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首页> 外文期刊>The Journal of the Acoustical Society of America >Dynamic sound scattering: Field fluctuation spectroscopy with singly scattered ultrasound in the near and far fields
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Dynamic sound scattering: Field fluctuation spectroscopy with singly scattered ultrasound in the near and far fields

机译:动态声散射:在近场和远场中具有单散射超声的场波动光谱

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摘要

Dynamic sound scattering (DSS) is a powerful acoustic technique for investigating the motion of particles or other inclusions inside an evolving medium. In DSS, this dynamic information is obtained by measuring the field autocorrelation function of the temporal fluctuations of singly scattered acoustic waves. The technique was initially introduced 15 years ago, but its technical aspects were not adequately discussed then. This paper addresses the need for a more complete account of the method by describing in detail two different implementations of this sound scattering technique, one of which is specifically adapted to a common experimental situation in ultrasonics. The technique is illustrated by the application of DSS to measure the mean square velocity fluctuations of particles in fluidized suspensions, as well as the dynamic velocity correlation length. By explaining the experimental and analytical methods involved in realizing the DSS technique in practice, the use of DSS will be facilitated for future studies of particulate suspension dynamics and particle properties over a wide range of particle sizes and concentrations, from millimeters down to nanometers, where the use of optical techniques is often limited by the opacity of the medium. (C) 2016 Acoustical Society of America.
机译:动态声散射(DSS)是一种强大的声学技术,用于研究正在演化的介质内部的颗粒或其他杂质的运动。在DSS中,通过测量单个散射声波的时间波动的场自相关函数来获得此动态信息。该技术最初是在15年前引入的,但随后并未对其技术方面进行充分的讨论。本文通过详细描述此声音散射技术的两种不同实现方式来满足对该方法的更全面说明的需求,其中一种实现方式专门适合于超声中的常见实验情况。通过应用DSS测量流化悬浮液中颗粒的均方速度波动以及动态速度相关长度,可以说明该技术。通过说明在实践中实现DSS技术所涉及的实验和分析方法,将有助于在未来从毫米到纳米的各种粒径和浓度范围内研究颗粒悬浮动力学和颗粒特性的DSS的应用。光学技术的使用通常受到介质的不透明性的限制。 (C)2016年美国声学学会。

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