Efficiency Optimization of Mini Unmanned Multicopter

I. Penkov, D. Aleksandrov
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Abstract

The article discusses three-, four-, six-, and eight-rotor UAV (Unmanned Aerial Vehicle) mini helicopters in respect to power consumption. A tricopter has most long flight time, but despite this fact, the most effective is a quadcopter. CFD (Computational Fluid Dynamics) simulations were made with purpose to find more optimal relationship between coaxial rotors. It is shown that the total lifting force generated by a pair of coaxial rotors is less than the lifting force generated by two separately standing rotors of the same size. The flow from the upper rotor in a coaxial rotor pair partially compensates the pressure near the lower rotor. The most effective is use of two rotors with the same geometrical parameters. A less efficient scheme is with the smaller rotor located on top and the larger one in the bottom.
小型无人多旋翼机效率优化
文章讨论了三旋翼,四旋翼,六旋翼和八旋翼无人机(无人驾驶飞行器)微型直升机在功耗方面。三轴直升机的飞行时间最长,但尽管如此,最有效的是四轴直升机。为了找到更优的同轴转子关系,进行了CFD(计算流体动力学)仿真。结果表明,一对同轴转子产生的总升力小于两个相同尺寸的独立立式转子产生的升力。在同轴转子副中,来自上转子的流量部分补偿下转子附近的压力。最有效的是使用具有相同几何参数的两个转子。效率较低的方案是较小的转子位于顶部,较大的转子位于底部。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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