This work presents an extensive numerical study on the inertial migration of a neutrally buoyant circular particle in a planar Poiseuille flow with thermal convection using the lattice Boltzmann method. The numerical analysis confirms that, once the channel Grashof number Gr reaches a critical value Gr(c), the particle lateral equilibrium position transits from above the centerline to below. Moreover, the critical Grashof number Gr(c) depends on the channel Reynolds number and the particle-to-channel size ratio. A force scaling analysis is performed, from which a unified Grashof number Gr* is introduced to consider the synergetic effects of thermal convection and particle size. In addition, it is also found that the occurrence of equilibriu...
International audienceAn experimental study of the migration of dilute suspensions of particles in P...
We develop a model of the forces on a spherical particle suspended in flow through a curved duct und...
Particle resolved direct numerical simulations (PR-DNS) of particle-laden turbulent flow in a channe...
This work presents an extensive numerical study on the inertial migration of a neutrally buoyant cir...
A numerical investigation of lateral migration of a neutrally buoyant particle in Couette flow with ...
We perform numerical simulations on inertial migration of a non-neutrally buoyant particle with a de...
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...
The inertial focusing effect of particles in microchannels shows application potential in engineerin...
This paper reports the results of a two-dimensional finite element simulation of the motion of a cir...
The phenomenon of lateral migration of neutrally buoyant rigid spheres is studied experimentally for...
In this work, we present 2D numerical simulations on the migration of a particle suspended in a visc...
In this work, the momentum exchange scheme-based lattice Boltzmann method is adopted to numerically ...
At low terminal Reynolds numbers Re = 2 - 10, there are multiple asymmetrical principal movement sta...
International audienceAn experimental study of the migration of dilute suspensions of particles in P...
We develop a model of the forces on a spherical particle suspended in flow through a curved duct und...
Particle resolved direct numerical simulations (PR-DNS) of particle-laden turbulent flow in a channe...
This work presents an extensive numerical study on the inertial migration of a neutrally buoyant cir...
A numerical investigation of lateral migration of a neutrally buoyant particle in Couette flow with ...
We perform numerical simulations on inertial migration of a non-neutrally buoyant particle with a de...
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...
The inertial focusing effect of particles in microchannels shows application potential in engineerin...
This paper reports the results of a two-dimensional finite element simulation of the motion of a cir...
The phenomenon of lateral migration of neutrally buoyant rigid spheres is studied experimentally for...
In this work, we present 2D numerical simulations on the migration of a particle suspended in a visc...
In this work, the momentum exchange scheme-based lattice Boltzmann method is adopted to numerically ...
At low terminal Reynolds numbers Re = 2 - 10, there are multiple asymmetrical principal movement sta...
International audienceAn experimental study of the migration of dilute suspensions of particles in P...
We develop a model of the forces on a spherical particle suspended in flow through a curved duct und...
Particle resolved direct numerical simulations (PR-DNS) of particle-laden turbulent flow in a channe...