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Experimental Study of Wake / Flap Interaction Noise and the Reduction of Flap Side Edge Noise

机译:尾翼/襟翼相互作用噪声及襟翼侧缘噪声减小的实验研究。

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The effects of the interaction of a wake with a half-span flap on radiated noise are examined. The incident wake is generated by bars of various widths and lengths or by a simplified landing gear model. Single microphone and phased array measurements are used to isolate the effects of the wake interaction on the noise radiating from the flap side edge and flap cove regions. The effects on noise of the wake generator's geometry and relative placement with respect to the flap are assessed. Placement of the wake generators upstream of the flap side edge is shown to lead to the reduction of flap side edge noise by introducing a velocity deficit and likely altering the instabilities in the flap side edge vortex system. Significant reduction in flap side edge noise is achieved with a bar positioned directly upstream of the flap side edge. The noise reduction benefit is seen to improve with increased bar width, length and proximity to the flap edge. Positioning of the landing gear model upstream of the flap side edge also leads to decreased flap side edge noise. In addition, flap cove noise levels are significantly lower than when the landing gear is positioned upstream of the flap mid-span. The impact of the local flow velocity on the noise radiating directly from the landing gear is discussed. The effects of the landing gear side-braces on flap side edge, flap cove and landing gear noise are shown.
机译:检查了尾流与半跨瓣相互作用对辐射噪声的影响。尾波是由各种宽度和长度的杆或简化的起落架模型产生的。使用单个麦克风和相控阵测量来隔离尾声相互作用对襟翼侧面边缘和襟翼凹部区域辐射的噪声的影响。评估了尾流发生器的几何形状和相对于襟翼的相对位置对噪声的影响。尾流发生器在襟翼侧边缘上游的放置显示出通过引入速度不足并可能改变襟翼侧边缘涡流系统中的不稳定性而导致了襟翼侧边缘噪声的减小。借助直接位于襟翼侧边缘上游的条形杆,可以显着降低襟翼侧边缘的噪音。可以看到,随着杆宽度,长度和与襟翼边缘的距离增加,降噪效果会有所改善。起落架模型在襟翼侧边缘上游的定位还可以降低襟翼侧边缘的噪音。此外,与起落架位于襟翼中跨上游相比,襟翼湾的噪声水平要低得多。讨论了局部流速对起落架直接辐射的噪声的影响。显示了起落架侧撑对襟翼侧边缘,襟翼凹面和起落架噪音的影响。

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