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Optimization of leading-edge undulation of a NACA 65(12)-10 aerofoil for noise reduction and aerodynamic enhancement

机译:NACA 65(12)-10机翼噪声降噪和空气动力学增强的优化优化

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Leading-edge undulations or tubercles of humpback whale flippers have been known as one of biomimetic technologies adaptable to flow control of aerofoils, particularly at post stall conditions. These leading-edge undulations are also known to reduce noise resulting from an interaction with on-coming turbulence. We have recently carried out a parametric study of a NACA 65(12)-10 aerofoil with a view to optimise the amplitude and the wavelength of leading-edge undulations for noise reduction and aerodynamic enhancement. A 3×3 test matrix composing of three amplitudes (h = 3%, 6% and 12% chord) and three wavelengths (λ = 10%, 20% and 30% chord) was used in the investigation, where lift, drag and noise were measured at the Reynolds number of 10~5. In this test, a turbulence-generating grid was installed at the inlet of the test section to increase the turbulence level in the freestream and to promote transition to turbulence near the leading edge of aerofoils without a need for a trip device. Within the test matrix considered, we found that the best improvement in C_(L,max) is given with the greatest wavelength and amplitude, whereas the maximum noise reduction is obtained with the small wavelength and the large amplitude.
机译:驼背鲸脚蹼的前沿起伏或结节被称为适于对翼型的流量控制的仿生技术之一,特别是在后摊位条件下。还已知这些前沿起伏,以减少由与即将到来的湍流相互作用产生的噪声。我们最近对NACA 65(12)-10井的参数研究,以优化了降噪和空气动力学增强的前缘波长的幅度和波长。在调查中使用3×3试验基质组成的三个振积(H = 3%,6%,6%和12%和弦)和三个波长(λ= 10%,20%和30%和平弦),其中提升,拖动和在雷诺数为10〜5的噪音。在该测试中,在试验部分的入口处安装湍流产生网格,以增加自由流动中的湍流水平,并促进在无需跳闸装置的情况下促进到空气膜前缘附近的湍流的湍流。在考虑的测试矩阵内,我们发现,具有最大波长和幅度的C_(L,MAX)的最佳改进,而用小波长和大幅度获得最大噪声降低。

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