Published 2007 | Version v1
Journal article

Confined wetting of FoCa clay powder/pellet mixtures: Experimentation and numerical modeling

  • 1. Commissariat Energie Atom, DMT, MTMS, F-91191 Gif Sur Yvette, (France)
  • 2. Commissariat Energie Atom, DPC, SCCME, F-91191 Gif Sur Yvette, (France)

Description

Potential geological nuclear waste disposals must be properly sealed to prevent contamination of the biosphere by radionuclides. In the framework of the RESEAL project, the performance of a bentonite shaft seal is currently studied at Mol (Belgium). This paper focuses on the hydro-mechanical physical behavior of centimetric, unsaturated samples of the backfilling material - a mixture of FoCa-clay powder and pellets - during odometer tests. The hydro-mechanical response of the samples is observed experimentally, and then compared to numerical simulations performed by our Cast3M Finite Element code. The generalized Darcy's law and the Barcelona Basic Model mechanical model formed the physical basis of the numerical model and the interpretation. They are widely used in engineered barriers modeling. Vertical swelling pressure and water intake were measured throughout the test. Although water income presents a monotonous increase, the swelling pressure evolution is marked by a peak, and then a local minimum before increasing again to an asymptotic value. This unexpected behavior is explained by yielding rather than by heterogeneity. It is satisfactorily reproduced by the model after parameter calibration. Several samples with different heights ranging from 5 to 12 cm show the same hydro-mechanical response, apart from a dilatation of the time scale. The interest of the characterization of centimetric samples to predicting the efficiency of a metric sealing is discussed. (authors)

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Publishing Information

Journal Title
Physics and Chemistry of the Earth (2002)
Journal Volume
32
Journal Issue
nos8-14
Journal Page Range
p. 795-808
ISSN
1474-7065

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Notes
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