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Final design of the Quench Protection Circuits for the JT-60SA superconducting magnets

机译:JT-60SA超导磁体的淬火保护电路的最终设计

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This paper describes the detailed design of the Quench Protection Circuits (QPC) for the superconducting Toroidal Field (TF) and Poloidal Field (PF) magnets of the Satellite Tokamak JT-60SA, which will be installed in Naka, Japan [1]. The nominal currents to be interrupted and the maximum reapplied voltages are 25.7 kA and 2.8 kV for the TF QPCs and 20 kA and 5 kV for PF QPCs. The innovative solution proposed in the QPC design is based on a Hybrid Circuit Breaker (CB) composed of a mechanical Bypass Switch for conducting the continuous current, in parallel to a static CB for current interruption. The main choices of the final design are presented and discussed, either to confirm or to update and complete the study performed at the conceptual design level.
机译:本文描述了将用于日本Tokamak JT-60SA卫星的超导环形场(TF)和极化场(PF)磁体的猝灭保护电路(QPC)的详细设计,该磁体将安装在日本中岛[1]。对于TF QPC,要中断的标称电流和最大重新施加电压分别为25.7 kA和2.8 kV,对于PF QPC,分别为20 kA和5 kV。 QPC设计中提出的创新解决方案基于混合断路器(CB),该断路器由用于传导连续电流的机械旁路开关与用于电流中断的静态CB并联构成。介绍和讨论最终设计的主要选择,以确认或更新和完成在概念设计级别上进行的研究。

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