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Generalised prediction methods for flow-generated noise produced by multiple in-duct elements

机译:多个感应元件产生的气流产生噪声的通用预测方法

摘要

In recent years, several studies have sought to develop a generalised prediction method for flow-generated noise that is produced by the interaction of multiple elements in the air flow duct of an air-conditioning system. The prediction methods for single or multiple in-duct discontinuities are based on the assumption that there is a constant of proportionality between the fluctuating drag force and the steady drag force that acts on the flow spoilers. To develop a prediction method for multiple in-duct discontinuities, the concept of partially coherent sound fields is adopted to formulate the sound powers that are produced by the interaction of multiple in-duct elements at frequencies both below and above the cut-on frequency of the lowest transverse duct mode. An interaction factor is defined as the result of a simple relationship between the sound power that is due to the interaction of multiple in-duct elements and the sound power that is due to a single in-duct element. The method has been found to agree well for two in-duct elements with experimental studies. This paper introduces the recent developments in the prediction methods, and discusses the problems that are encountered in the development of the technique.
机译:近年来,数项研究寻求开发一种通用的预测方法,用于预测由空调系统的气流管道中多个元素的相互作用而产生的气流产生的噪声。单个或多个管道间断点的预测方法基于以下假设:作用在导流板上的波动阻力和稳定阻力之间存在比例常数。为了开发一种针对多个导管间断的预测方法,采用部分相干声场的概念来公式化由多个导管元件在低于或高于开关截止频率的频率下相互作用而产生的声功率。最低横向风管模式。相互作用因子被定义为由于多个感应元件的相互作用而产生的声功率与由于单个感应元件而引起的声功率之间的简单关系的结果。已经发现该方法对于两个导管元件与实验研究非常吻合。本文介绍了预测方法的最新发展,并讨论了该技术的发展中遇到的问题。

著录项

  • 作者

    Mak CM;

  • 作者单位
  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 eng
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