转炉阀饱和电抗器堆芯损耗计算及温度分布模拟

Yansheng Zou, Zhen Wang, Kai Xiao, Ning Liang, Xilin Yan, Yong Feng, Xuetong Zhao, L. Cheng, Yilong Huang
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引用次数: 0

摘要

饱和电抗器是高压直流输电的关键设备,其绝缘失效将严重影响换流阀的安全运行。为了研究堆芯式饱和电抗器的损耗和温度分布,利用COMSOL Multiphysics软件建立了堆芯式饱和电抗器的仿真模型。以3000a的满载瞬时电流为励磁源,得到铁心的损耗分布。然后,将损耗密度分布作为温度场的热源。建立了饱和反应器的电磁热仿真模型,分析了饱和反应器的温度分布。结果表明:铁芯内部损耗较大,上下两端损耗均小于中间损耗;结果表明,磁芯的最高温度为62.2℃。核心内部的温度高于外部的温度。研究结果可为改善堆芯式饱和电抗器的散热性能提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Core Loss Calculation and Temperature Distribution Simulation of Saturable Reactor for Converter Valves
Saturable reactor is a key equipment of HVDC transmission, and its insulation failure will severely affect the safe operation of the converter valve. For the cause of studying the loss and temperature distribution of the core-type saturable reactor, a simulation model of the saturable reactor is established using COMSOL Multiphysics software. Taking the instantaneous current of 3000 A under the full load as the excitation source, the loss distribution of the core is obtained. Afterwards, the loss density distribution is taken as the heat source of the temperature field. The electromagnetic thermal simulation model of the saturable reactor is built to analyze its temperature distribution. The results show that the loss of the core inside is higher, and the loss at the upper and lower ends is lower than that in the middle. It is found that the highest temperature of the core is 62.2 °C. The inner temperature of the core is higher than that of the outer part. The results can provide a reference for the heat dissipation improvement of the core-type saturable reactor.
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