Inertial-particle dynamics in turbulent flows: caustics, concentration fluctuations, and random uncorrelated motion
Fluid Dynamics
2015-06-05 v2
Abstract
We discuss the relation between three recent approaches of describing the dynamics and the spatial distribution of particles suspended in turbulent flows: phase-space singularities in the inertial particle dynamics (caustics), real-space singularities of the deformation tensor, and random uncorrelated motion. We discuss how the phase- and real-space singularities are related. Their formation is well understood in terms of a local theory. We discuss implications for random uncorrelated motion. Our results are supported by results of direct numerical simulations of inertial particles in model flows.
Keywords
Cite
@article{arxiv.1206.2018,
title = {Inertial-particle dynamics in turbulent flows: caustics, concentration fluctuations, and random uncorrelated motion},
author = {K. Gustavsson and E. Meneguz and M. Reeks and B. Mehlig},
journal= {arXiv preprint arXiv:1206.2018},
year = {2015}
}
Comments
20 pages, 9 figures, as published