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An iterative effective medium approximation (IEMA) for wave dispersion and attenuation predictions in particulate composites, suspensions and emulsions

机译:迭代有效介质近似(IEMA),用于预测颗粒复合材料,悬浮液和乳液中的波扩散和衰减

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In the present work we deal with the scattering dispersion and attenuation of elastic waves in different types of nonhomogeneous media. The iterative effective medium approximation based on a single scattering consideration, for the estimation of wave dispersion and attenuation, proposed in Tsinopoulos et al., [Adv. Compos. Lett. 9, 193-200 (2000)] is examined herein not only for solid components but for liquid suspensions as well. The iterations are conducted by means of the classical relation of Waterman and Truell, while the self-consistent condition proposed by Kim et al. [J. Acoust. Soc. Am. 97, 1380-1388 (1995)] is used for the convergence of the iterative procedure. The single scattering problem is solved using the Ying and Truell formulation, which with a minor modification can accommodate the solution of scattering on inclusions in liquid. Theoretical results for. several different systems of particulates and suspensions are presented being in excellent agreement with experimental data taken from the literature. (C) 2004 Acoustical Society ofAmerica.
机译:在本工作中,我们处理弹性波在不同类型的非均匀介质中的散射色散和衰减。 Tsinopoulos等人在[Adv。 Compos。来吧9,193-200(2000)]在此不仅检查了固体成分,还检查了液体悬浮液。迭代是通过Waterman和Truell的经典关系进行的,而Kim等人提出的自洽条件。 [J. co Soc。上午。 97,1380-1388(1995)]用于迭代过程的收敛。使用Ying和Truell公式解决了单个散射问题,对它进行了较小的修改即可适应液体中夹杂物的散射解决方案。理论结果。提出了几种不同的微粒和悬浮液系统,它们与文献中的实验数据非常吻合。 (C)2004年美国声学学会。

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