WOS:000345240600126International audienceThe Callovo-Oxfordian claystone is a saturated porous medium. Its transfer properties, including its low permeability [16] make it an interesting candidate for underground radioactive waste disposal. The drained tests performed on the claystone, collected by ANDRA(1) from samples at 500 meters depth [16, 9], exhibits a damageable visco-elasto-plastic behavior. This viscous behavior includes both the viscosity of the skeleton and the water. In existing models [5, 6, 11, 1], the creep phenomena are attributed either to the water permeability, to the skeleton visco-plasticity or sometimes both [13]. In a first step, a simplified analysis is proposed to understand the contribution of each phenomenon with...
International audienceIn the context of the underground storage of radioactive waste, the aim of thi...
International audienceExtensive preliminary studies have led the National RadioactiveWaste Managemen...
International audienceA possible option for the disposal of high level long lived radioactive waste ...
The Callovo-Oxfordian claystone is a saturated porous medium. Its transfer properties, including its...
WOS:000400223000007International audienceIn drained compression tests, saturated specimens of clayst...
In order to evaluate the performance of deep geological disposal of radioactive waste, an undergroun...
An underground research laboratory (URL) is being constructed by Andra in eastern France, in Callovo...
The long-term management of high-level nuclear wastes is envisaged by deep geological repository. In...
International audienceFor the performance assessment of a high radioactive waste underground reposit...
International audienceClay formations are one of the options currently being considered for the stor...
International audienceA possible option for the disposal of high level long lived radioactive waste ...
International audienceThe Callovo-Oxfordian (COx) claystone has been considered as a possible host r...
Clay formations in their natural state show very favourable confining conditions with respect to und...
Low-permeablity materials may be seen as natural geological barriers for radioactive waste repositor...
The French national radioactive waste management agency (Andra) research program is dedicated to pre...
International audienceIn the context of the underground storage of radioactive waste, the aim of thi...
International audienceExtensive preliminary studies have led the National RadioactiveWaste Managemen...
International audienceA possible option for the disposal of high level long lived radioactive waste ...
The Callovo-Oxfordian claystone is a saturated porous medium. Its transfer properties, including its...
WOS:000400223000007International audienceIn drained compression tests, saturated specimens of clayst...
In order to evaluate the performance of deep geological disposal of radioactive waste, an undergroun...
An underground research laboratory (URL) is being constructed by Andra in eastern France, in Callovo...
The long-term management of high-level nuclear wastes is envisaged by deep geological repository. In...
International audienceFor the performance assessment of a high radioactive waste underground reposit...
International audienceClay formations are one of the options currently being considered for the stor...
International audienceA possible option for the disposal of high level long lived radioactive waste ...
International audienceThe Callovo-Oxfordian (COx) claystone has been considered as a possible host r...
Clay formations in their natural state show very favourable confining conditions with respect to und...
Low-permeablity materials may be seen as natural geological barriers for radioactive waste repositor...
The French national radioactive waste management agency (Andra) research program is dedicated to pre...
International audienceIn the context of the underground storage of radioactive waste, the aim of thi...
International audienceExtensive preliminary studies have led the National RadioactiveWaste Managemen...
International audienceA possible option for the disposal of high level long lived radioactive waste ...