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Ground Effect of a Rotor Hovering above a Confined Area

机译:悬停在密闭区域上方的转子的地面效应

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摘要

In this study, an experimental investigation of the effects of confined area geometry on the aerodynamic performance of a hovering rotor has been carried out from a standpoint of flight safety. The confined area is simulated by placing vertically a single plate or a couple of parallel plates on the ground effect plate. The aerodynamic performance of the rotor changes because a part of the rotor wake upward along the walls interferes with the flow field around the rotor. It is shown that the behavior of the steady and vibratory torque coefficients of the rotor remarkably depends on the combinations of the space between walls, the wall height, and the rotor height from the ground plate. The required torque coefficient in the presence of walls increases at all in-ground-effect rotor heights when compared with that without walls and can exceed the maximum usable out-of-ground-effect rotor power coefficient.
机译:在这项研究中,从飞行安全的角度对密闭区域的几何形状对悬停旋翼的空气动力学性能的影响进行了实验研究。通过在地面效应板上垂直放置单个板或几个平行板来模拟受限区域。转子的空气动力性能发生变化,因为转子的一部分沿壁向上唤醒,从而干扰了转子周围的流场。结果表明,转子的稳态和振动转矩系数的行为显着取决于壁之间的距离,壁高和转子距接地板的高度的组合。与没有壁的情况相比,有壁的情况下所需的转矩系数在所有地上转子高度都增加,并且可能超过最大可用的地外转子功率系数。

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