The lattice-Boltzmann Method (LBM) is employed to directly simulate the transport of particles approximated as ’point particles’ in a turbulent channel flow. Prior experimental studies have shown that particles preferentially move toward the wall or center in a pipe flow depending on their Stokes number (St). The simulations are carried out for a range of St and they reproduce the observed experimental behavior. Since the only effect that can influence the transport in the cross-flow direction is turbulence in the context of the simulation framework adopted here, it is concluded that turbophoresis is responsible for the behavior
Particle-laden turbulent flows occur in a variety of industrial applications as well as in naturally...
The lattice Boltzmann method is used to simulate the temporal and spatial evolution of two-dimension...
A fully mesoscopic, multiple-relaxation-time (MRT) lattice Boltzmann method (LBM) is developed to pe...
The lattice-Boltzmann Method (LBM) is employed to directly simulate the transport of particles appro...
Particle resolved direct numerical simulations (PR-DNS) of particle-laden turbulent flow in a channe...
Particle-resolved direct numerical simulations (PR-DNS) of particle-laden turbulent flow in a channe...
Particle-laden flow occur in a wide range of engineering applications such as combustors, gasifiers,...
We perform direct numerical simulation of three-dimensional turbulent flows in a rectangular channel...
Direct numerical simulations of turbulent flow past stationary particles in a channel are carried ou...
The lattice Boltzmann method is employed to conduct direct numerical simulations of turbulent open c...
Particle-laden flows are important owing to their relevance to many engineering devices such as coal...
Particle laden turbulent flows occur in a variety of industrial applications. While the numerical si...
Wang, Lian-PingTurbulent flows laden with finite-size solid particles are found in a variety of natu...
Wang, Lian-PingTurbulent pipe flows are encountered in a multitude of engineering applications. Some...
Particle-laden turbulent flows occur in a variety of industrial applications as well as in naturally...
The lattice Boltzmann method is used to simulate the temporal and spatial evolution of two-dimension...
A fully mesoscopic, multiple-relaxation-time (MRT) lattice Boltzmann method (LBM) is developed to pe...
The lattice-Boltzmann Method (LBM) is employed to directly simulate the transport of particles appro...
Particle resolved direct numerical simulations (PR-DNS) of particle-laden turbulent flow in a channe...
Particle-resolved direct numerical simulations (PR-DNS) of particle-laden turbulent flow in a channe...
Particle-laden flow occur in a wide range of engineering applications such as combustors, gasifiers,...
We perform direct numerical simulation of three-dimensional turbulent flows in a rectangular channel...
Direct numerical simulations of turbulent flow past stationary particles in a channel are carried ou...
The lattice Boltzmann method is employed to conduct direct numerical simulations of turbulent open c...
Particle-laden flows are important owing to their relevance to many engineering devices such as coal...
Particle laden turbulent flows occur in a variety of industrial applications. While the numerical si...
Wang, Lian-PingTurbulent flows laden with finite-size solid particles are found in a variety of natu...
Wang, Lian-PingTurbulent pipe flows are encountered in a multitude of engineering applications. Some...
Particle-laden turbulent flows occur in a variety of industrial applications as well as in naturally...
The lattice Boltzmann method is used to simulate the temporal and spatial evolution of two-dimension...
A fully mesoscopic, multiple-relaxation-time (MRT) lattice Boltzmann method (LBM) is developed to pe...