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A thin meta-structure with multi-order resonance for underwater broadband sound absorption in low frequency

机译:具有多阶谐振的薄元结构,用于低频下水下宽带吸声

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摘要

In this paper, a thin meta-structure with several detuned multi-order micro-perforated panels with backing cavity (MPPB) for sound absorption is proposed, aiming to obtain broadband underwater sound absorption at low frequency. The MPPBs are designed with the method that inserting several micro-perforated panels into the origin backing cavity. In doing so, more sound absorption peaks can be obtained at higher frequencies, while the total thickness of the structure and the origin sound absorption peak are almost unchanged. The mechanism of multi-order resonance is analyzed in detail based on the electro-acoustic analogy and verified by the finite element simulation (FEA). Furthermore, the specific relationship between sound absorption performances and key parameters of MPPBs are investigated thoroughly. On this basis, by precisely adjusting the parameters of MPPBs and making them in a parallel arrangement, an 11-unit meta-structure with a thickness of only 75 mm is achieved, in which the maximum absorption coefficient of almost 100% and average absorption coefficient of 80% at 1380-3150 Hz. (C) 2021 Elsevier Ltd. All rights reserved.
机译:在本文中,提出了一种具有用于吸声的背腔(MPPB)的多次多阶微穿孔板的薄元结构,用于以低频处获得宽带水下吸收。 MPPBS采用该方法设计,该方法将多个微穿孔面板插入原始背腔中。在这样做时,可以在更高的频率下获得更多的吸声峰,而结构的总厚度和原点吸声峰值几乎不变。基于电声模拟和通过有限元模拟(FEA)验证,详细分析多阶谐振机制。此外,彻底研究了吸声性能与MPPBS的关键参数之间的具体关系。在此基础上,通过精确地调节MPPB的参数并使它们处于并联布置,实现厚度仅为75mm的11单元元结构,其中最大吸收系数为几乎100%和平均吸收系数80%在1380-3150 Hz。 (c)2021 elestvier有限公司保留所有权利。

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