多腔室混合消声器声学性能的调优

V. Trinh
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摘要

本文采用数值方法研究了多腔消声器的功能声学性能。本文首次介绍了膨胀腔域的波传播规律,并用有限元法求解。将所选消声器结构的数值计算结果与参考预测模型和实验结果进行了比较,以验证本文方法的有效性。然后,研究了典型消声器和混合消声器构型(子腔数、微孔管结构)几何特性对其传声损失的影响。研究结果表明,消声器的结构对消声器的声学性能有很大影响,传声损失行为的共振位置和共振高阶与子腔数和微孔管特性密切相关。通过调整几何参数(例如,具有较小的穿孔比),我们能够设计出在低频(~ 195 Hz)时具有更高声音传输损失(高达110 dB)的消声器,但限制空间(例如,声室长度为300 mm)。
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Tuning acoustic performance of multi-chamber hybrid mufflers
In this paper, we investigate the functional acoustic performance of multi-chamber mufflers using a numerical approach. The wave propagation governing in expansion chamber domains is first introduced and solved by the finite element method. Our numerical results of selected muffler configurations are compared with the reference predictions model and experiments in order to validate the present procedure. Then, the influence of the geometry characteristics of typical and hybrid configurations of multi-chambered mufflers (number of sub-chambers, micro-perforated tube structure) on their sound transmission loss is studied. The obtained results indicate that the structure of the considered muffler has a strong effect on their acoustical performance, and the location and the high level of resonances of the sound transmission loss behavior are strongly related to the number of sub-chambers as well as micro-perforated tube characteristics. By tuning geometrical parameters (e.g., having a small perforation ratio), we enable to design mufflers having a higher sound transmission loss (up to 110 dB) at low frequencies (~ 195 Hz) but a constraint space (e.g., acoustic chamber length of 300 mm).
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