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Effects of Bifurcations on Aft-Fan Engine Nacelle Noise

机译:分叉对后风扇发动机机舱噪声的影响

摘要

Aft-fan engine nacelle noise is a significant factor in the increasingly important issue of aircraft community noise. The ability to predict such noise within complex duct geometries is a valuable tool in studying possible noise attenuation methods. A recent example of code development for such predictions is the ducted fan noise propagation and radiation code CDUCT-LaRC. This work focuses on predicting the effects of geometry changes (i.e. bifurcations, pylons) on aft fan noise propagation. Beginning with simplified geometries, calculations show that bifurcations lead to scattering of acoustic energy into higher order modes. In addition, when circumferential mode number and the number of bifurcations are properly commensurate, bifurcations increase the relative importance of the plane wave mode near the exhaust plane of the bypass duct. This is particularly evident when the bypass duct surfaces include acoustic treatment. Calculations involving more complex geometries further illustrate that bifurcations and pylons clearly affect modal content, in both propagation and radiation calculations. Additionally, results show that consideration of acoustic radiation results may provide further insight into acoustic treatment effectiveness for situations in which modal decomposition may not be straightforward. The ability of CDUCT-LaRC to handle complex (non-axisymmetric) multi-block geometries, as well as axially and circumferentially segmented liners, allows investigation into the effects of geometric elements (bifurcations, pylons).
机译:尾桨发动机机舱噪声是飞机社区噪声日益重要的问题中的重要因素。在复杂的管道几何形状内预测此类噪声的能力是研究可能的噪声衰减方法的宝贵工具。用于此类预测的代码开发的最新示例是管道风扇噪声传播和辐射代码CDUCT-LaRC。这项工作着重于预测几何变化(即分叉,定向塔)对后风扇噪声传播的影响。从简化的几何形状开始,计算表明分叉会导致声能散射为高阶模。另外,当周向模式数和分叉数适当地相等时,分叉增加了旁通管的排气平面附近的平面波模式的相对重要性。当旁路管道表面进行声学处理时,这一点尤其明显。涉及更复杂几何形状的计算进一步表明,在传播和辐射计算中,分叉和定向塔显然会影响模态含量。此外,结果表明,对于模态分解可能不直接的情况,对声辐射结果的考虑可能会提供对声处理效果的进一步了解。 CDUCT-LaRC处理复杂(非轴对称)多块几何体以及轴向和周向分段的衬管的能力允许研究几何元素(分叉,铁塔)的影响。

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