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Characteristics of the Sound Field in a Duct with an L-shaped Expansion

机译:L形扩展管中的声场特性

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An axially-short expansion chamber in a duct acts as a resonator muffler. The radial size of the chamber must be altered in order to change the target frequency for noise reduction because the resonance frequency depends on the depth of the chamber. The present study reveals that the resonance frequency can be altered by changing the shape of the expansion to an ‘L’ shape, even if the radial size of the expansion is fixed. The structures of the acoustic field in the duct are obtained numerically based on a finite difference method for several L-shaped expansions. The computed results show that the resonance frequency decreases with increasing axial length of the expansion, whereas the minimum transmission coefficient is approximately constant. In addition, increasing the inlet length of the expansion enables the resonance frequency to be increased and the minimum transmission coefficient to be reduced. These results are in good agreement with previously reported experimental data.
机译:管道中的轴向短膨胀室用作共振器消声器。由于谐振频率取决于腔室的深度,因此必须更改腔室的径向尺寸以便更改目标频率以降低噪声。本研究表明,即使扩展的径向尺寸固定,也可以通过将扩展的形状更改为“ L”形来改变共振频率。管道中的声场结构是基于有限差分法针对多个L形扩展数值获得的。计算结果表明,共振频率随着扩展轴向长度的增加而减小,而最小传输系数则近似恒定。另外,增加膨胀件的入口长度使得能够增加共振频率并且能够减小最小透射系数。这些结果与先前报道的实验数据高度吻合。

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