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High speed PIV applied to aerodynamic noise investigation

机译:高速PIV应用于空气动力学噪声研究

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摘要

In this paper, we study the acoustic emissions of the flow over a rectangular cavity. Especially, we investigate the possibility of estimating the acoustic emission by analysis of PIV data. Such a possibility is appealing, since it would allow to directly relate the flow behavior to the aerodynamic noise production. This will help considerably in understanding the noise production mechanisms and to investigate the possible ways of reducing it. In this study, we consider an open cavity with an aspect ratio between its length and depth of 2 at a Reynolds number of 2.4 × 10~4 and 3.0 × 10~4 based on the cavity length. The study is carried out combining high speed two-dimensional PIV, wall pressure measurements and sound measurements. The pressure field is computed from the PIV data. Curle's analogy is applied to obtain the acoustic pressure field. The pressure measurements on the wall of the cavity and the sound measurements are then used to validate the results obtained from PIV and check the range of validity of this approach. This study demonstrated that the technique is able to quantify the acoustic emissions from the cavity and is promising especially for capturing the tonal components on the sound emission.
机译:在本文中,我们研究了矩形腔上流的声发射。特别是,我们研究了通过分析PIV数据估算声发射的可能性。这种可能性很吸引人,因为它可以将流动特性直接与空气动力噪声产生联系起来。这将大大有助于理解噪声产生机制,并研究降低噪声的可能方法。在这项研究中,我们考虑了一个基于空腔长度的,在其长度和深度之间长宽比为2的开放空腔,其雷诺数为2.4×10〜4和3.0×10〜4。该研究是结合高速二维PIV,壁压测量和声音测量而进行的。根据PIV数据计算压力场。应用Curle的类比来获得声压场。然后,使用空腔壁上的压力测量值和声音测量值来验证从PIV获得的结果并检查此方法的有效性范围。这项研究表明,该技术能够量化来自腔体的声发射,并且特别有望用于捕获声发射中的音调成分。

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