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Effect of exhaust nozzle configuration on aerodynamic and acoustic performance of an externally blown flap system with a quiet 6:1 bypass ratio engine

机译:排气喷嘴配置对采用6:1静音旁通比发动机的外部吹气风门系统的空气动力和声学性能的影响

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摘要

A highly suppressed TF-34 engine was used to investigate engine and flap interaction noise associated with an externally blown flap STOL powered lift system. Noise, efficiency, and velocity decay characteristics of mixed and separate flow exhaust systems including convergent, co-annular, and lobed designs were determined with the engine operating alone. Noise data were then obtained for several of the exhaust configurations with the engine blowing a wing-flap segment. Noise for both the engine alone and the engine with blown flaps showed substantial differences for the various exhaust configurations tested. The differences in observed noise are related primarily to nozzle effective exhaust velocity, flap impingement velocity, and noise spectral shape.
机译:高度抑制的TF-34发动机用于调查与外部吹气式风门STOL动力提升系统相关的发动机和风门相互作用噪声。混流和分离流排气系统的噪声,效率和速度衰减特性(包括会聚,同心圆和叶状设计)是在发动机单独运行的情况下确定的。然后,在发动机吹动翼翼段的情况下,获得了几种排气配置的噪声数据。对于所测试的各种排气配置,单独的发动机和带有吹动的风门的发动机的噪声都显示出很大的差异。观察到的噪声差异主要与喷嘴有效排气速度,襟翼撞击速度和噪声频谱形状有关。

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