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Performance of an HTS Generator Field Coil Under System Fault Conditions

作者:K. Sivasubramaniam, Xianrui Huang, E.T. Laskaris, T. Zhang, J. W. Bray, J. M. Forgarty, Rebecca A. Nold · 发表于:IEEE Transactions on Applied Superconductivity · 年份:2006 · DOI:10.1109/tasc.2006.881814 · 被引用次数:26 · 研究领域:Superconducting Materials and Applications、HVDC Systems and Fault Protection、Frequency Control in Power Systems

High-temperature superconducting (HTS) coils are generally stable against transient thermal disturbances. Protection against spontaneous quenches is not a main design issue for an HTS coil. However, HTS coils used in many electric devices such as motors, generators, transformers, and current limiters will operate under over-current fault conditions, which may result in a coil quench and thermal runaway. Those electric devices should be able to ride through some grid fault conditions and remain functional. This requires a certain over-current capability of the HTS coils. This paper discusses the over-current requirements from grid faults and the thermal transient responses of a BSCCO coil. It presents the analysis results of the coil subjected to over-current pulses at different operating conditions. The study also investigates the thermal runaway current and its relationship with the over-current pulse