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Unsaturated soil mechanics for slope stability.

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Unsaturated soil mechanics for slope stability.

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dc.contributor.author Rahardjo, Harianto.
dc.contributor.author Satyanaga, Alfrendo.
dc.contributor.author Leong, Eng Choon.
dc.date.accessioned 2011-10-11T06:50:33Z
dc.date.available 2011-10-11T06:50:33Z
dc.date.copyright 2007
dc.date.issued 2011-10-11
dc.identifier.citation Rahardjo, H., Satyanaga, A. & Leong, E. C. (2007). Unsaturated Soil Mechanics for Slope Stability. KGS Fall National Conference 2007, pp.1-21.
dc.identifier.uri http://hdl.handle.net/10220/7216
dc.description.abstract Excessive rainfalls due to climatic changes can trigger an increase in rainfall-induced slope failures that pose real threats to both lives and properties. Many high slopes in residual soils could stand at a steep angle, but failed during or after rainfall. Commonly, these slopes have a deep groundwater table and negative pore-water pressures in the unsaturated zone above the groundwater table contribute to the shear strength of soil and consequently to factor of safety of the slope. Stability assessment of slope under rainfall requires information on rate of rainwater infiltration in the unsaturated zone and the resulting changes in pore-water pressure and shear strength of soil. This paper describes the application of unsaturated soil mechanics principles and theories in the assessment of rainfall effect on stability of slope through proper characterization of soil properties, measurement of negative pore-water pressures, seepage and slope stability analyses involving unsaturated and saturated soils. Factors controlling the rate of changes in factor of safety during rainfall and a preventive method to minimize infiltration are highlighted in this paper.
dc.format.extent 21 p.
dc.language.iso en
dc.rights © 2007 KGS Fall National Conference 2007.
dc.subject DRNTU::Engineering::Civil engineering::Geotechnical.
dc.title Unsaturated soil mechanics for slope stability.
dc.type Conference Paper
dc.contributor.conference KGS Fall National Conference (2007)
dc.contributor.school School of Civil and Environmental Engineering
dc.description.version Accepted version

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