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The gravitational settling of aerosol particles in homogeneous turbulence and random flow fields

Journal of Fluid Mechanics · 1987 · Vol. 174 · pp. 441–465
Martin Maxey

Abstract

The average settling velocity in homogeneous turbulence of a small rigid spherical particle, subject to a Stokes drag force, is shown to depend on the particle inertia and the free-fall terminal velocity in still fluid. With no inertia the particle settles on average at the same rate as in still fluid, assuming there is no mean flow. Particle inertia produces a bias in each trajectory towards regions of high strain rate or low vorticity, which affects the mean settling velocity. Results from a Gaussian random velocity field show that this produces an increased settling velocity.

Particle Dynamics in Fluid FlowsFluid Dynamics and Turbulent FlowsWind and Air Flow StudiesSettlingStokes numberMechanicsTurbulenceDragPhysicsInertiaStokes' lawClassical mechanicsVector field
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