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Birkholzer, J.T.; Tsang, C.F.; Tsang, Y.W.; Wang, J.S
Ernest Orlando Lawrence Berkeley National Laboratory, Berkeley, CA (United States) (US). Funding organisation: Office of Civilian Radioactive Waste Management, Yucca Mountain (United States)1996
Ernest Orlando Lawrence Berkeley National Laboratory, Berkeley, CA (United States) (US). Funding organisation: Office of Civilian Radioactive Waste Management, Yucca Mountain (United States)1996
AbstractAbstract
[en] Unsaturated flow in heterogeneous fractured porous rock was simulated using a stochastic continuum model (SCM). In this model, both the more conductive fractures and the less permeable matrix are generated within the framework of a single continuum stochastic approach, based on non-parametric indicator statistics. High-permeable fracture zones are distinguished from low-permeable matrix zones in that they have assigned a long range correlation structure in prescribed directions. The SCM was applied to study small-scale flow in the vicinity of an access tunnel, which is currently being drilled in the unsaturated fractured tuff formations at Yucca Mountain, Nevada. Extensive underground testing is underway in this tunnel to investigate the suitability of Yucca Mountain as an underground nuclear waste repository. Different flow scenarios were studied in the present paper, considering the flow conditions before and after the tunnel emplacement, and assuming steady-state net infiltration as well as episodic pulse infiltration. Although the capability of the stochastic continuum model has not yet been fully explored, it has been demonstrated that the SCM is a good alternative model feasible of describing heterogeneous flow processes in unsaturated fractured tuff at Yucca Mountain
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1 Sep 1996; 53 p; AC03-76SF00098; Also available from OSTI as DE00760278; PURL: https://www.osti.gov/servlets/purl/760278-CPAYoN/webviewable/
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