Abstract Numerical study on three-dimensional (3D), incompressible, four-sided lid (FSL) driven cavity flows has been conducted to show the effects of the transverse aspect ratio, K, on the flow field by using a multiple relaxation time lattice Boltzmann equation. The top wall is driven from left to right, the left wall is moved downward, whereas the right wall is driven upward, and the bottom wall is moved from right to left, all the four moving walls have the same speed and the others boundaries are fixed. Numerical computations are performed for several Reynolds numbers for laminar flows, up to 1000, with various transverse aspect ratios. The flow can reach a steady state and the flow pattern is symmetric with respect to the two cavity d...
Mathematical and simulation of lid driven cavity flow at different aspect ratios using single relaxa...
Lid-driven swirling flow in a confined cylindrical cavity is investigated using lattice Boltzmann eq...
This article provides experimentally and numerically study of the multi-relaxation time lattice Bolt...
Abstract Numerical study on three-dimensional (3D), incompressible, four-sided lid (FSL) driven cavi...
Purpose - The purpose of this paper is to apply lattice Boltzmann equation method (LBM) with multi...
The flow characteristics of lid-driven cavity are simulated using the Lattice Boltzmann Method (LBM)...
AbstractThe flow characteristics of lid-driven cavity are simulated using the Lattice Boltzmann Meth...
This work deals with the application of Lattice Boltzmann method (LBM) to demonstrate the three-dime...
In the present study, the flow configuration of two-sided lid-driven cavity has been investigated us...
In this study, the Lattice Boltzmann method has been used to investigate flow configuration of the t...
In this paper, numerical simulations to predict fluid flow inside lid driven square and triangular c...
The lattice Boltzmann method (LBM) is a numerical method evolved from the statistical approach that ...
<p>In recent years, due to rapidly increasing computational power, computational methods have become...
Flow in a three-dimensional lid-driven cavity (LDC) is studied using the lattice Boltzmann method (L...
The method of lattice-Boltzmann multiple relaxation time (MRT) is commonly applied to study the conv...
Mathematical and simulation of lid driven cavity flow at different aspect ratios using single relaxa...
Lid-driven swirling flow in a confined cylindrical cavity is investigated using lattice Boltzmann eq...
This article provides experimentally and numerically study of the multi-relaxation time lattice Bolt...
Abstract Numerical study on three-dimensional (3D), incompressible, four-sided lid (FSL) driven cavi...
Purpose - The purpose of this paper is to apply lattice Boltzmann equation method (LBM) with multi...
The flow characteristics of lid-driven cavity are simulated using the Lattice Boltzmann Method (LBM)...
AbstractThe flow characteristics of lid-driven cavity are simulated using the Lattice Boltzmann Meth...
This work deals with the application of Lattice Boltzmann method (LBM) to demonstrate the three-dime...
In the present study, the flow configuration of two-sided lid-driven cavity has been investigated us...
In this study, the Lattice Boltzmann method has been used to investigate flow configuration of the t...
In this paper, numerical simulations to predict fluid flow inside lid driven square and triangular c...
The lattice Boltzmann method (LBM) is a numerical method evolved from the statistical approach that ...
<p>In recent years, due to rapidly increasing computational power, computational methods have become...
Flow in a three-dimensional lid-driven cavity (LDC) is studied using the lattice Boltzmann method (L...
The method of lattice-Boltzmann multiple relaxation time (MRT) is commonly applied to study the conv...
Mathematical and simulation of lid driven cavity flow at different aspect ratios using single relaxa...
Lid-driven swirling flow in a confined cylindrical cavity is investigated using lattice Boltzmann eq...
This article provides experimentally and numerically study of the multi-relaxation time lattice Bolt...