Finite Element Limit Analysis of Passive Earth Resistance in Cohesionless Soils
This note examines the classic passive earth resistance of cohesionless soil by using two newly developed numerical procedures based on finite element formulations of the bound theorems of limit analysis and non-linear programming techniques. Solutions using upper and lower bounds are presented to c...
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Veröffentlicht in: | SOILS AND FOUNDATIONS 2008, Vol.48(6), pp.843-850 |
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creator | Shiau, Jim S. Augarde, Charles E. Lyamin, Andrei V. Sloan, Scott W. |
description | This note examines the classic passive earth resistance of cohesionless soil by using two newly developed numerical procedures based on finite element formulations of the bound theorems of limit analysis and non-linear programming techniques. Solutions using upper and lower bounds are presented to complement the previous studies of this problem. The parameters studied are soil-wall interface friction, wall inclination, backfill surface configuration and the wall's weight. |
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Solutions using upper and lower bounds are presented to complement the previous studies of this problem. The parameters studied are soil-wall interface friction, wall inclination, backfill surface configuration and the wall's weight.</description><identifier>ISSN: 0038-0806</identifier><identifier>EISSN: 1881-1418</identifier><identifier>DOI: 10.3208/sandf.48.843</identifier><identifier>CODEN: SOIFBE</identifier><language>eng</language><publisher>Tokyo: Elsevier B.V</publisher><subject>Applied sciences ; Buildings. Public works ; Computation methods. Tables. Charts ; Earthwork. Foundations. Retaining walls ; Exact sciences and technology ; finite elements ; Geotechnics ; IGC: E5/G13/H2 ; limit analysis ; nonlinear programming ; passive earth pressure ; retaining wall ; Soil investigations. Testing ; Structural analysis. 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Solutions using upper and lower bounds are presented to complement the previous studies of this problem. The parameters studied are soil-wall interface friction, wall inclination, backfill surface configuration and the wall's weight.</description><subject>Applied sciences</subject><subject>Buildings. Public works</subject><subject>Computation methods. Tables. Charts</subject><subject>Earthwork. Foundations. Retaining walls</subject><subject>Exact sciences and technology</subject><subject>finite elements</subject><subject>Geotechnics</subject><subject>IGC: E5/G13/H2</subject><subject>limit analysis</subject><subject>nonlinear programming</subject><subject>passive earth pressure</subject><subject>retaining wall</subject><subject>Soil investigations. Testing</subject><subject>Structural analysis. 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subjects | Applied sciences Buildings. Public works Computation methods. Tables. Charts Earthwork. Foundations. Retaining walls Exact sciences and technology finite elements Geotechnics IGC: E5/G13/H2 limit analysis nonlinear programming passive earth pressure retaining wall Soil investigations. Testing Structural analysis. Stresses Structure-soil interaction |
title | Finite Element Limit Analysis of Passive Earth Resistance in Cohesionless Soils |
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