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Open Rotor Noise Shielding by Blended-Wing-Body Aircraft

机译:混合机翼飞机的开放式转子噪声屏蔽

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This paper presents an analysis of open rotor noise shielding by Blended Wing Body (BWB) aircraft by using model scale test data acquired in the Boeing Low Speed Aeroacoustic Facility (LSAF) with a legacy F7/A7 rotor model and a simplified BWB platform. The objective of the analysis is the understanding of the shielding features of the BWB and the method of application of the shielding data for noise studies of BWB aircraft with open rotor propulsion. By studying the directivity patterns of individual tones, it is shown that though the tonal energy distribution and the spectral content of the wind tunnel test model, and thus its total noise, may differ from those of more advanced rotor designs, the individual tones follow directivity patterns that characterize far field radiations of modern open rotors, ensuring the validity of the use of this shielding data. Thus, open rotor tonal noise shielding should be categorized into front rotor tones, aft rotor tones and interaction tones, not only because of the different directivities of the three groups of tones, but also due to the differences in their source locations and coherence features, which make the respective shielding characteristics of the three groups of tones distinctly different from each other. To reveal the parametric trends of the BWB shielding effects, results are presented with variations in frequency, far field emission angle, rotor operational condition, engine installation geometry, and local airframe features. These results prepare the way for the development of parametric models for the shielding effects in prediction tools.
机译:本文使用在传统的F7 / A7旋翼模型和简化的BWB平台的波音低速航空声学设施(LSAF)中获得的模型比例测试数据,对混合翼体(BWB)飞机的开放式转子噪声屏蔽进行了分析。分析的目的是了解BWB的屏蔽特性以及将屏蔽数据应用于带有开放旋翼推进器的BWB飞机的噪声研究的方法。通过研究单个音调的方向性模式,可以看出尽管风洞测试模型的音调能量分布和频谱含量及其总噪声可能与更先进的转子设计有所不同,但单个音调遵循方向性现代开放转子的远场辐射具有特征的图案,确保了使用此屏蔽数据的有效性。因此,开放式转子音调噪声屏蔽应分类为前部转子音调,后部转子音调和交互作用音调,这不仅是由于三组音调的方向性不同,还应归因于其源位置和相干特征的差异,这使得三组音调的各自屏蔽特性彼此明显不同。为了揭示BWB屏蔽效果的参数趋势,给出了频率,远场发射角,转子运行条件,发动机安装几何形状和局部机身特征的变化结果。这些结果为开发预测工具中屏蔽效果的参数模型铺平了道路。

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