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An efficient and robust method for predicting helicopter rotor high-speed impulsive noise

机译:一种预测直升机旋翼高速脉冲噪声的高效鲁棒方法

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摘要

A new formulation for the Ffowcs Williams-Hawkings quadrupole source, which is valid for a far-field in-plane observer, is presented. The far-field approximation is new and unique in that no further approximation of the quadrupole source strength is made and integrands with r(exp -2) and r(exp -3) dependence are retained. This paper focuses on the development of a retarded-time formulation in which time derivatives are analytically taken inside the integrals to avoid unnecessary computational work when the observer moves with the rotor. The new quadrupole formulation is similar to Farassat's thickness and loading formulation 1A. Quadrupole noise prediction is carried out in two parts: a preprocessing stage in which the previously computed flow field is integrated in the direction normal to the rotor disk, and a noise computation stage in which quadrupole surface integrals are evaluated for a particular observer position. Preliminary predictions for hover and forward flight agree well with experimental data. The method is robust and requires computer resources comparable to thickness and loading noise prediction.
机译:提出了一种适用于Ffowcs Williams-Hawkings四极子源的新公式,该公式对远场面内观察者有效。远场近似是新的且独特的,因为没有进一步近似四极子源强度,并且保留了具有r(exp -2)和r(exp -3)相关性的积分。本文关注于延迟时间公式的开发,该公式中的时间导数在积分内部进行了分析,从而避免了观察者随转子移动时不必要的计算工作。新的四极杆配方类似于Farassat的厚度和载荷配方1A。四极子噪声预测分为两个部分:一个预处理阶段,其中先前计算的流场在垂直于转子盘的方向上积分;一个噪声计算阶段,其中四极表面积分针对特定观察者位置进行评估。悬停和向前飞行的初步预测与实验数据非常吻合。该方法是鲁棒的,并且需要与厚度和负载噪声预测相当的计算机资源。

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  • 作者

    Brentner, Kenneth S.;

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  • 年度 1996
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