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Effects of Distributed Propulsion Crucial Variables on Aerodynamic and Propulsive Performance of Small UAV

机译:分布推进关键变量对小无人机的空气动力学和推进性能的影响

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The distributed propulsion (DP) with the effect of boundary layer ingestion (BLI) can improve the flight performance of unmanned aerial vehicles (UAV), and the mounting parameters of DP can further affects the propulsive efficiency and the aerodynamic performance of airfoil. To explore the effect of DP mounting parameters, computational fluid dynamics (CFD). sensitivity analysis and Kriging surrogate models methods were used, results indicate that in a wide range of design space, the effect of BLI significantly improves the aerodynamic performance and propulsive efficiency at medium/small angle of attack (2° and 6°). but the undesirable configuration will exert adverse effects on the propulsive efficiency and pitching moment, lower mounting height or larger setting angle of DP will produce the aerodynamic effect of the reflex airfoil, which is suitable for flying-wing UAV.
机译:分布推进(DP)具有边界层摄取(BLI)的影响(BLI)可以改善无人驾驶飞行器(UAV)的飞行性能,并且DP的安装参数可以进一步影响翼型的推进效率和空气动力学性能。探讨DP安装参数,计算流体动力学(CFD)的影响。使用敏感性分析和克里格替代模型方法,结果表明,在各种设计空间中,BLI的效果显着提高了中/小攻角(2°和6°)的空气动力学性能和推进效率。但是,不希望的配置将对推进效率和俯仰瞬间发挥不利影响,降低DP的安装高度或更大的设定角度将产生反射翼型的空气动力学效果,这适用于飞翼UAV。

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