Even in the simple linear elastic range, the material behavior is not deterministic, but fluctuates randomly around some expectation values. The knowledge about this characteristic is obviously trivial from an experimentalist’s point of view. However, it is not considered in the vast majority of material models in which “only” deterministic behavior is taken into account. One very promising approach to the inclusion of stochastic effects in modeling of materials is provided by the Karhunen-Loève expansion. It has been used, for example, in the stochastic finite element method, where it yields results of the desired kind, but unfortunately at drastically increased numerical costs. This contribution aims to propose a new ansatz that is based ...
summary:The effect of a random strain history on the stress distribution in a viscoelastic material ...
The damage process in quasi-brittle materials is a complex phenomenon in which heterogeneity plays a...
A Finite Element Reliability Method (FERM) is introduced to perform reliability analyses on two-dime...
Even in the simple linear elastic range, the material behavior is not deterministic, but fluctuates ...
Even in the simple linear elastic range, the material behavior is not deterministic, but fluctuates ...
Stochastic fluctuations of material properties, i.e. the elastic constants, result in stochastic flu...
Heterogeneous materials at the micro-structural level are usually subjected to several uncertainties...
International audienceThis work is concerned with the construction of stochastic models for random e...
We present a numerical framework for elastostatics of random media. Firstly, after a mathematical in...
This paper presents a numerical method for solution of a stochastic partial differential equation (S...
In this paper we consider the mixed variational formulation of the quasi-static stochastic plasticit...
In traditional computational mechanics, it is often assumed that the physical properties of the syst...
SummaryIn the ordinary structural materials, one of the parameters that can be assumed to have spati...
12a. DISTRIBUTIONt AVAILABILITY STATEMENT 12b. DISTRIBUTION CODE N/A jppto f Wb 13,1O?10t'04 13...
summary:The effect of a random strain history on the stress distribution in a viscoelastic material ...
The damage process in quasi-brittle materials is a complex phenomenon in which heterogeneity plays a...
A Finite Element Reliability Method (FERM) is introduced to perform reliability analyses on two-dime...
Even in the simple linear elastic range, the material behavior is not deterministic, but fluctuates ...
Even in the simple linear elastic range, the material behavior is not deterministic, but fluctuates ...
Stochastic fluctuations of material properties, i.e. the elastic constants, result in stochastic flu...
Heterogeneous materials at the micro-structural level are usually subjected to several uncertainties...
International audienceThis work is concerned with the construction of stochastic models for random e...
We present a numerical framework for elastostatics of random media. Firstly, after a mathematical in...
This paper presents a numerical method for solution of a stochastic partial differential equation (S...
In this paper we consider the mixed variational formulation of the quasi-static stochastic plasticit...
In traditional computational mechanics, it is often assumed that the physical properties of the syst...
SummaryIn the ordinary structural materials, one of the parameters that can be assumed to have spati...
12a. DISTRIBUTIONt AVAILABILITY STATEMENT 12b. DISTRIBUTION CODE N/A jppto f Wb 13,1O?10t'04 13...
summary:The effect of a random strain history on the stress distribution in a viscoelastic material ...
The damage process in quasi-brittle materials is a complex phenomenon in which heterogeneity plays a...
A Finite Element Reliability Method (FERM) is introduced to perform reliability analyses on two-dime...