In this thesis, we present the evolutions made to the Discontinuous Galerkin solver Teta-CLAC – resulting from the IRMA-AxesSim collaboration – during the HOROCH project (2015-2018). This solver allows to solve the Maxwell equations in 3D and in parallel on a large amount of OpenCL accelerators. The goal of the HOROCH project was to perform large-scale simulations on a complete digital human body model. This model is composed of 24 million hexahedral cells in order to perform calculations in the frequency band of connected objects going from 1 to 3 GHz (Bluetooth). The applications are numerous: telephony and accessories, sport (connected shirts), medicine (probes: capsules, patches), etc. The changes thus made include, among others: optimi...
The countries of the world are already competing for Exascale and the first exaflopics supercomputer...
International audienceWe present several numerical simulations of conservation laws on recent multic...
The main goal of this work is to significantly reduce the computational cost of the scientific appli...
In this thesis, we present the evolutions made to the Discontinuous Galerkin solver Teta-CLAC – resu...
Nous présentons dans cette thèse les évolutions apportées au solveur Galerkin Discontinu Teta-CLAC, ...
International audienceSince the recent advance in microprocessor design, the optimization of computi...
In this thesis, we present Discontinuous Galerkin (DG) solvers made for solving multiple electromagn...
International audience— We describe CLAC (Conservation Laws Approximation on many Cores), a generic ...
Abstract. In this paper we present three-dimensional numerical simulations of electromagnetic waves....
Nous présentons dans cette thèse des solveurs de type Galerkin Discontinu (GD) permettant de résoudr...
International audienceWe present an implementation of a Vlasov-Maxwell solver for multicore processo...
AxesSim has developed an electromagnetic simulation tool named TETA, which is optimized for harnessi...
We present an implementation of a Vlasov-Maxwell solver for multicore processors. The Vlasov equati...
Complex physical phenomena can be numerically simulated by mathematical techniques. Usually, these t...
Abstract. We present an implementation of a Vlasov-Maxwell solver for multicore processors. The Vlas...
The countries of the world are already competing for Exascale and the first exaflopics supercomputer...
International audienceWe present several numerical simulations of conservation laws on recent multic...
The main goal of this work is to significantly reduce the computational cost of the scientific appli...
In this thesis, we present the evolutions made to the Discontinuous Galerkin solver Teta-CLAC – resu...
Nous présentons dans cette thèse les évolutions apportées au solveur Galerkin Discontinu Teta-CLAC, ...
International audienceSince the recent advance in microprocessor design, the optimization of computi...
In this thesis, we present Discontinuous Galerkin (DG) solvers made for solving multiple electromagn...
International audience— We describe CLAC (Conservation Laws Approximation on many Cores), a generic ...
Abstract. In this paper we present three-dimensional numerical simulations of electromagnetic waves....
Nous présentons dans cette thèse des solveurs de type Galerkin Discontinu (GD) permettant de résoudr...
International audienceWe present an implementation of a Vlasov-Maxwell solver for multicore processo...
AxesSim has developed an electromagnetic simulation tool named TETA, which is optimized for harnessi...
We present an implementation of a Vlasov-Maxwell solver for multicore processors. The Vlasov equati...
Complex physical phenomena can be numerically simulated by mathematical techniques. Usually, these t...
Abstract. We present an implementation of a Vlasov-Maxwell solver for multicore processors. The Vlas...
The countries of the world are already competing for Exascale and the first exaflopics supercomputer...
International audienceWe present several numerical simulations of conservation laws on recent multic...
The main goal of this work is to significantly reduce the computational cost of the scientific appli...