首页> 外文期刊>Journal of Mechanics >ACOUSTIC SCATTERING BY A FLUID-ENCAPSULATING SPHERICAL VISCOELASTIC MEMBRANE INCLUDING THERMOVISCOUS EFFECTS
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ACOUSTIC SCATTERING BY A FLUID-ENCAPSULATING SPHERICAL VISCOELASTIC MEMBRANE INCLUDING THERMOVISCOUS EFFECTS

机译:包裹流体的粘弹性膜(包括热粘效应)的声散射

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摘要

This study provides a general analysis for scattering of a planar monochromatic compressional sound wave by a fluid-filled viscoelastic spherical membrane immersed in an unbounded viscous heat-conducting compressible fluid. The thermoviscous effects in the fluid are incorporated by application of a thin boundary layer model. The dynamic viscoelastic properties of the spherical membrane are rigorously taken into account in the solution of the acoustic-scattering problem. Havriliak-Negami model for viscoelastic material behaviour along with the appropriate wave-harmonic field expansions and the pertinent boundary conditions are employed to develop a closed-form solution in form of infinite series. Subsequently, the basic acoustic quantities, such as the scattered far-field pressure directivity pattern, and the scattering cross section are evaluated for given sets of viscoelastic material properties. Numerical results clearly indicate that, in addition to the traditional fluid thermoviscosity-related mechanisms, dynamic viscoelastic properties of the obstacle can be of significance in sound scattering. The presented analysis is of practical interest in development of contrast agents for echocardiographic research with potential clinical applications.
机译:本研究为浸没在无限粘性导热导热可压缩流体中的充满流体的粘弹性球形膜对平面单色压缩声波的散射提供了一般分析。通过应用薄边界层模型可以将流体中的热粘性效应纳入其中。在解决声散射问题时,严格考虑了球形膜的动态粘弹性能。利用粘弹性材料行为的Havriliak-Negami模型以及适当的波谐场扩展和相关边界条件来开发无穷级数形式的封闭形式解。随后,对于给定的一组粘弹性材料特性,评估了基本的声学量,例如散射的远场压力方向图和散射截面。数值结果清楚地表明,除了传统的与流体热粘度相关的机理外,障碍物的动态粘弹性在声散射方面也很重要。提出的分析在开发具有潜在临床应用价值的超声心动图研究造影剂方面具有实际意义。

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