A combined immersed boundary and discrete unified gas kinetic scheme for particle-fluid flows
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Publication:2002267
DOI10.1016/j.jcp.2018.08.047zbMath1416.76161arXiv1801.05708OpenAlexW2784280247MaRDI QIDQ2002267
Lian-Ping Wang, Zhaoli Guo, Shi Tao, Haolong Zhang
Publication date: 11 July 2019
Published in: Journal of Computational Physics (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/1801.05708
immersed boundary methodfluid-solid interactionsdiscrete unified gas kinetic schemeStrang splitting methodflows containing particles
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Cites Work
- Unnamed Item
- A Lagrangian VOF tensorial penalty method for the DNS of resolved particle-laden flows
- A lattice Boltzmann-Immersed Boundary method to simulate the fluid interaction with moving and slender flexible objects
- An incompressible smoothed particle hydrodynamics method for the motion of rigid bodies in fluids
- An interpretation and derivation of the lattice Boltzmann method using strang splitting
- Lattice Boltzmann simulation of turbulent flow laden with finite-size particles
- Effect of internal mass in the simulation of a moving body by the immersed boundary method
- The immersed boundary-lattice Boltzmann method for solving fluid-particles interaction problems
- Proteus: A direct forcing method in the simulations of particulate flows
- An immersed-boundary method based on the gas kinetic BGK scheme for incompressible viscous flow
- A multispeed discrete Boltzmann model for transcritical 2D shallow water flows
- A smoothing technique for discrete delta functions with application to immersed boundary method in moving boundary simulations
- Boundary forces in lattice Boltzmann: Analysis of momentum exchange algorithm
- Distributing many points on a sphere
- A cartesian grid method for modeling multiple moving objects in 2D incompressible viscous flow.
- A coupled discrete unified gas-kinetic scheme for Boussinesq flows
- Discrete unified gas kinetic scheme on unstructured meshes
- An investigation on momentum exchange methods and refilling algorithms for lattice Boltzmann simulation of particulate flows
- Comparison of sharp and smoothed interface methods for simulation of particulate flows. I: Fluid structure interaction for moderate Reynolds numbers
- An immersed boundary-gas kinetic flux solver for simulation of incompressible flows
- A DFFD simulation method combined with the spectral element method for solid-fluid-interaction problems
- A high-order immersed interface method for simulating unsteady incompressible flows on irregular domains
- Numerical simulation of a cylinder in uniform flow: Application of a virtual boundary method
- Discrete unified gas kinetic scheme with a force term for incompressible fluid flows
- Evaluation of methods for calculating volume fraction in eulerian-Lagrangian multiphase flow simulations
- A novel immersed boundary velocity correction-lattice Boltzmann method and its application to simulate flow past a circular cylinder
- An immersed boundary method with direct forcing for the simulation of particulate flows
- An immersed interface method for simulating the interaction of a fluid with moving boundaries
- Lattice Boltzmann Method and Its Applications in Engineering
- Lattice-Boltzmann Method for Complex Flows
- Flow patterns in the sedimentation of an elliptical particle
- IMMERSED BOUNDARY METHODS
- Particle imaging velocimetry experiments and lattice-Boltzmann simulations on a single sphere settling under gravity
- Strang Splitting for the Time-Dependent Schrödinger Equation on Sparse Grids
- Low-Reynolds-number flow around an oscillating circular cylinder at low Keulegan–Carpenter numbers
- Evaluation of Three Lattice Boltzmann Models for Particulate Flows
- A Comparative Study of LBE and DUGKS Methods for Nearly Incompressible Flows
- A distributed Lagrange multiplier/fictitious domain method for particulate flows
- Direct numerical simulation of particulate flow via multigrid FEM techniques and the fictitious boundary method
- Direct numerical simulations of fluid-solid systems using the arbitrary Lagrangian-Eulerian technique.
- Lattice-Boltzmann simulations of particle-fluid suspensions.