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在行进平面波和驻平面波中涂层球壳上声辐射力的计算。

Calculation of the acoustic radiation force on coated spherical shells in progressive and standing plane waves.

作者信息

Mitri F G

机构信息

Mayo Clinic College of Medicine, Department of Physiology and Biomedical Engineering, Ultrasound Research Laboratory, 200 First Street SW, Rochester, MN 55905, USA.

出版信息

Ultrasonics. 2006 Jul;44(3):244-58. doi: 10.1016/j.ultras.2006.02.002. Epub 2006 Mar 2.

Abstract

In this paper, analytical equations are derived for the time-averaged radiation force induced by progressive and standing acoustic waves incident on elastic spherical shells covered with a layer of viscoelastic and sound-absorbing material. The fluid surrounding the shells is considered compressible and nonviscous. The incident field is assumed to be moderate so that the scattered field from the shells is taken to linear approximation. The analytical results are illustrated by means of a numerical example in which the radiation force function curves are displayed, with particular emphasis on the coating thickness and the content of the hollow region of the shells. The fluid-loading on the radiation force function curves is analysed as well. This study attempts to generalize the various treatments of radiation force due to both progressive and standing waves on spherically-shaped structures immersed in ideal fluids. The results show that various ways can be effectively used for damping resonance peaks, such as by changing the fluid in the interior hollow region of the shells or by changing the coating thickness.

摘要

本文推导了由入射到覆盖有一层粘弹性吸声材料的弹性球壳上的行波和驻波引起的时间平均辐射力的解析方程。球壳周围的流体被视为可压缩且无粘性的。假设入射场适中,以便将球壳的散射场进行线性近似。通过一个数值例子说明了解析结果,其中展示了辐射力函数曲线,特别强调了涂层厚度和球壳中空区域的含量。还分析了辐射力函数曲线上的流体负载。本研究试图推广对浸没在理想流体中的球形结构上由行波和驻波引起的辐射力的各种处理方法。结果表明,各种方法可有效地用于阻尼共振峰,例如通过改变球壳内部中空区域的流体或通过改变涂层厚度。

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