[1]许珉岐召阳刘玮.单相500kV GIS电子式组合互感器发热有限元分析[J].郑州大学学报(工学版),2015,36(03):11-15.[doi:10.3969/ j. issn.1671 -6833.2015.03.003]
 XU Min,Ql Zhao-yang,LIU Wei,et al.Finite Element Calculation about the Heat of Single-phase500 kV GIS Electronic Combined Transformer[J].Journal of Zhengzhou University (Engineering Science),2015,36(03):11-15.[doi:10.3969/ j. issn.1671 -6833.2015.03.003]
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单相500kV GIS电子式组合互感器发热有限元分析()
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《郑州大学学报(工学版)》[ISSN:1671-6833/CN:41-1339/T]

卷:
36
期数:
2015年03期
页码:
11-15
栏目:
出版日期:
2015-06-30

文章信息/Info

Title:
Finite Element Calculation about the Heat of Single-phase500 kV GIS Electronic Combined Transformer
作者:
许珉1岐召阳2刘玮3
1.郑州大学电气工程学院,河南郑州450001;2.郑州供电公司,河南郑州450000
Author(s):
XU Min1Ql Zhao-yang1LIU Wei1WU Jie2
1.School of Eletrical Engineering,Zhengzhou University,Zhengzhou 450001,China; 2.Zhengzhou Electric Power Company,Zhengzhou 450000,China
关键词:
GIS电子式组合互感器流场温度场损耗发热
Keywords:
GISelectronic combined transformerfluid fieldthermal fieldloss and heat
分类号:
TM451
DOI:
10.3969/ j. issn.1671 -6833.2015.03.003
文献标志码:
A
摘要:
温度变化会影响电子式互感器的测量准确度,500 kV GIS电子式组合互感器通常布置在户外,在实际运行中由于电阻损耗、太阳照射等因素而温度上升,甚至超过允许温升,从而影响其工作性能.为了准确分析其损耗发热问题,保证其工作的安全性和可靠性,运用有限元方法,建立了损耗发热的流场-温度场耦合求解模型,在综合考虑了太阳照射、外壳环流、气体流动以及重力等因素影响的基础上,计算分析了其流场和温度场分布规律.结果表明:温度场分布呈左右基本对称,上部温度高于下部温度,最高温度在导体顶部,最低温度在导体正下方.所得结论对于电子式互感器的散热设计具有一定的参考价值.
Abstract:
The variation of temperature may influence the measuring accuracy of electronic transformer.500kVGIS electronic combined transformer is usually arranged in the open air,so the temperature will rise because offactors such as resistance loss,sun exposure,etc,even exceed the permitted temperature in practical opera-tion,which will influence its work performance. To analyze its loss and heat accurately and ensure the safetyand reliability of its operation,a fluid-thermal coupled solution model was established by using finite elementmethod,which calculated and analyzed the distribution regularities of the fluid field and thermal field in con-sideration of factors such as sun exposure,shell current circulation,gas flow and gravity. The results showthat thermal field distribution has the geometric regularity of basic symmetry on both sides and upper tempera-ture is higher than the lower temperature. The highest temperature appears on the top of the conductor and thelowest temperature appears directly below the conductor. The conclusions can provide some reference for theheat dissipation design of electronic transformer.

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