A meshless Element-Free Galerkin (EFG) equilibrium formulation is proposed to compute the limit loads which can be sustained by plates and slabs. In the formulation pure moment fields are approximated using a moving least-squares technique, which means that the resulting fields are smooth over the entire problem domain. There is therefore no need to enforce continuity conditions at interfaces within the problem domain, which would be a key part of a comparable finite element formulation. The collocation method is used to enforce the strong form of the equilibrium equations and a stabilized conforming nodal integration scheme is introduced to eliminate numerical instability problems. The combination of the collocation method and the smoothin...
A finite element formulation of the limit analysis of perfectly plastic slabs is given. An element w...
The goal of the study is to develop numerical algorithms for the optimization of plated structures....
The goal of the study is to develop numerical algorithms for the optimization of plated structures....
A meshless Element-Free Galerkin (EFG) equilibrium formulation is proposed to compute the limit load...
Current research in the field of limit analysis is focussing on the development of numerical tools ...
Current research in the field of limit analysis is focussing on the development of numerical tools w...
The implementation of an h-adaptive Element-Free Galerkin (EFG) method in the framework of limit ana...
International audienceThis paper presents a simple and effective formulation based on a rotation-fre...
International audienceThis paper presents a simple and effective formulation based on a rotation-fre...
A meshless approach to the analysis of two-dimensional elasticity problems by the Element-Free Galer...
This paper presents two novel numerical procedures to determine upper and lower bounds on the actual...
This paper presents a numerical procedure for lower bound limit analysis of plane problems governed ...
AbstractA knowledge of the reserve strength of plates will result in more economical designs, practi...
This is a preprint version of an article accepted for publication in International Journal for Numer...
This is a preprint version of an article accepted for publication in International Journal for Numer...
A finite element formulation of the limit analysis of perfectly plastic slabs is given. An element w...
The goal of the study is to develop numerical algorithms for the optimization of plated structures....
The goal of the study is to develop numerical algorithms for the optimization of plated structures....
A meshless Element-Free Galerkin (EFG) equilibrium formulation is proposed to compute the limit load...
Current research in the field of limit analysis is focussing on the development of numerical tools ...
Current research in the field of limit analysis is focussing on the development of numerical tools w...
The implementation of an h-adaptive Element-Free Galerkin (EFG) method in the framework of limit ana...
International audienceThis paper presents a simple and effective formulation based on a rotation-fre...
International audienceThis paper presents a simple and effective formulation based on a rotation-fre...
A meshless approach to the analysis of two-dimensional elasticity problems by the Element-Free Galer...
This paper presents two novel numerical procedures to determine upper and lower bounds on the actual...
This paper presents a numerical procedure for lower bound limit analysis of plane problems governed ...
AbstractA knowledge of the reserve strength of plates will result in more economical designs, practi...
This is a preprint version of an article accepted for publication in International Journal for Numer...
This is a preprint version of an article accepted for publication in International Journal for Numer...
A finite element formulation of the limit analysis of perfectly plastic slabs is given. An element w...
The goal of the study is to develop numerical algorithms for the optimization of plated structures....
The goal of the study is to develop numerical algorithms for the optimization of plated structures....