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Design and evaluation of a high power density 5 MW, 6000 RPM fully- superconducting generator

机译:设计和评估高功率密度5 MW,6000 RPM全超导发生器

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In order to reduce carbon emissions, there is considerable interest in both superconducting generators and motors to enable all-electric aircraft for transportation. This paper summarizes the results of an initial design study for a 5 MW, 6000 rpm fully-superconducting generator. Using the FEMM magnetics code and the Lua scripting language, electromagnetic optimization was performed to determine the best cases. This study also considered ac loss capability of Bi-2212 superconductors, which can operate in the 30 to 40 K temperature range, along with the associated cryogenic refrigeration requirements. Initial results show that, while machines with active weight densities of ~40 kW/kg are possible, the weight of the associated cryocoolers would be prohibitive; however, the use of liquid hydrogen makes these machines realizable. Future cryocooler development is required to get their specific weights down to ~3 kg/kW of input power.
机译:为了减少碳排放,在超导发生器和电机上有相当兴趣,以使所有电机运输。本文总结了5 MW,6000 rpm全超导发生器的初始设计研究的结果。使用FEMM磁性码和LUA脚本语言,进行电磁优化以确定最佳情况。本研究还考虑了Bi-2212超导体的AC损耗能力,其可以在30至40k温度范围内操作,以及相关的低温制冷要求。初始结果表明,虽然具有〜40 kW / kg的主动重量密度的机器是可能的,但相关冷冻机的重量将是禁止的;然而,使用液态氢使这些机器可实现。未来的冷冻机开发需要将其特定重量降至约3千克/千瓦的输入电源。

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