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Influence of sound reflection on aircraft directivity and lateral attenuation on the ground

机译:声反射对飞机方向性和地面横向衰减的影响

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The calculation of the lateral attenuation correction for computing aircraft noise footprints on the ground, as proposed by Doc29 and AIR5662, is based on semiempirical methods not suitable for accounting for the particular characteristics of some of the novel aircraft designs under study; involving new configurations and propulsion and power systems. The lateral attenuation correction is known to depend on three factors: engine installation e_ects, ground absorption, and refraction and scattering of the sound. This study aims to numerically calculate the e_ects of the sound produced by the aircraft main sources (fan, jet) when reflected and scattered o_ of the wing, tail-plane surfaces and the fuselage of the aircraft. A simple 3D model geometry was used, approximating that of an A320, a MD11 and a MD83. Subsequently modelling the main sound sources as acoustic monopoles and using ray theory, a sound directivity field around the aircraft was calculated, which in turn was propagated to the ground. Then employing typical constant altitude flyovers, the Sound Exposure Level (SEL) were calculated and compared to an equivalent spherically symmetric source. It is shown that aircraft directivity is highly dependant on the nature of noise sources, their position relative to reflective surfaces and the geometry of those surfaces.
机译:Doc29和AIR5662提出的计算飞机地面噪声足迹的横向衰减校正的计算基于不适合考虑某些正在研究的新型飞机设计的特定特征的半经验方法;涉及新的配置以及推进和动力系统。已知横向衰减校正取决于三个因素:发动机安装效果,地面吸收以及声音的折射和散射。这项研究旨在从数值上计算飞机机翼,机尾平面和机身的反射和散射后飞机主要声源(风扇,喷气机)产生的声音的影响。使用了简单的3D模型几何,近似于A320,MD11和MD83。随后将主要声源建模为声学单极子,并使用射线理论计算了飞机周围的声指向性场,该场又传播到了地面。然后,使用典型的恒定高度跨线桥,计算出声音暴露水平(SEL),并将其与等效的球对称声源进行比较。结果表明,飞机的方向性高度取决于噪声源的性质,噪声源相对于反射表面的位置以及这些表面的几何形状。

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