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Conceptual Design of HTS Coil for SMES Using YBCO Coated Conductor

机译:使用YBCO涂层导体的SMES高温超导线圈的概念设计

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High $T_{rm c}$ superconducting (HTS) toroidal coil using YBCO coated conductor is designed for 70 MJ class superconducting magnetic energy storage (SMES) for power system control. Its configuration and shape are optimized by means of genetic algorithm (GA) to minimize the required length of the conductor. The optimization is performed for two kinds of constrains, i.e., maximum electric field or flux flow loss of the coil, which are calculated by means of finite element method (FEM). The FEM analysis considers quantitative current density $(J)$-electric field $(E)$ expressions based on percolation transition model. It is shown that the great transport performance against magnetic field of YBCO coated conductor can realize a very compact SMES coil compared with an existing Nb-Ti''s one.
机译:采用YBCO涂层导体的高$ T_ {rm c} $超导(HTS)环形线圈设计用于70 MJ级超导磁储能(SMES),用于电力系统控制。通过遗传算法(GA)对其结构和形状进行了优化,以最大程度地减少所需的导体长度。优化是针对两种约束条件进行的,即最大电场或线圈的磁通量流失,这是通过有限元方法(FEM)计算得出的。有限元分析考虑了基于渗流跃迁模型的定量电流密度$(J)$-电场$(E)$表达式。结果表明,与现有的Nb-Ti相比,YBCO涂层导体抗磁场的强大传输性能可以实现非常紧凑的SMES线圈。

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