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CFD Study of a New Annular Lift Fan Configuration with High Lift Efficiency

机译:高升力效率的新型环形升力风扇配置的CFD研究

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A new annular lift fan configuration that has very high lift efficiency is explored by using a numerical scheme. The inlet lip radius and diffuser angle are maximized by semicircle duct walls and the location of the lift fan is moved from the throat to the diffuser area to maximize the diffusion effect of the ducted fan. The improved lift fan achieves the figure of merit of 0.772 and the power loading of 9.03 lbs/hp without ground effect, very close to the theoretical limit. Under the ground effect, the figure of merit reaches 0.822 with the power loading of 9.62 lbs/hp. The improved lift efficiency deteriorates the transition characteristics with higher momentum drag and pitching moment. However, with the aid of jet thrusts directly providing part of the lift during transition, the peak of momentum drag and pitching moment can be lowered. A total thrust to weight ratio of 0.7 is enough for all of the requirements in transition and in hover and for the maximum speed of 0.75 Mach in cruise flight.
机译:通过使用数值方案探索具有非常高的提升效率的新的环形升降机配置。入口唇半径和漫射角通过半圆形管壁最大化,提升风扇的位置从喉部移动到扩散区域,以最大化管道风扇的扩散效果。改进的升降机实现了0.772的优点和9.03磅/ HP的功率负载而没有接地效果,非常接近理论极限。在地面效应下,功率达到0.822,功率负载为9.62磅/ HP。改善的提升效率使得较高动量阻力和俯仰力矩的过渡特性劣化。然而,借助于在过渡期间直接提供部分升力的喷射推力,可以降低动量阻力和俯仰力矩的峰值。总推力为0.7的重量比对于过渡和悬停中的所有要求以及巡航飞行中的最大速度为0.75马赫的要求。

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  • 来源
    《Aerospace》 |2017年第1期|共页
  • 作者

    Yun Jiang; Bo Zhang;

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