Mini-RT装置用高温超伝導磁気浮上コイルの冷却・励磁試験

長門 柳, 惇二 森川, 利行 三戸, 雄一 小川, 大國 浩太郎, 茂雄 山越, 成卓 岩熊, 俊夫 上出
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Abstract

A magnetically levitated superconducting coil device, Mini-RT, has been constructed using a high temperature superconductor (HTS) for the purpose of examining a new magnetic confinement scheme of high-beta non-neutral plasmas. The floating coil and persistent current switch (PCS) are wound with silver-sheathed Bi-2223 tapes, and they are operated in the temperature range of 20-40 K. After the basic properties of the main coil and HTS-PCS were examined in a liquid helium cryostat, the coil was installed into the vacuum chamber of the Mini-RT device. The HTS floating coil was then cooled by helium gas using GM cryo-coolers equipped with detachable transfer tubes. The excitation tests of the coil were carried out by supplying current from an external DC power supply through the detachable current feeder terminals as the HTS-PCS was turned off. The nominal operation condition was examined by overcoming many difficulties and the persistent current mode was tried by turning on the HTS-PCS. The decay time-constant was evaluated by maintaining the coil temperature for up to four days and the results were compared with calculations. The first magnetic levitation was also examined.
Mini-RT设备用高温超导磁悬浮线圈的冷却和励磁试验
利用高温超导体(HTS)构造了一个磁悬浮超导线圈装置Mini-RT,用于研究高β非中性等离子体的新磁约束方案。浮圈和持续电流开关(PCS)采用银护Bi-2223胶带缠绕,工作温度范围为20- 40k。在液氦低温恒温器中检测主线圈和HTS-PCS的基本性能后,将线圈安装在Mini-RT装置的真空室中。然后使用配备可拆卸传输管的GM冷冻冷却器用氦气冷却HTS浮动线圈。当HTS-PCS关闭时,通过可拆卸的电流馈线端子从外部直流电源供电,进行线圈的励磁测试。克服重重困难,对标称运行条件进行了检验,并通过打开HTS-PCS进行了恒流模式的试验。通过保持线圈温度长达四天来评估衰减时间常数,并将结果与计算结果进行比较。第一次磁悬浮也进行了检验。
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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