Revised version (new material: a section on the numerical boundary conditions, some minor modifications)International audienceMost of deterministic solvers for rarefied gas dynamics use discrete velocity (or discrete ordinate) approximations of the distribution function on a Cartesian grid. This grid must be sufficiently large and fine to describe the distribution functions at every space position in the computational domain. For 3-dimensional hypersonic flows, like in re-entry problems, this induces much too dense velocity grids that cannot be practically used, for memory storage requirements. In this article, we present an approach to generate automatically a locally refined velocity grid adapted to a given simulation. This grid contains ...
International audienceWe present a numerical comparison between two standard finite volume schemes a...
The rarefied flow and multi-scale flow are crucial for the aerodynamic design of spacecraft, ultra-l...
One of the central problems in the study of rarefied gas dynamics is to find the steady-state soluti...
Revised version (new material: a section on the numerical boundary conditions, some minor modificati...
Most of numerical methods for deterministic simulations of rarefied gas flows use the discrete veloc...
International audienceThe solution of complex rarefied flows with the BGK equation and the Discrete ...
Ce travail est dédié à la simulation d’écoulements multidimensionnels de gaz raréfiés dans un doma...
International audienceFor accurate simulations of rarefied gas flows around moving obstacles, we pro...
Lors de la rentrée atmosphérique, l’écoulement raréfié de l’air autour de l’objet rentrant est régi ...
The solution of complex rarefied flows with the BGK equation and the Discrete Velocity Method (DVM) ...
We proposed to create a single computational code incorporating methods that can model both rarefied...
The overall goal of the work is to simulate rarefied flows inside geometries with moving boundaries....
This work is devoted to the study of complex flows where hydrodynamic and rarefied regimes coexist. ...
In the study of rarefied gas dynamics, the discrete velocity method (DVM) has been widely employed t...
International audienceWe present a numerical comparison between two standard finite volume schemes a...
The rarefied flow and multi-scale flow are crucial for the aerodynamic design of spacecraft, ultra-l...
One of the central problems in the study of rarefied gas dynamics is to find the steady-state soluti...
Revised version (new material: a section on the numerical boundary conditions, some minor modificati...
Most of numerical methods for deterministic simulations of rarefied gas flows use the discrete veloc...
International audienceThe solution of complex rarefied flows with the BGK equation and the Discrete ...
Ce travail est dédié à la simulation d’écoulements multidimensionnels de gaz raréfiés dans un doma...
International audienceFor accurate simulations of rarefied gas flows around moving obstacles, we pro...
Lors de la rentrée atmosphérique, l’écoulement raréfié de l’air autour de l’objet rentrant est régi ...
The solution of complex rarefied flows with the BGK equation and the Discrete Velocity Method (DVM) ...
We proposed to create a single computational code incorporating methods that can model both rarefied...
The overall goal of the work is to simulate rarefied flows inside geometries with moving boundaries....
This work is devoted to the study of complex flows where hydrodynamic and rarefied regimes coexist. ...
In the study of rarefied gas dynamics, the discrete velocity method (DVM) has been widely employed t...
International audienceWe present a numerical comparison between two standard finite volume schemes a...
The rarefied flow and multi-scale flow are crucial for the aerodynamic design of spacecraft, ultra-l...
One of the central problems in the study of rarefied gas dynamics is to find the steady-state soluti...