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Modeling acoustic resonators using higher-order equivalent circuits

机译:使用高阶等效电路建模声谐振器

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Helmholtz resonators are widely used, but classical models for the resonators, such as the lumped-element equivalent circuit, are inaccurate for most geometries. This article presents higher-order equivalent circuits for describing the resonators based on the one-dimensional wave equation. Impedance expressions are also derived. These circuits and expressions are given for various constituent resonator components, which may be combined to model resonators with curved, tapered, and straight necks. Resonance frequency predictions using this theory are demonstrated on two realistic resonators. The higher-order predictions are also applied to the theory of side branch attenuators in a duct and the theory of resonator coupling with a mode of an enclosure. (C) 2019 Institute of Noise Control Engineering.
机译:亥姆霍兹谐振器被广泛使用,但谐振器的经典模型,如集成元件等效电路,对于大多数几何形状是不准确的。 本文介绍了高阶等效电路,用于描述基于一维波动方程的谐振器。 还导出阻抗表达式。 对于各种组成谐振器组件给出了这些电路和表达,其可以组合以模拟具有弯曲,锥形和直颈的谐振器。 使用该理论的共振频率预测在两个现实的谐振器上证明了这一理论。 高阶预测也应用于管道中的侧分支衰减器理论和具有外壳模式的谐振器联接器理论。 (c)2019年噪声控制工程研究所。

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