Computational approach to localization using global energy minimization


Autoria(s): Chen, G.; Baker, G.; Hunt, G.W.
Data(s)

2000

Resumo

Damage localization induced by strain softening can be predicted by the direct minimization of a global energy function. This article concerns the computational strategy for implementing this principle for softening materials such as concrete. Instead of using heuristic global optimization techniques, our strategies are a hybrid of local optimization methods with a path-finding approach to ensure a global optimum. With admissible nodal displacements being independent variables, it is easy to deal with the geometric (mesh) constraint conditions. The direct search optimization methods recover the localized solutions for a range of softening lattice models which are representative of quasi-brittle structures

Identificador

http://eprints.qut.edu.au/28170/

Publicador

Elsevier

Relação

DOI:10.1016/S0045-7949(00)00043-2

Chen, G., Baker, G., & Hunt, G.W. (2000) Computational approach to localization using global energy minimization. Computers & Structures, 78(4), pp. 529-536.

Direitos

Copyright 2000 Elsevier

Fonte

Institute for Creative Industries and Innovation

Palavras-Chave #cracks #fracture mechanics #minimisation #structural engineering computing
Tipo

Journal Article