带流直通穿孔管消声器的非线性声学特性预测与分析

Kangjian Han, Zhenlin Ji
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引用次数: 0

摘要

直通式穿孔管消音器广泛用于进气和排气噪声控制,其声学行为受气体流动和高振幅声音的影响很大。为了研究直通式穿孔管消音器在存在气流和高振幅声音时的声学衰减性能,我们采用了一种基于三维(3D)时域计算流体动力学(CFD)模拟的方法,并通过比较预测值和测量值进行了验证。预测了直通穿孔管消音器在纯音和多音声激励下的传输损耗。结果表明,在纯音声激励下,声衰减受到高振幅声的显著影响,非线性效应随着流速的增加而减弱。随着声压级(SPL)沿消音器轴线降低,孔口的声学非线性逐渐减弱。由于流动的传输作用,脱落旋涡被限制在穿孔附近区域。当进气口受到多音激励时,消音器的传输损耗在每个组成频率的相同声压级下都不同于纯音激励。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nonlinear Acoustic Behavior Prediction and Analysis of Straight Through Perforated Tube Silencer With Flow
Straight through perforated tube silencers are widely used in intake and exhaust noise control, and their acoustic behaviors are influenced by the gas flow and high amplitude sound remarkably. To investigate the acoustic attenuation performance of straight through perforated tube silencers in the presence of flow and high amplitude sound, an approach based on the three-dimensional (3D) time-domain computational fluid dynamics (CFD) simulation is employed and validated by comparing predictions and measurements. Transmission loss of the straight through perforated tube silencer under pure tone and multi-tone sound excitations is predicted. Results show that, under the pure tone sound excitations, the acoustic attenuations are affected remarkably by the high amplitude sound, and the nonlinear effects turn to weaken as flow velocity increases. With the sound pressure level (SPL) decreasing along the axis of the silencer, the acoustic nonlinearity in the orifice weakens gradually. The shedding vortices are restricted to the region near perforations because of the transport of flow. When the multi-tone sound excitation is enforced on the inlet, transmission loss of the silencer is different from the pure tone excitation at the same SPL of every compositional frequency.
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