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首页> 外文期刊>The Journal of the Acoustical Society of America >A theoretical model of fuselage pressure levels due to fan tones radiated from the intake of an installed turbofan aero-engine
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A theoretical model of fuselage pressure levels due to fan tones radiated from the intake of an installed turbofan aero-engine

机译:由安装的涡轮机通风摄入量辐射的风扇色调引起的机身压力水平的理论模型

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摘要

An existing theoretical model to predict the pressure levels on an aircraft's fuselage is improved by incorporating a more physically realistic method to predict fan tone radiation from the intake of an installed turbofan aero-engine. Such a model can be used as part of a method to assess cabin noise. Fan tone radiation from a turbofan intake is modelled using the exact solution for the radiated pressure from a spinning mode exiting a semi-infinite cylindrical duct immersed in a uniform flow. This approach for a spinning duct mode incorporates scattering/diffraction by the intake lip, enabling predictions of the radiated pressure valid in both the forward and aft directions. The aircraft's fuselage is represented by an infinitely long, rigid cylinder. There is uniform flow aligned with the cylinder, except close to the cylinder's surface where there is a constant-thickness boundary layer. In addition to single mode calculations it is shown how the model may be used to rapidly calculate a multi-mode incoherent radiation from the engine intake. Illustrative results are presented which demonstrate the relative importance of boundary-layer shielding both upstream and downstream of the source, as well as examples of the fuselage pressure levels due to a multi-mode tonal source at high Helmholtz number. (C) 2018 Author(s).
机译:通过结合更具物理的方法来预测飞机机身上的压力水平的现有理论模型,以预测从安装的涡轮通风机的摄入量预测风扇音调辐射。这种模型可以用作评估驾驶室噪声的方法的一部分。来自涡轮机摄入量的扇形音调辐射使用从离开浸入均匀流动的半无限圆柱形管道的纺丝模式来建模来自辐射压力的精确解决方案。用于纺纱管道模式的这种方法包括进气唇部的散射/衍射,从而能够预测在前向和后绕方向上有效的辐射压力。飞机的机身由无限长的刚性圆柱形表示。除了靠近圆柱形的表面之外,存在与圆筒的均匀流动的流程,其中有恒定厚度边界层。除了单模计算外,还示出了如何使用模型来快速计算来自发动机进气的多模式非相干辐射。提出了说明性结果,其展示了边界层屏蔽源上游和下游的边界层的相对重要性,以及由于高亥姆霍兹数的多模式音调源引起的机身压力水平的示例。 (c)2018年作者。

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