Review on attenuation methods of low-frequency noise in passive silencers

Fatemeh Karami, Mozafar Shokri Rad, Iman Karimipour
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Abstract

Noise reduction in various industrial and building systems such as ventilation ducts, vehicles, wind tunnels, and test facilities for jet engines, automobiles, and factories has always interested engineers, especially the problematic noise reduction at low frequencies. This problem is even more important with passive silencers, which require absorbent materials and more space. Passive silencers include reactive and dissipative silencers. Among reactive silencers, Helmholtz resonators, expansion chambers, flute-like, drum-like, and plate silencers have proven effective at low frequencies. Combining some of these silencers with a dissipative silencer, called a hybrid silencer, can achieve excellent performance at a wide range of low to high frequencies. In these silencers, the reactive part reduces noise at low frequencies, and the dissipative part reduces noise at medium and high frequencies. The aim of this work, which focuses more on experimental studies, is to introduce the mentioned silencers, investigate the presented methods to improve the performance of these silencers at low frequencies, and offer the practical advantages and disadvantages of these methods.
被动消音器低频噪音衰减方法综述
在通风管道、车辆、风洞、喷气发动机测试设备、汽车和工厂等各种工业和建筑系统中降低噪音,一直是工程师们感兴趣的问题,尤其是低频噪音的降低。对于需要吸音材料和更大空间的被动式消音器来说,这个问题更为重要。被动式消音器包括反应式消音器和耗散式消音器。在反应式消音器中,亥姆霍兹谐振器、膨胀腔、笛式、鼓式和板式消音器已被证明在低频下有效。将其中一些消音器与耗散型消音器相结合,称为混合型消音器,可在从低频到高频的广泛频率范围内实现出色的性能。在这些消音器中,反应部分降低低频噪音,耗散部分降低中频和高频噪音。这项工作更侧重于实验研究,目的是介绍上述消音器,研究改善这些消音器低频性能的方法,并介绍这些方法的实际优缺点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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