Particle-resolved direct numerical simulations (PR-DNS) of particle-laden turbulent flow in a channel are carried out to understand the effect of particle Stokes number ( St ) on their motion. The study focuses on particles which are larger than the Kolmogorov scale. The forces that impact this motion are factored into the discussion. The lattice-Boltzmann method (LBM) is employed for the simulations. The scheme em- ployed is able to resolve the surface of the particle and a method is adopted to account for the exchange of momentum between the particles and fluid as the particles move on fixed lattices. The simulations show that particles with relatively lower St move preferentially toward the wall while those with higher St exhibit a relat...
Particle-laden flows are important owing to their relevance to many engineering devices such as coal...
International audienceDuring the last decade, many approaches for resolved-particle simulation (RPS)...
The interaction of spherical solid particles with turbulent eddies in a 3-D turbulent channel flow w...
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...
The lattice-Boltzmann Method (LBM) is employed to directly simulate the transport of particles appro...
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...
A fully mesoscopic, multiple-relaxation-time (MRT) lattice Boltzmann method (LBM) is developed to pe...
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...
Particle-laden flows are important owing to their relevance to many engineering devices such as coal...
International audienceDuring the last decade, many approaches for resolved-particle simulation (RPS)...
The interaction of spherical solid particles with turbulent eddies in a 3-D turbulent channel flow w...
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...
The lattice-Boltzmann Method (LBM) is employed to directly simulate the transport of particles appro...
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...
A fully mesoscopic, multiple-relaxation-time (MRT) lattice Boltzmann method (LBM) is developed to pe...
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...
Particle-laden flows are important owing to their relevance to many engineering devices such as coal...
International audienceDuring the last decade, many approaches for resolved-particle simulation (RPS)...
The interaction of spherical solid particles with turbulent eddies in a 3-D turbulent channel flow w...