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A study of the effect of airfoil thickness on the tonal noise generation of finite, wall-mounted airfoils

机译:翼型厚度对有限,壁挂式翼型的音调发射效果的研究

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The noise generated by finite, wall-mounted airfoils strongly affects the total noise from aerodynamic applications such as small unmanned aerial vehicles, micro wind turbines and cooling fans. In an attempt to understand the effect of airfoil thickness on the trailing edge tonal noise generated by such airfoils, detailed wind tunnel experiments have been performed on two symmetric NACA-type airfoils with aspect ratio of 1.2 and nominal thicknesses of 12% and 18% of the chord length. The measurements included microphone array measurements, hot-wire measurements in the near wake of the airfoils and surface flow visualizations. It was found that the thickness has a strong impact on the tonal noise generation. At non-lifting conditions, the thinner airfoil generates tonal noise, while the thicker airfoil radiates broadband noise. At a slightly higher angle of attack (6 degrees), both airfoils generate tonal noise, but with different frequency and side-tone characteristics. Further increasing the angle (to 12 degrees) resulted in the generation of tonal noise from the thicker airfoil, while the far field spectrum obtained for the thinner airfoil has broadband character. This is attributed to the tip flow having stronger influence over the airfoil span in the case of the thinner airfoil leading to suppression of the tonal noise mechanism. Maps of the sound source locations, flow visualizations as well as detailed hot-wire measurements also provide further insight into the sound source mechanisms. (C) 2021 Elsevier Masson SAS. All rights reserved.
机译:由有限壁挂式翼型产生的噪声强烈影响来自空气动力学应用的总噪声,例如小型无人机,微风力涡轮机和冷却风扇。为了了解翼型厚度对由这种翼型产生的后缘音调噪声的效果,已经对两个对称的Naca型翼型进行了详细的风洞实验,纵横比为1.2和12%和18%的标称厚度和弦长度。测量包括麦克风阵列测量,靠近翼型和表面流动可视化的热线测量。发现厚度对色调噪声产生强烈影响。在非提升条件下,较薄的翼型产生音调噪声,而较厚的翼型辐射宽带噪声。在略高的攻角(6度)略高,两个翼型产生色调噪声,但具有不同的频率和侧调特性。进一步增加角度(至12度)导致从较厚的翼型产生色调噪声,而用于较薄的翼型的远场谱具有宽带特征。这归因于在较薄的翼型导致抑制色调噪声机构的情况下,对翼型跨度具有更强的影响的尖端流。声源位置,流量可视化以及详细的热线测量的映射还提供进一步了解声源机制的洞察力。 (c)2021 Elsevier Masson SAS。版权所有。

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