An immersed boundary method-discrete unified gas kinetic scheme simulation of particle-laden turbulent channel flow on a nonuniform orthogonal mesh
From MaRDI portal
Publication:6574164
DOI10.1002/fld.5246MaRDI QIDQ6574164
Lian-Ping Wang, Kairzhan Karzhaubayev, Dauren Zhakebayev, Cheng Peng
Publication date: 18 July 2024
Published in: International Journal for Numerical Methods in Fluids (Search for Journal in Brave)
Cites Work
- An unstructured solver for simulations of deformable particles in flows at arbitrary Reynolds numbers
- Robust treatment of no-slip boundary condition and velocity updating for the lattice-Boltzmann simulation of particulate flows
- An improved immersed boundary method with direct forcing for the simulation of particle laden flows
- A second-order accurate immersed boundary method for fully resolved simulations of particle-laden flows
- Immersed-boundary methods for general finite-difference and finite-volume Navier-Stokes solvers
- DUGKS simulations of three-dimensional Taylor-Green vortex flow and turbulent channel flow
- Immersed boundary method with non-uniform distribution of Lagrangian markers for a non-uniform Eulerian mesh
- New model and scheme for compressible fluids of the finite difference lattice Boltzmann method and direct simulations of aerodynamic sound
- Distributing many points on a sphere
- An immersed boundary method for nonuniform grids
- Viscosity of finite difference lattice Boltzmann models.
- A combined immersed boundary and discrete unified gas kinetic scheme for particle-fluid flows
- Discrete unified gas kinetic scheme with a force term for incompressible fluid flows
- A comparative study of immersed boundary method and interpolated bounce-back scheme for no-slip boundary treatment in the lattice Boltzmann method. I: Laminar flows
- An immersed boundary method with direct forcing for the simulation of particulate flows
- The finite-difference lattice Boltzmann method and its application in computational aero-acoustics
- Turbulent Dispersed Multiphase Flow
- A comparative study of direct-forcing immersed boundary-lattice Boltzmann methods for stationary complex boundaries
- IMMERSED BOUNDARY METHODS
- The immersed boundary method
- Particle imaging velocimetry experiments and lattice-Boltzmann simulations on a single sphere settling under gravity
- Reproducing kernel particle methods
- A direct numerical investigation of two-way interactions in a particle-laden turbulent channel flow
- Direct particle–fluid simulation of Kolmogorov-length-scale size particles in decaying isotropic turbulence
- Wall-induced forces on a rigid sphere at finite Reynolds number
- A Model for Collision Processes in Gases. I. Small Amplitude Processes in Charged and Neutral One-Component Systems
- A fictitious domain approach to the direct numerical simulation of incompressible viscous flow past moving rigid bodies: application to particulate flow.
This page was built for publication: An immersed boundary method-discrete unified gas kinetic scheme simulation of particle-laden turbulent channel flow on a nonuniform orthogonal mesh