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Parametric study for the cooling of high temperature superconductor (HTS) current leads

机译:高温超导体(HTS)电流引线冷却的参数研究

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摘要

The analysis of cooling of a binary HTS 20 kA current lead (CL) operating between 4.5 and 300 K has been carried out. Assuming that the HTS module is conduction-cooled, two cooling options for the copper heat exchanger (HEX) part of the CL have been considered, i.e. (1) cooling with a single flow of gaseous helium and (2) cooling with two flows of gaseous helium. The ideal refrigerator power required to cool the whole HTS CL has been calculated for both cooling scenarios and different values of input parameters and the thermodynamic optimization has been performed for both cooling options. The obtained results indicate that the cooling Option 2 cannot provide significant savings of the refrigerator power, as compared to the Option 1. However, it has been observed that at the same helium inlet temperature the temperature at the warm end of the HTS part, and the resulting number of HTS tapes, can be reduced in the Option 2 with respect to the Option 1.
机译:已经对工作在4.5至300 K之间的二进制HTS 20 kA电流引线(CL)的冷却进行了分析。假设HTS模块是传导冷却的,则考虑了CL的铜热交换器(HEX)部分的两种冷却选项,即(1)用单股气态氦气冷却和(2)用两股气流进行气态冷却。气态氦。对于两种冷却方案和不同的输入参数值,已经计算出了冷却整个HTS CL所需的理想冰箱功率,并且对两种冷却选项均进行了热力学优化。获得的结果表明,与选项1相比,冷却选项2无法显着节省冰箱的功率。但是,已经观察到,在相同的氦气入口温度下,HTS部件热端的温度以及相对于选项1,可以在选项2中减少HTS磁带的最终数量。

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