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Experimental Verification of the Theoretical Model of Sound Radiation from an Unflanged Duct with Low Mean Flow

机译:低平均流量的无法兰管道声辐射理论模型的实验验证

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摘要

The paper deals with experimental verification of results provided by theoretical approach to the problem of sound radiation from an unflanged duct with mean flow of the medium taking into account existence of all allowable wave modes and, in particular, occurrence of the so-called unstable wave, which results in decay of radiation on and in vicinity of the duct axis. The flow is assumed to be uniform with the source of flow located inside the duct, which is the case frequently occurring in industrial systems. Mathematical considerations, accounting for multimodal and multifrequency excitation and diffraction at the duct outlet, are based on the model of the semi-infinite unflanged hard duct with flow. In the experimental set-up a fan, mounted inside the duct served as the source of flow and noise at the same time modelled as an array of uncorrelated sources of broadband noise, what led to the axisymmetrical shape of the sound pressure directivity characteristics. The theoretical analysis was carried out for the root mean square acoustic pressure in the far-field conditions. Experimental results are presented in the form of the measured pressure directivity characteristics obtained for uniform flow directed inwards and outwards the duct compared to this observed for the zero-flow case. The directivity was measured in one-third octave bands throughout five octaves (500 Hz- 16 kHz) which, for a duct with radius of 0.08 m, corresponds to the range 0.74-23.65 in the reduced frequency ka (Helmholtz number) domain. The results obtained are consistent with theoretical solutions presented by Munt and Savkar, according to whom the weakening of the on-axis and close-to-axis radiation should take place in the presence of medium flow. Experimental results of the present paper indicate that this effect is observed even for the Mach number as low as 0.036.
机译:本文研究了通过理论方法对来自无法兰导管的声辐射问题的结果的实验​​验证,该问题考虑了所有允许波模的存在,特别是发生了所谓的不稳定波,介质平均流动的情况。 ,这会导致导管轴上及其附近的辐射衰减。假定流量与位于导管内部的流量源是均匀的,这在工业系统中经常发生。考虑管道出口处的多峰和多频激发和衍射的数学考虑是基于带流动的半无限无法兰硬管道的模型。在实验装置中,安装在管道内的风扇同时用作流量和噪声源,同时模拟为一系列不相关的宽带噪声源,这导致了声压方向性特征的轴对称形状。对远场条件下的均方根声压进行了理论分析。实验结果以相对于零流量情况下观察到的均匀流向管道的方向获得的,测得的压力方向特性的形式表示。在整个五个八度音阶(500 Hz-16 kHz)中的三分之一八度音阶中测量方向性,对于半径为0.08 m的风管,它在降低的频率ka(亥姆霍兹数)域中对应于范围0.74-23.65。所获得的结果与Munt和Savkar提出的理论解决方案相一致,根据该理论解决方案,在存在介质流的情况下,应减弱轴上和近轴辐射。本文的实验结果表明,即使马赫数低至0.036,也可以观察到这种效果。

著录项

  • 来源
    《Archives of acoustics》 |2012年第2期|p.227-236|共10页
  • 作者单位

    A GH University of Science and Technology Faculty of Mechanical Engineering and Robotics A GH University of Science and Technology;

    A GH University of Science and Technology Faculty of Electrical Engineering Automatics IT and Electronics Al. Mickiewicza 30, 30-059 Krakow, Poland A GH University of Science and Technology;

    A GH University of Science and TechnologyFaculty of Mechanical Engineering and Robotics A GH University of Science and Technology;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    convected wave equation; unflanged cylindrical duct; multimodal; broadband excitation;

    机译:对流波动方程无法兰的圆柱管;多式联运宽带激发;

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