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Numerical analyses of the electromagnetic force acting on high-temperature superconducting power cables due to fault current

机译:故障电流对高温超导电力电缆电磁力的数值分析

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In Japan, the development of the 66kV class REB _2C _3O _(7x) (RE123; RE stands for rare earth) high-temperature superconducting (HTS) power cable was begun in 2008 as a national project. 66kV class RE123 HTS power cables may be subjected to a fault current of 31.5kA rms for 2s. Therefore, the electromagnetic and thermal characteristics of HTS power cables have to be determined under fault conditions to ensure stability and feasibility. In this study, numerical analyses were performed using a computer program on the basis of the finite element method and an equivalent circuit model to evaluate the electromagnetic and thermal behaviors of a 66kV class HTS model cable resulting from the fault current. The electromagnetic forces acting on coated conductors that are assembled in the HTS model cable were also numerically simulated under the fault condition. The result found was that the maximum electromagnetic force acting on the coated conductor in the peeling and compression direction was less than 20kPa. However, the irreversible I _c degradations caused by the peeling and compression stress were above several MPa in previous studies. Thus, the results of this study indicate a low probability of I _c degradation of the 66kV class HTS power cable being caused by the electromagnetic force due to the fault current.
机译:在日本,作为国家级项目,2008年开始开发66kV级REB _2C _3O _(7x)(RE123; RE代表稀土)高温超导(HTS)电力电缆。 66kV RE123 HTS类电力电缆可能会经受31.5kA rms的故障电流持续2s。因此,必须在故障条件下确定高温超导电力电缆的电磁和热特性,以确保稳定性和可行性。在这项研究中,在有限元方法和等效电路模型的基础上,使用计算机程序进行了数值分析,以评估由故障电流引起的66kV级HTS模型电缆的电磁和热行为。在故障条件下,还对位于HTS模型电缆中的涂覆导体上的电磁力进行了数值模拟。结果发现,在剥离和压缩方向上作用于涂覆导体的最大电磁力小于20kPa。然而,在先前的研究中,由剥离和压缩应力引起的不可逆的I _c降解高于几个MPa。因此,这项研究的结果表明,由故障电流引起的电磁力导致66kV级HTS电力电缆I_c退化的可能性很小。

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