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EXPERIMENTAL STUDY OF TAIL ROTOR-FIN INTERFERENCE RATIO IN HOVER

机译:悬停时尾翼与鳍片间干扰比的实验研究

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The paper presents an experimental study of tail rotor and fin interference in hover and in the absence of a main rotor. A high and a ventral/dorsal low tail design are investigated on a model rotor. For the high tail conception in tractor configuration previous observations are substantiated. By contrast, in pusher configuration, besides early-identified factors the direction of rotation and tail rotor longitudinal position appear to control the interference. Accordingly a widened parametric model is proposed. The connected power increment, observed to scale with the thrust interference ratio, completes the description. For the low tail conception, on the one hand, low values of the fin/rotor separation distance are seen to handicap adequate thrust interference ratios as compared to the high tail constellation. On the other hand, with growing tail rotor/fin spacing, a substantial gain shows up. Finally, the ventral/dorsal arrangement is seen to benefit from a slightly improved power required.
机译:本文提出了在悬停和没有主旋翼的情况下尾旋翼和鳍片干涉的实验研究。在模型转子上研究了高尾巴和腹/背低尾巴的设计。对于拖拉机配置中的高尾巴概念,先前的观察得到了证实。相比之下,在推动器配置中,除了早期识别的因素外,旋转方向和尾桨纵向位置似乎也可以控制干扰。因此,提出了扩展的参数模型。观察到的与推力干扰比成比例的连接功率增量完成了说明。一方面,对于低尾翼构想,与高尾翼星座相比,翅片/转子分离距离的低值妨碍了足够的推力干涉比。另一方面,随着尾旋翼/翅片间距的增加,显示出显着的增益。最后,可以看到腹侧/背侧安排得益于所需功率的稍微改善。

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