Journal of Nuclear Fuel Cycle and Environment
Online ISSN : 2186-7135
Print ISSN : 1884-7579
ISSN-L : 1343-4446
Research Article
An assessment of gas impact on geological repository
- Methodology and material property of gas migration analysis in engineered barrier system -
Mikihiko YamamotoMorihiro MiharaTakao Ooi
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2004 Volume 10 Issue 1-2 Pages 31-46

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Abstract
  Gas production in a geological repository has potential hazard, as overpressurisation and enhanced release of radionuclides. Amongst data needed for assessment of gas impact, gas migration properties of engineered barriers, focused on clayey and cementitious material, was evaluated in this report. Gas injection experiments of saturated bentonite sand mixture, mortar and cement paste were carried out. In the experiments, gas entry phenomenon and gas outflow rate were observed for these materials. Based on the experimental results, two-phase flow parameters were evaluated quantitatively.
  A conventional continuum two-phase flow model, which is only practically used multidimensional multi-phase flow model, was applied to fit the experimental results. The simulation results have been in good agreement with the gas entry time and the outflow flux of gas and water observed in the experiments.
  It was confirmed that application of the continuum two-phase flow model to gas migration in cementitious materials provides sufficient degree of accuracy for assessment of repository performance. But, for sand bentonite mixture, further extension of basic two-phase flow model is needed especially for effect of stress field. Furthermore, gas migration property of other barrier materials, including rocks, by long-term gas injection test, clarification of influence of chemical environment and large-scale gas injection test is needed for multi-barrier assessment tool development and their verification.
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© 2004 Division of Nuclear Fuel Cycle and Environment, Atomic Energy Society of Japan
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