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Development of a HTS Magnet System for Long-Run Operation Test in Sub-Cooled Nitrogen

机译:开发用于超冷氮长时间运行测试的HTS磁体系统

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This paper deals with the development of a 6.6 kV/200A HTS magnet for inductive superconducting fault current limiter (SFCL) that uses a sub-cooled nitrogen cooling system which is expected to be very useful to the applied HTS machines. The several characteristics of the HTS magnet such as critical current, electrical insulation and heat transfer can be enhanced in the sub-cooled nitrogen cooling system rather than in saturated liquid nitrogen$( LN_2)$cooling system. To obtain sub-cooled nitrogen,$ LN_2$was cooled down to 64 K with GM-cryocooler and its pressure was kept at 101 kPa with gaseous helium. In this investigation, the HTS magnet for a 6.6 kV/200 A SFCL was developed and its long-run operation characteristics were measured and analyzed. The characteristics of the sub-cooled nitrogen system like temperature, level of$ LN_2$and pressure of cryogenic system were not degraded in spite of the several over current tests, electrical insulation tests, and even long-run operation tests with rated transport current.
机译:本文涉及用于感应超导故障限流器(SFCL)的6.6 kV / 200A HTS磁体的开发,该磁体使用过冷氮冷却系统,预计对所应用的HTS机器非常有用。在过冷氮气冷却系统中,而不是在饱和液氮(LN_2)冷却系统中,可以增强高温超导磁体的一些特性,例如临界电流,电绝缘和传热。为了获得过冷的氮气,使用GM低温冷却器将$ LN_2 $冷却至64 K,并使用气态氦将其压力保持在101 kPa。在这项研究中,开发了用于6.6 kV / 200 A SFCL的HTS磁体,并测量和分析了其长期运行特性。尽管进行了几次过电流测试,电绝缘测试,甚至使用额定传输电流进行的长期运行测试,但过冷氮气系统的特性(例如温度,LN_2 $的水平和低温系统的压力)并未降低。

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