雁门关直流接地极附近地表电位分布研究
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TM721.1

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山西省电力公司科技项目 (SGSXJXOOYMJS1900155)


Surface potential distribution near DC grounding electrode of Yanmenguan
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Projects of Shanxi Electric Power Company (SGSXJXOOYMJS1900155)

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    摘要:

    随着我国特高压直流输电线路的投运,直流入地电流引起的地电位畸变及电磁干扰问题得到了越来越多的重视。不同地区由于土壤结构的差异,地表电位分布并无参考价值。为了研究雁门关换流站单极运行时地表电位变化规律,采用Wenner四电极法实测雁门关直流接地极附近土壤视在电阻率,建立了3层大地土壤水平分层模型,利用CDEGS计算接地极在额定电流下附近100 km范围内变电站、风电场、输气管道的电位分布,定量给出了地表电位随距离变化的函数关系式,并研究了注入电流、土壤电阻率、局部不均匀电阻率、埋地金属管道对地表电位分布的影响。仿真结果表明,接地极为双圆环时地表电位与距离呈幂函数下降关系,注入电流、土壤电阻率对地表电位分布影响较大,埋地金属管道、局部不均匀电阻率对地表电位影响很小,可以忽略不计。

    Abstract:

    With the commissioning of UHVDC transmission lines in China, more and more attention has been paid to ground potential distortion and electromagnetic interference caused by direct current into the ground.Due to differences of soil structure in different regions, the distribution of surface potential is not the same.In order to study the law of surface potential distribution during unipolar operation of the Yanmenguan converter station, a three-layer soil resistivity model of Yanmenguan according to the field measurement using Wenner four-electrode method is established.Then the potential of substations, wind farms, and gas pipelines within 100 km of the grounding electrode at rated current is calculated.Simultaneously, the expression of the change of ground potential with distance is determined.Finally, the effects of injected current, soil resistivity, local resistivity and buried metal pipelines on the distribution of ground potential are studied.The simulation results show when the grounding electrode is a double ring structure, the ground potential decreases with distance.The injection current and soil resistivity have a greater influence on the surface potential distribution, and the buried metal pipes and local uneven resistivity have little effect on the surface potential.

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孙志鹏,蔡新景,魏建,孙志龙.雁门关直流接地极附近地表电位分布研究[J].电力工程技术,2020,39(5):140-145

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  • 收稿日期:2020-03-25
  • 最后修改日期:2020-05-07
  • 录用日期:2020-06-18
  • 在线发布日期: 2020-09-30
  • 出版日期: 2020-09-28