Article (Scientific journals)
Numerical modelling of the hydrogeological and geomechanical behaviour of a large slope movement: The Triesenberg landslide (Liechtenstein).
François, Bertrand; Tacher, Laurent; Bonnard, Christophe et al.
2007In Canadian Geotechnical Journal, 44 (7), p. 840-857
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Keywords :
Landslide; slope movement; hydromechanical coupling; elasto-plasticity; numerical modelling
Abstract :
[en] Using advanced hydrogeological and geomechanical finite element modelling, it has been possible to model the mechanical behaviour of a large slope movement, the Triesenberg landslide. This slope is located along the Rhine valley in the Principality of Liechtenstein and covers an area of around 5 km(2), which includes two villages. Pore-water pressure fields calculated by the hydrogeological model were used as input for the geomechanical model. The results obtained through numerical simulation agree fairly well with field measurements of peak velocity, spatial and temporal distribution of velocity, and total displacements. Such results were obtained using a modified Cam-Clay elastoplastic constitutive model for which the required material parameters were obtained through careful geotechnical tests. These finite element models were carried out in two and three dimensions to gradually improve the understanding of the physical phenomena governing the hydrogeological conditions and the movements of the slope.
Disciplines :
Civil engineering
Author, co-author :
François, Bertrand  ;  Ecole Polytechnique Fédérale de Lausanne - EPFL > Soil Mechanics Laboratory
Tacher, Laurent
Bonnard, Christophe
Laloui, Lyesse
Triguero, Véronique
Language :
English
Title :
Numerical modelling of the hydrogeological and geomechanical behaviour of a large slope movement: The Triesenberg landslide (Liechtenstein).
Publication date :
2007
Journal title :
Canadian Geotechnical Journal
ISSN :
0008-3674
eISSN :
1208-6010
Publisher :
NRC Research Press, Ottawa, Canada
Volume :
44
Issue :
7
Pages :
840-857
Peer reviewed :
Peer Reviewed verified by ORBi
Available on ORBi :
since 27 October 2009

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