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Tradespace Exploration of Distributed Propulsors fo Advanced On-Demand Mobility Concepts

机译:先进按需机动概念对分布式推进器的贸易空间探索

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Combustion-based sources of shaft power tend to significantly penalize distributed propulsion concepts, but electric motors represent an opportunity to advance the use of integrated distributed propulsion on an aircraft. This enables use of propellers in nontraditional, non-thrust-centric applications, including wing lift augmentation, through propeller slipstream acceleration from distributed leading edge propellers, as well as wingtip cruise propulsors. Developing propellers for these applications challenges long-held constraints within propeller design, such as the notion of optimizing for maximum propulsive efficiency, or the use of constant-speed propellers for high-performance aircraft. This paper explores the design space of fixed-pitch propellers for use as (1) lift augmentation when distributed about a wing's leading edge, and (2) as fixed-pitch cruise propellers with significant thrust at reduced tip speeds for takeoff. A methodology is developed for evaluating the high-level trades for these types of propellers and is applied to the exploration of a NASA Distributed Electric Propulsion concept. The results show that the leading edge propellers have very high solidity and pitch well outside of the empirical database, and that the cruise propellers can be operated over a wide RPM range to ensure that thrust can still be produced at takeoff without the need for a pitch change mechanism. To minimize noise exposure to observers on the ground, both the leading edge and cruise propellers are designed for low tip-speed operation during takeoff, climb, and approach.
机译:基于燃烧的轴功率源往往会严重损害分布式推进概念,但是电动机代表了一个机会,可以促进飞机上集成分布式推进的使用。通过分布式前缘螺旋桨以及翼尖巡航推进器的螺旋桨滑流加速,这使得螺旋桨可用于非传统,非以推力为中心的应用,包括机翼升力增强。为这些应用开发螺旋桨挑战了螺旋桨设计中长期存在的限制,例如优化以实现最大推进效率的概念,或将恒速螺旋桨用于高性能飞机的想法。本文探讨了固定螺距螺旋桨的设计空间,该空间用作(1)分布在机翼前缘附近时的升力增强,以及(2)用作固定螺距巡航螺旋桨,其推力降低且起飞时叶尖速度降低。已开发出一种方法来评估这些类型的螺旋桨的高级交易,并将该方法应用于探索NASA分布式电动推进概念。结果表明,前缘螺旋桨具有很高的坚固性和俯仰角,远超出经验数据库,而且巡航螺旋桨可以在较宽的RPM范围内运行,以确保起飞时仍可产生推力而无需俯仰改变机制。为了最大程度地减少对地面观察者的噪声,前缘和巡航螺旋桨均设计为在起飞,爬升和进近期间的低叶尖速度操作。

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