Mean annual surface displacement of the Laurichard rock glacier, French Alps

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Hauptverfasser: Bodin, Xavier, Thibert, Emmanuel, Fabre, Denis, Ribolini, Adriano, Schoeneich, Philippe, Francou, Bernard, Reynaud, Louis, Fort, Monique
Format: Dataset Open Access
Sprache:en
Veröffentlicht: PANGAEA 2012
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author Bodin, Xavier
Thibert, Emmanuel
Fabre, Denis
Ribolini, Adriano
Schoeneich, Philippe
Francou, Bernard
Reynaud, Louis
Fort, Monique
author_facet Bodin, Xavier
Thibert, Emmanuel
Fabre, Denis
Ribolini, Adriano
Schoeneich, Philippe
Francou, Bernard
Reynaud, Louis
Fort, Monique
collection Datos científicos de ciencias marinas y ambientales
contents The Laurichard active rock glacier is the permafrost-related landform with the longest record of monitoring in France, including an annual geodetic survey, repeated geoelectrical campaigns from 1979 onwards and continuous recording of ground temperature since 2003. These data were used to examine changes in creep rates and internal structure from 1986 to 2006. The control that climatic variables exert on rock glacier kinematics was investigated over three time scales. Between the 1980s and the early 2000s, the main observed changes were a general increase in surface velocity and a decrease in internal resistivity. At a multi-year scale, the high correlation between surface movement and snow thickness in the preceding December appears to confirm the importance of snow cover conditions in early winter through their influence on the ground thermal regime. A comparison of surface velocities, regional climatic datasets and ground sub-surface temperatures over six years suggests a strong relation between rock glacier deformation and ground temperature, as well as a role for liquid water due to melt of thick snow cover. Finally, unusual surface lowering that accompanied peak velocities in 2004 may be due to a general thaw of the top of the permafrost, probably caused both by two successive snowy winters and by high energy inputs during the warm summer of 2003.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_816840
institution PANGAEA
language en
publishDate 2012
publisher PANGAEA
record_format pangaea
spellingShingle Mean annual surface displacement of the Laurichard rock glacier, French Alps
Bodin, Xavier
Thibert, Emmanuel
Fabre, Denis
Ribolini, Adriano
Schoeneich, Philippe
Francou, Bernard
Reynaud, Louis
Fort, Monique
Calculated; Combe_de_Laurichard; DATE/TIME; Glacier velocity along X-axis; Glacier velocity along Y-axis; Glacier velocity along Z-axis; Southern French Alps
The Laurichard active rock glacier is the permafrost-related landform with the longest record of monitoring in France, including an annual geodetic survey, repeated geoelectrical campaigns from 1979 onwards and continuous recording of ground temperature since 2003. These data were used to examine changes in creep rates and internal structure from 1986 to 2006. The control that climatic variables exert on rock glacier kinematics was investigated over three time scales. Between the 1980s and the early 2000s, the main observed changes were a general increase in surface velocity and a decrease in internal resistivity. At a multi-year scale, the high correlation between surface movement and snow thickness in the preceding December appears to confirm the importance of snow cover conditions in early winter through their influence on the ground thermal regime. A comparison of surface velocities, regional climatic datasets and ground sub-surface temperatures over six years suggests a strong relation between rock glacier deformation and ground temperature, as well as a role for liquid water due to melt of thick snow cover. Finally, unusual surface lowering that accompanied peak velocities in 2004 may be due to a general thaw of the top of the permafrost, probably caused both by two successive snowy winters and by high energy inputs during the warm summer of 2003.
title Mean annual surface displacement of the Laurichard rock glacier, French Alps
topic Calculated; Combe_de_Laurichard; DATE/TIME; Glacier velocity along X-axis; Glacier velocity along Y-axis; Glacier velocity along Z-axis; Southern French Alps
url https://doi.org/10.1594/PANGAEA.816840