletscher and Grenzgletscher, Switzerland, and experiences outburst floods annually in midsummer. To study the interplay between lake drainage, glacier movement and crevasse activity, high-frequency seismometers and GPS receivers were deployed in networks near Gornersee during the summer ablation seasons of 2004, 2006 and 2007. We use a Rayleigh wave coherence method to locate 3289, 7939 and 4087 icequakes, respectively, primarily along well-defined surface crevasses. We calculate two-dimensional strains from triads of GPS stations and find mean differential strain rates of ~300 × 10−6 d−1 with diurnal variations up to 800 × 10−6 d−1. Crevasse icequake activity and glacial velocity are highest during early season, then decrease as meltwater channels erode and subglacial water pressure decreases. Glacial response to Gornersee drainage varied year-to-year, with icequake activity promoted at some crevasses and inhibited at others, suggesting syn-drainage icequakes may be indicative of local drainage patterns and small-scale features of the stress field. Diurnal pulses in icequake activity exhibit peak activity at different times of day in different locations, coincident with a southeast-to-northwest trending concentrated shear zone near the Gornergletscher–Grenzgletscher confluence, likely due to differences in the timing of peak strain rate in these regions.
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spelling doaj-art-313be00fc00f41f1abcba4dfc84e97c82025-08-19T21:25:35ZengCambridge University PressAnnals of Glaciology0260-30551727-56442019-09-016011310.1017/aog.2018.32Joint geodetic and seismic analysis of surface crevassing near a seasonal glacier-dammed lake at Gornergletscher, SwitzerlandLouis Garcia0Karen Luttrell1Debi Kilb2Fabian Walter3Department of Geology and Geophysics, Louisiana State University, Baton Rouge, LA, USA. E-mail:Department of Geology and Geophysics, Louisiana State University, Baton Rouge, LA, USA. E-mail:Scripps Institution of Oceanography, University of California San Diego, La Jolla, CA, USALaboratory of Hydraulics, Hydrology and Glaciology VAW, ETH, Zurich, SwitzerlandSeasonal lake Gornersee forms at the confluence of Gornergletscher and Grenzgletscher, Switzerland, and experiences outburst floods annually in midsummer. To study the interplay between lake drainage, glacier movement and crevasse activity, high-frequency seismometers and GPS receivers were deployed in networks near Gornersee during the summer ablation seasons of 2004, 2006 and 2007. We use a Rayleigh wave coherence method to locate 3289, 7939 and 4087 icequakes, respectively, primarily along well-defined surface crevasses. We calculate two-dimensional strains from triads of GPS stations and find mean differential strain rates of ~300 × 10−6 d−1 with diurnal variations up to 800 × 10−6 d−1. Crevasse icequake activity and glacial velocity are highest during early season, then decrease as meltwater channels erode and subglacial water pressure decreases. Glacial response to Gornersee drainage varied year-to-year, with icequake activity promoted at some crevasses and inhibited at others, suggesting syn-drainage icequakes may be indicative of local drainage patterns and small-scale features of the stress field. Diurnal pulses in icequake activity exhibit peak activity at different times of day in different locations, coincident with a southeast-to-northwest trending concentrated shear zone near the Gornergletscher–Grenzgletscher confluence, likely due to differences in the timing of peak strain rate in these regions.https://www.cambridge.org/core/product/identifier/S0260305518000320/type/journal_articlecrevassesglacier flowglacier geophysicsglaciological instruments and methodsseismology
spellingShingle Louis Garcia
Karen Luttrell
Debi Kilb
Fabian Walter
Joint geodetic and seismic analysis of surface crevassing near a seasonal glacier-dammed lake at Gornergletscher, Switzerland
crevasses
glacier flow
glacier geophysics
glaciological instruments and methods
seismology
title Joint geodetic and seismic analysis of surface crevassing near a seasonal glacier-dammed lake at Gornergletscher, Switzerland
title_full Joint geodetic and seismic analysis of surface crevassing near a seasonal glacier-dammed lake at Gornergletscher, Switzerland
title_fullStr Joint geodetic and seismic analysis of surface crevassing near a seasonal glacier-dammed lake at Gornergletscher, Switzerland
title_full_unstemmed Joint geodetic and seismic analysis of surface crevassing near a seasonal glacier-dammed lake at Gornergletscher, Switzerland
title_short Joint geodetic and seismic analysis of surface crevassing near a seasonal glacier-dammed lake at Gornergletscher, Switzerland
title_sort joint geodetic and seismic analysis of surface crevassing near a seasonal glacier dammed lake at gornergletscher switzerland
topic crevasses
glacier flow
glacier geophysics
glaciological instruments and methods
seismology
url https://www.cambridge.org/core/product/identifier/S0260305518000320/type/journal_article
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AT debikilb jointgeodeticandseismicanalysisofsurfacecrevassingnearaseasonalglacierdammedlakeatgornergletscherswitzerland
AT fabianwalter jointgeodeticandseismicanalysisofsurfacecrevassingnearaseasonalglacierdammedlakeatgornergletscherswitzerland