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Optimization of 2G YBCO Wires for Resistive Fault Current Limiters

机译:用于电阻故障电流限制器的2G YBCO线的优化

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Recent progress increasing the critical current density of second generation (2G) high temperature superconductor (HTS) tapes seems also to increase the switching capacity per effective surface area. An optimized (as thin as possible, as thick as necessary) stabilization cap layer allows to maximize the switching capacity of tapes at an acceptable temperature rise and to minimize the overall tape length. We present the architecture of available 2G HTS tapes designed for FCL, address an approximate and a precise HTS model computation under full fault and moderate overload conditions and report on the set of experiments on short tape samples for identifying the optimal stabilized coated conductor according to the required specification of an FCL with large inrush current. As a result we present a tool to optimize the Ag cap layer in dependence on critical current density and limitation time.
机译:增加第二代(2G)高温超导体(HTS)胶带的临界电流密度的最新进展似乎也增加了单位有效表面积的开关容量。优化的(尽可能薄,必要时要尽可能厚)稳定覆盖层可以在可接受的温度升高下最大化磁带的开关容量,并使总的磁带长度最小。我们介绍了可用于FCL的2G HTS胶带的体系结构,解决了在完全故障和中等过载条件下的近似和精确的HTS模型计算,并针对短胶带样品进行了一组实验报告,以根据该规范确定最佳的稳定涂层导体。浪涌电流较大的FCL的规格要求。结果,我们提出了一种根据临界电流密度和限制时间优化Ag盖层的工具。

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