Study of Electromagnetic and Thermal Transients in a High-temperature Superconducting Transformer during a Short Circuit

IF 0.3 Q4 ENERGY & FUELS
V. Manusov, D. Ivanov
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引用次数: 0

Abstract

Today, high-temperature superconducting (HTS) current limiters and transformers allow to limit the surge short circuit current during failure without negatively affecting on the power grid complex at the normal operation mode. However, the transition of a superconductor to a resistive state at the moment of current limitation can cause significant heat generation, which can destroy the transformer windings. The research goal is to provide optimal technical characteristics of the HTS transformer to achieve effective short circuit current limitation and prevent thermal breakdown of its windings. To achieve this goal, a mathematical model of a HTS transformer was developed. The presented method considers the material type and geometry of the superconducting tape, the critical parameters of the superconductor (current and temperature), the parameters of the cryogenic liquid, dependence of the resistance and heat capacity of the HTS tape layers on temperature. The simulation model was created in the Matlab/Simulink software. The most important result is the possibility of obtaining optimal electrical and thermal parameters of the HTS transformer windings during the short circuit current limitation, as well as ensuring the thermal stability of the superconducting tape at the quench moment. The obtained results are significant in the design and operation of HTS transformers. For efficient and safe operation in the current-limiting mode, it is necessary to take into account heat generation on the transformer windings. It is important for the superconductor returning to the superconducting state without causing significant overheating of the windings.
高温超导变压器短路时的电磁和热瞬变研究
如今,高温超导(HTS)限流器和变压器允许在故障期间限制浪涌短路电流,而不会对正常运行模式下的电网复合体产生负面影响。然而,在电流限制的时刻,超导体转变为电阻状态会导致大量的热量产生,从而破坏变压器绕组。研究目标是提供HTS变压器的最佳技术特性,以实现有效的短路电流限制并防止其绕组的热击穿。为了实现这一目标,开发了高温超导变压器的数学模型。所提出的方法考虑了超导带的材料类型和几何形状、超导体的关键参数(电流和温度)、低温液体的参数、HTS带层的电阻和热容对温度的依赖性。在Matlab/Simulink软件中建立了仿真模型。最重要的结果是在短路电流限制期间获得HTS变压器绕组的最佳电气和热参数的可能性,以及确保超导带在淬火时刻的热稳定性的可能性。所得结果对高温超导变压器的设计和运行具有重要意义。为了在限流模式下高效安全地运行,有必要考虑变压器绕组上的发热。重要的是,超导体在不引起绕组显著过热的情况下返回到超导状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.70
自引率
33.30%
发文量
38
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