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首页> 外文期刊>Journal of Sound and Vibration >Beamforming of aeroacoustic sources in the time domain: An investigation of the intermittency of the noise radiated by a forward-facing step
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Beamforming of aeroacoustic sources in the time domain: An investigation of the intermittency of the noise radiated by a forward-facing step

机译:时域中航空声源的波束成形:对前向步骤辐射的噪声的间歇性的研究

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摘要

The present study investigates the intermittency of the broadband aeroacoustic noise produced by a forward-facing step in a flow. The noise source is viewed as a random succession of the so-called intermittent events of short duration distributed spatially in a source region in the flow. An array processing method based on time-domain beam forming has been developed in order to track systematically the intermittent events, both in the time and space domains. Based on a simulated model of the far-field pressure field, the method is validated in terms of event detection and of performance for recovering the pressure spectrum. The method is then applied to experimental array data taken in an anechoic wind-tunnel at low Mach numbers (not exceeding 0.15) for a forward-facing step of height 30 mm. The results show that some very short intermittent events (with a mean duration of the order of 0.15 ms) can be identified from the array data. The spatial distribution of the intermittent events is found to be in agreement with the frequency domain beamform maps. The probability density functions of the events, in terms of widths and apparition times, are shown to be governed by Gamma laws and indicate random phenomena; it is observed that the statistical distributions vary with the streamwise position downstream and upstream of the step, the trends being in agreement with the source behavior as evidenced by using the frequency-domain beamforming methods. The proposed method is then shown to identify, in terms of emission time, location and temporal width, a succession of short acoustic events that participate to the broadband aeroacoustic noise produced by the step; those random events are likely to be linked to the dynamics of the flow interacting with the step. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本研究调查了由流动中的前向步骤所产生的宽带空气声噪声的间歇性。噪声源被视为短持续时间的所谓间歇事件的随机连续,这些事件在空间上分布在流中的源区域中。为了在时域和空域中系统地跟踪间歇事件,已经开发了一种基于时域波束形成的阵列处理方法。基于远场压力场的模拟模型,该方法在事件检测和恢复压力谱的性能方面得到了验证。然后将该方法应用于在低马赫数(不超过0.15)的消声风洞中获取的实验阵列数据,高度为30 mm。结果表明,可以从阵列数据中识别出一些非常短的间歇事件(平均持续时间约为0.15毫秒)。发现间歇事件的空间分布与频域波束图一致。事件的概率密度函数,在宽度和幻影时间方面,受伽玛定律支配,表示随机现象。可以看到,统计分布随步骤下游和上游的流向位置而变化,趋势与源行为一致,如使用频域波束形成方法所证明的。然后显示了所提出的方法,以识别发射时间,位置和时间宽度方面的一系列短声事件,这些短声事件参与了该步骤所产生的宽带空气声噪声。这些随机事件很可能与与步骤交互的流程动力学有关。 (C)2016 Elsevier Ltd.保留所有权利。

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