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Sound absorption of plates with micro-slits backed with air cavities: Analytical estimations, numerical calculations and experimental validations

机译:带有气孔的微缝板的吸声:分析估计,数值计算和实验验证

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摘要

This work discusses many practical and some theoretical aspects concerning modelling and design of plates with micro-slits, involving multi-scale calculations based on microstructure. To this end, useful mathematical reductions are demonstrated, and numerical computations are compared with possible analytical estimations. The numerical and analytical approaches are used to calculate the transport parameters for complex micro-perforated (micro-slotted) plates, which allow to determine the effective properties of the equivalent fluid, so that at the macro-scale level the plate can be treated as a specific layer of acoustic fluid. In that way, the sound absorption of micro-slotted plates backed with air cavities can be determined by solving a multi-layer system of Helmholtz equations. Two such examples are presented in the paper and validated experimentally. The first plate has narrow slits precisely cut out using a traditional technique, while the second plate - with an original micro-perforated pattern - is 3D-printed. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项工作讨论了有关微缝板建模和设计的许多实践和理论方面,涉及基于微结构的多尺度计算。为此,证明了有用的数学简化,并将数值计算与可能的分析估计进行了比较。数值和分析方法可用于计算复杂的微孔(微开槽)板的传输参数,从而可以确定等效流体的有效特性,因此在宏观水平上,可将板视为特定的声学流体层。这样,可以通过求解Helmholtz方程的多层系统来确定带有气腔的微缝板的吸声性能。本文提供了两个这样的示例,并通过实验进行了验证。第一块板具有使用传统技术精确切出的窄缝,而第二块板具有3D打印,该板具有原始的微穿孔图案。 (C)2018 Elsevier Ltd.保留所有权利。

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