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Electromagnetic behavior of lap-joints for fusion magnet system

机译:融合磁体系统搭接接头的电磁行为

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The joint between superconducting Cable-In-Conduit-Conductors (CICC) is a key technology in a magnetic confinement fusion apparatus. Several hundreds of joints are involved in one apparatus generally. DC resistance of the lap-joint is typically designed less than several n-ohms and the allowable joule loss is several watts. AC loss due to external magnetic field is also limited to less than several watts. Reduction of the AC loss and low joint resistance are required simultaneously and those are conflicting trade-off. The lap-joint had been examined under both self-field and external-transverse-field experimentally. In this study, we established a numerical model for the joint and analyzed for electromagnetic behavior of it numerically. In the simulation, modeling of contact resistances between twisted strands is important. Circuit constants, e.g., conductance between strands, were determined to reproduce the experimental results; those are the circuit constants and the DC joint resistance. The relation between the joint resistance and the AC loss was discussed. Constitution of the joint does not only influence on the joint resistance and the AC loss but also current distribution in the cable. Non-uniform current distribution among the strands is reported to result in the degradation of the stability. We successfully simulated mentioned phenomena and found our numerical model was useful in joint design to find a good compromise.
机译:导管内超导电缆(CICC)之间的连接是磁约束聚变设备中的一项关键技术。一台设备中通常涉及数百个关节。搭接的直流电阻通常设计为小于几个n欧姆,允许的焦耳损耗为几个瓦。由于外部磁场造成的交流损耗也被限制在几瓦以下。同时需要减少交流电损耗和降低接头电阻,这是相互矛盾的折衷方案。搭接接头已经在自场和外横场下进行了实验研究。在这项研究中,我们建立了一个关节的数值模型,并对其数值进行了电磁分析。在仿真中,双绞线之间的接触电阻建模很重要。确定电路常数,例如,股之间的电导,以再现实验结果。这些是电路常数和直流接头电阻。讨论了接头电阻与交流损耗之间的关系。接头的结构不仅会影响接头电阻和交流损耗,还会影响电缆中的电流分布。据报道,各股之间的电流分布不均匀会导致稳定性下降。我们成功地模拟了上述现象,并发现我们的数值模型在联合设计中很有用,可以找到一个好的折衷方案。

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