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首页> 外文期刊>Journal of Sound and Vibration >Methods for evaluating in-duct noise attenuation performance in a muffler design problem
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Methods for evaluating in-duct noise attenuation performance in a muffler design problem

机译:在消声器设计问题中评估导管噪声衰减性能的方法

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摘要

In this study, methods for evaluating the noise attenuation performance of a muffler in a muffler design problem are investigated, and a proper evaluation method is suggested for actual noise reduction in a duct when an optimally designed muffler is mounted on a duct. Mathematical expressions of the transmission loss, insertion loss, and level difference for a simple expansion chamber muffler are developed from basic acoustic equations. The effects of the locations of the measurement points, tailpipe length, and impedance at the end of the duct on the noise attenuation performance calculated using the three evaluation methods are discussed. The TL and IL maximization problems formulated using topology optimization are solved for a muffler unit, and the noise attenuation performances of the optimally designed mufflers are compared when mounted on a duct. Another acoustical topology optimization problem, a partition volume minimization problem for a muffler design, is formulated to reduce the in-duct broadband noise, and the noise attenuation performance of the optimal muffler obtained using this formulation is experimentally validated. These research results will contribute to the development of a muffler design method with high accuracy by reducing the discrepancy between the noise attenuation performances of a muffler unit and a muffler mounted on a duct. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在这项研究中,为了评价在消音器的设计问题的消声器的噪声衰减性能的方法进行了研究,并提出一种用于在管道的实际噪声减少一个正确的评价方法时,最佳设计的消声器安装在的管道。的传输损耗,插入损耗,和一个简单的膨胀室的消声器的水平差的数学表达式从基本声方程显影。讨论在使用三种评价方法计算得到的噪声衰减性能的导管的端部的所述测量点的位置,排气管的长度和阻抗的影响。使用拓扑优化配制的TL和IL最大化问题都解决了一个消声器单元,并且最优设计消声器的噪声衰减性能安装在导管时进行比较。另一个声拓扑优化问题,一个消声器设计的隔板的体积最小化问题,被配制以减少在风道的宽带噪声,并使用该制剂实验验证所获得的最佳消声器的噪声衰减性能。这些研究成果将有助于消声器的设计方法以高准确度的发展通过减小消声器单元的噪声衰减性能之间的差异,并安装在管道的消音器。 (c)2019 Elsevier Ltd.保留所有权利。

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