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Effect of Rotor Wake Distortion on the Stability of Flapping Dynamics

机译:转子唤醒失真对拍打动力学稳定性的影响

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In this paper, the coupled rotor inflow-wake distortion-flapping dynamics is investigated through coupling a rotor dynamic wake distortion model, the augmented Pitt-Peters dynamic inflow model for maneuvering flight and a rigid blade flapping model. The effect of rotor dynamic wake distortion on the stability of flapping dynamics is studied. It is shown that while a quasi-steady wake distortion model tends to destabilize the high frequency progressive flapping mode, the dynamic wake distortion model keeps the progressive flapping mode stable for the range of values for the wake curvature parameter considered in this study. The augmented Pitt-Peters dynamic inflow model, combined with the dynamic wake distortion model, is implemented in the RIPTIDE flight simulation environment at the Georgia Institute of Technology. Pilot-in-the-loop simulation results are presented to illustrate the impact of wake distortion dynamics on the off-axis response behavior of a helicopter.
机译:本文通过耦合转子动态唤醒失真模型来研究耦合转子流入唤醒失真拍摄动态,用于机动飞行的增强Pitt-Peters动态流入模型和刚性刀片拍摄模型。研究了转子动态唤醒失真对拍打动力学稳定性的影响。结果表明,虽然准稳态唤醒失真模型趋于使高频渐进式乘法模式破坏,但动态唤醒失真模型将逐行拍摄模式保持稳定,对于本研究中考虑的尾曲率参数的值范围稳定。增强的Pitt-Peters动态流入模型与动态唤醒失真模型相结合,在格鲁吉亚理工学院的RiptiDe飞行模拟环境中实现。提出了导向型仿真结果,以说明唤醒失真动力学对直升机的轴外响应行为的影响。

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