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不同冲击电压下变压器油击穿特性研究

不同冲击电压下变压器油击穿特性研究

Research on the breakdown characteristics of transformer oil under oscillatory impulse voltage

Research on the breakdown characteristics of transformer oil under oscillatory impulse voltage

doi:
10.15938/j.emc.2018.03.011
摘要:
为了研究大型电力变压器绝缘油在振荡型冲击电压下极不均匀电场击穿特性,依据IEC60060-3标准搭建了能产生不同类型冲击电压波形的试验及其测量系统,在实验室利用该系统开展了振荡型冲击电压下油中极不均匀场的时域击穿和伏秒特性研究,并对实验模型电场进行了仿真分析.在实验过程中利用13.7 kHz振荡操作波、标准雷电波、3种不同频率的振荡雷电波,研究了变压器油在各个波形下的时域击穿图形及伏秒特性,对实验波形的计算结果表明:振荡型雷电波下的击穿点分布较广,振荡波的击穿电压整体高于标准雷电,但是它们的最高耐受电压与标准雷电下的基本一致.
Abstract:
In order to study the large power transformer insulation oil in oscillation under impulse voltage breakdown characteristics of nonuniform electric field, based on the IEC60060-3 standard a system was built.The system produces different types of impulse voltage waveform test and measurement system in the laboratory using the system,to carry out the research on the oscillatory impulse voltage in oil under extremely uniform field time breakdown and V-s characteristics.The experimental model of the electric field were analyzed.By using 13.7 kHz oscillation wave,standard lightning wave,and three different fre-quency oscillations of the lightning wave in the experimental process, the research of transformer oil in each wave under the time breakdown graph and V-s characteristics, calculation of experimental results show that the oscillation waveform breakdown type lightning wave under the wide distribution of oscillating wave voltage breakdown the whole is higher than standard lightning, but they are basically the same as maximum withstand voltage and standard lightning.
作者 李秀广 [1] 李军浩 [2] 吴旭涛 [3] 靳宇辉 [2]
Author: LI Xiu-guang[1] LI Jun-hao[2] WU Xu-tao[3] JIN Yu-hui[2]
作者单位
  1. 西安交通大学电气工程学院,陕西西安710049;国网宁夏电力公司电力科学研究院,宁夏银川750001
  2. 西安交通大学电气工程学院,陕西西安,710049
  3. 国网宁夏电力公司电力科学研究院,宁夏银川,750001
期 刊: 电机与控制学报 ISTIC EI SCI PKU CSSCI
Journal: Electric Machines and Control
年,卷(期) 2018, 22(3)
分类号 TM8
关键词: 振荡型冲击 知识脉络 绝缘油 知识脉络 极不均匀 知识脉络 电场 知识脉络 仿真 知识脉络 击穿特性 知识脉络
Keywords: oscillating impulse insulating oil non-uniform electric-field simulation breakdown charac-teristics
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