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LOW NOISE FEGV DESIGNED BY NUMERICAL METHOD BASED ON CFD

机译:基于CFD的数值方法设计低噪声FEGV

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This paper describes a low noise FEGV (Fan Exit Guide Vane), which is designed by a fan noise prediction method based on CFD. Fan noise is predicted by a hybrid scheme, which is the combination of three-dimensional CFD and three-dimensional linear theory. Characteristics of noise sources are investigated in some kinds of FEGV shapes. High amplitude areas spread not only along the leading edge but also in the span-wise positions along the mid-chord. It is found that high amplitude areas around the mid-chord make an important role in noise generation, and appropriate aft-ward swept angle and span-wise distribution of leaned angle could reduce the amplitude of the noise sources keeping aerodynamic performance. A fan noise test for fan scale models has been conducted at an anechoic test facility in IHI Mizuho to demonstrate noise reduction and performance of low noise FEGV. Noise reduction can be achieved keeping aerodynamic performance compared to conventional straight FEGV.
机译:本文介绍了一种低噪声FEGV(风扇出口导向叶片),其由基于CFD的风扇噪声预测方法设计。通过混合方案预测风扇噪声,其是三维CFD和三维线性理论的组合。以某种类型的FEGV形状研究了噪声源的特征。高振幅区域不仅沿着前沿散布,而且还在中间和中间沿着中间沿着跨度位置蔓延。结果发现中间和弦周围的高幅度区域在噪声产生中发挥着重要作用,并且适当的尾部扫描角度和倾斜角度的跨度分布可以降低保持空气动力学性能的噪声源的幅度。风扇噪声模型的风扇噪声测试已经在Ihi Mizuho的一个Anechoice测试设施中进行了展示降噪和低噪声Fegv的性能。与传统的直线Fegv相比,可以实现降噪保持空气动力学性能。

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