220 kV重负荷变压器强油风冷系统现场改造分析
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  • 英文篇名:On-Site Reformation for Cooling System of 220 kV Heavy Load Forced-Oil Circulation Air-Cooled Transformer
  • 作者:李英俊 ; 邢峰 ; 褚文超
  • 英文作者:LI Yingjun;XING Feng;CHU Wenchao;Ulanqab Electric Power Bureau;
  • 关键词:220 ; kV重负荷变压器 ; 强油风冷 ; 现场改造 ; 温升 ; 冷却
  • 英文关键词:220 kV heavy load transformer;;forced-oil circulation air-cooled;;on-site reformation;;temperature rise;;cooling
  • 中文刊名:NMDJ
  • 英文刊名:Inner Mongolia Electric Power
  • 机构:乌兰察布电业局;
  • 出版日期:2019-06-14 10:27
  • 出版单位:内蒙古电力技术
  • 年:2019
  • 期:v.37;No.191
  • 语种:中文;
  • 页:NMDJ201903013
  • 页数:6
  • CN:03
  • ISSN:15-1200/TM
  • 分类号:53-57+65
摘要
针对乌兰察布电业局220 kV重负荷强油风冷变压器结构复杂、设备陈旧、散热效率低、缺陷及隐患多等问题,对冷却系统建模并进行理论计算分析,结合现场实际情况,进行片式自冷与自冷风冷方式相结合的冷却系统改造,确定片式散热器布置形式及数量,制订220 kV重负荷变压器现场冷却系统改造施工方案及关键工序的质量管控措施。通过对新城湾3号主变压器冷却系统的现场改造,有效降低油面温升约6℃,同时可增带负荷约4万kW。现场改造可缩短工期约46 d,减少运行电量损失约278万kWh,延长了主变压器运行寿命,改造效果较好。
        In view of the issues exist in 220 kV transformer of Ulanqab Electric Power Bureau, the cooling system is modeled and theoretically analyzed combined with the actual situation on the site. The quality control of key processes such as transformer tank opening, welding tubing, transformer body overhaul and reinforced insulation is expounded,and the existing dangers are analyzed in detail. Put forward the effective pre-control measures such as rain protection, sand control, and foreign matter prevention. Through the on-site reconstruction of the No.3 main transformer cooling system in Xinchengwan, the oil surface temperature rise is effectively reduced by about 6 ℃, and the load can be increased by about 40 000 kW. At the same time, the on-site renovation will shorten the construction period by about 46 days, saving the running power loss of 2.78 million kWh,prolonging the main transformer operating life, and the transformation effect is better.
引文
[1]南春雷,吴继兵,白永祥,等.强油风冷变压器冷却系统改造的探讨与实践[J].科技创新导报,2016,14(25):25-29.
    [2]陈庆涛,石永建,郑浩,等.220 kV强油风冷变压器冷却系统现场改造方案研究[J].安徽电气工程职业技术学院学报,2017,22(3):68-73.
    [3]陈德.220 kV强迫油循环风冷电力变压器冷却系统改造分析[J].科技信息,2012(35):143-149.
    [4]张磊.500 kV变压器ODAF冷却系统现场改型工艺及方法研究[J].内燃机与配件,2018,11(40):81-85.
    [5]贾敏敏,郑建辉.220 kV变压器强油风冷回路故障的分析与处理[J].应用技术,2013,70(7):177-179.

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