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作用于理想流体中悬浮球体的声相互作用力和扭矩。

Acoustic Interaction Forces and Torques Acting on Suspended Spheres in an Ideal Fluid.

作者信息

Lopes J Henrique, Azarpeyvand Mahdi, Silva Glauber T

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2016 Jan;63(1):186-97. doi: 10.1109/TUFFC.2015.2494693. Epub 2015 Oct 27.

Abstract

In this paper, the acoustic interaction forces and torques exerted by an arbitrary time-harmonic wave on a set of N objects suspended in an inviscid fluid are theoretically analyzed. We utilize the partial-wave expansion method with translational addition theorem and re-expansion of multipole series to solve the related multiple scattering problem. We show that the acoustic interaction force and torque can be obtained using the farfield radiation force and torque formulas. To exemplify the method, we calculate the interaction forces exerted by an external traveling and standing plane wave on an arrangement of two and three olive-oil droplets in water. The droplets' radii are comparable to the wavelength (i.e., Mie scattering regime). The results show that the acoustic interaction forces present an oscillatory spatial distribution which follows the pattern formed by interference between the external and rescattered waves. In addition, acoustic interaction torques arise on the absorbing droplets whenever a nonsymmetric wavefront is formed by the external and rescattered waves' interference.

摘要

本文从理论上分析了任意时谐波对悬浮在无粘流体中的一组N个物体施加的声相互作用力和力矩。我们利用具有平移加法定理的分波展开法和多极级数的重新展开来解决相关的多重散射问题。我们表明,可以使用远场辐射力和力矩公式来获得声相互作用力和力矩。为了举例说明该方法,我们计算了外部行波和驻平面波对水中两个和三个橄榄油液滴排列施加的相互作用力。液滴半径与波长相当(即米氏散射 regime)。结果表明,声相互作用力呈现出振荡的空间分布,其遵循由外部波和再散射波之间的干涉形成的模式。此外,每当外部波和再散射波的干涉形成非对称波前时,吸收液滴上就会产生声相互作用扭矩。

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