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Development of a 20 kA high temperature superconductor current lead

机译:开发20 kA高温超导体电流引线

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The reduction of static heat load in superconducting magnet systems is of great importance because of reduction of refrigeration power and operational costs. The major elements that determine the heat load are the current leads. The use of high temperature superconductors (HAS) in current leads was found to have great advantages because of the low thermal conductivity of the HTS material as well as the capability of carrying transport current without resistive losses if operating below the critical temperature. In the framework of the European Fusion Technology Programme, a development program has been carried out for design and construction of a 68 kA current lead for the toroidal field (TF) coils of the International Thermonuclear Experimental Reactor, ITER, using HTS. The material selection, based on test results of 1 kA current leads, favoured the use of Bi-2223 stabilized tapes because of the higher thermal stability. Two 10 kA HTS modules were manufactured in industry and tested in a test facility at CRPP. Subsequently, the two 10 kA HTS modules were connected in parallel to form a 20 kA HTS module. The performance test covered the electrical and thermal behaviour in both steady-state and transient operation. Current sharing was observed between two modules in the 20 kA current lead and the quench current was evaluated to about 30 kA at the design conditions. The results suggest that it is possible to satisfy all requirements needed for the current leads of the ITER TF coils if the scale-up of this HTS current lead is performed with the same design concept.
机译:由于制冷功率和运行成本的降低,减少超导磁体系统中的静态热负荷非常重要。决定热负荷的主要因素是电流引线。人们发现在电流引线中使用高温超导体(HAS)具有很大的优势,这是因为HTS材料的导热系数低,并且在低于临界温度的情况下仍能够传输传输电流而不会产生电阻损耗。在欧洲聚变技术计划的框架内,已经开展了一项开发计划,以使用高温超导设计和建造国际热核实验堆ITER的环形磁场(TF)线圈的68 kA电流引线。根据1 kA电流引线的测试结果选择材料,由于具有更高的热稳定性,因此更倾向于使用Bi-2223稳定胶带。工业上制造了两个10 kA HTS模块,并在CRPP的测试设施中进行了测试。随后,两个10 kA HTS模块并联连接以形成20 kA HTS模块。性能测试涵盖了稳态和瞬态运行中的电气和热性能。在20 kA电流引线中的两个模块之间观察到电流共享,在设计条件下将失超电流评估为约30 kA。结果表明,如果以相同的设计理念进行HTS电流引线的放大,则可以满足ITER TF线圈电流引线所需的所有要求。

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