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On the acoustic analysis and optimization of ducted ventilation systems using a sub-structuring approach

机译:基于子结构方法的管道通风系统的声学分析和优化

摘要

This paper presents a general sub-structuring approach to predict the acoustic performance of ducted ventilation systems. The modeling principle is to determine the subsystem characteristics by calculating the transfer functions at their coupling interfaces, and the assembly is enabled by using a patch-based interface matching technique. For a particular example of a bended ventilation duct connecting an inlet and an outlet acoustic domain, a numerical model is developed to predict its sound attenuation performance. The prediction accuracy is thoroughly validated against finite element models. Through numerical examples, the rigid-walled duct is shown to provide relatively weak transmission loss (TL) across the frequency range of interest, and exhibit only the reactive behavior for sound reflection. By integrating sound absorbing treatment such as micro-perforated absorbers into the system, the TL can be significantly improved, and the system is seen to exhibit hybrid mechanisms for sound attenuation. The dissipative effect dominates at frequencies where the absorber is designed to be effective, and the reactive effect provides compensations at the absorption valleys attributed to the resonant behavior of the absorber. This ultimately maintains the system TL at a relatively high level across the entire frequency of interest. The TL of the system can be tuned or optimized in a very efficient way using the proposed approach due to its modular nature. It is shown that a balance of the hybrid mechanism is important to achieve an overall broadband attenuation performance in the design frequency range.
机译:本文提出了一种通用的子结构化方法来预测管道通风系统的声学性能。建模原理是通过计算其耦合接口处的传递函数来确定子系统的特性,并通过使用基于补丁的接口匹配技术来启用组装。对于连接入口和出口声域的弯曲通风管道的特定示例,开发了一个数值模型来预测其声音衰减性能。预测精度已针对有限元模型进行了充分验证。通过数值示例,显示了刚性壁管在感兴趣的频率范围内提供了相对较弱的传输损耗(TL),并且仅表现出对声反射的反应特性。通过将吸声处理(例如微孔吸声器)集成到系统中,可以显着改善TL,并且可以看到该系统显示出混合的声音衰减机制。耗散效应在设计吸收器有效的频率上占主导地位,而无功效应在归因于吸收器共振特性的吸收谷处提供补偿。最终,这在整个感兴趣的频率上将系统TL维持在较高水平。由于其模块化性质,可以使用提出的方法以非常有效的方式对系统的TL进行优化或优化。结果表明,混合机制的平衡对于在设计频率范围内实现整体宽带衰减性能很重要。

著录项

  • 作者

    Yu X; Cui FS; Cheng L;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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