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2018 Vol.28, Issue 3 Preview Page

Original Article

30 June 2018. pp. 258-276
Abstract
References
1
Bang, S.H., Jeon, S.W., Choe, J., 2003, Determination of Equivalent Hydraulic Conductivity of Rock Mass Using Three Dimensional Discontinuity Network, Tunnel and underground space, 13.1, pp 52-63.
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Han, J., Um, J.G., 2015, Characteristics of Block Hydraulic Conductivity of 2-D DFN System According to Block Size and Fracture Geometry, Tunnel and underground space, 15.4, pp 450-461.
3
Hong, E.S., Park, E.S., Shin, H.S., Kim, H.M. and Ryu, D.W., 2008, A Numerical Analysis: Effect of Hydraulic Characteristics of a Hazardous Zone on the Face Stability in Subsea Tunnelling, Tunnel and underground space, 18.5, pp. 366-374.
4
Jeju Provincial Government, 1998, Geoligical report of the Cheju-Aewol sheet(scale 1: 50,000), pp.17-21.
5
Kim, K.S., Park, K.W. and Ji, S.H., 2010, The Development of Straddle Hydraulic Testing Equipment to Characterize Permeability in Deep Boreholes, The Journal of Engineering Geology, 20.2, pp.213-220.
6
Singhal, B.B.S, Gupta, R.P., 2010, Applied Hydrogeology of Fractured Rock, Springer, Dordrecht.
10.1007/978-90-481-8799-7
7
Zhou, Z., Zhang, L. and Liu, X., 2015, Determining Representative Elementary Volume of Fractured Rock Mass Considering Hydro-Mechanical Effect, The Electronic Journal of Geotechnical Engineering, 20.25, pp. 12647-12655.
Information
  • Publisher :Korean Society for Rock Mechanics and Rock Engineering
  • Publisher(Ko) :한국암반공학회
  • Journal Title :Tunnel and Underground Space
  • Journal Title(Ko) :터널과 지하공간
  • Volume : 28
  • No :3
  • Pages :258-276
  • Received Date : 2018-06-05
  • Revised Date : 2018-06-26
  • Accepted Date : 2018-06-27