Particles that are heavy compared to the fluid in which they are embedded (inertial particles) tend to cluster in turbulent flow, with the degree of clustering depending on the particle Stokes number. The phenomenon is relevant to a variety of systems, including atmospheric clouds; in most realistic systems particles have a continuous distribution of sizes and therefore the clustering of \u27polydisperse\u27 particle populations is of special relevance. In this work a theoretical expression for the radial distribution function (RDF) for mono- and bidisperse inertial particles in the low Stokes number limit (Chun et al 2005 J. Fluid Mech. 536 219-51) is compared with the results of a direct numerical simulation of particle-laden turbulence. ...
It has been proposed that inertial clustering may lead to an increased collision rate of water dropl...
It has been proposed that inertial clustering may lead to an increased collision rate of water dropl...
This work is concerned with the study of inertial particles in homogeneous isotropic turbulent flows...
Particles that are heavy compared to the fluid in which they are embedded (inertial particles) tend ...
Particles that are heavy compared to the fluid in which they are embedded (inertial particles) tend ...
Particles that are heavy compared to the fluid in which they are embedded (inertial particles) tend ...
We report experimental evidence of spatial clustering of dense particles in homogenous, isotropic tu...
We study the clustering of inertial particles in turbulent flows and discuss its applications to dus...
We study the clustering of inertial particles in turbulent flows and discuss its applications to dus...
We present studies of the spatial clustering of inertial particles embedded in turbulent flow. A ma...
We present studies of the spatial clustering of inertial particles embedded in turbulent flow. A ma...
Clustering of droplets in cloud due to turbulence is be-lieved to have important consequences for wa...
The current work investigates how turbulence affects the mass transfer rate between inertial particl...
International audienceThe nonlinear dynamics of inertial particles in high Reynolds number turbulenc...
International audienceThe nonlinear dynamics of inertial particles in high Reynolds number turbulenc...
It has been proposed that inertial clustering may lead to an increased collision rate of water dropl...
It has been proposed that inertial clustering may lead to an increased collision rate of water dropl...
This work is concerned with the study of inertial particles in homogeneous isotropic turbulent flows...
Particles that are heavy compared to the fluid in which they are embedded (inertial particles) tend ...
Particles that are heavy compared to the fluid in which they are embedded (inertial particles) tend ...
Particles that are heavy compared to the fluid in which they are embedded (inertial particles) tend ...
We report experimental evidence of spatial clustering of dense particles in homogenous, isotropic tu...
We study the clustering of inertial particles in turbulent flows and discuss its applications to dus...
We study the clustering of inertial particles in turbulent flows and discuss its applications to dus...
We present studies of the spatial clustering of inertial particles embedded in turbulent flow. A ma...
We present studies of the spatial clustering of inertial particles embedded in turbulent flow. A ma...
Clustering of droplets in cloud due to turbulence is be-lieved to have important consequences for wa...
The current work investigates how turbulence affects the mass transfer rate between inertial particl...
International audienceThe nonlinear dynamics of inertial particles in high Reynolds number turbulenc...
International audienceThe nonlinear dynamics of inertial particles in high Reynolds number turbulenc...
It has been proposed that inertial clustering may lead to an increased collision rate of water dropl...
It has been proposed that inertial clustering may lead to an increased collision rate of water dropl...
This work is concerned with the study of inertial particles in homogeneous isotropic turbulent flows...