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Experimental and numerical investigation of the power-on effect for a propeller-driven UAV

机译:螺旋桨无人飞行器上电效果的实验与数值研究

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摘要

The power-on effect contributes to the performance and the stability of a propeller-driven aircraft. In the present study, the power-on effect for a propeller-driven unmanned aerial vehicle with a pusher propeller has been investigated through the wind tunnel test and the computational fluid dynamics simulation. The positive power-on effect is to increase the maximum lift and delay the stall of the aircraft. However, the most common power-on effect is to produce the slipstream drag and the nose-up pitching moment of the aircraft. The slipstream interaction with the wing and the fuselage increases the fuselage pressure drag leading to an overall increase in aircraft drag. Moreover, the slipstream interaction increases the downwash angle and dynamic pressure in the vicinity of the horizontal tail leads to an overall increase in aircraft nose-up pitching moment. Therefore, the power-on effects tend to reduce the performance and longitudinal stability of the propeller-driven aircraft. The power-on effect is pronounced at slower speeds and higher thrust levels. It is expected that the analysis results presented and discussed in this paper will contribute to the development of the propeller-driven aircraft with the pusher propeller.
机译:开机效果有助于螺旋桨飞机的性能和稳定性。在本研究中,通过风洞试验和计算流体动力学模拟,研究了具有推进器螺旋桨的螺旋桨驱动无人机的动力效应。积极的开机效果是增加最大升力并延迟飞机失速。但是,最常见的开机效果是产生滑流阻力和飞机的俯仰俯仰力矩。与机翼和机身的滑流相互作用增加了机身压力阻力,从而导致飞机阻力的总体增加。此外,滑流相互作用增加了下冲角,并且水平尾翼附近的动态压力导致飞机前起俯仰力矩的总体增加。因此,通电效应倾向于降低螺旋桨驱动飞机的性能和纵向稳定性。在较慢的速度和较高的推力水平下,通电效果显着。可以预期的是,本文介绍和讨论的分析结果将有助于带推进器的螺旋桨驱动飞机的发展。

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