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Noise reduction with perforated three-duct muffler components

机译:带穿孔的三通消声器组件可降低噪音

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摘要

This paper describes the authors’ distributed parameter approach for derivation of closed-form expressions for the four-pole parameters of the perforated three-duct muffler components. In this method, three simultaneous second-order partial differential equations are first reduced to a set of six first-order ordinary differential equations. These equations are then uncoupled by means of a modal matrix. The resulting 6 × 6 matrix is reduced to the 2 × 2 transfer matrix using the relevant boundary conditions. This is combined with transfer matrices of other elements (upstream and downstream of this perforated element) to predict muffler performance like noise reduction, which is also measured. The correlation between experimental and theoretical values of noise reduction is shown to be satisfactory.
机译:本文介绍了作者的分布式参数方法,用于得出带孔的三管消声器组件的四极参数的闭式表达式。在这种方法中,首先将三个同时的二阶偏微分方程简化为一组六个一阶常微分方程。这些方程然后通过模态矩阵解耦。使用相关的边界条件,将所得的6×6矩阵简化为2×2传输矩阵。这与其他元素(此穿孔元素的上游和下游)的传递矩阵相结合,以预测消声器的性能,例如降噪,也可以对其进行测量。实验结果表明,降噪的实验值与理论值之间的相关性令人满意。

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    Narayana Rao K; Munjal ML;

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  • 年度 1986
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