International audienceAbstract In this paper we present a time-parallel algorithm for the 3D neutrons calculation of a transient model in a nuclear reactor core. The neutrons calculation consists in numerically solving the time dependent diffusion approximation equation, which is a simplified transport equation. The numerical resolution is done with finite elements method based on a tetrahedral meshing of the computational domain, representing the reactor core, and time discretization is achieved using a θ-scheme. The transient model presents moving control rods during the time of the reaction. Therefore, cross-sections (piecewise constants) are taken into account by interpolations with respect to the velocity of the control rods. The paral...
The numerical solution of time dependent neutron diffusion approximation to the transport equation i...
High-fidelity nuclear reactor core simulations require a precise knowledge of the neutron flux insid...
Three-dimensional, full core modeling with pin-resolved detail has become the state of the art in co...
International audienceAbstract In this paper we present a time-parallel algorithm for the 3D neutron...
The accurate knowledge of the time-dependent spatial flux distribution in nuclear reactor is require...
International audienceIn the framework of nuclear core calculations, the development of efficient to...
In the search of new approaches for the efficient exploitation of large scale compu- tational platfo...
Dans cette thèse nous avons tout d'abord développé un solveur neutronique de cinétique transport 3D ...
International audienceThe present paper deals with the resolution of the time-dependent neutron tran...
In this thesis, we have first developed a time dependent 3D neutron transport solver on unstructured...
To simulate the behaviour of a nuclear power reactor it is necessary to be able to integrate the tim...
We present the newly developed time-dependent 3D multigroup discrete ordinates neutron transport sol...
This thesis presents algorithms allowing parallelization in the time direction in the simulation of ...
This thesis presents algorithms allowing parallelization in the time-direction of the simulation of ...
The code DYN3D/M2 was developed for steady-state and transient analysis of reactor cores with hexago...
The numerical solution of time dependent neutron diffusion approximation to the transport equation i...
High-fidelity nuclear reactor core simulations require a precise knowledge of the neutron flux insid...
Three-dimensional, full core modeling with pin-resolved detail has become the state of the art in co...
International audienceAbstract In this paper we present a time-parallel algorithm for the 3D neutron...
The accurate knowledge of the time-dependent spatial flux distribution in nuclear reactor is require...
International audienceIn the framework of nuclear core calculations, the development of efficient to...
In the search of new approaches for the efficient exploitation of large scale compu- tational platfo...
Dans cette thèse nous avons tout d'abord développé un solveur neutronique de cinétique transport 3D ...
International audienceThe present paper deals with the resolution of the time-dependent neutron tran...
In this thesis, we have first developed a time dependent 3D neutron transport solver on unstructured...
To simulate the behaviour of a nuclear power reactor it is necessary to be able to integrate the tim...
We present the newly developed time-dependent 3D multigroup discrete ordinates neutron transport sol...
This thesis presents algorithms allowing parallelization in the time direction in the simulation of ...
This thesis presents algorithms allowing parallelization in the time-direction of the simulation of ...
The code DYN3D/M2 was developed for steady-state and transient analysis of reactor cores with hexago...
The numerical solution of time dependent neutron diffusion approximation to the transport equation i...
High-fidelity nuclear reactor core simulations require a precise knowledge of the neutron flux insid...
Three-dimensional, full core modeling with pin-resolved detail has become the state of the art in co...