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Broadband airfoil trailing-edge noise prediction from measured surface pressures and spanwise length scales

机译:根据测得的表面压力和翼展方向的长度比例来预测宽带机翼后缘噪声

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摘要

In this paper an effective approach to estimate airfoil Turbulent Boundary-Layer Trailing-Edge (TBL-TE) far-field noise from measured surface pressure fluctuations (SPF) is evaluated. Measurements of both SPF and TE noise were performed on a NACA 0062 airfoil of 0.4 m chord at Reynolds numbers of 1.0-1.9 millions for various angles of attack. A non-homogeneously spaced array of five Kulite-sensors near the TE at x/c = 0.989 is employed to measure point spectra and spanwise two-point correlations of surface pressure fluctuations. Finally spanwise SPF length-scales are derived as function of frequency. Comparisons to measured TE noise and semi-empirical predictions of surface pressures and far-field noise show very good agreement. It is found, that the proposed method can cover a larger frequency range than standard acoustic measurement techniques. Therefore it can provide valuable assistance in extending spectra obtained conventionally, mainly to low frequencies. Furthermore, pressure and suction side contributions to far-field noise can be obtained separately.
机译:本文评估了一种有效的方法,可根据测量的表面压力波动(SPF)估算机翼湍流边界层后缘(TBL-TE)远场噪声。 SPF和TE噪声的测量都是在弦长为0.4 m的NACA 0062翼型上进行的,雷诺数为1.0-190万,用于各种迎角。在x / c = 0.989处,靠近TE的五个Kulite传感器的非均匀间隔阵列用于测量点压力谱和表面压力波动的展宽方向两点相关性。最终,得出跨度SPF长度尺度作为频率的函数。与测得的TE噪声的比较以及表面压力和远场噪声的半经验预测显示出很好的一致性。发现,与标准声学测量技术相比,所提出的方法可以覆盖更大的频率范围。因此,它可以为扩展常规获得的频谱(主要扩展到低频)提供宝贵的帮助。此外,可以分别获得压力和吸入侧对远场噪声的影响。

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