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Noise Attenuation Performance of a Helmholtz Resonator Array Consist of Several Periodic Parts

机译:包含多个周期部分的亥姆霍兹谐振器阵列的噪声衰减性能

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摘要

The acoustic performance of the ducted Helmholtz resonator (HR) system is analyzed theoretically and numerically. The periodic HR array could provide a wider noise attenuation band due to the coupling of the Bragg reflection and the HR’s resonance. However, the transmission loss achieved by a periodic HR array is mainly dependent on the number of HRs, which restricted by the available space in the longitudinal direction of the duct. The full distance along the longitudinal direction of the duct for HR’s installation is sometimes unavailable in practical applications. Only several pieces of the duct may be available for the installation. It is therefore that this paper concentrates on the acoustic performance of a HR array consisting of several periodic parts. The transfer matrix method and the Bragg theory are used to investigate wave propagation in the duct. The theoretical prediction results show good agreement with the Finite Element Method (FEM) simulation results. The present study provides a practical way in noise control application of ventilation ductwork system by utilizing the advantage of periodicity with the limitation of available completed installation length for HRs.
机译:从理论和数值上分析了管道式亥姆霍兹共振器(HR)系统的声学性能。由于布拉格反射和HR共振的耦合,周期性HR阵列可以提供更宽的噪声衰减带。但是,通过周期性HR阵列实现的传输损耗主要取决于HR的数量,而HR的数量受到管道纵向上可用空间的限制。在实际应用中,有时无法获得用于HR安装的沿管道纵向的完整距离。只能安装几块风管。因此,本文将重点放在由几个周期部分组成的HR阵列的声学性能上。传递矩阵法和布拉格理论用于研究管道中的波传播。理论预测结果与有限元模拟结果吻合良好。本研究利用周期性的优势,限制了HRs的可用完整安装长度,为通风管道系统的噪声控制应用提供了一种实用的方法。

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