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The water retention properties of the Callovo-Oxfordian claystone

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Résumé

High level long lived radioactive waste might be stored in galleries excavated at great depth in clays or claystones. During storage operations, the walls of the galleries will be successively subjected to desaturation due to ventilation followed by resaturation once the galleries are closed. Partial saturation may also affect laboratory samples, due to the added effects of coring, transportation, storage and trimming. This paper describes an investigation about the water retention properties of the Callovo-Oxfordian claystone (in which the ANDRA Underground research laboratory in France has been excavated) under drying/wetting cycles. A complete description of the changes in water content, volume and degree of saturation from the as-provided state is made. Data show that water content changes between 3+ACU- (at 150 MPa of suction) and 12+ACU- At zero suction, with a shrinkage of 1.4+ACU- (at 150 MPa of suction) and a 7+ACU- swelling at zero suction. The data obtained complete existing data by defining the initial state with respect to the main drying and wetting paths and by providing volume changes along the suction cycles. Hysteresis effects are also evidenced. Irreversible volume changes are assumed to be due to micro-crack generation and incomplete recovery.

langue originaleAnglais
titreUnsaturated Soils
Sous-titreResearch and Applications - Proceedings of the 6th International Conference on Unsaturated Soils, UNSAT 2014
EditeurTaylor and Francis - Balkema
Pages1011-1016
Nombre de pages6
ISBN (imprimé)9781138026902
étatPublié - 1 janv. 2014
Modification externeOui
Evénement6th International Conference on Unsaturated Soils, UNSAT 2014 - Sydney, NSW, Australie
Durée: 2 juil. 20144 juil. 2014

Série de publications

NomUnsaturated Soils: Research and Applications - Proceedings of the 6th International Conference on Unsaturated Soils, UNSAT 2014
Volume2

Une conférence

Une conférence6th International Conference on Unsaturated Soils, UNSAT 2014
Pays/TerritoireAustralie
La villeSydney, NSW
période2/07/144/07/14

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