The settling of three particles in a narrow channel is simulated via the lattice Boltzmann direct-forcing/fictitious domain (LB-DF/FD) method for the Reynolds number ranging from 5 to 200. The effects of the wall and the Reynolds number are studied. It is interesting to find that at certain Reynolds numbers the left (right) particle is settling at 0.175 (0.825) of the channel width irrespective of its initial position or the channel width. Moreover, numerical results have shown that the lateral particles lead at small Reynolds numbers, while the central particle leads at large Reynolds numbers due to the combined effects of particle-particle and particle-wall interactions. The central particle will leave the lateral ones behind when the Rey...
We perform direct numerical simulation of three-dimensional turbulent flows in a rectangular channel...
In this work, we perform simulations of particle laden flow in a wide and long narrow channel in a N...
The lattice-Boltzmann Method (LBM) is employed to directly simulate the transport of particles appro...
The previously developed lattice Boltzmann - direct forcing/fictitious domain method is improved by...
The lattice Boltzmann method is employed to conduct direct numerical simulations of turbulent open c...
Particle resolved direct numerical simulations (PR-DNS) of particle-laden turbulent flow in a channe...
A suspension of particles in a fluid under motion in a channel is a class of flows in which the part...
Particle sedimentation is a fundamental process encountered in various industrial applications. In t...
Particle-laden flow occur in a wide range of engineering applications such as combustors, gasifiers,...
Particle-resolved direct numerical simulations (PR-DNS) of particle-laden turbulent flow in a channe...
Direct numerical simulations of turbulent flow past stationary particles in a channel are carried ou...
At low terminal Reynolds numbers Re = 2 - 10, there are multiple asymmetrical principal movement sta...
We perform direct numerical simulation of three-dimensional turbulent flows in a rectangular channel...
In this work, we perform simulations of particle laden flow in a wide and long narrow channel in a N...
The lattice-Boltzmann Method (LBM) is employed to directly simulate the transport of particles appro...
The previously developed lattice Boltzmann - direct forcing/fictitious domain method is improved by...
The lattice Boltzmann method is employed to conduct direct numerical simulations of turbulent open c...
Particle resolved direct numerical simulations (PR-DNS) of particle-laden turbulent flow in a channe...
A suspension of particles in a fluid under motion in a channel is a class of flows in which the part...
Particle sedimentation is a fundamental process encountered in various industrial applications. In t...
Particle-laden flow occur in a wide range of engineering applications such as combustors, gasifiers,...
Particle-resolved direct numerical simulations (PR-DNS) of particle-laden turbulent flow in a channe...
Direct numerical simulations of turbulent flow past stationary particles in a channel are carried ou...
At low terminal Reynolds numbers Re = 2 - 10, there are multiple asymmetrical principal movement sta...
We perform direct numerical simulation of three-dimensional turbulent flows in a rectangular channel...
In this work, we perform simulations of particle laden flow in a wide and long narrow channel in a N...
The lattice-Boltzmann Method (LBM) is employed to directly simulate the transport of particles appro...