电工技术学报  2019, Vol. 34 Issue (24): 5270-5281    DOI: 10.19595/j.cnki.1000-6753.tces.181606
高电压与绝缘 |
颗粒属性对矿物绝缘油直流击穿特性的影响差异及原因分析
郝建1, 但敏1, 2, 廖瑞金1, 李剑1, 杨丽君1
1. 输配电装备及系统安全与新技术国家重点实验室(重庆大学) 重庆 400044;
2. 国网重庆市电力公司南岸供电分公司 重庆 401123
Influence of Particle Properties on DC Breakdown Characteristics of Mineral Oil and Its Difference Reason Analysis
Hao Jian1, Dan Min1, 2, Liao Ruijin1, Li Jian1, Yang Lijun1
1. State Key Laboratory of Power Transmission Equipment & System Security and New Technology Chongqing University Chongqing 400044 China;
2. State Grid Chongqing Electric Power Co. Nan’an Power Supply Branch Chongqing 401123 China;
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摘要 换流变压器是超高压/特高压直流输电工程中重中之重的设备。目前,绝缘油中杂质颗粒成为威胁在运换流变压器可靠运行不容忽视的因素。该文首先通过试验研究了不同浓度和不同尺寸的纤维颗粒、金属铜颗粒、纤维与铜混合颗粒对矿物绝缘油直流击穿场强的影响规律,然后联合运用颗粒动力学模型及颗粒积聚模型仿真分析了杂质颗粒在油中的积聚行为及颗粒积聚对电场分布的影响,揭示了颗粒属性对矿物绝缘油直流击穿特性的影响差异及原因。结果表明:颗粒属性决定着绝缘油直流击穿电压变化规律,含单纯纤维或铜金属颗粒油品的直流击穿电压随颗粒浓度增加总体上呈线性递减的趋势,含纤维和金属混合颗粒油品的直流击穿电压随着铜颗粒浓度的增加呈指数衰减的趋势;金属颗粒对油品绝缘性能的劣化程度大于非金属纤维颗粒,混合颗粒对油品绝缘性能的劣化程度大于单一颗粒,纤维颗粒粒径的增加进一步降低了油品直流击穿场强。试验和仿真结果一致表明,直流电场分量作用下油中颗粒积聚成桥,大幅度提升了油品的电导率,导致油中电场分布出现显著畸变。与无预压模式下直流击穿电压相比,直流预压模式下形成的颗粒积聚导致油品直流击穿场强显著下降,下降幅度超30%。
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郝建
但敏
廖瑞金
李剑
杨丽君
关键词 换流变压器绝缘油杂质颗粒直流击穿场强    
Abstract:The converter transformer is the most important equipment in the EHV/UHVDC transmission project. At present, impurity particles in insulation oil become a threat to the reliable operation of the converter transformer. In this paper, firstly, the effects of different concentrations and sizes of non-metallic fiber particles, copper particles, fiber and copper mixed particles on DC breakdown field strength of mineral were studied experimentally. Then the accumulation behavior of impurity particles in oil was simulated and analyzed using the particle dynamics model and the particle accumulation model. The particle accumulation and its effect on electric field distribution were analyzed. Finally, the differences and reasons of particle properties on DC breakdown of mineral oil were summarized. The results show that the particle properties determine the variation of DC breakdown voltage of insulation oil. The DC breakdown voltage of oil containing pure fiber or copper particles decreases linearly with the increase of particle concentration. The DC breakdown voltage of oil containing fiber and metal particles decreases exponentially with the increase of copper particle concentration. The deterioration degree of metal particles on oil insulation performance is greater than that of single particles, and the increase of fiber particle size further reduces the DC breakdown strength of oil. The results of experiment and simulation show that the bridge phenomenon of particle accumulation appears in the oil under the action of DC electric field. Particle accumulation greatly improves the conductivity of oil and leads to significant distortion of electric field distribution in oil. Compared with the DC breakdown voltage without preloading mode, the DC breakdown strength of oil decreases more than 30% due to the particle accumulation under the DC preloading mode.
Key wordsConverter transformer    insulation oil    impurity particles    DC breakdown strength   
收稿日期: 2018-10-09      出版日期: 2019-12-30
PACS: TM835  
通讯作者: 郝建, 男,1984年生,博士,副研究员,从事工程电介质材料及应用、电气设备在线监测与故障诊断研究。E-mail:haojian2016@cqu.edu.cn   
作者简介: 但敏,女,1993年生,硕士研究生,从事工程电介质材料及应用、电气设备在线监测与故障诊断研究。E-mail:danmin@cqu.edu.cn
引用本文:   
郝建, 但敏, 廖瑞金, 李剑, 杨丽君. 颗粒属性对矿物绝缘油直流击穿特性的影响差异及原因分析[J]. 电工技术学报, 2019, 34(24): 5270-5281. Hao Jian, Dan Min, Liao Ruijin, Li Jian, Yang Lijun. Influence of Particle Properties on DC Breakdown Characteristics of Mineral Oil and Its Difference Reason Analysis. Transactions of China Electrotechnical Society, 2019, 34(24): 5270-5281.
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