arXiv · 2009.02124
Inertial migration of oblate spheroids in a plane channel
Abstract
We discuss an inertial migration of oblate spheroids in a plane channel, where steady laminar flow is generated by a pressure gradient. Our lattice Boltzmann simulations show that spheroids orient in the flow, so that their minor axis coincides with the vorticity direction (a log-rolling motion). Interestingly, for spheroids of moderate aspect ratios, the equilibrium positions relative to the channel walls depend only on their equatorial radius $a$. By analysing the inertial lift force we argue that this force is proportional to $a^3b$, where $b$ is the polar radius, and conclude that the dimensionless lift coefficient of the oblate spheroid does not depend on $b$, and is equal to that of the sphere of radius $a$.
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Tatiana V. Nizkaya, Anna S. Gekova, Jens Harting, Evgeny S. Asmolov, Olga I. Vinogradova. 2020-09-04. Inertial migration of oblate spheroids in a plane channel. https://doi.org/10.1063/5.0028353
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