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随机和有效介质方法在固体基质中多孔层反向散射信号的比较。

A comparison of stochastic and effective medium approaches to the backscattered signal from a porous layer in a solid matrix.

机构信息

Electrical Systems and Optics Division, Faculty of Engineering, University of Nottingham, University Park, Nottingham, NG7 2RD United Kingdom.

出版信息

J Acoust Soc Am. 2011 Jul;130(1):122-34. doi: 10.1121/1.3598461.

Abstract

This paper reports a study of the backscattering behavior of a solid layer containing randomly spaced spherical cavities in the long wavelength limit. The motivation for the work arises from a need to model the responses of porous composite materials in ultrasonic NDE procedures. A comparison is made between models based on a summation over discrete scatterers, which show interesting emergent properties, and an integral formulation based on an ensemble average, and with a simple slab effective medium approximation. The similarities and differences between these three models are demonstrated. A simple quantitative criterion is established which sets the maximum frequency at which ensemble average or equivalent homogeneous medium models can represent echo signal generation in a porous layer for given interpore spacing, or equivalently, given pore size and concentration.

摘要

本文研究了在长波长极限下含有随机间隔球形空洞的固体层的反向散射行为。这项工作的动机源于需要对超声无损检测程序中多孔复合材料的响应进行建模。对基于离散散射体求和的模型与基于整体平均值的积分公式进行了比较,同时还使用了简单的平板有效介质近似。展示了这三种模型的相似性和差异性。建立了一个简单的定量标准,该标准规定了在给定孔间距的情况下,整体平均值或等效均匀介质模型可以代表多孔层中回波信号产生的最大频率,或者等效地,给定孔径和浓度。

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