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Numerical Analysis of the Current and Voltage Sharing Issues for Resistive Fault Current Limiter Using YBCO Coated Conductors

机译:使用YBCO涂层导体的电阻故障限流器的电流和电压共享问题的数值分析

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YBaCuO-coated conductors offer great potential in terms of performance and cost-saving for superconducting fault current limiter (SFCL). A resistive SFCL based on coated conductors can be made from several tapes connected in parallel or in series. Ideally, the current and voltage are shared uniformly by the tapes when quench occurs. However, due to the non-uniformity of property of the tapes and the relative positions of the tapes, the currents and the voltages of the tapes are different. In this paper, a numerical model is developed to investigate the current and voltage sharing problem for the resistive SFCL. This model is able to simulate the dynamic response of YBCO tapes in normal and quench conditions. Firstly, four tapes with different $J_{rm c}$'s and n values in $E{hbox{-}}J$ power law are connected in parallel to carry the fault current. The model demonstrates how the currents are distributed among the four tapes. These four tapes are then connected in series to withstand the line voltage. In this case, the model investigates the voltage sharing between the tapes. Several factors that would affect the process of quenches are discussed including the field dependency of $J_{rm c}$, the magnetic coupling between the tapes and the relative positions of the tapes.
机译:YBaCuO涂层的导体在性能和节省成本方面为超导故障电流限制器(SFCL)提供了巨大的潜力。基于涂层导体的电阻式SFCL可以由并联或串联连接的多条胶带制成。理想地,当发生淬火时,电流和电压由胶带均匀地分配。然而,由于带的性质和带的相对位置的不均匀性,带的电流和电压是不同的。本文建立了一个数值模型来研究电阻式SFCL的电流和电压共享问题。该模型能够模拟YBCO胶带在正常和淬火条件下的动态响应。首先,并联连接具有$ J_ {rm c} $和$ E {hbox {-}} J $幂律中的n值的四个值的四个磁带,以承载故障电流。该模型演示了电流如何在四个磁带之间分配。然后将这四个带串联连接以承受线电压。在这种情况下,模型将研究磁带之间的电压共享。讨论了会影响淬火过程的几个因素,包括磁场依赖性$ J_ {rm c} $,带之间的磁耦合以及带的相对位置。

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