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Helicopter tail rotor thrust and main rotor wake coupling in crosswind flight

机译:侧风飞行中的直升机尾旋翼推力和主旋翼尾翼耦合

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摘要

The tail rotor of a helicopter with a single main rotor configuration can experience a significant reduction in thrust when the aircraft operates in crosswind flight. Brown’s vorticity transport model has been used to simulate a main rotor and tail rotor system translating at a sideslip angle that causes the tail rotor to interact with the main rotor tip vortices as they propagate downstream at the lateral extremities of the wake. The tail rotor is shown to exhibit a distinct directionally dependent mode during which tail rotors that are configured so that the blades travel forward at the top of the disk develop less thrust than tail rotors with the reverse sense of rotation. The range of flight speeds over which this mode exists is shown to vary considerably with the vertical location of the tail rotor. At low flight speeds, the directionally dependent mode occurs because the tail rotor is immersed within not only the downwash from the main rotor but also the rotational flow associated with clusters of largely disorganized vorticity within the main rotor wake. At higher flight speeds, however, the tail rotor is immersed within a coherent supervortex that strongly influences the velocity field surrounding the tail rotor.
机译:当飞机以侧风飞行时,具有单个主旋翼配置的直升飞机的尾旋翼可大大降低推力。布朗的涡度传输模型已被用于模拟以侧滑角平移的主旋翼和尾旋翼系统,当尾旋翼在尾流的两个末端向下游传播时,导致尾旋翼与主旋翼尖端的涡旋相互作用。示出的尾旋翼表现出独特的方向相关的模式,在此模式下,尾旋翼被配置为使得叶片在盘的顶部向前行进的力要小于具有反向旋转方向的尾旋翼的推力。显示该模式存在的飞行速度范围随尾旋翼的垂直位置而有很大变化。在低速飞行时,会发生方向相关的模式,这是因为尾桨不仅浸没在主旋翼的下冲液中,而且还浸没在与主旋翼尾流中涡旋度大为紊乱的簇相关的旋转流中。但是,在较高的飞行速度下,尾桨会沉浸在连贯的超旋涡内,这会严重影响尾桨周围的速度场。

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  • 年度 2010
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  • 正文语种 {"code":"en","name":"English","id":9}
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