全电动飞机用全超导电动机的设计

K. Kovalev, Julia Nekrasova, N. Ivanov, Sergey Zhurzvlev
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引用次数: 11

摘要

对国内外全电动飞机领域发展的分析表明,随着电气化程度的提高,完全起飞重量、运营成本、维护时间和燃油效率的提高都有可能减少。如今,这种飞机仅供少数乘客使用,其电动机的功率可以忽略不计。然而,所有大型全电动飞机的概念都意味着使用高温超导体技术。在不久的将来,技术上可行的高比参数高温超导电机最有希望的概念是具有非磁性磁芯的全超导同步电机。在输出功率超过1mw的情况下,77 K时的比功率预计将超过10kw /kg。建立了计算外铁磁屏全高温超导电机基本参数的理论基础和分析技术。为完善所建立的分析方法,研制了用于混合动力分布式推进系统的1.5 kW全超导电动机样机。结果表明,解析计算在确定全超导电机的比功率和其他基本参数方面具有足够的精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of All-Superconducting Electrical Motor for Full Electric Aircraft
An analysis of domestic and foreign developments in the field of full electric aircraft showed that a reduction in full takeoff weight, operating costs, maintenance time and the increase of fuel efficiency is possible with the growth of electrification. Nowadays such aircraft are created only for a small number of passengers and the power of their electric motors is negligible. However, all the concepts of large full electric aircraft imply the use of high temperature superconductor technologies. The most promising concept for high temperature superconducting electric machines with high specific parameters technically feasible in the near future is a fully superconducting synchronous electric machine with a nonmagnetic core. At the output power of more than 1 MW, the specific power is anticipated to exceed 10 kW/kg at 77 K. The fundamentals of theory and the analytical technique for calculating the basic parameters of a fully high temperature superconducting electric machine with an outer ferromagnetic screen have been developed. To refine the developed analytical method, the 1,5 kW prototype of the all-superconducting electric motor for hybrid distributed propulsion system was developed. It was shown that the analytical calculation provides sufficient accuracy in determining specific power and other basic parameters of fully superconducting electrical machine.
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