Título: A Technique to Remove Second Order Singularity Application in the Boundary Element Method for Elastoplasticity Plane Stress Analysis
Autores: S.A. Bakar; Rutgers University Libraries
A.L. Saleh
Fecha: 2010-02-09
Publicador: Electronic journal of boundary elements
Fuente:
Tipo:
Tema: No aplica
Descripción: This paper presents a technique to establish the strain incremental formulation in the boundary element method applied to elastoplasticity problem. In this technique, the application of second order singularity problem is avoided, and only first order singularity problem is sufficient. The proposed technique is applied to analyse a timber beam structure at the plastic stage. The solution is compared with existing strain formulation method proposed by established publication. The result gives an improved solution compared with the existing method. The proposed technique is a simplified formulation where there is no second order singularity involved in the formulation.
Idioma: Inglés

Artículos similares:

Green's Function Method for an Axisymmetric Void Between Parallel Walls por Gautam Sudhir Chandekar; Tennessee Technological University,Joseph D. Richardson; Tennessee Technological University,Yuri A. Melnikov; Middle Tennessee State University,Sally J. Pardue; Tennessee Technological University
A BEM for the Propagation of Nonlinear Planar Free-surface Waves por V. Vinayan; University of Texas at Austin,S. A. Kinnas; University of Texas at Austin
A Hypersingular Boundary Integral Equation for a Class of Problems Concerning Infiltration from Periodic Channels por David L Clements; The University of Adelaide,Maria Lobo; The University of Adelaide,Nyoman Widana; Universitas Udayana, Bali
Numerical modelling of the blowing phase in the production of glass containers por Willem Dijkstra; Eindhoven University of Technology,Bob Mattheij
10 
Direct evaluation of hypersingular Galerkin surface integrals II por Leonard J. Gray; Oak Ridge National Laboratory,Alberto Salvadori; University of Brescia,Anh-Vu Phan; University of South Alabama,Vladislav Mantic; University of Sevilla