Fuel Cell Application for Small eVTOL UAVs

T. Seren, M. Hornung
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Abstract

This paper analyses the possibility of using hydrogen fuel cells as main energy provider for small to medium-sized eVTOL UAVs. A simplified model for eVTOL UAVs, which covers all relevant areas of aircraft design, including aerodynamics, structural mechanics, propulsion and systems modelling, is presented. Sensitivity studies with various design parameters, including aspect ratio and design cruise speed are performed to show their influence on the configurations’ performance. A comparison between pure battery electric and fuel cell hybrid UAVs is taken. The result of this paper is, that a hydrogen fuel cell hybrid configuration can have a better performance than a battery electric and it can be worth the effort to implement the fuel cell. To achieve this, the mission should require a long endurance and have hover and transition times reduced as far as possible, which both enable the high energy density of the hydrogen system to unfold its full potential. Also, the aircraft needs to be as aerodynamic efficient as possible in order to reduce the fixed weight of the hydrogen fuel cell. Respecting these requirements and accepting a reduced versatility of the aircraft, a fuel cell hybrid eVTOL UAV can easily outperform one with a pure battery electric power supply.
燃料电池在小型垂直起降无人机中的应用
本文分析了氢燃料电池作为中小eVTOL无人机主要能源来源的可能性。提出了eVTOL无人机的简化模型,该模型涵盖了飞机设计的所有相关领域,包括空气动力学、结构力学、推进和系统建模。对不同设计参数(包括展弦比和设计巡航速度)对构型性能的影响进行了灵敏度研究。对纯电池电动和燃料电池混合动力无人机进行了比较。本文的研究结果表明,氢燃料电池的混合动力结构比纯电动结构具有更好的性能,值得为实现氢燃料电池而付出努力。为了实现这一目标,该任务需要长续航时间,并尽可能减少悬停和过渡时间,这两者都能使氢系统的高能量密度充分发挥其潜力。此外,为了减少氢燃料电池的固定重量,飞机需要尽可能地提高空气动力学效率。考虑到这些要求,并接受飞机的通用性降低,燃料电池混合eVTOL无人机可以轻松优于纯电池供电的无人机。
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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