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Acoustical coupling and radiation control of open cavity using an array of Helmholtz resonators

机译:使用亥姆霍兹共振器阵列的开放腔的声耦合和辐射控制

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This paper presents the theoretical and experimental investigations on the suppression of noise radiation from a point source inside an open cavity with three-dimensional configuration using several Helmholtz resonators (HRs). A theoretical model is established based on the modal superposition method to study the acoustical coupling between a rectangular open cavity and multiples HRs. Additionally, a baffled open cavity is considered to couple acoustically with a semi-infinite exterior field using the acoustic coupled mode theory. The theoretical model facilitates the understanding of the mechanism of the peak formation in the sound pressure level spectrum at the receiving points outside the cavity and the noise suppression mechanism by the HRs. In addition, the relationship between those sound peaks, and that of the resonances of the enclosed cavity and open cavity are investigated to have a good design of HR. The location and internal resistance of HR are optimised to obtain a desirable attenuation of noise radiation from the open cavity. Subsequently, experiments are performed to validate the proposed model and examine the feasibility of the HR in suppressing noise radiation from the open cavity. The noise reduction around the sound peak indicates that both the single and multiple sound peaks of the open cavity can be controlled successfully by adopting HRs. The practical significance of this study is to provide a new insight into sound reduction in an open acoustical system through suppressing the resonant response by resonators. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文介绍了使用几个亥姆霍兹谐振器(HRs)抑制三维结构的开放腔内点源噪声辐射的理论和实验研究。建立基于模态叠加法的理论模型,研究矩形腔与多个HRs之间的声耦合。另外,有挡板的开放腔被认为是使用声耦合模理论与半无限外场进行声耦合。该理论模型有助于理解腔体外部接收点处的声压级谱中的峰形成机理,以及通过HR抑制噪声的机理。另外,研究了那些声峰之间的关系,以及封闭腔和敞开腔的共振之间的关系,以具有良好的心率设计。 HR的位置和内部电阻经过优化,可从开放腔获得理想的噪声辐射衰减。随后,进行实验以验证所提出的模型并检验HR抑制来自开放腔的噪声辐射的可行性。声音峰值周围的噪声降低表明,采用HR可以成功控制开放腔的单个和多个声音峰值。这项研究的实际意义是通过抑制谐振器的谐振响应,为开放式声学系统中的降噪提供新的见解。 (C)2019 Elsevier Ltd.保留所有权利。

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