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Identification of noise generation and flow kinematics in the air gap for two different blade tip designs of an axial fan

机译:识别轴流风扇的两种不同叶片尖端设计的气隙中的噪声产生和流动运动学

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摘要

Importance of the role of axial fans in our everyday life as well as in industrial sphere is crucial. Their presence dictates indispensable reduction of the emitted noise level. The aerodynamically born noise due to the kinematics of the air-flow in the gap between rotor and stator is one predominant source of emitted noise by most fans and is the most intensive within the human audible spectrum. Two different rotor blade tip shapes A and B were analysed in details and the results presented in this paper. Their influence on the emitted noise was determined by measurements of the integral aerodynamic characteristic and by the level of the sound pressure level of the fan. It was confirmed that the kinematics of the air-flow within the blade tip gap is significantly different for both observed blade tip designs and plays a crucial role when generation and size of the total emitted noise power is concerned. Frequency spectra of the measured noise pressure level for both observed blade designs was also essentially different and served to confirm the well-known fact that intensity of the sound pressure level decreases with the frequency, which helps to assess and identify mechanisms of the noise generation. A typical measured amplitude decrease of the sound pressure level was observed and explained in details for both blade tip versions for the frequency range f > 1000 Hz: appropriate scaling for the blade tip A and for the blade tip B was determined as and respectively. Distinctive differences between the two observed frequency spectra were established. Identification of locations, sources and specificity of the generated noise together with their detailed explanation was made possible by measurements of local pressure, velocity and their variances and is supported by simultaneous experimental flow visualization.
机译:在我们的日常生活以及工业领域中,轴流风扇的作用至关重要。它们的存在指示必不可少的发射噪声水平的降低。由空气动力学产生的噪声是由于转子和定子之间的间隙中的气流运动引起的,是大多数风扇发出噪声的主要来源之一,并且是人类可听频谱中强度最大的噪声源。详细分析了两种不同的转子叶片尖端形状A和B,并在本文中给出了结果。它们对发出的噪声的影响取决于对整体空气动力学特性的测量以及风扇的声压级。可以确定的是,对于两种观察到的叶尖设计,叶尖间隙内的气流运动学都存在显着差异,并且在涉及总发射噪声功率的产生和大小时,它起着至关重要的作用。两种观察到的叶片设计的测得的噪声压力水平的频谱也存在本质上的差异,可以用来确认众所周知的事实,即声压水平的强度随频率而降低,这有助于评估和确定噪声产生的机理。在频率范围f> 1000 Hz的两个叶片尖端版本中,观察到并典型地解释了声压级的典型幅度下降:分别确定了叶片尖端A和叶片尖端B的合适比例。建立了两个观察到的频谱之间的显着差异。通过对局部压力,速度及其变化的测量,可以识别所产生的噪声的位置,来源和特异性,并对其进行详细的解释,并通过同时进行的实验流可视化来进行支持。

著录项

  • 来源
    《Forschung im Ingenieurwesen》 |2015年第2期|29-39|共11页
  • 作者单位

    Hidria IMP Klima, Godovic 5275, Slovenia;

    Fac Mech Engn, Ljubljana 1000, Slovenia;

    Hidria IMP Klima, Godovic 5275, Slovenia;

    Fac Mech Engn, Ljubljana 1000, Slovenia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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