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Effects of Distributed Electric Propulsion on the Performance of a General Aviation Aircraft

机译:分布式电动推进对一般航空飞机性能的影响

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With an always increasing demand for more efficient aircraft due to both economic and environmental purposes, academy and industry are studying hybrid-electric and full-electric concepts to explore new aircraft design opportunities. This paper proposes a study based on a Cessna 208B Grand Caravan, using it as a platform to implement distributed electric propulsion and enable the use of high-lift propellers by electrifying the propulsive system. Key design parameters of the aircraft are varied to evaluate the effectiveness of the lift augmentation system as well as its effects on generated thrust and aerodynamic efficiency. The effects of the propellers slipstreams on the wing are implemented on SUAVE, a conceptual level design environment, which is used to integrate the aircraft model and run the simulations. Results of the analyses differ from what is available on the literature, yielding aerodynamic efficiency gains that are much more modest than what was expected according to assumptions made on recent publications.
机译:由于经济和环境目的,对更高效的飞机的需求始终如一,学院和工业正在研究混合电动和全电气概念,探索新的飞机设计机会。本文提出了一种基于CESSNA 208B Grand Caravan的研究,它用作实现分布式电动推进的平台,并通过通电推进系统来实现高升降螺旋桨。该飞机的关键设计参数可以各种各样地评估提升增强系统的有效性以及其对产生的推力和空气动力学效率的影响。螺旋桨滑动在机翼上的效果在Suave,概念水平设计环境中实现,用于集成飞机模型并运行模拟。分析结果不同于文献中可用的结果,产生的空气动力学效率增益比在最近出版物的假设上的预期更为温和。

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