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Numerical study of normal‐zone evolution and stability of composite superconductors

机译:复合超导体正区演化与稳定性的数值研究

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A numerical procedure has been implemented to dynamically simulate the evolution of a normal zone in a superconducting composite. The model considers the nucleate/film boiling heat transfer of helium, the effect of current sharing, the longitudinal and turn‐to‐turn conductions, and the temperature variation of the thermal conductivity and specific heat. For a given set of conductor parameters and initial conditions, the evolution of a zone can be followed and its behavior established as either growing or shrinking (recovering). In between these two types of behaviors, a small region exists in which stagnant zones can be observed. Limiting recovery current density JL and heat flux QL tend to converge toward constant values for large LN. Turn‐to‐turn conduction allows higher JL and QL values as compared to isolated conductor cases. The minimum quench energy is calculated and compared with experimentally measured results, and reasonable agreement is obtained if an optimistic helium heat‐transfer characteristic is assumed. The experiment was carried out by Wilson and Iwasa at MIT National Magnet Laboratory.
机译:已经执行了数值过程来动态模拟超导复合材料中正常区域的演变。该模型考虑了氦的核/膜沸腾传热,电流共享的影响,纵向和匝间传导以及导热系数和比热的温度变化。对于给定的一组导体参数和初始条件,可以跟踪区域的演变并将其行为确定为增长或收缩(恢复)。在这两种类型的行为之间,存在一个很小的区域,在该区域中可以观察到停滞区域。对于大的LN,极限恢复电流密度JL和热通量QL趋于收敛于恒定值。与隔离导体相比,匝间导通允许更高的JL和QL值。计算出最小的淬火能量,并将其与实验测量的结果进行比较,如果假设乐观的氦传热特性,则可以获得合理的一致性。该实验是由MIT国家磁铁实验室的Wilson和Iwasa进行的。

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    《Journal of Applied Physics 》 |1978年第6期| P.3546-3553| 共8页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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