HR: 1330h
AN: H42F-1150 [PDF]
TI: The Implication of Structural Discontinuities in Rock Slope Stability Analysis: Example of
Katsuura-Ubara, SE-Japan.
AU: * Diop, S
EM: julesdiop60@hotmail.com
AF: University of Tsukuba, Institute of Geoscience, University of Tsukuba, Tsukuba, IBA 305-8571
Japan
AU: Ogawa, Y
EM: yogawa@arsia.geo.tsukuba.ac.jp
AF: University of Tsukuba, Institute of Geoscience, University of Tsukuba, Tsukuba, IBA 305-8571
Japan
AB:
Discontinuities in rocks such as faults, joints and bedding occur at different orientations with respect to the principal
stress; knowing the type and characteristics of fractures will benefit our understanding of the bulk physical properties of
rock masses. The present paper attempts to bridge a strong relationship between structural discontinuities and slope
instabilities in the vicinity of Boso Peninsula SE Japan, marked by steep sedimentary rock forming slopes. The rocks are
essentially constituted of sandstone, mudstone or their alternation of Miocene age. The bed generally strikes E\-W or NE\-SW
and dips toward N or NW. Aerial photo\-interpretation backed up by intensive field mapping of geological and geomorphological
features revealed four main stages of deformation with different mechanisms which can be inferred from microstructures at
the scale of SEM (Scanning Electron Microscope) and thin section. The representation of discontinuities and the evaluation of
their angular relationships with regard to the drainage map indicate that the fracture intersection and fracture network
geometry greatly influence the fluid flow properties. It was verified that seepage is mainly noticeable in most recent origin
discontinuities suggesting that the fracture age and origin are very important in order to access the water transmissivity.
On the other hand a quantitative description of the discontinuities in term of orientation, spacing and density suggests that
the fracture system in this area controls the orientation and the morphology of the slopes. These examples illustrate how a
precise knowledge of the fracture network is essential for the analysis and design of slopes. The method used in this paper
is relatively simple with acceptable degree of accuracy, and it shows a significative participation of the fracture analysis
as an important tool for solving problems concerning the various stages of the slope stability analysis.
Keywords: Structural discontinuities; Slope Stability; Drainage map
DE: 5104 Fracture and flow
SC: Hydrology [H]
MN: 2003 Fall Meeting