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Simulation of electrical and thermal behavior of high temperature superconducting fault current limiting transformer (HTc-SFCLT)

机译:高温超导故障限流变压器(HTc-SFCLT)的电气和热行为仿真

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Superconducting Fault Current Limiting Transformer (SFCLT) is expected to perform functions both of transformer in the normal operating condition and of fault current limiter in the system fault condition. As the Phase-3 of the SFCLT project, we have been developing SFCLT based on Bi2212/CuNi bulk coils at LN_2 temperature and verified its technical feasibility. In this paper, we developed a numerical model for evaluation of the electrical and thermal behavior of HTc-SFCLT such as current limitation and recovery characteristics. This model took into account E-J characteristics of Bi2212/CuNi bulk coil and its electrical and thermal transient phenomena during the operation of HTc-SFCLT. The simulated current agreed well with the experimental data with the error of less than 5%. The excellent current limitation and self recovery characteristics obtained by the experiments could also be reproduced. With the numerical model, current and thermal behavior of HTc-SFCLT was simulated for different parameters of conductor configuration, which would be useful for the future design and optimization of HTc-SFCLT.
机译:超导故障限流变压器(SFCLT)有望在正常工作状态下发挥变压器的功能,在系统故障状态下发挥故障电流限制器的功能。作为SFCLT项目的第三阶段,我们一直在LN_2温度下开发基于Bi2212 / CuNi块状线圈的SFCLT,并验证了其技术可行性。在本文中,我们开发了一个用于评估HTc-SFCLT的电和热行为(例如电流限制和恢复特性)的数值模型。该模型考虑了Bi2212 / CuNi块状线圈的E-J特性及其在HTc-SFCLT运行过程中的电和热瞬态现象。模拟电流与实验数据吻合良好,误差小于5%。通过实验获得的极好的电流限制和自我恢复特性也可以被再现。利用数值模型,对导体结构不同参数的HTc-SFCLT的电流和热行为进行了仿真,这对于HTc-SFCLT的未来设计和优化是很有用的。

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