中国电力 ›› 2022, Vol. 55 ›› Issue (9): 79-87.DOI: 10.11930/j.issn.1004-9649.202205080

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光伏变电站用氧化锌避雷器多物理场耦合分析

张天翊1, 梁志坚1, 朱瑞2   

  1. 1. 广西大学 电气工程学院,广西 南宁 530004;
    2. 国网能源研究院有限公司,北京 102209
  • 收稿日期:2022-05-26 修回日期:2022-06-29 发布日期:2022-09-20
  • 作者简介:张天翊(1998—),男,通信作者,硕士研究生,从事电力设备多物理场耦合计算、新能源并网研究,E-mail:zty741102089@163.com;梁志坚(1969—),男,副教授,从事电力系统保护研究,E-mail:lzhij@126.com
  • 基金资助:
    国家重点研发计划政府间重点合作专项(EIR计划-新型城镇能源互联系统研究及试点应用,SQ2018 YFE0196500)。

A Coupling Analysis of Multiphysical Field for ZnO Surge Arrester Installed in Photovoltaic Substation

ZHANG Tianyi1, LIANG Zhijian1, ZHU Rui2   

  1. 1. School of Electrical Engineering, Guangxi University, Nanning 530004, China;
    2. State Grid Energy Research Institute Co., Ltd., Beijing 102209, China
  • Received:2022-05-26 Revised:2022-06-29 Published:2022-09-20
  • Supported by:
    This work is supported by National Key Research and Development Program of China (EIR program- Research and Pilot Application of Energy Interconnection System to New Urban, No.SQ2018YFE0196500)

摘要: 针对传统有限元法在多物理场耦合计算过程中存在计算量大、精度过于依赖网格划分的缺陷,以某光伏变电站用220 kV氧化锌避雷器为例,提出一种将有限元法与无网格法结合的温升计算方法。首先,建立了避雷器三维流体场有限元模型,得到流体分布;其次,将对流换热系数作为温度场计算的边界条件,分别采用有限元和无网格法计算额定运行下避雷器温升和避雷器老化故障情况下的温升;最后,与基于传统有限元法耦合计算及实验结果进行对比,在验证了所提方法准确性的同时,还发现其求解速度远高于传统有限元法。

关键词: 氧化锌避雷器, 无网格法, 有限元法, 流体场, 温度场, 耦合计算

Abstract: Conventional finite element analysis(FEA) employed in multiphysical field coupling analysis usually suffers from such drawbacks as large computational effort and heavy reliance on grid quality. Taking a 220 kV ZnO surge arrester installed in a photovoltaic substation as an example, a new multiphysical field coupling analysis is proposed based on combined FEA and meshless method to solve thermal transfer problem. Firstly, a three-dimensional fluid field FEA model is established for surge arrester to obtain the detailed fluid distributions. Secondly, the calculated convective heat transfer coefficients are taken as the boundary conditions of thermal field analysis. The FEA and meshless method are used to calculate the thermal rise of surge arrester under rated operation and aging condition. Finally, the simulation result of the proposed method are compared with that obtained by conventional FEA and experiments, which verifies the effectiveness of the proposed method with a computational speed much higher than that of the conventional FEA.

Key words: ZnO surge arrester, meshless method, FEA, fluid field, thermal field, coupling analysis