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Numerical Analysis and Electrical Insulation Design of a Single-Phase 154 kV Class Non-Inductively Wound Solenoid Type Superconducting Fault Current Limiter

机译:单相154 kV级无感线圈电磁型超导故障限流器的数值分析和电绝缘设计

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摘要

The electrical insulation design of high voltage superconducting fault current limiters (SFCLs) should be confirmed for the stabilization of the power grid. This paper describes numerical analysis for high voltage SFCLs based upon the AC and lightning impulse dielectric tests. To calculate the field utilization factor, the electric field distributions for numerical analysis were calculated by finite element method (FEM) simulation tool. The correlation of experiments results and the field utilization factor was investigated. From the results, the electric field criterion of liquid nitrogen at 200 kPa was calculated. Furthermore, safety factor was also considered to design single-phase 154 kV class SFCL. This insulation design in liquid nitrogen focused only two parts of SFCL. Part 1 is gap distance between a cryostat and superconducting coils. Part 2 is gap distance between series-connections of non-inductively wound solenoid type coils.
机译:应确认高压超导故障限流器(SFCL)的电气绝缘设计,以稳定电网。本文介绍了基于交流和雷电冲击电介质测试的高压SFCL数值分析。为了计算场利用率,使用有限元方法(FEM)仿真工具计算了用于数值分析的电场分布。研究了实验结果与田间利用因子的相关性。根据该结果,计算出200kPa的液氮的电场基准。此外,在设计单相154 kV级SFCL时也考虑了安全系数。液氮中的这种绝缘设计仅关注SFCL的两个部分。第1部分是低温恒温器和超导线圈之间的间隙距离。第2部分是非感应绕线螺线管型线圈的串联连接之间的间隙距离。

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