Motion of a Neutrally Buoyant Circular Particle in a Lid-Driven Square Cavity: A Numerical Study
From MaRDI portal
Publication:5104571
DOI10.1080/23324309.2022.2100424OpenAlexW4285726744MaRDI QIDQ5104571
Shaohua Mao, Hongmei Wu, Maosen Xu, Junjie Hu, Songyang Yu, Dongke Sun
Publication date: 14 September 2022
Published in: Journal of Computational and Theoretical Transport (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1080/23324309.2022.2100424
limit cyclelattice Boltzmann methodcentrifugal forcelid-driven square cavityneutrally buoyant circular particlewall-repulsion force
Cites Work
- Unnamed Item
- Computation of probabilistic hazard maps and source parameter estimation for volcanic ash transport and dispersion
- Galilean invariant fluid-solid interfacial dynamics in lattice Boltzmann simulations
- Interaction of fluid interfaces with immersed solid particles using the lattice Boltzmann method for liquid-gas-particle systems
- Particle Monte Carlo and lattice-Boltzmann methods for simulations of gas-particle flows
- Lattice Boltzmann simulation of particle-laden turbulent channel flow
- An efficient unified iterative scheme for moving boundaries in lattice Boltzmann method
- Lattice Boltzmann simulation of the three-dimensional motions of particles with various density ratios in lid-driven cavity flow
- High-Re solutions for incompressible flow using the Navier-Stokes equations and a multigrid method
- A diffuse-interface lattice Boltzmann method for fluid-particle interaction problems
- Lattice Boltzmann simulation of solid particles behavior in a three-dimensional lid-driven cavity flow
- Fourth-order compact formulation of Navier-Stokes equations and driven cavity flow at high Reynolds numbers
- Lattice BGK Models for Navier-Stokes Equation
- Discussions on driven cavity flow
- Particulate Flow Simulation Via a Boundary Condition-enforced Immersed Boundary-lattice Boltzmann Scheme
- Numerical solutions of 2-D steady incompressible driven cavity flow at high Reynolds numbers
- Direct numerical simulation of particulate flow via multigrid FEM techniques and the fictitious boundary method
- Lattice-Boltzmann simulations of particle-fluid suspensions.
This page was built for publication: Motion of a Neutrally Buoyant Circular Particle in a Lid-Driven Square Cavity: A Numerical Study