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Development of a super-conducting levitated coil system in the RT-1 magnetospheric confinement device

机译:RT-1磁层限制装置中超导悬浮线圈系统的开发

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The Ring Trap 1 (RT-1) device was constructed to explore a novel concept of plasma confinement. The plasma is confined in a dipole magnetic field produced by a high-Tc super-conductor (Bi-2223) coil that is levitated in the vacuum chamber. The major radius of the floating coil is 25 cm, and its weight is 110 kg. The field strength in the confinement region varies from 0.3 to 0.03 T. The conductor is first cooled to 20 K in the maintenance chamber, which is located at the bottom of the plasma chamber, after which it is charged to 0.25 MA. The floating coil consists of 12 pancakes and has a total of 2160 turns. After detaching the current leads and coolant transfer tubes, the floating coil is raised to the midplane of the plasma chamber, and is then levitated by a feedback-controlled magnet installed on the top of the vessel. Laser sensors measure the position of the floating coil. The super-conducting operation can be maintained for approximately 8 h before the coil temperature increases to 30 K. The current decay is 0.9% after 8h. The first experiment using the RT-1 device was performed in January 2006. We have succeeded in levitating the floating coil and in producing plasma by injecting a microwave of 8.2 GHz(1.5 kW).
机译:Ring Trap 1(RT-1)设备的构造旨在探索等离子体约束的新概念。等离子体被限制在由悬浮在真空室中的高Tc超导体(Bi-2223)线圈产生的偶极磁场中。浮动线圈的主半径为25厘米,重量为110千克。限制区域中的场强从0.3到0.03 T不等。导体首先在位于等离子室底部的维护室中冷却到20 K,然后再充电到0.25 MA。浮动线圈由12个煎饼组成,共2160匝。拆下电流导线和冷却剂传输管后,浮动线圈升至等离子体腔室的中平面,然后由安装在容器顶部的反馈控制磁铁悬浮。激光传感器测量浮动线圈的位置。在线圈温度升至30 K之前,超导操作可维持约8小时。8小时后,电流衰减为0.9%。使用RT-1装置的第一个实验是在2006年1月进行的。我们成功注入了8.2 GHz(1.5 kW)的微波,使悬浮线圈悬浮并产生了等离子体。

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