In this paper we consider the adaptive finite element solution of a general class of variational problems using a combination of node insertion, node movement and edge swapping. The adaptive strategy that is proposed is based upon the construction of a hierarchy of locally optimal meshes starting with a coarse grid for which the location and connectivity of the nodes is optimized. This grid is then locally refined and the new mesh is optimized in the same manner. Results presented indicate that this approach is able to produce better meshes than those possible by more conventional adaptive strategies and in a relatively efficient manner
International audienceIn number of transient problems(mechanical, thermal or thermo-mechanical), zon...
Multilevel representations and mesh reduction techniques have been used for accelerating the process...
We propose a novel approach to adaptive refinement in FEM based on local sensitivities for node inse...
This paper investigates the adaptive finite element solution of a general class of variational probl...
This paper investigates the adaptive finite element solution of a general class of variational probl...
This paper investigates the adaptive finite element solution of a general class of variational probl...
This paper investigates the adaptive finite element solution of a general class of variational probl...
AbstractA mesh generation approach that allows the local modification of meshes of simplices is revi...
This paper presents a description of the extension and parallel implementation of a new two level ad...
We investigate multigrid algorithms on locally refined quadrilateral meshes. In contrast to a standa...
AbstractA mesh generation approach that allows the local modification of meshes of simplices is revi...
A local multilevel product algorithm and its additive version are analyzed for linear systems arisin...
In this work, we study the variational approach to mesh adaptation. This approach is shown on a 1-D ...
This thesis describes the formulation and application of an adaptive multigrid method for the effici...
International audienceIn number of transient problems(mechanical, thermal or thermo-mechanical), zon...
International audienceIn number of transient problems(mechanical, thermal or thermo-mechanical), zon...
Multilevel representations and mesh reduction techniques have been used for accelerating the process...
We propose a novel approach to adaptive refinement in FEM based on local sensitivities for node inse...
This paper investigates the adaptive finite element solution of a general class of variational probl...
This paper investigates the adaptive finite element solution of a general class of variational probl...
This paper investigates the adaptive finite element solution of a general class of variational probl...
This paper investigates the adaptive finite element solution of a general class of variational probl...
AbstractA mesh generation approach that allows the local modification of meshes of simplices is revi...
This paper presents a description of the extension and parallel implementation of a new two level ad...
We investigate multigrid algorithms on locally refined quadrilateral meshes. In contrast to a standa...
AbstractA mesh generation approach that allows the local modification of meshes of simplices is revi...
A local multilevel product algorithm and its additive version are analyzed for linear systems arisin...
In this work, we study the variational approach to mesh adaptation. This approach is shown on a 1-D ...
This thesis describes the formulation and application of an adaptive multigrid method for the effici...
International audienceIn number of transient problems(mechanical, thermal or thermo-mechanical), zon...
International audienceIn number of transient problems(mechanical, thermal or thermo-mechanical), zon...
Multilevel representations and mesh reduction techniques have been used for accelerating the process...
We propose a novel approach to adaptive refinement in FEM based on local sensitivities for node inse...