首页> 外文期刊>Journal of Superconductivity and Novel Magnetism >Modeling of Shield-Type Superconducting Fault-Current-Limiter Operation Considering Flux Pinning Effect on Flux and Supercurrent Density in High-Temperature Superconductor Cylinders
【24h】

Modeling of Shield-Type Superconducting Fault-Current-Limiter Operation Considering Flux Pinning Effect on Flux and Supercurrent Density in High-Temperature Superconductor Cylinders

机译:考虑磁通钉扎效应对高温超导圆柱体的通量和超电流密度的屏蔽型超导故障限流器操作建模

获取原文
获取原文并翻译 | 示例
       

摘要

Superconducting fault current limiter, SFCL, forms an important category of fault-current-limiting devices which limit the short-circuit current levels in electrical networks. Therefore, modeling its operation and anticipating its characteristic parameters are too important in its design and optimization process. In this paper a novel integrative method has been proposed which predicts, with a good accuracy, the behavior of inductive shield-type SFCL in different circumstances and approximates its main operational characteristics, as the through current, the inductance and the voltage-current characteristics. An algorithm is presented to calculate the exact distribution of magnetic flux and supercurrent density inside the superconductor bulk in different operational conditions using the well-known Bean model and for the first time the flux pinning effect has been taken into account in SFCL operation modeling. For estimation of flux density distribution outside the superconductor bulk, the FEM analysis has been utilized. An iterative method has been used, based on the numerical solution of differential equations, to calculate the instant value of the SFCL through-current and inductance. The proposed method of modeling has been studied on a specific design of shield-type SFCL and its through current in normal and fault conditions of a test circuit, variation of its inductance with time and its voltage-current characteristic are calculated theoretically. A prototype has been fabricated based on the studied SFCL design and has been tested experimentally. The comparison of the experimental and theoretical results shows that this modeling predicts the SFCL operation with a good accuracy.
机译:超导故障电流限制器SFCL构成了故障电流限制设备的重要类别,该设备限制了电网中的短路电流水平。因此,在其设计和优化过程中,对其操作进行建模并预期其特征参数非常重要。本文提出了一种新颖的综合方法,该方法可以很好地预测电感屏蔽型SFCL在不同情况下的行为,并近似其主要工作特性,如直通电流,电感和电压-电流特性。提出了一种使用众所周知的Bean模型计算不同操作条件下超导体主体内部的磁通量和超电流密度的精确分布的算法,并且首次在SFCL操作建模中考虑了磁通钉扎效应。为了估计超导体主体外部的磁通密度分布,已使用了有限元分析。基于微分方程的数值解,已使用迭代方法来计算SFCL直通电流和电感的瞬时值。对屏蔽型SFCL的特定设计及其在测试电路正常和故障条件下的通过电流进行了研究,并从理论上计算了其电感随时间的变化及其电压-电流特性。已基于研究的SFCL设计制造了原型,并已通过实验测试。实验和理论结果的比较表明,该模型可以很好地预测SFCL的运行。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号