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Quench propagation and stability analysis of Rutherford resistive core cables

机译:卢瑟福电阻芯电缆的淬火传播和稳定性分析

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摘要

The complex phenomena occurring in superconducting cables involve thermal, electromagnetic, fluid-dynamic and mechanical problems that require multiphysics analysis codes. In this paper varied methods of analysis are studied, comparing a detailed model of a resistive core Rutherford cable with simplified models, in order to show at what extent the simplified models can be applied. The detailed model considers every single strand and its core as thermal and electric independent elements, while in the simplified models equivalent electric and thermal parameters are calculated to group several strands into equivalent superstrands. The minimum quench energy and quench propagation velocities are taken as parameters for the comparison, evaluating the scaling of the numerical results with the number of electric and thermal elements considered. Computation times for the different models are compared, indicating possible ways to reduce the numerical burden and making desired accuracies.
机译:超导电缆中发生的复杂现象涉及热,电磁,流体动力学和机械问题,需要多物理场分析代码。在本文中,研究了各种分析方法,将电阻芯Rutherford电缆的详细模型与简化模型进行了比较,以显示简化模型可以在多大程度上应用。详细的模型将每根钢绞线及其核心视为独立于热和电的元素,而在简化模型中,将计算等效的电和热参数,将几根钢绞线划分为等效的超链。将最小淬火能量和淬火传播速度作为比较的参数,并根据所考虑的电气和热元件数量评估数值结果的比例。比较了不同模型的计算时间,指出了减轻数值负担和获得所需精度的可能方法。

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