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Thermodynamic optimization of conduction-cooled HTS current leads

机译:传导冷却HTS电流引线的热力学优化

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摘要

A theoretical optimization is performed for the conduction-cooling method of high Tc superconductor (HTS) current leads, which can be applied to the superconducting systems cooled directly by cryogenic refrigerators without liquid helium. The current lead is a series combination of a normal metal conductor at the warmer part and a HTS at the colder part, and is cooled by a contact with distributed or staged refrigerators instead of boil-off helium gas. An analytical method is developed to derive a mathematical expression for the required refrigerator power. By incorporating the critical characteristics of the HTS, it is demonstrated that there exist unique optimal values for the current density of HTS and the joint temperature of the two parts to minimize the total refrigerator power per unit current, for a given length of the HTS. As results of the study, the absolute minimum in the refrigerator power per unit current is presented as a thermodynamic limit and the leads cooled by a two-stage refrigerator are theoretically optimized. Some aspects in practical design are also discussed with a new and useful graphical method. (C) 1998 Elsevier Science Ltd. All rights reserved. [References: 15]
机译:对高Tc超导体(HTS)电流导线的传导冷却方法进行了理论上的优化,该方法可应用于通过低温冰箱直接冷却而没有液氦的超导系统。电流引线是较热部分的普通金属导体和较冷部分的HTS的串联组合,并且通过与分布式或分段式冰箱接触而不是蒸发氦气进行冷却。开发了一种分析方法以得出所需制冷机功率的数学表达式。通过结合HTS的关键特性,证明了在给定的HTS长度下,对于HTS的电流密度和两部分的联合温度存在唯一的最佳值,以最小化每单位电流的总制冷机功率。研究结果表明,每单位电流的制冷机功率的绝对最小值表示为热力学极限,并且在理论上优化了由两级制冷机冷却的引线。还使用一种新的有用的图形方法讨论了实际设计中的某些方面。 (C)1998 Elsevier ScienceLtd。保留所有权利。 [参考:15]

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