This work presents an analysis of the wavelet-Galerkin method for one-dimensional elastoplastic-damage problems. Time-stepping algorithm for non-linear dynamics is presented. Numerical treatment of the constitutive models is developed by the use of return-mapping algorithm. For spacial discretization we can use wavelet-Galerkin method instead of standard finite element method. This approach allows to locate singularities. The discrete formulation developed can be applied to the simulation of one-dimensional problems for elastic-plastic-damage models. (C) 2007 Elsevier Inc. All rights reserved
In this paper we consider a coupled system of elastic and rigid bodies. It can be mathematically for...
Wavelet Galerkin Method is used to numerically solve an initial differential problem, after adapting...
The objective of this paper is to develop a family of wavelet-based finite elements for structural r...
This work presents an analysis of the wavelet-Galerkin method for one-dimensional elastoplastic-dama...
We present a wavelet-Galerkin method for the analysis of elastic-plastic-damage systems. Ju's model ...
We use biorthogonal B-spline wavelet bases to discretize the dynamic response problem for a straight...
The well-known problem of elasticity that may be written as a variational equation [4] has been rece...
International audienceThis paper is devoted to a new algorithm to solve elastostatics problems on an...
This paper proposes a wavelet based numerical method for the solution of elastoplastic problem. The ...
Abstract-This paper is devoted to a new algorithm to compute the local and overall response of a com...
Discrete orthogonal wavelets are a family of functions with compact support which form a basis on a ...
Wavelet-based methods open a door for numerical solution of differential equations. Stiff systems, a...
AbstractWe propose a wavelet method to analyze the stochastic-elastic problem of specific adhesion b...
A new numerical method for the identification of initial conditions in wave propagation or heat cond...
A wavelet-based spectral finite element method (WSFEM) is presented that may be used for an accurate...
In this paper we consider a coupled system of elastic and rigid bodies. It can be mathematically for...
Wavelet Galerkin Method is used to numerically solve an initial differential problem, after adapting...
The objective of this paper is to develop a family of wavelet-based finite elements for structural r...
This work presents an analysis of the wavelet-Galerkin method for one-dimensional elastoplastic-dama...
We present a wavelet-Galerkin method for the analysis of elastic-plastic-damage systems. Ju's model ...
We use biorthogonal B-spline wavelet bases to discretize the dynamic response problem for a straight...
The well-known problem of elasticity that may be written as a variational equation [4] has been rece...
International audienceThis paper is devoted to a new algorithm to solve elastostatics problems on an...
This paper proposes a wavelet based numerical method for the solution of elastoplastic problem. The ...
Abstract-This paper is devoted to a new algorithm to compute the local and overall response of a com...
Discrete orthogonal wavelets are a family of functions with compact support which form a basis on a ...
Wavelet-based methods open a door for numerical solution of differential equations. Stiff systems, a...
AbstractWe propose a wavelet method to analyze the stochastic-elastic problem of specific adhesion b...
A new numerical method for the identification of initial conditions in wave propagation or heat cond...
A wavelet-based spectral finite element method (WSFEM) is presented that may be used for an accurate...
In this paper we consider a coupled system of elastic and rigid bodies. It can be mathematically for...
Wavelet Galerkin Method is used to numerically solve an initial differential problem, after adapting...
The objective of this paper is to develop a family of wavelet-based finite elements for structural r...