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Design and cooling characteristic results of cryogenic system for 6.6 kV/200 A inductive fault current limiter

机译:6.6 kV / 200 A感应式故障限流器的低温系统的设计和冷却特性结果

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The conduction-cooled cryogenic cooling system for 1.2 kV/80 A inductive superconducting fault current limiter (SFCL) was fabricated and tested for its cooling characteristics in 2002. The observed thermal stability of the conduction-cooled system was very unreliable and precarious for the applied superconducting equipment with very large variation of currents like SFCL. Therefore, we replaced the conduction-cooled system with the sub-cooled nitrogen system for the 6.6 kV/200 A SFCL. In this paper, the design techniques and test results of cooling characteristics were introduced. The conditions for achieving the sub-cooled nitrogen state were 1 atm and 64 K. First, the temperature of 64 K was achieved by using the rotary pump and then the pressure of 1 atm was achieved by GHe. The characteristics of liquid nitrogen were strongly enhanced in these conditions. This fabricated cryogenic system merely for the short run operation test SFCL. Finally, the cryogenic system for the long run operation test SFCL was introduced.
机译:于2002年制造了用于1.2 kV / 80 A感应超导故障限流器(SFCL)的传导冷却低温冷却系统,并对其冷却特性进行了测试。所观察到的传导冷却系统的热稳定性非常不可靠,因此对于应用而言非常不稳定。电流非常大的超导设备,例如SFCL。因此,对于6.6 kV / 200 A SFCL,我们用过冷氮气系统代替了传导冷却系统。介绍了冷却特性的设计技术和测试结果。达到过冷氮状态的条件是1 atm和64K。首先,使用旋转泵达到64 K的温度,然后通过GHe实现1 atm的压力。在这些条件下,液氮的特性大大增强。这种制造的低温系统仅用于短期运行测试SFCL。最后,介绍了用于长期运行测试SFCL的低温系统。

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