磁偏置超导限流器低温制冷自持氮液化系统设计及验证
Design and Verification of Self-Sustaining Nitrogen Liquefaction System for Low Temperature Refrigeration with Magnetic Bias Superconducting Fault Current Limiter
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摘要: 针对磁偏置超导限流器低温杜瓦的自持需求,以及现有杜瓦的结构参数,进行了低温制冷自持氮液化系统的流程设计、漏热分析和结构设计,并设计了插拔结构的冷头换热结构、低温冷凝换热器。设计的磁偏置超导限流器低温液氮制冷系统完成了连续6个月的并网运行,试验结果表明:氮液化系统可实现长时间稳定运行,运行期间压力和温度分别维持在85 KPa和75.9 K上下,满足磁偏置超导限流器低温杜瓦的自持需求,研究方案提供了利用小型吉福德-麦克马洪(Gifford-Mcmahon,GM)制冷机作为冷源的超导限流器与超导电缆协调控制的可能性,减少对液氮的依赖,提升系统灵活性。Abstract: A cryogenic liquid nitrogen refrigeration system based on GM cryocooler was designed to meet the self-sustaining requirement of magnetic bias superconducting fault current limiter. According to the operating parameters and structure size of superconducting fault current limiter (SFCL) Dewar, the flow design of self-sustaining nitrogen liquefaction system for low temperature refrigeration was carried out. The whole heat leakage of the system was analyzed and calculated, the quick insert structure of GM cryocooler and low temperature condensing heat exchanger wwa designed. The test results showed that the nitrogen liquefaction system equipped with magnetic bias SFCL has been running stably within the cryogenic Dewar for more than 2 months, during which the pressure was maintained at (negative pressure state) 85 kPa and the system temperature was 75.9 K, meeting the self-sustaining demand of low temperature Dewar. It provided the possibility of coordinated control of SFCL using small GM cryocooler as the cold source and superconducting cables, reducing the reliance on liquid nitrogen and enhancing the flexibility of the system.
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