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The cryogenic system for ITER CC superconducting conductor test facility

机译:ITER CC超导导体测试设备的低温系统

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This paper describes the cryogenic system of the International Thermonuclear Experimental Reactor (ITER) Correction Coils (CC) test facility, which consists of a 500 W/4.5 K helium refrigerator, a 50 kA superconducting transformer cryostat (STC) and a background field magnet cryostat (BFMC). The 500 W/4.5 K helium refrigerator synchronously produces both the liquid helium (LHe) and supercritical helium (SHe). The background field magnet and the primary coil of the superconducting transformer (PCST) are cooled down by immersing into 4.2 K LHe. The secondary Cable-In-Conduit Conductor (CICC) coil of the superconducting transformer (SCST), superconducting joints and the testing sample of ITER CC are cooled down by forced-flow supercritical helium. During the commissioning experiment, all the superconducting coils were successfully translated into superconducting state. The background field magnet was fully cooled by immersing it into 4.2 K LHe and generated a maximal background magnetic field of 6.96 T; the temperature of transformer coils and current leads was reduced to 4.3 K; the inlet temperature of SHe loop was 5.6 K, which can meet the cooling requirements of CIC-Conductor and joint boxes. It is noted that a novel heat cut-off device for High Temperature Superconducting (HTS) binary current leads was introduced to reduce the heat losses of transformer cryostat.
机译:本文介绍了国际热核实验堆(ITER)校正线圈(CC)测试设备的低温系统,该系统由500 W / 4.5 K氦制冷机,50 kA超导变压器低温恒温器(STC)和背景场磁体低温恒温器组成(BFMC)。 500 W / 4.5 K氦制冷机同时产生液氦(LHe)和超临界氦(SHe)。通过浸入4.2 K LHe中,将背景场磁体和超导变压器(PCST)的初级线圈冷却。超导变压器(SCST)的二次导管电缆(CICC)线圈,超导接头和ITER CC的测试样品通过强制流动的超临界氦冷却。在调试实验期间,所有超导线圈均成功转换为超导状态。通过将其浸入4.2 K LHe中将其完全冷却,并产生6.96 T的最大背景磁场。变压器线圈和电流引线的温度降至4.3 K; SHe回路的入口温度为5.6 K,可以满足CIC导体和接线盒的冷却要求。注意到,引入了一种用于高温超导(HTS)二进制电流引线的新型热切断装置,以减少变压器低温恒温器的热损失。

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