A numerical investigation of lateral migration of a neutrally buoyant particle in Couette flow with two different thermal boundary conditions is performed using a lattice Boltzmann method coupled with a discrete element method. The effects of the channel Reynolds number (Re), the Grashof number (Gr) as well as the particle size on the migration behaviour are explored in detail. It was found that when both the top and bottom walls are hot, the equilibrium positions are located below the centerline for all the particle sizes studied, which can be well characterised using a dimensionless force ratio determined by the Richardson number (Ri=Gr/Re-2) and the confinement ratio. With the increase of the force ratio, the equilibrium position moves t...
The inertial focusing effect of particles in microchannels shows application potential in engineerin...
Numerical study of forced convection heat transfer from arrays of prolate particles is performed usi...
In most realistic gas–solid flow, the difference of particles’ temperature is significant. The heat ...
A numerical investigation of lateral migration of a neutrally buoyant particle in Couette flow with ...
This work presents an extensive numerical study on the inertial migration of a neutrally buoyant cir...
We perform numerical simulations on inertial migration of a non-neutrally buoyant particle with a de...
The phenomenon of lateral migration of neutrally buoyant rigid spheres is studied experimentally for...
In this study a hybrid numerical framework for modelling solid-liquid multiphase flow is established...
A suspension of particles in a fluid under motion in a channel is a class of flows in which the part...
This paper reports the results of a two-dimensional finite element simulation of the motion of a cir...
Particle-laden flows are important owing to their relevance to many engineering devices such as coal...
WOS:000347161600027International audienceThe migration of neutrally buoyant finite sized particles i...
At low terminal Reynolds numbers Re = 2 - 10, there are multiple asymmetrical principal movement sta...
Various numerical schemes have been developed in recent years to simulate particle-laden flows. The ...
Particle resolved direct numerical simulations (PR-DNS) of particle-laden turbulent flow in a channe...
The inertial focusing effect of particles in microchannels shows application potential in engineerin...
Numerical study of forced convection heat transfer from arrays of prolate particles is performed usi...
In most realistic gas–solid flow, the difference of particles’ temperature is significant. The heat ...
A numerical investigation of lateral migration of a neutrally buoyant particle in Couette flow with ...
This work presents an extensive numerical study on the inertial migration of a neutrally buoyant cir...
We perform numerical simulations on inertial migration of a non-neutrally buoyant particle with a de...
The phenomenon of lateral migration of neutrally buoyant rigid spheres is studied experimentally for...
In this study a hybrid numerical framework for modelling solid-liquid multiphase flow is established...
A suspension of particles in a fluid under motion in a channel is a class of flows in which the part...
This paper reports the results of a two-dimensional finite element simulation of the motion of a cir...
Particle-laden flows are important owing to their relevance to many engineering devices such as coal...
WOS:000347161600027International audienceThe migration of neutrally buoyant finite sized particles i...
At low terminal Reynolds numbers Re = 2 - 10, there are multiple asymmetrical principal movement sta...
Various numerical schemes have been developed in recent years to simulate particle-laden flows. The ...
Particle resolved direct numerical simulations (PR-DNS) of particle-laden turbulent flow in a channe...
The inertial focusing effect of particles in microchannels shows application potential in engineerin...
Numerical study of forced convection heat transfer from arrays of prolate particles is performed usi...
In most realistic gas–solid flow, the difference of particles’ temperature is significant. The heat ...