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Thermal and magnetic characteristics of bulk superconductor andperformance analysis of magnetic shielding type of superconducting faultcurrent limiter

机译:大块超导体的热磁特性和磁屏蔽型超导故障限流器的性能分析

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Superconducting fault current limiter (SCFCL) is expected to be the first application of a high-temperature superconductor (HTS) to electric power systems. The authors have been developing a magnetic shielding type of SCFCL that uses a cylindrical Bi-2223 HTS bulk. Short-circuit fault tests in a small SCFCL model were performed experimentally. A computer program based on the finite element method (FEM) taking the voltage-current (E-J) characteristics of the bulk material into account was developed to analyze the performance in the short-circuit fault tests and to investigate the dynamic electromagnetic behavior within a bulk superconductor. Because the E-J characteristic of HTS bulk depends on temperature and magnetic field, they investigated experimentally the E-J characteristics of a bulk superconductor in various operating temperatures and magnetic fields. The computer program considering the measured E-J characteristics simulated the electromagnetic behaviors in an SCFCL test model successfully (BiPb)2Sr2Ca2Cu3O10
机译:超导故障电流限制器(SCFCL)有望成为高温超导体(HTS)在电力系统中的首个应用。作者已经开发出使用圆柱形Bi-2223 HTS本体的SCFCL磁屏蔽类型。在小型SCFCL模型中进行了短路故障测试。开发了一种基于有限元方法(FEM)的计算机程序,该程序考虑了散装材料的电压-电流(EJ)特性,以分析短路故障测试中的性能并研究散装中的动态电磁行为超导体。由于高温超导体的E-J特性取决于温度和磁场,因此他们在各种工作温度和磁场下,通过实验研究了超导体的E-J特性。考虑到测量的E-J特性的计算机程序成功地在SCFCL测试模型中(BiPb)2Sr2Ca2Cu3O10模拟了电磁行为

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