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Magnetic energy storage devices for small scale applications

机译:小型应用的磁能存储设备

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摘要

The author considers basic principles of magnetic energy storage, structure requirements and limitations, configurations of inductors, attributes of high-T/sub c/ superconducting materials including thermal instabilities, a relative comparison with the state-of-the-art high energy density power sources, and refrigeration requirements. A review of superconducting magnetic energy storage (SMES) technology reveals that the advent of high-temperature ceramic superconducting materials and advances in high strength materials and refrigeration technology are likely to facilitate fabrication of smaller SMES units. The design parameters of a micro superconducting magnetic energy unit for Air Force application are presented and discussed.
机译:作者考虑了磁能存储的基本原理,结构要求和局限性,电感器的配置,高T / sub c /超导材料的属性(包括热不稳定性)以及与最新的高能量密度功率的相对比较来源和冷藏要求。对超导磁能存储(SMES)技术的回顾表明,高温陶瓷超导材料的出现以及高强度材料和制冷技术的进步很可能有助于制造更小的SMES单元。介绍并讨论了用于空军的微超导磁能单元的设计参数。

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