Abstract. Parallel algorithms for particle tracking are central to the modeling of a wide range of physical processes including cloud formation, spray combustion, flows of ash from wildfires and reactions in nuclear sys-tems. Here we focus on tracking the motion of cloud droplets with radii in the range from 10 to 60 µm that are suspended in a turbulent flow field. The gravity and droplet inertia are simultaneously considered. Our codes for turbulent flow and droplet motion are fully parallelized in MPI (message passing interface), allowing efficient computation of dynamic and kinematic properties of a polydisperse suspension with more than 107 droplets. Previous direct numerical simulations (DNS) of turbulent collision, due to their numeri...
International audienceParticle tracking in large-scale numerical simulations of turbulent flows pres...
Particle tracking in large-scale numerical simulations of turbulent flows presents one of the major ...
Wang, Lian-PingIn this dissertation we investigate the effects of turbulence, inertia and gravitatio...
International audienceParticle tracking in large-scale numerical simulations of turbulent flows pres...
International audienceParticle tracking in large-scale numerical simulations of turbulent flows pres...
International audienceParticle tracking in large-scale numerical simulations of turbulent flows pres...
International audienceParticle tracking in large-scale numerical simulations of turbulent flows pres...
International audienceParticle tracking in large-scale numerical simulations of turbulent flows pres...
Particle tracking in large-scale numerical simulations of turbulent flows presents one of the major ...
In this work, we examine the motion of particles which are subjected to varying levels of turbulence...
This study has conducted parallel simulations of interacting inertial particles in statistically-ste...
In this work, we examine the motion of particles which are subjected to varying levels of turbulence...
Particle tracking in large-scale numerical simulations of turbulent flows presents one of the major ...
Abstract The study of turbulent collision of cloud droplets requires simultaneous considerations of ...
International audienceParticle tracking in large-scale numerical simulations of turbulent flows pres...
International audienceParticle tracking in large-scale numerical simulations of turbulent flows pres...
Particle tracking in large-scale numerical simulations of turbulent flows presents one of the major ...
Wang, Lian-PingIn this dissertation we investigate the effects of turbulence, inertia and gravitatio...
International audienceParticle tracking in large-scale numerical simulations of turbulent flows pres...
International audienceParticle tracking in large-scale numerical simulations of turbulent flows pres...
International audienceParticle tracking in large-scale numerical simulations of turbulent flows pres...
International audienceParticle tracking in large-scale numerical simulations of turbulent flows pres...
International audienceParticle tracking in large-scale numerical simulations of turbulent flows pres...
Particle tracking in large-scale numerical simulations of turbulent flows presents one of the major ...
In this work, we examine the motion of particles which are subjected to varying levels of turbulence...
This study has conducted parallel simulations of interacting inertial particles in statistically-ste...
In this work, we examine the motion of particles which are subjected to varying levels of turbulence...
Particle tracking in large-scale numerical simulations of turbulent flows presents one of the major ...
Abstract The study of turbulent collision of cloud droplets requires simultaneous considerations of ...
International audienceParticle tracking in large-scale numerical simulations of turbulent flows pres...
International audienceParticle tracking in large-scale numerical simulations of turbulent flows pres...
Particle tracking in large-scale numerical simulations of turbulent flows presents one of the major ...
Wang, Lian-PingIn this dissertation we investigate the effects of turbulence, inertia and gravitatio...