AbstractThis paper seeks to make a systematic study over the complex four-lid-driven cavity flows using the multiple-relaxation-time (MRT) lattice Boltzmann method (LBM). The flow is generated by moving the top wall to the right and the bottom wall to the left, while moving the left wall downwards and the right wall upwards, with an identical moving speed. The present MRT-LBM results reveal a lot of important features of bifurcated flow, such as the multiplicity of stable asymmetric and unstable symmetric cavity flow patterns when the Reynolds number exceeds its first critical value (corresponding to the first steady bifurcation), and the second steady bifurcation phenomena on the first unstable solution at the second critical Reynolds numb...
The flow characteristics of lid-driven cavity are simulated using the Lattice Boltzmann Method (LBM)...
The multiple-relaxation-time (MRT) lattice-Boltzmann method is implemented to investigate combine...
This article provides experimentally and numerically study of the multi-relaxation time lattice Bolt...
AbstractThis paper seeks to make a systematic study over the complex four-lid-driven cavity flows us...
AbstractThe flow pattern in a two-dimensional lid-driven semi-circular cavity is analyzed based on m...
Purpose - The purpose of this paper is to apply lattice Boltzmann equation method (LBM) with multi...
In order to study the flow behavior at high Reynolds numbers, two modified models, known as the mult...
In this study, the mixing characteristics in lid-driven cavity flows were studied numerically by usi...
AbstractThis work is concerned with the computation of two- and four-sided lid-driven square cavity ...
Wall-driven flow in square cavities has been studied extensively, yet it appears some main flow cha...
The method of lattice-Boltzmann multiple relaxation time (MRT) is commonly applied to study the conv...
Abstract Numerical study on three-dimensional (3D), incompressible, four-sided lid (FSL) driven cavi...
This article provides numerically study of the multi-relaxation time thermal lattice Boltzmann metho...
<p>In recent years, due to rapidly increasing computational power, computational methods have become...
This article provides a concise exposition of the multiple-relaxation-time lattice Boltzmann equatio...
The flow characteristics of lid-driven cavity are simulated using the Lattice Boltzmann Method (LBM)...
The multiple-relaxation-time (MRT) lattice-Boltzmann method is implemented to investigate combine...
This article provides experimentally and numerically study of the multi-relaxation time lattice Bolt...
AbstractThis paper seeks to make a systematic study over the complex four-lid-driven cavity flows us...
AbstractThe flow pattern in a two-dimensional lid-driven semi-circular cavity is analyzed based on m...
Purpose - The purpose of this paper is to apply lattice Boltzmann equation method (LBM) with multi...
In order to study the flow behavior at high Reynolds numbers, two modified models, known as the mult...
In this study, the mixing characteristics in lid-driven cavity flows were studied numerically by usi...
AbstractThis work is concerned with the computation of two- and four-sided lid-driven square cavity ...
Wall-driven flow in square cavities has been studied extensively, yet it appears some main flow cha...
The method of lattice-Boltzmann multiple relaxation time (MRT) is commonly applied to study the conv...
Abstract Numerical study on three-dimensional (3D), incompressible, four-sided lid (FSL) driven cavi...
This article provides numerically study of the multi-relaxation time thermal lattice Boltzmann metho...
<p>In recent years, due to rapidly increasing computational power, computational methods have become...
This article provides a concise exposition of the multiple-relaxation-time lattice Boltzmann equatio...
The flow characteristics of lid-driven cavity are simulated using the Lattice Boltzmann Method (LBM)...
The multiple-relaxation-time (MRT) lattice-Boltzmann method is implemented to investigate combine...
This article provides experimentally and numerically study of the multi-relaxation time lattice Bolt...