This paper describes recent advances in stability analysis that combine the limit theorems of classical plasticity with finite elements to give rigorous upper and lower bounds on the failure load. These methods, known as finite-element limit analysis, do not require assumptions to be made about the mode of failure, and use only simple strength parameters that are familiar to geotechnical engineers. The bounding properties of the solutions are invaluable in practice, and enable accurate limit loads to be obtained through the use of an exact error estimate and automatic adaptive meshing procedures. The methods are very general, and can deal with heterogeneous soil profiles, anisotropic strength characteristics, fissured soils, discontinuities, complicated boundary conditions, and complex loading in both two and three dimensions. A new development, which incorporates pore water pressures in finite-element limit analysis, is also described. Following a brief outline of the new techniques, stability solutions are given for several practical problems, including foundations, anchors, slopes, excavations and tunnels.
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June 2013
Research Article|
June 01 2013
Geotechnical stability analysis
S.W. SLOAN
S.W. SLOAN
*
* ARC Centre of Excellence for Geotechnical Science and Engineering, University of Newcastle, NSW, Australia.
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* ARC Centre of Excellence for Geotechnical Science and Engineering, University of Newcastle, NSW, Australia.
Publisher: Emerald Publishing
Received:
September 14 2012
Accepted:
January 22 2013
Online ISSN: 1751-7656
Print ISSN: 0016-8505
© 2013 Thomas Telford Ltd
2013
Geotechnique (2013) 63 (7): 531–571.
Article history
Received:
September 14 2012
Accepted:
January 22 2013
Citation
SLOAN S (2013), "Geotechnical stability analysis". Geotechnique, Vol. 63 No. 7 pp. 531–571, doi: https://doi.org/10.1680/geot.12.RL.001
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