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Bluff Body Noise Control Using Perforated Fairings

机译:多孔整流罩的钝体噪声控制

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Landing gears of commercial aircraft make an important contribution to total aircraft noise in the approach configuration. Using fairings to shield components from high-speed impingement reduces noise. Furthermore, perforating these fairings has been confirmed by flight tests to enable a further reduction. A fundamental study has been performed to investigate and optimize the benefits of bleeding air through the fairing by application of perforations. Experiments have been performed with a simplified fairing-strut combination to clarify the influence of perforations on flow behavior and acoustics. The fairing self-noise is reduced significantly by breakdown of the vortex shedding process, resulting in a reduction of the associated broadband noise level. A redistribution of the velocities is achieved depending on the applied porosity. However, increasing the porosity can result in adverse noise effects due to the bled mass flow washing the strut. Self-noise of the perforations manifests itself at higher frequencies, although scaling of this phenomenon with orifice diameter opens up the possibility to shift it above the upper limit of the audible range.
机译:商用飞机的起落架在进近配置中对总体飞机噪声做出了重要贡献。使用整流罩来屏蔽组件免受高速撞击,可降低噪声。此外,已经通过飞行测试确认对这些整流罩进行穿孔以进一步减小。已经进行了一项基础研究,以研究和优化通过使用穿孔的整流罩而泄漏空气的益处。用简化的整流罩-支柱组合进行了实验,以弄清穿孔对流动特性和声学的影响。由于涡旋脱落过程的破裂,整流罩的自噪声大大降低,从而降低了相关的宽带噪声水平。取决于所施加的孔隙率,可以实现速度的重新分配。但是,由于渗出的质量流冲洗了支杆,增加孔隙率会导致不利的噪声影响。穿孔的自噪声会在较高的频率下表现出来,尽管这种现象随孔口直径的缩放开辟了将其移动到可听范围上限之上的可能性。

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