Published 2005 | Version v1
Journal article

Characterisation of gas transport properties of the Opalinus clay, a potential host rock formation for radioactive waste disposal

  • 1. Nagra - National Cooperative for the Disposal of Radioactive Waste, Wettingen (Switzerland)
  • 2. British Geological Survey, Kingsley Dunham Centre, Keyworth (United Kingdom)
  • 3. Paul Scherrer Inst. (PSI), Villigen (Switzerland)
  • 4. Bern Univ. (Switzerland)

Description

The Opalinus Clay in Northern Switzerland has been identified as a potential host rock formation for the disposal of radioactive waste. Comprehensive understanding of gas transport processes through this low-permeability formation forms a key issue in the assessment of repository performance. Field investigations and laboratory experiments suggest an intrinsic permeability of the Opalinus Clay in the order of 10-20 to 10-21 m2 and a moderate anisotropy ratio ≤ 10. Porosity depends on clay content and burial depth; values of ∼ 0.12 are reported for the region of interest. Porosimetry indicates that about 10-30% of voids can be classed as macro-pores, corresponding to an equivalent pore radius > 25 nm. The determined entry pressures are in the range of 0.4-10 MPa and exhibit a marked dependence on intrinsic permeability. Both in situ gas tests and gas permeameter tests on drill-cores demonstrate that gas transport through the rock is accompanied by pore water displacement, suggesting that classical flow concepts of immiscible displacement in porous media can be applied when the gas entry pressure (i.e. capillary threshold pressure) is less than the minimum principal stress acting within the rock. Essentially, the pore space accessible to gas flow is restricted to the network of connected macro-pores, which implies a very low degree of desaturation of the rock during the gas imbibition process. At elevated gas pressures (i.e. when gas pressure approaches the level of total stress that acts on the rock body), evidence was seen for dilatancy controlled gas transport mechanisms. Further field experiments were aimed at creating extended tensile fractures with high fracture transmissivity (hydro- or gas-fractures). The test results lead to the conclusion that gas fracturing can be largely ruled out as a risk for post-closure repository performance. (authors)

Additional details

Additional titles

Original title (English)
Caracterisation des proprietes des argiles d'Opalinus (roche d'accueil potentielle pour un stockage de dechets radioactifs) relatives au transport des gaz

Publishing Information

Journal Title
Oil and Gas Science and Technology
Journal Volume
60
Journal Issue
no.1
Journal Page Range
p. 121-139
ISSN
1294-4475
CODEN
OGSTFA

Optional Information

Notes
30 refs.