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The design and fabrication of a reverse Brayton cycle cryocooler system for the high temperature superconductivity cable cooling

机译:用于高温超导电缆冷却的反向布雷顿循环低温冷却器系统的设计与制造

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A high temperature superconductivity cable must be cooled below the nitrogen liquefaction temperature to apply the cable to power generation and transmission systems under superconducting state. To maintain the superconducting state, a reliable cryocooler system is also required. The design and fabrication of a cryocooler system have been performed with a reverse Brayton cycle using neon gas as a refrigerant. The system consists of a compressor, a recuperator, a cold-box, and control valves. The design of the system is made to have 1 kW cooling capacity. The heat loss through multilayer insulators is calculated. Conduction heat loss is about 7 W through valves and access ports and radiation heat loss is about 18 W on the surface of a cryocooler. The design factors are discussed in detail.
机译:必须将高温超导电缆冷却至低于氮液化温度,以将电缆应用于超导状态下的发电和输电系统。为了维持超导状态,还需要可靠的低温冷却器系统。低温冷却器系统的设计和制造已使用氖气作为制冷剂通过反向布雷顿循环进行。该系统由压​​缩机,同流换热器,冷箱和控制阀组成。该系统的设计具有1 kW的冷却能力。计算通过多层绝缘子的热损失。通过阀门和进入端口的传导热损失约为7 W,而在低温冷却器表面上的辐射热损失约为18W。详细讨论设计因素。

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