DISCRETE ELEMENT ANALYSIS OF EFFECT OF STRESS ON
EQUIVALENT PERMEABILITY OF FRACTURED ROCKMASS
(1. Key Laboratory of Rock Mechanics in Hydraulic Structural Engineering,Ministry of Education,Wuhan University,Wuhan,Hubei 430072,China;2. State Key Laboratory of Geomechanics and Geotechnical Engineering,Institute of Rock and Soil Mechanics,Chinese Academy of Sciences,Wuhan,Hubei 430071,China)
Abstract:Based on the joint information from in-situ survey and numerical simulation technique of joint(Monte- Carlo method),the Fish language in UDEC is adopted to compile a program to generate the calculation model of fractured rockmass named DFN-GEN. DFN-GEN program can solve the problem of discrete mesh caused by the various joints. With this program,lots of random joints are generated;the fractured rockmass is meshed directly and the calculation model of fractured rockmass is generated which is finally used in the hydro-mechanical(HM) coupling calculation. DFN-GEN program is adopted to generate the calculation model of fractured rockmass and to study the hydro-mechanical coupling behavior of rockmass. Combining with TASK C of the international cooperation project DECOVALEX,the discrete fracture network(DFN) is generated and the HM behavior of fractured rockmass is studied. The effect of stress on equivalent permeability of rockmass is also analyzed. A basis is provided for engineering practice of fractured rockmass such as underground disposal of nuclear waste repository,dam foundation,slope stability and so on.
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