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Modeling sound propagation in acoustic waveguides using a hybrid numerical method

机译:使用混合数值方法模拟声波导中的声音传播

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摘要

Sound propagation in an acoustic waveguide is examined using a hybrid numerical technique. Here, the waveguide is assumed to be infinite in length with an arbitrary but uniform cross-section. Placed centrally within the guide is a short component section with an irregular, non-uniform, shape. The hybrid method utilises a wave based modal solution for a uniform section of the guide and, using either a mode matching or point collocation approach, matches this to a standard finite element based solution for the component section. Thus, one needs only to generate a transverse finite element mesh in uniform sections of the waveguide and this significantly reduces the number of degrees of freedom required. Moreover, utilising a wave based solution removes the need to numerically enforce a non-reflecting boundary condition at infinity using a necessarily finite mesh, which is often encountered in studies that use only the standard finite element method. Accordingly, the component transmission loss may readily be computed and predictions are presented here for three examples: an expansion chamber, a converging-diverging duct and a circular cylinder. Good agreement with analytic models is observed, and transmission loss predictions are also presented for multi-mode incident and transmitted sound fields.
机译:使用混合数值技术检查声波导中的声音传播。这里,假设波导的长度是无限的,具有任意但均匀的横截面。放置在导向器中央的是一个短的部件,形状不规则,不均匀。混合方法对导向的均匀截面使用基于波的模态解决方案,并使用模式匹配或点配置方法将其与基于标准有限元的截面解决方案相匹配。因此,仅需在波导的均匀部分中产生横向有限元网格,并且这大大减少了所需的自由度的数量。此外,利用基于波的解决方案消除了使用必要的有限网格在无穷大条件下强制实施无反射边界条件的需求,这在仅使用标准有限元方法的研究中经常遇到。因此,可以容易地计算出部件的传输损耗,并在此处给出三个示例的预测:膨胀室,会聚-扩散管和圆柱体。观察到与分析模型的良好一致性,并且还给出了多模入射和透射声场的传输损耗预测。

著录项

  • 作者

    Kirby, R;

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  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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