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The Effect of Rock Joints and Ground Water on the Thermal Flow through Rock Mass  

박연준 (수원대학교 토목공학과)
유광호 (수원대학교 토목공학과)
신희순 (한국지질자원연구원 탐사개발연구부)
신중호 (한국지질자원연구원 탐사개발연구부)
Publication Information
Tunnel and Underground Space / v.12, no.3, 2002 , pp. 220-228 More about this Journal
Abstract
Thermal flow through jointed rock mass was analyzed by numerical methods. The effect of a single set of joints on the heat conduction was analyzed by one-dimensional model and compared with the analytical solution. When a joint is completely dry, the joint behaves as a thermal break inducing jumps in temperature distribution even at steady state. Therefore when joints are completely dry, individual joint has to be taken into consideration to get a good result. When joints are partially or fully saturated, the thermal conductivity of the joints increases drastically and the jumps in temperature distribution become less severe. Therefore the effect of joint in heat conduction can be well absorbed by continuum anisotropic model whose thermal properties represent overall thermal properties of the intact part and the discontinuities. Since the effect of joints becomes less important as the degree of the saturation increases, the overall thermal response of the rock mass also becomes close to isotropic. Therefore it can be concluded that a great effort has to be made to obtain a precise in-situ thermal properties in order to get a good prediction of the thermal response of a jointed rock mass.
Keywords
Joint; Thermal Flow; Ground Water; Thermal Properties of Rock Mass;
Citations & Related Records
Times Cited By KSCI : 4  (Citation Analysis)
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