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Fuel Cell Propulsion Systems for an All-Electric Personal Air Vehicle

机译:全电动个人飞行器的燃料电池推进系统

摘要

There is a growing interest in the use of fuel cells as a power source for all-electric aircraft propulsion as a means to substantially reduce or eliminate environmentally harmful emissions. Among the technologies under consideration for these concepts are advanced proton exchange membrane and solid oxide fuel cells, alternative fuels and fuel processing, and fuel storage. This paper summarizes the results of a first-order feasibility study for an all-electric personal air vehicle utilizing a fuel cell-powered propulsion system. A representative aircraft with an internal combustion engine was chosen as a baseline to provide key parameters to the study, including engine power and subsystem mass, fuel storage volume and mass, and aircraft range. The engine, fuel tank, and associated ancillaries were then replaced with a fuel cell subsystem. Various configurations were considered including: a proton exchange membrane (PEM) fuel cell with liquid hydrogen storage; a direct methanol PEM fuel cell; and a direct internal reforming solid oxide fuel cell (SOFC)/turbine hybrid system using liquid methane fuel. Each configuration was compared to the baseline case on a mass and range basis.
机译:人们越来越关注使用燃料电池作为全电动飞机推进器的动力,以此作为实质上减少或消除对环境有害的排放的手段。这些概念正在考虑的技术包括先进的质子交换膜和固体氧化物燃料电池,替代燃料和燃料加工以及燃料存储。本文总结了利用燃料电池驱动推进系统的全电动个人飞行器一阶可行性研究的结果。选择具有代表性的具有内燃机的飞机作为基准,为研究提供关键参数,包括发动机功率和子系统质量,燃料存储量和质量以及飞机范围。然后,将发动机,油箱和相关的附件替换为燃料电池子系统。考虑了各种配置,包括:具有液态氢存储的质子交换膜(PEM)燃料电池;以及直接甲醇PEM燃料电池;以及使用液态甲烷燃料的直接内部重整固态氧化物燃料电池(SOFC)/涡轮混合系统。在质量和范围的基础上,将每种配置与基准情况进行比较。

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    Kohout Lisa L.;

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  • 年度 2003
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