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Erschienen in: Geotechnical and Geological Engineering 4/2011

01.07.2011 | Technical note

On Improving the Solution by Using Lower Bound Finite Elements Limit Analysis and Linear Programming

verfasst von: Jyant Kumar, Paramita Bhattacharya

Erschienen in: Geotechnical and Geological Engineering | Ausgabe 4/2011

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Abstract

This study presents an improved technique for obtaining the collapse loads for any geotechnical stability problem with the application of the lower bound finite elements limit analysis in combination with linear programming. In the proposed method, a lower order polygon is initially used throughout the problem domain to model the Mohr–Coulomb yield function; the order of the polygon refers to its total number of sides. After obtaining the initial solution, the problem domain is then discretized into a number of zones in which a different order polygon is used to model the yield surface. It is noted that a higher order polygon needs to be chosen only in a region, not everywhere, where the stress state approaches towards the yield. The total memory usage as well as the computational time needed to solve the problem with the proposed technique becomes significantly smaller. In order to check the validity of the method, the bearing capacity factor Nγ was computed for smooth as well as rough strip footing and the obtained computational results were found to be quite encouraging.

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Literatur
Zurück zum Zitat Bottero A, Negre R, Pastor J, Turgeman S (1980) Finite element method and limit analysis theory for soil mechanics problem. Comput Methods Appl Mech Engrg 22(1):131–149CrossRef Bottero A, Negre R, Pastor J, Turgeman S (1980) Finite element method and limit analysis theory for soil mechanics problem. Comput Methods Appl Mech Engrg 22(1):131–149CrossRef
Zurück zum Zitat Hjiaj M, Lyamin AV, Sloan SW (2005) Numerical limit analysis solutions for the bearing capacity factor Nγ. Int J Solids Struct 42(5):1681–1704CrossRef Hjiaj M, Lyamin AV, Sloan SW (2005) Numerical limit analysis solutions for the bearing capacity factor Nγ. Int J Solids Struct 42(5):1681–1704CrossRef
Zurück zum Zitat Kumar J, Khatri VN (2008a) Effect of footing roughness on lower bound Nγ values. Int J Geomech ASCE 8(3):176–187CrossRef Kumar J, Khatri VN (2008a) Effect of footing roughness on lower bound Nγ values. Int J Geomech ASCE 8(3):176–187CrossRef
Zurück zum Zitat Kumar J, Khatri VN (2008b) Effect of footing width on Nγ. Can Geotech Eng 45:1673–1684CrossRef Kumar J, Khatri VN (2008b) Effect of footing width on Nγ. Can Geotech Eng 45:1673–1684CrossRef
Zurück zum Zitat Kumar J, Kouzer KM (2007) Effect of footing roughness on bearing capacity factor Nγ. J Geotech Geoenviron Eng ASCE 133(5):502–511CrossRef Kumar J, Kouzer KM (2007) Effect of footing roughness on bearing capacity factor Nγ. J Geotech Geoenviron Eng ASCE 133(5):502–511CrossRef
Zurück zum Zitat Sloan SW (1988) Lower bound limit analysis using finite elements and linear programming. Int J Numer Anal Methods Geomech 12:61–77CrossRef Sloan SW (1988) Lower bound limit analysis using finite elements and linear programming. Int J Numer Anal Methods Geomech 12:61–77CrossRef
Zurück zum Zitat Ukritchon B, Whittle AW, Klangvijit C (2003) Calculation of bearing capacity factor Nγ using numerical limit analysis. J Geotech Geoenviron Eng ASCE 129(7):468–474CrossRef Ukritchon B, Whittle AW, Klangvijit C (2003) Calculation of bearing capacity factor Nγ using numerical limit analysis. J Geotech Geoenviron Eng ASCE 129(7):468–474CrossRef
Metadaten
Titel
On Improving the Solution by Using Lower Bound Finite Elements Limit Analysis and Linear Programming
verfasst von
Jyant Kumar
Paramita Bhattacharya
Publikationsdatum
01.07.2011
Verlag
Springer Netherlands
Erschienen in
Geotechnical and Geological Engineering / Ausgabe 4/2011
Print ISSN: 0960-3182
Elektronische ISSN: 1573-1529
DOI
https://doi.org/10.1007/s10706-011-9394-0

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