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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >First Experiment on Levitation and Plasma With HTS Magnet in the RT-1 Plasma Device
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First Experiment on Levitation and Plasma With HTS Magnet in the RT-1 Plasma Device

机译:RT-1等离子设备中使用HTS磁体进行悬浮和等离子的首次实验

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摘要

The high temperature superconducting (HTS) floating magnet of the Ring Trap 1 (RT-1) reached the first experiment on levitation and plasma. The magnet using an HTS coil was levitated stably by levitation coil, and plasma was produced around the ring-shaped HTS magnet by electron cyclotron heating with 8.2 GHz microwave. This novel plasma device was constructed at the University of Tokyo to explore means of achieving the advanced-fuel fusion. The plasma confinement mechanism is based on the concept of high-beta relaxed state that is self-organized within flowing plasma. The HTS magnet is operated in a persistent-current mode and magnetically levitated in a plasma vacuum chamber. The weight of the HTS magnet is about 110 kg. Initially the HTS coil is cooled below 20 K by an external cooling system with detachable transfer tubes. After the transfer tubes are detached, an experiment of levitation and plasma is conducted while the HTS coil temperature remains within the range of 20 K–32 K without cooling. This paper describes the HTS coil design and test results of the HTS magnet as follows; an initial cooling, a persistent-current operation without cooling and the first levitation and the first plasma experiment.
机译:环形陷阱1(RT-1)的高温超导(HTS)浮动磁体达到了有关悬浮和等离子体的第一个实验。通过悬浮线圈使使用HTS线圈的磁体稳定地悬浮,并通过电子回旋加速器加热8.2 GHz微波在环形HTS磁体周围产生等离子体。这种新型等离子装置是在东京大学建造的,旨在探索实现先进燃料融合的方法。等离子体限制机制基于在流动的等离子体中自组织的高β弛豫状态的概念。 HTS磁体以持续电流模式运行,并在等离子体真空室中磁悬浮。 HTS磁铁的重量约为110千克。最初,HTS线圈通过带有可拆卸传输管的外部冷却系统冷却到20 K以下。拆下传输管后,进行悬浮和等离子体实验,同时高温超音波线圈温度保持在20 K–32 K范围内而无需冷却。本文介绍了HTS线圈的设计和HTS磁体的测试结果,具体如下:初始冷却,不进行冷却的持续电流操作以及第一次悬浮和第一次等离子体实验。

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