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Numerical modeling of a real-scale nuclear waste engineering barrier experiment

Dupray, Fabrice  
•
François, Bertrand  
•
Laloui, Lyesse  
Zavatise, G.
•
Boso, D.
2012
Bytes and Science

Deep geological repository involving a multi-barrier system constitutes one of the most promising options to isolate high-level radioactive waste from the human environment. The efficiency of Engineered-Barrier Systems (EBS) is highly based on the complex behaviour of bentonite. To improve the understanding of the processes involved in the EBS, results from a near-to-real scale experiment, the FEBEX experiment, are studied by means of a thermo-hydro-mechanical (THM) finite element approach including a consistent thermo-plastic constitutive model for unsaturated soils. The model also features a coupled THM approach of the water retention curve. The results of the numerical simulations are compared with sensor measurements and show the ability of the model to reproduce the main features of the mechanical, hydraulic and thermal behaviour of the system. Finally, those results are interpreted in the light of thermo-plasticity of unsaturated soils, which reveals the highly coupled and non-linear characters of the encountered processes.

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Type
book part or chapter
Author(s)
Dupray, Fabrice  
François, Bertrand  
Laloui, Lyesse  
Editors
Zavatise, G.
•
Boso, D.
Date Issued

2012

Publisher

CIMNE

Published in
Bytes and Science
ISBN of the book

978-84-940243-2-0

Start page

71

End page

84

Subjects

Thermo-plasticity

•

unsaturated soils

•

thermo-hydro-mechanical processes

•

nuclear waste disposal

•

bentonite

Written at

EPFL

EPFL units
LMS  
Available on Infoscience
January 23, 2013
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/88096
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