International audienceWe introduce a new micro/macro decomposition of collisional kinetic equations which naturally incorporates the exact space boundary conditions. The idea is to write the distribution fonction $f$ in all its domain as the sum of a Maxwellian adapted to the boundary (which is not the usual Maxwellian associated with $f$) and a reminder kinetic part. This Maxwellian is defined such that its "incoming" velocity moments coincide with the "incoming" velocity moments of the distribution function. Important consequences of this strategy are the following. i) No artificial boundary condition is needed in the micro/macro models and the exact boundary condition on $f$ is naturally transposed to the macro part of the model. ii) It ...
L'objet de cette thèse est la construction de schémas numériques pour les équations cinétiques dans ...
International audienceIn this work, which is the continuation of [9], we propose numerical schemes f...
International audienceA simple second-order scheme on Cartesian grids for kinetic equations is prese...
International audienceWe introduce a new micro/macro decomposition of collisional kinetic equations ...
International audienceWe introduce a new micro-macro decomposition of collisional kinetic equations ...
International audienceWe introduce a new micro-macro decomposition of collisional kinetic equations ...
Abstract. We introduce a new micro-macro decomposition of collisional kinetic equations in the speci...
International audienceThis work is devoted to the numerical simulation of the collisional Vlasov equ...
International audienceThis work is devoted to the numerical simulation of the collisional Vlasov equ...
International audienceIn this work, we derive particle schemes, based on micro-macro decomposition, ...
International audienceThis work is devoted to the numerical simulation of the collisional Vlasov equ...
International audienceIn this work, we extend the micro-macro decomposition based numerical schemes ...
We investigate different models that are intended to describe the small mean free path regime of a k...
L'objet de cette thèse est la construction de schémas numériques pour les équations cinétiques dans ...
A simple second-order scheme on Cartesian grids for kinetic equations is presented, with emphasis on...
L'objet de cette thèse est la construction de schémas numériques pour les équations cinétiques dans ...
International audienceIn this work, which is the continuation of [9], we propose numerical schemes f...
International audienceA simple second-order scheme on Cartesian grids for kinetic equations is prese...
International audienceWe introduce a new micro/macro decomposition of collisional kinetic equations ...
International audienceWe introduce a new micro-macro decomposition of collisional kinetic equations ...
International audienceWe introduce a new micro-macro decomposition of collisional kinetic equations ...
Abstract. We introduce a new micro-macro decomposition of collisional kinetic equations in the speci...
International audienceThis work is devoted to the numerical simulation of the collisional Vlasov equ...
International audienceThis work is devoted to the numerical simulation of the collisional Vlasov equ...
International audienceIn this work, we derive particle schemes, based on micro-macro decomposition, ...
International audienceThis work is devoted to the numerical simulation of the collisional Vlasov equ...
International audienceIn this work, we extend the micro-macro decomposition based numerical schemes ...
We investigate different models that are intended to describe the small mean free path regime of a k...
L'objet de cette thèse est la construction de schémas numériques pour les équations cinétiques dans ...
A simple second-order scheme on Cartesian grids for kinetic equations is presented, with emphasis on...
L'objet de cette thèse est la construction de schémas numériques pour les équations cinétiques dans ...
International audienceIn this work, which is the continuation of [9], we propose numerical schemes f...
International audienceA simple second-order scheme on Cartesian grids for kinetic equations is prese...