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Two-Stage Cryocooling Design for Hybrid Superconducting Fault Current Limiter

机译:混合超导故障限流器的两阶段低温冷却设计

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New concept of two-stage cryogenic cooling system for full-scale hybrid superconducting fault current limiter (SFCL) is proposed and designed with an objective to significantly reduce the capital and operational costs. Even though we have developed and successfully tested a cryocooling system for 300 A level, it is not easy to scale up the same technology to $3phi/22.9 {rm kV}/2.5 {rm kA}$ level, mainly because of the heavy cost of GM or Stirling cycle coolers to cover the increased thermal load. It is proposed in this study to employ a large capacity of JT cooler for heat intercept at an intermediate location of current leads. The JT coolers with mixed refrigerant are very reliable and commercially available at an inexpensive price. Detailed cryogenic design of cryostat and heat intercept components is carried out in consideration of thermal characteristics of cryocoolers and electrical insulation. It may be concluded that the two-stage cooling with a JT cooler at 130 K and a GM cooler at 77 K is feasible in practice, and can significantly reduce the capital cost and power consumption.
机译:提出并设计了用于全尺寸混合超导故障限流器(SFCL)的两级低温冷却系统的新概念,目的是显着降低投资和运营成本。即使我们已经开发并成功测试了300 A级的低温冷却系统,将相同的技术扩展到$ 3phi / 22.9 {rm kV} /2.5 {rm kA} $的水平也不容易,主要是因为成本高昂GM或斯特林循环冷却器的使用,以弥补增加的热负荷。在这项研究中建议在电流引线的中间位置采用大容量的JT冷却器来拦截热量。具有混合制冷剂的JT冷却器非常可靠,并且可以廉价购买。考虑到低温冷却器的热特性和电绝缘性,进行了低温恒温器和吸热组件的详细低温设计。可以得出结论,在130 K的JT冷却器和在77 K的GM冷却器进行两级冷却在实践中是可行的,并且可以显着降低投资成本和功耗。

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