特高压变电站变压器升高座套管表面损伤原因分析Cause Analysis of Damages of the Bushings of UHV Transformer Ascending Flanged Base
周宇通,张杰,赵洲峰,鲁旷达,陈胤桢,裘吕超,徐冬梅
ZHOU Yutong,ZHANG Jie,ZHAO Zhoufeng,LU Kuangda,CHEN Yinzhen,QIU Lyuchao,XU Dongmei
摘要(Abstract):
某特高压变电站一台主变压器发生故障,经拆解发现其升高座套管表面存在多处损伤痕迹。利用体视显微镜、光学显微镜、 SEM(扫描电子显微镜)以及EDS(能谱分析仪)等设备对套管表面各类损伤的形成原因进行分析。结果显示,套管表面存在金属熔融物、多孔状金属氧化物和沟壑状凹坑,表明损伤痕迹中同时存在放电痕迹、腐蚀痕迹以及刮擦痕迹。
A fault occurred in the main transformer in a UHV substation. Through disassembly, it was found that there were several damages on the bushing surface of ascending flanged based. The causes were analyzed via stereomicroscope, optical microscopy, SEM(scanning electronic microscopy) and EDS(energy dispersive spectrometer). The result shows that there were metal molten materials, vesicular metal oxides and gully pits on the bushing surface, which means there were also discharge, corrosion and scratch signs.
关键词(KeyWords):
特高压变电站;变压器;套管;表面损伤
ultra-high voltage substation;main transformer;bushing;surface damage
基金项目(Foundation):
作者(Author):
周宇通,张杰,赵洲峰,鲁旷达,陈胤桢,裘吕超,徐冬梅
ZHOU Yutong,ZHANG Jie,ZHAO Zhoufeng,LU Kuangda,CHEN Yinzhen,QIU Lyuchao,XU Dongmei
DOI: 10.19585/j.zjdl.202002006
参考文献(References):
- [1]刘生春,林建禄,郅啸,等.某变电站750 k V主变压器油中乙炔超标原因分析及处理[J].青海电力,2013,32(4):62-64.
- [2]刘宏亮,刘海峰,岳国良,等.220 k V变压器油纸电容式套管乙炔超标分析[J].变压器,2011,48(5):68-71.
- [3]孙翔,何文林,詹江杨,等.电力变压器绕组变形检测与诊断技术的现状与发展[J].高电压技术,2016,42(4):1207-1220.
- [4]张宁,朱永利,高艳丰,等.基于变分模态分解和概率密度估计的变压器绕组变形在线检测方法[J].电网技术,2016,40(1):297-302.
- [5]马宏忠,弓杰伟,李凯,等.基于ANSYS Workbench的变压器绕组松动分析及判定方法[J].高电压技术,2016,42(1):192-199.
- [6]叶朋珍.一起大型变压器低压侧升高座过热原因分析及处理[J].广东电力,2016,29(2):109-112.
- [7]张强,李成榕,刘齐,等.变压器升高座内部套管局部放电特高频信号传播特征[J].电网技术,2017,41(4):1332-1337.
- [8]邹国平,何文林,孙翔.浙江电网在运变压器套管末屏接地结构分析[J].浙江电力,2013,32(6):5-9.
- [9]胡洁梓,罗宏建,张杰,等.变压器出线套管线夹开裂事故分析与预防[J].浙江电力,2019,38(4):114-118.
- [10]赵品.材料科学基础教程[M].哈尔滨:哈尔滨工业大学出版社,2002.