A Review of the State-of-the-Art Superconductor Technology for High Power Applications

M. Susner, T. Haugan
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引用次数: 5

Abstract

The all-electric or hybrid electric aircraft concepts promise to open up a new revolution in aviation design. However, with this paradigm shift comes problems in the use of existing materials. For example, normal conductors such as Cu or Al exhibit waste heat with a geometric dependence on current (Q=I2 R) which, for higher power (current) applications necessitates that costly and heavy cooling apparatus be installed. The sheer volume of conductor needed for high power applications also serves to increase weight. In this paper we advocate for the use of superconducting materials to serve the aerospace industry's need for high power electric aircraft as they can carry exponentially more current in the superconducting state than normal conductors, thus reducing weight and volume. The weight and size of any cooling apparatus associated with superconductivity will thus be much reduced in size as well. In rotating machines (i.e. motors and generators) superconductors have the added benefit of being able to sustain much higher magnetic fields than conventional materials, thus enabling higher efficiencies. In this paper we will first detail the advantages of superconductors for use in aircraft platforms and then proceed with brief summaries of the current state-of-the-art for the most advanced (in terms of R&D effort) superconducting systems. We will conclude with a brief summary in machine technology where we will address the problem of AC Losses.
大功率超导体最新技术综述
全电动或混合动力飞机的概念有望开启航空设计的新革命。然而,随着这种模式的转变,现有材料的使用也出现了问题。例如,铜或铝等普通导体表现出与电流(Q=I2 R)几何相关的废热,对于更高功率(电流)的应用,需要安装昂贵且笨重的冷却设备。高功率应用所需的导体的绝对体积也有助于增加重量。在本文中,我们提倡使用超导材料来满足航空航天工业对大功率电动飞机的需求,因为它们在超导状态下可以比普通导体携带更多的电流,从而减少重量和体积。因此,任何与超导有关的冷却装置的重量和尺寸也将大大减小。在旋转的机器(如马达和发电机)中,超导体还有一个额外的好处,那就是能够承受比传统材料高得多的磁场,从而实现更高的效率。在本文中,我们将首先详细介绍超导体在飞机平台上使用的优势,然后简要总结当前最先进的超导系统的最新技术(就研发工作而言)。最后,我们将简要总结一下机器技术,其中我们将解决交流损耗问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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