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contributor authorTimothy D. Stark
contributor authorHisham T. Eid
date accessioned2017-05-08T21:26:18Z
date available2017-05-08T21:26:18Z
date copyrightNovember 1998
date issued1998
identifier other%28asce%291090-0241%281998%29124%3A11%281049%29.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/51457
description abstractStudy of several field case histories has shown that the difference between two- and three-dimensional factors of safety is most pronounced in cases that involve a translational failure. Two- and three-dimensional slope stability analyses of field case histories and a parametric study of a typical slope geometry revealed that commercially available three-dimensional slope stability programs have a number of limitations with respect to (1) accounting for the shear resistance along the sides of the sliding mass; (2) modeling the stress-dependent nature of failure envelopes of the materials involved; and (3) considering the internal forces in the slide mass. These limitations can significantly affect the calculated factor of safety for a translational failure mode. A technique is presented to overcome some of these limitations and provide a better estimation of the three-dimensional factor of safety. Field case histories are presented to show the importance of using a three-dimensional analysis in back-calculating the mobilized shear strength of the materials involved in a slope failure and in the design of slopes with complicated topography, shear strength conditions, and/or pore-water pressures.
publisherAmerican Society of Civil Engineers
titlePerformance of Three-Dimensional Slope Stability Methods in Practice
typeJournal Paper
journal volume124
journal issue11
journal titleJournal of Geotechnical and Geoenvironmental Engineering
identifier doi10.1061/(ASCE)1090-0241(1998)124:11(1049)
treeJournal of Geotechnical and Geoenvironmental Engineering:;1998:;Volume ( 124 ):;issue: 011
contenttypeFulltext


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