We consider a three dimensional system consisting of a large number of small spherical particles, distributed in a range of sizes and heights (with uniform distribution in the horizontal direction). Particles move vertically at a size-dependent terminal velocity. They are either allowed to merge whenever they cross or there is a size ratio criterion enforced to account for collision efficiency. Such a system may be described, in mean field approximation, by the Smoluchowski kinetic equation with a differential sedimentation kernel. We obtain self-similar steady-state and time-dependent solutions to the kinetic equation, using methods borrowed from weak turbulence theory. Analytical results are compared with direct numerical simulations (DNS...
We analyse the motion of a system of particles subjected a random force fluctuating in both space an...
A new flocculation dynamics model is established based on the proposed Taylor expansion moment metho...
International audienceWe describe a numerical method for calculating hydrodynamic interactions betwe...
We consider a three dimensional system consisting of a large number of small spherical particles, di...
Abstract We consider a three dimensional system consisting of a large number of small spherical part...
Konarovskyi V. Coalescing-Fragmentating Wasserstein Dynamics: particle approach. ArXiv:1711.03011 . ...
The diffusion of small, spherical, rigid particles suspended in an incompressible turbulent fluid, b...
Particle size segregation is a quite evident phenomenon taking place when initially mixed particles ...
Understanding the spatial distribution of finite-size massive particles, such as heavy impurities, d...
Konarovskyi V. Mathematical model of heavy diffusion particles system with drift. Communications on ...
This thesis covers various aspects of motion of small rigid particles in complex flows. It is in two...
Velocity sedimentation has been used extensively to separate particles according to the magnitude of...
A dispersed system is considered which will form its condensed phase at high temperatures and is cha...
When a system of identical spheres settles under conditions of negligible surface and inertial force...
Abstract. We consider a fully asymmetric one-dimensional diffusion model with mass-conserving coales...
We analyse the motion of a system of particles subjected a random force fluctuating in both space an...
A new flocculation dynamics model is established based on the proposed Taylor expansion moment metho...
International audienceWe describe a numerical method for calculating hydrodynamic interactions betwe...
We consider a three dimensional system consisting of a large number of small spherical particles, di...
Abstract We consider a three dimensional system consisting of a large number of small spherical part...
Konarovskyi V. Coalescing-Fragmentating Wasserstein Dynamics: particle approach. ArXiv:1711.03011 . ...
The diffusion of small, spherical, rigid particles suspended in an incompressible turbulent fluid, b...
Particle size segregation is a quite evident phenomenon taking place when initially mixed particles ...
Understanding the spatial distribution of finite-size massive particles, such as heavy impurities, d...
Konarovskyi V. Mathematical model of heavy diffusion particles system with drift. Communications on ...
This thesis covers various aspects of motion of small rigid particles in complex flows. It is in two...
Velocity sedimentation has been used extensively to separate particles according to the magnitude of...
A dispersed system is considered which will form its condensed phase at high temperatures and is cha...
When a system of identical spheres settles under conditions of negligible surface and inertial force...
Abstract. We consider a fully asymmetric one-dimensional diffusion model with mass-conserving coales...
We analyse the motion of a system of particles subjected a random force fluctuating in both space an...
A new flocculation dynamics model is established based on the proposed Taylor expansion moment metho...
International audienceWe describe a numerical method for calculating hydrodynamic interactions betwe...