International audienceIn this paper we present and implement the Palindromic Discontinuous Galerkin (PDG) method in dimensions higher than one. The method has already been exposed and tested in [4] in the one-dimensional context. The PDG method is a general implicit high order method for approximating systems of conservation laws. It relies on a kinetic interpretation of the conservation laws containing stiff relaxation terms. The kinetic system is approximated with an asymptotic-preserving high order DG method. We describe the parallel implementation of the method, based on the StarPU runtime library. Then we apply it on preliminary test cases
International audienceIn this work, we are interested in the implicit discretization of compressible...
International audience Abstract: An efficient and robust time integration procedure for a high-order...
In this paper we discuss a new and very efficient implementation of high order accurate arbitrary hi...
In this paper we present and implement the Palindromic Discontinuous Galerkin (PDG) method in dimens...
International audienceIn this paper we present and implement the Palindromic Discontinuous Galerkin ...
In this paper we present and implement the Palindromic Discontinuous Galerkin (PDG) method in dimens...
International audienceWe construct a high order discontinuous Galerkin method for solving general hy...
International audienceWe present a high-order scheme for approximating kinetic equations with stiff ...
We present a high order scheme for approximating kinetic equations with stiff relaxation. The object...
We propose a new parallel Discontinuous Galerkin method for the approximation of hyperbolic systems ...
In this work a new class of numerical methods for the BGK model of kinetic equations is presented. I...
We have developed in a previous work a parallel and quasi-explicit Discontinuous Galerkin (DG) kinet...
International audienceIn this paper, we develop a high order semi-implicit time discretization meth...
International audienceWe apply flux vector splitting (FVS) strategy to the implicit kinetic schemes f...
This paper outlines the implementation and performance of a parallelisation approach involving parti...
International audienceIn this work, we are interested in the implicit discretization of compressible...
International audience Abstract: An efficient and robust time integration procedure for a high-order...
In this paper we discuss a new and very efficient implementation of high order accurate arbitrary hi...
In this paper we present and implement the Palindromic Discontinuous Galerkin (PDG) method in dimens...
International audienceIn this paper we present and implement the Palindromic Discontinuous Galerkin ...
In this paper we present and implement the Palindromic Discontinuous Galerkin (PDG) method in dimens...
International audienceWe construct a high order discontinuous Galerkin method for solving general hy...
International audienceWe present a high-order scheme for approximating kinetic equations with stiff ...
We present a high order scheme for approximating kinetic equations with stiff relaxation. The object...
We propose a new parallel Discontinuous Galerkin method for the approximation of hyperbolic systems ...
In this work a new class of numerical methods for the BGK model of kinetic equations is presented. I...
We have developed in a previous work a parallel and quasi-explicit Discontinuous Galerkin (DG) kinet...
International audienceIn this paper, we develop a high order semi-implicit time discretization meth...
International audienceWe apply flux vector splitting (FVS) strategy to the implicit kinetic schemes f...
This paper outlines the implementation and performance of a parallelisation approach involving parti...
International audienceIn this work, we are interested in the implicit discretization of compressible...
International audience Abstract: An efficient and robust time integration procedure for a high-order...
In this paper we discuss a new and very efficient implementation of high order accurate arbitrary hi...