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An Update on Sizing and Performance Analysis of a Hybrid Turboelectric Regional Jet for the NASA ULI Program

机译:NASA ULI计划混合涡轮机区域喷气机的大小化与性能分析

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Under the NASA University Leadership Initiative (ULI) program, a team of universities are collaborating on the advancement of technologies a hybrid turboelectric regional jet, with an intent to enter service in the 2030 timeframe. In the previous studies of the ULI program, the in-service benefits of the technologies under development were analyzed by integrating the technologies of interest to a 2030 regional jet with a hybrid turbo-electric distributed propulsion system. As the program has progressed, the projected performances for each technology and subsystem have been updated. This paper presents an update in the sizing and performance analysis of the regional jet with the hybrid turbo-electric distributed propulsion system, by integrating the updated values of the technologies and subsystems to the vehicle. The updates in this paper include the DC/AC conversion links, efficiency of generator and cabling losses, weight of the wires, the battery cooling through the environmental control system, motor and inverter cooling by the thermal management system, and the redundancy strategy of the propulsion system. The updates of the results from the integrated model include the overall efficiency of the propulsion system, mission fuel savings, mission energy flow distribution, and the optimal hybridization rate in climb and cruise. The overall fuel saving benefit for the target 600-nmi mission is 19.9% compared to the baseline aircraft.
机译:根据美国宇航局大学领导倡议(ULI)计划,一支大学团队正在协作技术进步混合涡轮电机区域喷气机,意图在2030年的时间框架中进入服务。在先前对ULI计划的研究中,通过将兴趣的技术与混合涡轮电气分布推进系统集成了2030个区域射流,分析了在开发技术下进行的服务的服务。随着程序的进展,每个技术和子系统的预计表现已经更新。本文呈现在与混合动力涡轮电力分布式推进系统区域射流的大小和性能分析的更新时,通过集成技术和子系统到车辆的更新的值。本文的更新包括DC / AC转换链路,发电机效率和电缆的电缆损耗,电线重量,通过环境控制系统的电池冷却,电机和逆变器通过热管理系统冷却,以及冗余策略推进系统。集成模型的结果的更新包括推进系统的整体效率,使命燃料节省,使命能源流量分布以及爬升和巡航中的最佳杂交速率。与基线飞机相比,目标600-NMI任务的整体燃料节省福利是19.9%。

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