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Design and Performance of the NASA SCEPTOR Distributed Electric Propulsion Flight Demonstrator

机译:NASA SCEPTOR分布式电力推进飞行演示器的设计与性能

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Distributed Electric Propulsion (DEP) technology uses multiple propulsors driven by electric motors distributed about the airframe to yield beneficial aerodynamic-propulsion interaction. The NASA SCEPTOR flight demonstration project will retrofit an existing internal combustion engine-powered light aircraft with two types of DEP: small "high-lift" propellers distributed along the leading edge of the wing which accelerate the flow over the wing at low speeds, and larger cruise propellers located at each wingtip for primary propulsive power. The updated high-lift system enables a 2.5.x reduction in wing area as compared to the original aircraft, reducing drag at cruise and shifting the velocity for maximum lift-to-drag ratio to a higher speed, while maintaining low-speed performance. The wingtip-mounted cruise propellers interact with the wingtip vortex, enabling a further efficiency increase that can reduce propulsive power by 10%. A tradespace exploration approach is developed that enables rapid identification of salient trades, and subsequent creation of SCEPTOR demonstrator geometries. These candidates were scrutinized by subject matter experts to identify design preferences that were not modeled during configuration exploration. This exploration and design approach is used to create an aircraft that consumes an estimated 4.8x less energy at the selected cruise point when compared to the original aircraft.
机译:分布式电力推进(DEP)技术使用由分布在机身周围的电动机驱动的多个推进器,以产生有益的空气动力推进相互作用。 NASA SCEPTOR飞行示范项目将用两种DEP改造现有的以内燃机为动力的轻型飞机:沿机翼前缘分布的小型“高扬程”螺旋桨,以低速加速机翼上的气流,以及位于每个机翼尖端的较大巡航螺旋桨可提供主要推进力。与原始飞机相比,更新后的高升力系统可使机翼面积减少2.5.x,减少巡航阻力,并将最大升阻比的速度转移至更高的速度,同时保持低速性能。安装在机翼上的巡航螺旋桨与机翼涡旋相互作用,可以进一步提高效率,从而将推进力降低10%。开发了一种贸易空间探索方法,可以快速识别重要交易,并随后创建SCEPTOR演示器几何形状。这些候选项目由主题专家进行审查,以确定在配置探索期间未建模的设计偏好。这种探索和设计方法用于制造一架飞机,与原始飞机相比,该飞机在选定的巡航点上消耗的能量估计少4.8倍。

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