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Initial Sizing of Hybrid Electric VTOL Aircraft for Intercity Urban Air Mobility

机译:初始尺寸跨越城市空中流动性的混合电动VTOL飞机

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As the urban air mobility market has been growing, the emission of carbon dioxide caused by the conventional propulsion systems has been increased gradually and electrification in developing aviation technology has come into prominence. However, there is a drawback in the electric aviation development since the battery power and energy densities are not sufficient for all mission concepts of urban air mobility. Therefore, the hybrid electric configurations are outstanding concepts to reach future concepts of air mobility. In this paper, two hybrid electric concepts of urban air mobility, which are lift-cruise and multicopter, are designed conceptually for intercity mission (city-to-near city) with different range and hybrid power allocation settings. Top level requirements including mission profile, VTOL aircraft configuration and hybrid electric propulsion are defined according to technology assessment of Uber Elevate and Transformative Vertical Flight studies. Initial sizing of both configurations is performed with multidisciplinary optimization approach which includes component sizing, mission performance analysis and weight estimation. As a result of study, maximum takeoff weight, internal combustion engine weight and battery weight increase dramatically for both configurations as range and hybridization factor increase. It is seemed that more battery power dependent configurations are not feasible for intercity mission considering todays battery technology. For hybrid electric VTOL aircrafts, more ICE power dependent configurations should be preferred in intracity missions.
机译:随着城市空袭市场的增长,传统推进系统引起的二氧化碳排放已逐步增加,发展航空技术的电气化已经突出。然而,电气航空发育中存在缺点,因为电池电量和能量密度不足以满足城市空运的所有任务概念。因此,混合动力电动配置是杰出的概念,以实现未来的空气移动性概念。在本文中,两个城市空间流动性的混合电动概念是升降巡航和多板,在概念上设计了不同范围和混合动力分配设置的跨城门任务(城市到近城市)。根据优步升高和转化性垂直飞行研究的技术评估,定义了顶级要求,包括特派团简介,VTOL飞机配置和混合电动推进。两种配置的初始大小由多学科优化方法执行,包括组件大小,任务性能分析和权重估计。由于研究,最大起飞重量,内燃机重量和电池重量急剧增加,两种配置都随着范围和杂交因子增加而增加。似乎更多的电池功率依赖性配置对于考虑当今电池技术的城市间特派团不可行。对于混合动力电动VTOL飞机,在内的特性中应该优选更多的冰功率依赖性配置。

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