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Studies to improve exhaust system acoustic performance by determination and assessment of the source characteristics and impedance optimization.

机译:通过确定和评估源特性以及优化阻抗来改善排气系统的声学性能的研究。

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摘要

It is shown that the relationship between an impedance change and the dynamic response of a linear system is in the form of the Moebius transformation. The Moebius transformation is a conformal complex transformation that maps straight lines and circles in one complex plane into straight lines and circles in another complex plane. The center and radius of the mapped circle can be predicted provided that all the complex coefficients are known. This feature enables rapid determination of the optimal impedance change to achieve desired performance.;This dissertation is primarily focused on the application of the Moebius transformation to enhance vibro-acoustic performance of exhaust systems and expedite the assessment due to modifications. It is shown that an optimal acoustic impedance change can be made to improve both structural and acoustic performance, without increasing the overall dimension and mass of the exhaust system. Application examples include mufflers and enclosures. In addition, it is demonstrated that the approach can be used to assess vibration isolators. In many instances, the source properties (source strength and source impedance) will also greatly influence exhaust system performance through sound reflections and resonances. Thus it is of interest to acoustically characterize the sources and assess the sensitivity of performance towards source impedance. In this dissertation, the experimental characterization of source properties is demonstrated for a diesel engine. Moreover, the same approach can be utilized to characterize other sources like refrigeration systems. It is also shown that the range of variation of performance can be effectively determined given the range of source impedance using the Moebius transformation.;This optimization approach is first applied on conventional single-inlet single-outlet exhaust systems and is later applied to multi-inlet multi-outlet (MIMO) systems as well, with proper adjustment. The analytic model for MIMO systems is explained in details and validated experimentally. The sensitivity of MIMO system performance due to source properties is also investigated using the Moebius transformation.;Keywords: transmission loss, insertion loss, 2-load measurement, Moebius transformation, source properties, multi-inlet multi-outlet.
机译:结果表明,阻抗变化与线性系统的动态响应之间的关系采用Moebius变换的形式。 Moebius变换是保形复杂变换,可将一个复杂平面中的直线和圆映射为另一个复杂平面中的直线和圆。只要知道所有复数系数,就可以预测映射圆的中心和半径。该功能可以快速确定最佳阻抗变化,以实现所需的性能。本论文主要侧重于Moebius变换的应用,以增强排气系统的振动性能,并通过修改加快评估。结果表明,在不增加排气系统的整体尺寸和质量的情况下,可以做出最佳的声阻抗变化以改善结构和声学性能。应用示例包括消声器和外壳。此外,已证明该方法可用于评估隔振器。在许多情况下,声源特性(声源强度和声源阻抗)还将通过声音反射和共鸣极大地影响排气系统的性能。因此,感兴趣的是对源进行声学表征并评估性能对源阻抗的敏感性。本文对柴油机的源特性进行了实验表征。而且,可以利用相同的方法来表征其他来源,例如制冷系统。还表明,使用Moebius变换,可以在给定源阻抗范围的情况下有效地确定性能变化的范围。该优化方法首先应用于常规的单入口单出口排气系统,然后应用于多排放系统。入口多出口(MIMO)系统,以及适当的调整。详细解释了MIMO系统的分析模型并进行了实验验证。还使用Moebius变换研究了由于源特性而引起的MIMO系统性能的敏感性。关键词:传输损耗,插入损耗,2负载测量,Moebius变换,源特性,多进多出。

著录项

  • 作者

    Zhang, Yitian.;

  • 作者单位

    University of Kentucky.;

  • 授予单位 University of Kentucky.;
  • 学科 Mechanical engineering.;Acoustics.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 174 p.
  • 总页数 174
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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