Finite Element Methods are techniques for estimating solutions to boundary value problems for partial differential equations from an approximating subspace. These methods are based on weak or variational forms of the BVP that require less of the problem functions than what the original PDE would suggest in terms of order of differentiability and continuity. In the scope of this project, we focused on implementing the Galerkin Finite Element Method, which provides a best approximation to the true solution from a finite-dimensional subspace of piecewise polynomial functions defined on a triangular mesh. For this thesis, we developed a shared memory parallel implementation of the Galerkin Method that can be executed on a GPU to minimize runtime by...
AbstractWe discuss some aspects of implementing the finite-element method on parallel computers with...
[[abstract]]The finite element method is widely applied to many domains, such as engineering, atmolo...
The Finite Element Method (FEM) is used to solve problems like solid deformation and heat diffusion ...
I hereby declare that I am the sole author of this thesis. This is a true copy of the thesis, includ...
International audienceDiscontinuous Galerkin (dG) methods on meshes consisting of polygonal/polyhedr...
Discontinuous Galerkin (dG) methods on meshes consisting of polygonal/polyhedral(henceforth, collect...
International audienceFinite element methods are one of the most prominent discretisation techniques...
An efficient parallel scheme based on the nodal discontinuous Galerkin finite element method (nodal-...
Abstract Finite element methods are one of the most prominent discretisation tech-niques for the sol...
Parallel finite element algorithms based on objectoriented concepts are presented. Moreover, the des...
[[abstract]]The finite element method is widely applied to many domains, such as engineering, atmolo...
We present a modular toolbox for parallel finite element simulations on distributed memory systems. ...
We propose a parallel method for computing local Laplacian curva-ture flows for triangular meshes. L...
Abstract: The parallel variant of iterative method for hp-schemes obtained in the case of ...
The implementation of a fast, wavelet-based Galerkin discretization of second kind integral equation...
AbstractWe discuss some aspects of implementing the finite-element method on parallel computers with...
[[abstract]]The finite element method is widely applied to many domains, such as engineering, atmolo...
The Finite Element Method (FEM) is used to solve problems like solid deformation and heat diffusion ...
I hereby declare that I am the sole author of this thesis. This is a true copy of the thesis, includ...
International audienceDiscontinuous Galerkin (dG) methods on meshes consisting of polygonal/polyhedr...
Discontinuous Galerkin (dG) methods on meshes consisting of polygonal/polyhedral(henceforth, collect...
International audienceFinite element methods are one of the most prominent discretisation techniques...
An efficient parallel scheme based on the nodal discontinuous Galerkin finite element method (nodal-...
Abstract Finite element methods are one of the most prominent discretisation tech-niques for the sol...
Parallel finite element algorithms based on objectoriented concepts are presented. Moreover, the des...
[[abstract]]The finite element method is widely applied to many domains, such as engineering, atmolo...
We present a modular toolbox for parallel finite element simulations on distributed memory systems. ...
We propose a parallel method for computing local Laplacian curva-ture flows for triangular meshes. L...
Abstract: The parallel variant of iterative method for hp-schemes obtained in the case of ...
The implementation of a fast, wavelet-based Galerkin discretization of second kind integral equation...
AbstractWe discuss some aspects of implementing the finite-element method on parallel computers with...
[[abstract]]The finite element method is widely applied to many domains, such as engineering, atmolo...
The Finite Element Method (FEM) is used to solve problems like solid deformation and heat diffusion ...