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变压器油间气泡局部放电对绝缘性能的影响
引用本文:李继方,周一帆,周星耀,韩爱山.变压器油间气泡局部放电对绝缘性能的影响[J].科学技术与工程,2024,24(17):7159-7167.
作者姓名:李继方  周一帆  周星耀  韩爱山
作者单位:华北水利水电大学电气工程学院
基金项目:国家自然科学基金(U1804149)
摘    要:准确描述电力变压器匝间短路故障时油中产生的气泡对绕组间绝缘性能的影响,对其稳定运行具有重要意义。针对变压器绕组匝间短路故障,本文首先建立瞬态模式下变压器 “电路-磁场”的多物理场耦合模型,探究故障情况下变压器绕组的电流和电磁特征;进而建立变压器匝间短路建模,磁电耦合及场强分布,进一步分析变压器油中气泡的放电特性。最后利用COMSOL软件建立仿真模型。将收集到的一台油浸式变压器连续运行数据及筛选出的低压短路故障时的数据进行仿真。仿真结果表明:电场在穿过气泡时会产生畸变,场强值瞬间增大,并且电场的畸变次数随着气泡数量的增加而增多,匝间变压器油绝缘强度下降,对变压器的绝缘性能造成较大影响。

关 键 词:电力变压器    绝缘性能    多物理场耦合    绕组匝间短路    变压器油中气泡
收稿时间:2023/7/10 0:00:00
修稿时间:2023/10/10 0:00:00

The impact of localized partial discharge on insulation performance in transformer oil with gas bubbles
LI Jifang,Zhou Yifan,ZHOU Xing-yao,HAN Ai-shan.The impact of localized partial discharge on insulation performance in transformer oil with gas bubbles[J].Science Technology and Engineering,2024,24(17):7159-7167.
Authors:LI Jifang  Zhou Yifan  ZHOU Xing-yao  HAN Ai-shan
Institution:School of Electrical Engineering,North China University of Water Resources and Electric Power;China
Abstract:Accurately describing the impact of air bubbles generated in the oil on the insulation performance between windings during inter-turn short-circuit faults in power transformers is of great significance for their stable operation. For the transformer winding turn-to-turn short circuit fault, firstly, a multi-physical field coupling model of transformer "circuit-magnetic field" in transient mode is developed in this paper, while the current and electromagnetic characteristics of transformer windings under fault conditions are investigated; then establishes the modeling of the transformer turn-to-turn short circuit, the magneto-electric coupling, and the field strength distribution, and further analyzes the discharge characteristics of the air bubbles in the transformer oil. Characteristics of the discharge of air bubbles in the transformer oil are further analyzed. Finally, COMSOL software is utilized to establish the simulation model. Simulation of collected continuous operation data of an oil-immersed transformer and screened data during low-voltage short-circuit faults. The simulation results show that: the electric field will produce distortion when passing through the bubbles, the field strength value increases instantly, and the distortion of the electric field increases with the increase of the number of bubbles, the insulation strength of the transformer oil between the turns decreases, and the insulation performance of the transformer is greatly affected.
Keywords:Power transformer      Insulation performance      Multi-physics field coupling      Winding inter-turn short circuit      Bubbles in transformer oil
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