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Parallel blade-vortex interaction modelling for helicopter rotor noise control synthesis

机译:直升机旋翼噪声控制综合的叶片涡旋相互作用模型

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摘要

The present work deals with a methodology for the alleviation of loads and corresponding emitted noise generated by blade-vortex interaction (BVI) phenomena occurring on helicopter main rotors in low-speed, descent flight. It consists of a multi-cyclic, optimal control approach driving higher harmonic blade pitch actuation. First, for the specific flight condition to be examined, the BVI phenomena are simulated as equivalent two-dimensional, multi-vortex, parallel BVI problems and then a local controller methodology is applied for the efficient identification of the closed-loop control algorithm. In order to assess the capability of the proposed control approach to alleviate rotor blade loads and emitted noise, the results of a numerical investigation concerning a realistic helicopter main rotor in descent flight are presented and discussed.
机译:本工作涉及一种减轻载荷和相应的方法的方法,该方法是减轻低速下降飞行中直升机主旋翼上发生的叶片-涡旋相互作用(BVI)现象所产生的噪声。它由多循环,最优控制方法组成,可驱动高次谐波叶片桨距致动。首先,针对要检查的特定飞行条件,将BVI现象模拟为等效的二维,多涡旋,并行BVI问题,然后将局部控制器方法应用于有效识别闭环控制算法。为了评估所提出的控制方法减轻旋翼桨叶负载和发出的噪声的能力,提出并讨论了有关实际直升机主旋翼下降飞行的数值研究结果。

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