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Phased-Array Study of Dual-Flow Jet Noise: Effect of Nozzles and Mixers

机译:双流射流噪声的相控阵研究:喷嘴和混合器的影响

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摘要

A 16-microphone linear phased-array installed parallel to the jet axis and a 32-microphone azimuthal phased-array installed in the nozzle exit plane have been applied to identify the noise source distributions of nozzle exhaust systems with various internal mixers (lobed and axisymmetric) and nozzles (three different lengths). Measurements of velocity were also obtained using cross-stream stereo particle image velocimetry (PIV). Among the three nozzle lengths tested, the medium length nozzle was the quietest for all mixers at high frequency on the highest speed flow condition. Large differences in source strength distributions between nozzles and mixers occurred at or near the nozzle exit for this flow condition. The beamforming analyses from the azimuthal array for the 12-lobed mixer on the highest flow condition showed that the core flow and the lobe area were strong noise sources for the long and short nozzles. The 12 noisy spots associated with the lobe locations of the 12-lobed mixer with the long nozzle were very well detected for the frequencies 5 KHz and higher. Meanwhile, maps of the source strength of the axisymmetric splitter show that the outer shear layer was the most important noise source at most flow conditions. In general, there was a good correlation between the high turbulence regions from the PIV tests and the high noise source regions from the phased-array measurements.
机译:平行于喷射轴安装的16麦克风线性相控阵和安装在喷嘴出口平面中的32麦克风方位相控阵已用于识别带有各种内部混合器(叶状和轴对称)的喷嘴排气系统的噪声源分布)和喷嘴(三种不同的长度)。还使用交叉流立体粒子图像测速仪(PIV)获得了速度测量值。在所测试的三种喷嘴长度中,中型喷嘴是所有混频器中在最高流速条件下高频下最安静的。对于这种流动条件,在喷嘴出口处或附近,在喷嘴和混合器之间的源强度分布存在很大差异。在最高流量条件下对12瓣混合器的方位角阵列进行的波束成形分析表明,对于长喷嘴和短喷嘴,核心流量和波瓣面积都是很强的噪声源。对于频率为5 KHz或更高的频率,很好地检测到与带有长喷嘴的12瓣混合器的瓣位置相关的12个噪声点。同时,轴对称分流器的源强度图显示,在大多数流动条件下,外剪切层是最重要的噪声源。通常,PIV测试的高湍流区域与相控阵测量的高噪声源区域之间具有良好的相关性。

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