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用于流动中间歇声源时间反转检测的时域延迟求和波束形成

Time-domain delay-and-sum beamforming for time-reversal detection of intermittent acoustic sources in flows.

作者信息

Rakotoarisoa Ifanila, Fischer Jeoffrey, Valeau Vincent, Marx David, Prax Christian, Brizzi Laurent-Emmanuel

机构信息

Institut PPRIME UPR 3346, CNRS - Université de Poitiers - ENSMA, Bât. B17 - 6 rue Marcel Doré, 86022 Poitiers Cedex, France.

出版信息

J Acoust Soc Am. 2014 Nov;136(5):2675-86. doi: 10.1121/1.4897402.

Abstract

This study focuses on the identification of intermittent aeroacoustic sources in flows by using the time-domain beamforming technique. It is first shown that this technique can be seen as a time-reversal (TR) technique, working with approximate Green functions in the case of a shear flow. Some numerical experiments investigate the case of an array measurement of a generic acoustic pulse emitted in a wind-tunnel flow, with a realistic multi-arm spiral array. The results of the time-domain beamforming successfully match those given by a numerical TR technique over a wide range of flow speeds (reaching the transonic regime). It is shown how the results should be analyzed in a focusing plane parallel to the microphone array in order to estimate the location and emission time of the pulse source. An experimental application dealing with the aeroacoustic radiation of a bluff body in a wind-tunnel flow is also considered, and shows that some intermittent events can be clearly identified in the noise radiation. Time-domain beamforming is then an efficient tool for analyzing intermittent acoustic sources in flows, and is a computationally cheaper alternative to the numerical TR technique, which should be used for complex configurations where the Green function is not available.

摘要

本研究聚焦于运用时域波束形成技术识别流动中的间歇性气动声源。首先表明,在剪切流情况下,该技术可被视为一种使用近似格林函数的时间反转(TR)技术。一些数值实验研究了在风洞流中由实际的多臂螺旋阵列对一般声脉冲进行阵列测量的情况。时域波束形成的结果在很宽的流速范围内(直至跨声速区域)成功地与数值TR技术给出的结果相匹配。展示了如何在与麦克风阵列平行的聚焦平面中分析结果,以便估计脉冲源的位置和发射时间。还考虑了一个处理风洞流中钝体气动声学辐射的实验应用,结果表明在噪声辐射中可以清晰地识别出一些间歇性事件。因此,时域波束形成是分析流动中间歇性声源的有效工具,并且是数值TR技术在计算上更便宜的替代方法,数值TR技术应在格林函数不可用的复杂配置中使用。

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