AbstractIn the present paper the low Mach number limit of kinetic equations is used to develop a discretization for the incompressible Navier–Stokes equation. The kinetic equation is discretized with a first- and second-order discretization in space. The discretized equation is then considered in the low Mach number limit. Using this limit a second-order discretization for the convective part in the incompressible Navier–Stokes equation is obtained. Numerical experiments are shown comparing different approaches
A relaxation system based on a Lattice-Boltzmann type discrete velocity model is considered in the ...
In astrophysics and meteorology there exist numerous situations where flows exhibit small velocities...
International audienceWe investigate the Boltzmann equation, depending on the Knudsen number, in the...
AbstractIn the present paper the low Mach number limit of kinetic equations is used to develop a dis...
Three finite-difference algorithms are proposed to solve a low-Mach number ap-proximation for the Na...
A discrete velocity model with spatial and velocity discretization based on a lattice Boltzmann meth...
Abstract. In this paper we introduce a new class of numerical schemes for the incompressible Navier-...
In the numerical simulation of fluid dynamic problems there are situations in which acoustic waves a...
In this paper we introduce a new class of numerical schemes for the incompressible Navier-Stokes equ...
In this paper we introduce a new class of numerical schemes for the incompressible Navier-Stokes equ...
AbstractThe lattice Boltzmann method (LBM) for the incompressible Navier–Stokes (NS) equations and t...
Summarization: Modern CFD applications require the treatment of general complex domains to accuratel...
This thesis describes a numerical method for computational fluid dynamics. Special attention is paid...
htmlabstractHarlow and Welch [Phys. Fluids 8 (1965) 2182–2189] introduced a discretization method fo...
A new finite difference method for the discretization of the incompressible Navier-Stokes equations ...
A relaxation system based on a Lattice-Boltzmann type discrete velocity model is considered in the ...
In astrophysics and meteorology there exist numerous situations where flows exhibit small velocities...
International audienceWe investigate the Boltzmann equation, depending on the Knudsen number, in the...
AbstractIn the present paper the low Mach number limit of kinetic equations is used to develop a dis...
Three finite-difference algorithms are proposed to solve a low-Mach number ap-proximation for the Na...
A discrete velocity model with spatial and velocity discretization based on a lattice Boltzmann meth...
Abstract. In this paper we introduce a new class of numerical schemes for the incompressible Navier-...
In the numerical simulation of fluid dynamic problems there are situations in which acoustic waves a...
In this paper we introduce a new class of numerical schemes for the incompressible Navier-Stokes equ...
In this paper we introduce a new class of numerical schemes for the incompressible Navier-Stokes equ...
AbstractThe lattice Boltzmann method (LBM) for the incompressible Navier–Stokes (NS) equations and t...
Summarization: Modern CFD applications require the treatment of general complex domains to accuratel...
This thesis describes a numerical method for computational fluid dynamics. Special attention is paid...
htmlabstractHarlow and Welch [Phys. Fluids 8 (1965) 2182–2189] introduced a discretization method fo...
A new finite difference method for the discretization of the incompressible Navier-Stokes equations ...
A relaxation system based on a Lattice-Boltzmann type discrete velocity model is considered in the ...
In astrophysics and meteorology there exist numerous situations where flows exhibit small velocities...
International audienceWe investigate the Boltzmann equation, depending on the Knudsen number, in the...