Centre de Recherche de Royallieu, Universite de Technologie de Compiegne, CNRS UMR 6253 Roberval, BP 20529, 60205 Compiegne Cedex, France.
J Acoust Soc Am. 2009 Dec;126(6):3040-8. doi: 10.1121/1.3245033.
Sound transmission through hollow structures found its interest in several industrial domains such as building acoustics, automotive industry, and aeronautics. However, in practice, hollow structures are often filled with porous materials to improve acoustic properties without adding an excessive mass. Recently a lot of interest arises for granular materials of low density that can be an alternative to standard absorbing materials. This paper aims to predict vibro-acoustic behavior of double panels filled with porogranular materials by using the patch-mobility method recently published. Biot's theory is a basic tool for the description of porous material but is quite difficult to use in practice, mostly because of the solid phase characterization. The original simplified Biot's model (fluid-fluid model) for porogranular material permitting a considerable reduction in data necessary for calculation has been recently published. The aim of the present paper is to propose a model to predict sound transmission through a double panel filled with a porogranular material. The method is an extension of a previous paper to take into account the porogranular material through fluid-fluid Biot's model. After a global overview of the method, the case of a double panel filled with expanded polystyrene beads is studied and a comparison with measurements is realized.
声波在空心结构中的传播在建筑声学、汽车工业和航空航天等多个工业领域引起了关注。然而,在实际应用中,空心结构通常填充多孔材料,以在不增加过多质量的情况下改善声学性能。最近,人们对低密度的颗粒材料产生了很大的兴趣,这些材料可以替代标准的吸声材料。本文旨在通过最近发表的补丁移动性方法来预测填充多孔颗粒材料的双层板的振动声学行为。Biot 理论是描述多孔材料的基本工具,但在实际应用中相当困难,主要是因为固相的描述。最近发表了一种简化的 Biot 多孔颗粒材料模型(流体-流体模型),可以大大减少计算所需的数据。本文的目的是提出一种预测通过填充多孔颗粒材料的双层板的声传输的模型。该方法是对之前的一篇论文的扩展,以通过流体-流体 Biot 模型考虑多孔颗粒材料。在对该方法进行全面概述后,研究了填充膨胀聚苯乙烯珠的双层板的情况,并与测量结果进行了比较。