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Numerical optimization of conduction cooled current leads for low current applications

机译:低电流应用中传导冷却电流引线的数值优化

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摘要

The basic design principles of current leads for superconducting magnets are well established but HTS materials and conduction cooled systems call for new numerical methods. In this paper the design of current leads was formulated as an optimization problem. Both time integration and finite differencing were examined as possible ways to compute the temperature distribution inside the leads. Three examples about optimization of conduction cooled as well as gas cooled systems are presented. First, the design of tubular normal conducting gas cooled current leads was studied. Second, normal conducting leads cooled with a two-stage cryocooler were examined. Third, the optimization was applied to current leads consisting of HTS tapes at the low temperature end of a normal conducting bar. The study took into account the magnetic field and temperature dependent voltage-current characteristics of the anisotropic Bi-2223 material. The results are compared with traditional analytical ones and the numerical optimization is shown to be an efficient design tool for both normal conducting and HTS current leads.
机译:超导磁体的电流引线的基本设计原理已经确立,但是HTS材料和传导冷却系统需要新的数值方法。在本文中,电流引线的设计被表述为优化问题。时间积分和有限差分均被视为计算引线内部温度分布的可能方法。给出了关于优化传导冷却和气体冷却系统的三个示例。首先,研究了管状普通导电气冷式电流引线的设计。其次,检查了用两级低温冷却器冷却的普通导线。第三,将优化应用于在普通导电条的低温端由HTS胶带组成的电流引线。该研究考虑了各向异性Bi-2223材料的磁场和温度相关的电压-电流特性。将结果与传统的分析结果进行比较,数值优化表明它是用于常规导电和高温超导电流引线的有效设计工具。

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