The accuracy of the Moment Method for imposing no-slip boundary conditions in the lattice Boltzmann algorithm is investigated numerically using lid-driven cavity flow. Boundary conditions are imposed directly upon the hydrodynamic moments of the lattice Boltzmann equations, rather than the distribution functions, to ensure the constraints are satisfied precisely at grid points. Both single and multiple relaxation time models are applied. The results are in excellent agreement with data obtained from state-of-the-art numerical methods and are shown to converge with second order accuracy in grid spacing
<p>In recent years, due to rapidly increasing computational power, computational methods have become...
We propose a lattice Boltzmann approach for simulating contact angle phenomena in multiphase fluid s...
We study a multiple relaxation time lattice Boltzmann model for natural convection with moment–based...
The accuracy of the Moment Method for imposing no-slip boundary conditions in the lattice Boltzmann ...
The accuracy of the Moment Method for imposing no-slip boundary conditions in the lattice Boltzmann ...
The accuracy of the Moment Method for imposing no-slip boundary conditions in the lattice Boltzmann ...
A lattice Boltzmann method with moment-based boundary conditions is used to compute flow in the slip...
We study a multiple relaxation time lattice Boltzmann model for natural convection with moment-based...
The accuracy of moment-based boundary conditions for no slip walls in lattice Boltzmann simulations ...
Lattice Boltzmann is a fixed grid particle based method originated from molecular dynamics which use...
Lattice Boltzmann is a fixed grid particle based method originated from molecular dynamics which use...
This thesis assesses and extends a modern method to study the physics of simple and complex flows b...
We present lattice Boltzmann simulations of rarefied flows driven by pressure drops along two-dimens...
The aim of this thesis is to study the Lattice Boltzmann method for fluid dynamics by using moment ...
In this study, for the first time, a comparison of single-relaxation-time, multi-relaxation-time and...
<p>In recent years, due to rapidly increasing computational power, computational methods have become...
We propose a lattice Boltzmann approach for simulating contact angle phenomena in multiphase fluid s...
We study a multiple relaxation time lattice Boltzmann model for natural convection with moment–based...
The accuracy of the Moment Method for imposing no-slip boundary conditions in the lattice Boltzmann ...
The accuracy of the Moment Method for imposing no-slip boundary conditions in the lattice Boltzmann ...
The accuracy of the Moment Method for imposing no-slip boundary conditions in the lattice Boltzmann ...
A lattice Boltzmann method with moment-based boundary conditions is used to compute flow in the slip...
We study a multiple relaxation time lattice Boltzmann model for natural convection with moment-based...
The accuracy of moment-based boundary conditions for no slip walls in lattice Boltzmann simulations ...
Lattice Boltzmann is a fixed grid particle based method originated from molecular dynamics which use...
Lattice Boltzmann is a fixed grid particle based method originated from molecular dynamics which use...
This thesis assesses and extends a modern method to study the physics of simple and complex flows b...
We present lattice Boltzmann simulations of rarefied flows driven by pressure drops along two-dimens...
The aim of this thesis is to study the Lattice Boltzmann method for fluid dynamics by using moment ...
In this study, for the first time, a comparison of single-relaxation-time, multi-relaxation-time and...
<p>In recent years, due to rapidly increasing computational power, computational methods have become...
We propose a lattice Boltzmann approach for simulating contact angle phenomena in multiphase fluid s...
We study a multiple relaxation time lattice Boltzmann model for natural convection with moment–based...