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首页> 外文期刊>The Journal of the Acoustical Society of America >Three-dimensional reconstruction of a random fibrous medium: Geometry, transport, and sound absorbing properties
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Three-dimensional reconstruction of a random fibrous medium: Geometry, transport, and sound absorbing properties

机译:随机纤维介质的三维重建:几何,运输和吸声性能

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摘要

The main purpose of this article is to present, within a unified framework, a technique based on numerical homogenization, to model the acoustical properties of real fibrous media from their geometrical characteristics and to compare numerical results with experimental data. The authors introduce a reconstruction procedure for a random fibrous medium and use it as a basis for the computation of its geometrical, transport, and sound absorbing properties. The previously ad hoc "fiber anisotropies" and "volume weighted average radii," used to describe the experimental data on microstructure, are here measured using scanning electron microscopy. The authors show that these parameters, in conjunction with the bulk porosity, contribute to a precise description of the acoustical characteristics of fibrous absorbents. They also lead to an accurate prediction of transport parameters which can be used to predict acoustical properties. The computed values of the permeability and frequency-dependent sound absorption coefficient are successfully compared with permeability and impedance-tube measurements. The authors' results indicate the important effect of fiber orientation on flow properties associated with the different physical properties of fibrous materials. A direct link is provided between three-dimensional microstructure and the sound absorbing properties of non-woven fibrous materials, without the need for any empirical formulae or fitting parameters. (C) 2017 Acoustical Society of America.
机译:本文的主要目的是在统一的框架内呈现一种基于数值均质化的技术,以从其几何特征模拟真实纤维介质的声学特性,并将数值结果与实验数据进行比较。作者引入了随机纤维介质的重建过程,并使用它作为计算其几何,运输和吸音性能的基础。以前使用扫描电子显微镜测量用于描述关于微观结构的实验数据的先前的临时“纤维各向异性”和“体积加权平均半径”。作者表明,这些参数与散装孔隙相结合,有助于精确描述纤维吸收剂的声学特性。它们还可以准确预测可用于预测声学性质的传输参数。与渗透率和阻抗管测量相比,渗透率和频率依赖性吸声系数的计算值和阻抗管测量成功。作者的结果表明纤维取向对与纤维材料不同物理性质相关的流动性质的重要作用。在三维微观结构和无纺布纤维材料的吸音性能之间提供直接链路,无需任何经验公式或拟合参数。 (c)2017年声学社会。

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    Univ Sherbrooke Dept Genie Mecan GAUS 2500 Blvd Univ Sherbrooke PQ J1K 2R1 Canada;

    Univ Paris Est Lab Modelisat &

    Simulat Multi Echelle MSME UMR CNRS 8208 5 Bd Descartes F-77454 Marne La Vallee France;

    Univ Paris Est Lab Modelisat &

    Simulat Multi Echelle MSME UMR CNRS 8208 5 Bd Descartes F-77454 Marne La Vallee France;

    Univ Sherbrooke Dept Genie Mecan GAUS 2500 Blvd Univ Sherbrooke PQ J1K 2R1 Canada;

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  • 正文语种 eng
  • 中图分类 声学;
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