AbstractIn a seminal paper [20], Ginzburg and Adler (1994) analyzed the bounce-back boundary conditions for the lattice Boltzmann scheme and showed that it could be made exact to second order for the Poiseuille flow if some expressions depending upon the parameters of the method were satisfied, thus defining so-called “magic parameters”. Using the Taylor expansion method that one of us developed, we analyze a series of simple situations (1D and 2D) for diffusion and for linear fluid problems using bounce-back and “anti bounce-back” numerical boundary conditions. The result is that “magic parameters” depend upon the detailed choice of the moments and of their equilibrium values. They may also depend upon the way the flow is driven
We present a general framework for several previously introduced boundary conditions for lattice Bol...
AbstractWhen lattice Boltzmann methods are used to simulate fluid–structure interaction problems, th...
AbstractIn this paper we describe an extension of a recently developed lattice Boltzmann method for ...
International audienceIn a previous work, we have proposed a method for the analysis of the bounce b...
We test a second order central difference scheme and a first order upwind scheme for the advection o...
AbstractWe propose a lattice Boltzmann realization for the hydrodynamic pressure drop condition intr...
This paper is concerned with the lattice Boltzmann method for general convectiondiffusion equations....
Fluid-structure interaction is very broadly seen and widely used in many industrial, engineering and...
In this contribution, we propose a new method of analysis for the lattice Boltzmann scheme...
Lattice Boltzmann is a numerical method for the simulation of different physical phenomena, such as ...
International audienceIn this contribution we show that it is possible to get the macroscopic fluid ...
Lattice Boltzmann methods are a promising approach for the numerical solution of fluid-dynamic probl...
In this paper, we study a lattice Boltzmann method for the advection-diffusion equation with Neumann...
Traditional Lattice-Boltzmann modelling of advection–diffusion flow is affected by numerical instabi...
YesTraditional Lattice-Boltzmann modelling of advection–diffusion flow is affected by numerical inst...
We present a general framework for several previously introduced boundary conditions for lattice Bol...
AbstractWhen lattice Boltzmann methods are used to simulate fluid–structure interaction problems, th...
AbstractIn this paper we describe an extension of a recently developed lattice Boltzmann method for ...
International audienceIn a previous work, we have proposed a method for the analysis of the bounce b...
We test a second order central difference scheme and a first order upwind scheme for the advection o...
AbstractWe propose a lattice Boltzmann realization for the hydrodynamic pressure drop condition intr...
This paper is concerned with the lattice Boltzmann method for general convectiondiffusion equations....
Fluid-structure interaction is very broadly seen and widely used in many industrial, engineering and...
In this contribution, we propose a new method of analysis for the lattice Boltzmann scheme...
Lattice Boltzmann is a numerical method for the simulation of different physical phenomena, such as ...
International audienceIn this contribution we show that it is possible to get the macroscopic fluid ...
Lattice Boltzmann methods are a promising approach for the numerical solution of fluid-dynamic probl...
In this paper, we study a lattice Boltzmann method for the advection-diffusion equation with Neumann...
Traditional Lattice-Boltzmann modelling of advection–diffusion flow is affected by numerical instabi...
YesTraditional Lattice-Boltzmann modelling of advection–diffusion flow is affected by numerical inst...
We present a general framework for several previously introduced boundary conditions for lattice Bol...
AbstractWhen lattice Boltzmann methods are used to simulate fluid–structure interaction problems, th...
AbstractIn this paper we describe an extension of a recently developed lattice Boltzmann method for ...