We consider the space-time discretization of the diffusion equation, using an isogeometric analysis (IgA) approximation in space and a discontinuous Galerkin (DG) approximation in time. Drawing inspiration from a former spectral analysis, we propose for the resulting space-time linear system a multigrid preconditioned GMRES method, which combines a preconditioned GMRES with a standard multigrid acting only in space. The performance of the proposed solver is illustrated through numerical experiments, which show its competitiveness in terms of iteration count, run-time and parallel scaling
We consider two parallel-in-time approaches applied to a (reaction) diffusion problem, possibly non-...
The goal of this research is to optimize multigrid methods for higher order accurate space-time disc...
Isogeometric Analysis (IgA) can be seen as the natural extension of the Finite Element Method (FEM) ...
We consider the space-time discretization of the diffusion equation, using an isogeometric analysis ...
We consider the space-time discretization of the diffusion equation, using an isogeometric analysis ...
We consider the space-time discretization of the diffusion equation, using an isogeometric analysis ...
We consider the space-time discretization of the diffusion equation, using an isogeometric analysis ...
We consider the space-time discretization of the diffusion equation, using an isogeometric analysis ...
In this work the use of a p-multigrid preconditioned flexible GMRES solver to deal with the solution...
In this work the use of a p-multigrid preconditioned flexible GMRES solver to deal with the solution...
In this work the use of a p-multigrid preconditioned flexible GMRES solver to deal with the solution...
In this article, we analyse the convergence of multigrid (MG) iteration for solving the algebraic eq...
Abstract. We consider optimal-scaling multigrid solvers for the linear systems that arise from the d...
In this article, we analyse the convergence of multigrid (MG) iteration for solving the algebraic eq...
We consider two parallel-in-time approaches applied to a (reaction) diffusion problem, possibly non-...
We consider two parallel-in-time approaches applied to a (reaction) diffusion problem, possibly non-...
The goal of this research is to optimize multigrid methods for higher order accurate space-time disc...
Isogeometric Analysis (IgA) can be seen as the natural extension of the Finite Element Method (FEM) ...
We consider the space-time discretization of the diffusion equation, using an isogeometric analysis ...
We consider the space-time discretization of the diffusion equation, using an isogeometric analysis ...
We consider the space-time discretization of the diffusion equation, using an isogeometric analysis ...
We consider the space-time discretization of the diffusion equation, using an isogeometric analysis ...
We consider the space-time discretization of the diffusion equation, using an isogeometric analysis ...
In this work the use of a p-multigrid preconditioned flexible GMRES solver to deal with the solution...
In this work the use of a p-multigrid preconditioned flexible GMRES solver to deal with the solution...
In this work the use of a p-multigrid preconditioned flexible GMRES solver to deal with the solution...
In this article, we analyse the convergence of multigrid (MG) iteration for solving the algebraic eq...
Abstract. We consider optimal-scaling multigrid solvers for the linear systems that arise from the d...
In this article, we analyse the convergence of multigrid (MG) iteration for solving the algebraic eq...
We consider two parallel-in-time approaches applied to a (reaction) diffusion problem, possibly non-...
We consider two parallel-in-time approaches applied to a (reaction) diffusion problem, possibly non-...
The goal of this research is to optimize multigrid methods for higher order accurate space-time disc...
Isogeometric Analysis (IgA) can be seen as the natural extension of the Finite Element Method (FEM) ...