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Hybrid Wing-Body Aircraft Slat Noise

机译:混合机翼机身板条噪声

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摘要

This paper presents an analysis of the slat noise for hybrid wing-body aircraft. It is shown that the hybrid wing-body slat noise is characterized by its broad spectral shapes with frequencies depending on both the mean flow velocity and the aircraft angle of attack, with the former following the conventional Strouhal number scaling and the latter explainable by the dependence of the coherence length of the unsteady flows on the angle of attack. Although the overall noise levels approximately follow the fifth power law in Mach number, the Mach number effects manifest themselves spectrally in both amplitudes and spectral shapes. The noise amplitude is shown to also depend on the angle of attack, assuming a minimum in the range of 3 to 5 deg. These features are all modeled and incorporated in slat noise-prediction methodologies, extending the prediction capability from conventional to hybrid wing-body configurations. Comparisons between predictions and data show very good agreements in both various parametric trends and the absolute levels. The hybrid wing-body aircraft is designed to operate at angles of attack higher than those of conventional aircraft. This is shown to significantly increase the hybrid wing-body slat noise. To further illustrate, the test data are extrapolated to full scale and compared with the slat noise of the Boeing 777 aircraft, showing that the former is higher than the latter.
机译:本文对混合机翼飞机的板条噪声进行了分析。结果表明,混合机翼板条噪声的特征在于其宽频谱形状,其频率取决于平均流速和飞机的迎角,前者遵循常规的Strouhal数标度,而后者可以通过依赖关系来解释。非定常流动的相干长度对迎角的影响。尽管总体噪声水平大约遵循马赫数的第五幂定律,但马赫数效应在幅度和频谱形状上均在光谱上表现出来。如图所示,噪声幅度还取决于攻角,假设最小值在3至5度范围内。这些特征均已建模并纳入板条噪声预测方法中,从而将预测能力从常规机翼构型扩展到混合机翼构型。预测和数据之间的比较表明,在各种参数趋势和绝对水平上都具有很好的一致性。混合机翼机身飞机的设计攻角要比传统飞机的攻角更高。事实证明,这会显着增加混合机翼板条的噪声。为了进一步说明,将测试数据外推至完整比例,并将其与波音777飞机的板条噪声进行比较,表明前者高于后者。

著录项

  • 来源
    《AIAA Journal》 |2013年第12期|2935-2945|共11页
  • 作者单位

    Boeing Research and Technology, Huntington Beach, California 92647,Acoustics Technology, 5301 Bolsa Avenue;

    Boeing Commercial Airplane, Everett, Washington 98124,Acoustics Technology, P.O. Box 3707, MC OR-JF;

    Boeing Commercial Airplane, Everett, Washington 98124,Acoustics Technology, P.O. Box 3707, MC OR-JF;

    NASA Langley Research Center, Hampton, Virginia 23681,Aeroacoustics Branch, MS 461;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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