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Flux linkage areas of coupling current loops for different shape cable-in-conduit conductor

机译:不同形状的导管中耦合电流回路的通量链接区域

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摘要

For large scale application such as fusion magnets, the cable-in-conduit conductor (CICC) is the most promising conductor because of its high mechanical strength under large electromagnetic force. How-ever, there are still remained issues about degradation of critical current of Nb_3Sn conductor and unpre-dictable AC loss. With regard to the second item, inter-strand coupling current loss is dominant among the AC losses and unpredictable before fabricating large scale conductor. The strand displacements which are caused by the compaction of the conductor in order to increase its current density would cause the loss. In order to do quantitative investigation of the relation between the loss and the strand displace-ments, we measured strand traces for circular conductor and rectangular conductor. The evaluation of the flux linkage areas which are driving forces of the coupling current indicated that the flux linkage areas have strong dependence on the changing magnetic field only for the rectangular one. It also indicated that the loss should be large when the field is applied from the direction which is perpendicular to the wide surface of the conduit.
机译:对于诸如融合磁体之类的大规模应用,导管内导体(CICC)是最有前途的导体,因为它在大电磁力下具有很高的机械强度。然而,仍然存在关于Nb_3Sn导体的临界电流的劣化和不可预测的AC损耗的问题。关于第二项,在制造大型导体之前,绞合间电流损耗在交流损耗中占主导地位,并且是不可预测的。由导体的压实以增加其电流密度引起的股线位移将引起损耗。为了定量研究损耗与绞线位移之间的关系,我们测量了圆形导体和矩形导体的线迹。对作为耦合电流驱动力的磁链区域的评估表明,磁链区域仅对矩形磁场具有强烈的变化磁场依赖性。还表明,当从垂直于导管宽表面的方向施加磁场时,损耗应该很大。

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