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首页> 外文期刊>Transactions of the Japan society for aeronautical and space sciences >Suppression of Trailing-Edge Noise Emitted by Two-Dimensional Airfoils
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Suppression of Trailing-Edge Noise Emitted by Two-Dimensional Airfoils

机译:二维翼型产生的后缘噪声的抑制

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摘要

Acoustic noise from the trailing edge of 2D airfoils is known to be discrete at certain moderate Reynolds numbers. The most widely accepted explanation for this phenomenon is the acoustic linkage between acoustic radiation and Tollmien-Schlichting (T-S) disturbances growing in the airfoil boundary layer. This paper has two objectives: (1) is to devise a technical method for suppressing or abating trailing-edge noise from a practical viewpoint; (2) is to obtain evidence whether or not T-S instabilities are associated with the frequency selection mechanism mentioned in the literature. From previous experiments (Atobe, T., et al., Trans. Jpn. Soc. Aeronaut. Space Sci., Vol. 52, pp. 74-80, 2009), generation of trailing-edge noise is dominated primarily by suddenly amplified unsteady disturbances in the presence of reverse flow on the pressure side of the airfoil rather than the suction side. Therefore, the boundary layer near the trailing edge on the pressure side is disturbed artificially with distributed roughness elements. As a result, the separation is swept away, and the trailing-edge noise is drastically suppressed. We reconfirmed that under the natural configuration with sound emission, most unsteady disturbances are not amplified by T-S instabilities, but rather by other inflectional-type instabilities. The frequency selection mechanism in the tonal noise generation process remains unsolved.
机译:已知在某些中等雷诺数下,二维翼型后缘的声学噪声是离散的。对此现象最广泛接受的解释是声辐射与翼型边界层中增长的Tollmien-Schlichting(T-S)扰动之间的声联系。本文有两个目的:(1)从实用的角度设计一种抑制或消除后缘噪声的技术方法; (2)是为了获得证据,T-S不稳定性是否与文献中提到的频率选择机制有关。根据先前的实验(Atobe,T.等,Trans。Jpn。Soc。Aeronaut。Space Sci。,Vol。52,pp。74-80,2009),后缘噪声的产生主要受突然放大的影响。在机翼压力侧而不是吸力侧存在反向流动时产生的不稳定扰动。因此,在压力侧的后缘附近的边界层被分布的粗糙度元素人为地干扰。结果,消除了分离,并且大大抑制了后沿噪声。我们再次确认,在具有声音发射的自然配置下,大多数非稳态扰动不会被T-S不稳定性所放大,而是会被其他拐点型不稳定性所放大。音调噪声产生过程中的频率选择机制仍未解决。

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