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Experimental investigation of the turbulent density - Far-field sound correlations in compressible jets

机译:可压缩喷射中湍流密度 - 远场声音相关性的实验研究

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Jet mixing noise is experimentally investigated by means of cross-correlations between density fluctuations inside the turbulent jet flow and the far-field acoustic pressure. The time-resolved density fluctuations are measured by an experimental device based on Rayleigh scattering, which is mounted in the large anechoic wind tunnel of Ecole Centrale de Lyon. An original signal processing developed in a previous study is implemented for the photon counting, combined with the use of a single photomultiplier to remove shot noise. A high-speed subsonic jet and a perfectly expanded supersonic jet with a subsonic convective velocity are considered to characterize mixing noise sources. In order to go beyond the classical Fourier analyses, conditional cross-correlations are determined, and the signature of turbulent events linked to the noise emission in the downstream direction is extracted.
机译:通过湍流喷射流程中的密度波动与远场声压之间的互相关性进行试验混合噪声。 通过基于瑞利散射的实验装置测量的时间分辨密度波动,该实验装置安装在Ecole Centrale de Lyon的大型AneChoic风洞中。 在先前的研究中开发的原始信号处理用于光子计数,结合使用单个光电倍增管以去除射击噪声。 具有亚音速对流速度的高速子射流和具有完美扩展的超音速射流,以表征混合噪声源。 为了超越经典的傅立叶分析,确定了条件互相关,并且提取与下游方向上的噪声发射连接的湍流事件的特征。

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