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Finite-size radiation force correction for inviscid spheres in standing waves.

作者信息

Marston Philip L

机构信息

Physics and Astronomy Department, Washington State University, Pullman, Washington, 99164-2814, USA.

出版信息

J Acoust Soc Am. 2017 Sep;142(3):1167. doi: 10.1121/1.5000236.

Abstract

Yosioka and Kawasima gave a widely used approximation for the acoustic radiation force on small liquid spheres surrounded by an immiscible liquid in 1955. Considering the liquids to be inviscid with negligible thermal dissipation, in their approximation the force on the sphere is proportional to the sphere's volume and the levitation position in a vertical standing wave becomes independent of the size. The analysis given here introduces a small correction term proportional to the square of the sphere's radius relative to the aforementioned small-sphere force. The significance of this term also depends on the relative density and sound velocity of the sphere. The improved approximation is supported by comparison with the exact partial-wave-series based radiation force for ideal fluid spheres in ideal fluids.

摘要

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