王建, 廖兴万, 林明建, 邓冶强, 吴强, 李木子, 潘才维. 山区输油站供电线路差异化防雷改造方案[J]. 油气储运, 2022, 41(7): 869-874. DOI: 10.6047/j.issn.1000-8241.2022.07.016
引用本文: 王建, 廖兴万, 林明建, 邓冶强, 吴强, 李木子, 潘才维. 山区输油站供电线路差异化防雷改造方案[J]. 油气储运, 2022, 41(7): 869-874. DOI: 10.6047/j.issn.1000-8241.2022.07.016
WANG Jian, LIAO Xingwan, LIN Mingjian, DENG Yeqiang, WU Qiang, LI Muzi, PAN Caiwei. Transformation plan for differentiated lightning protection of power supply lines in a mountainous oil transmission station[J]. Oil & Gas Storage and Transportation, 2022, 41(7): 869-874. DOI: 10.6047/j.issn.1000-8241.2022.07.016
Citation: WANG Jian, LIAO Xingwan, LIN Mingjian, DENG Yeqiang, WU Qiang, LI Muzi, PAN Caiwei. Transformation plan for differentiated lightning protection of power supply lines in a mountainous oil transmission station[J]. Oil & Gas Storage and Transportation, 2022, 41(7): 869-874. DOI: 10.6047/j.issn.1000-8241.2022.07.016

山区输油站供电线路差异化防雷改造方案

Transformation plan for differentiated lightning protection of power supply lines in a mountainous oil transmission station

  • 摘要: 为保证输油站可靠运行,提高输油站供电线路的防雷性能,选取中国南方山区安顺站为研究对象,分类统计了该站2018—2020年输电线路发生的雷击事故,并对雷击事故情况进行综合分析,考虑线路走廊地闪密度、地形地貌、杆塔接地电阻和耐雷水平等4种影响因素,判别线路中需要进行防雷改造的杆塔。从提升绝缘水平、降低接地电阻、安装避雷器等防雷措施的角度,对各杆塔的情况进行逐一分析,在保证防雷能力的基础上结合线路实地施工情况及线路改造的经济条件,提出差异化防雷改造措施。线路改造后,受雷击而导致的跳闸率与设备损坏率显著降低,改造方案具有科学性及有效性。

     

    Abstract: In order to ensure the reliable operation of oil transmission stations and improve the lightning protection performance of their power supply lines, the lightning accidents occurred to power supply lines in the Anshun Station in the southern mountainous area of China during 2018 to 2020 were counted by category, and comprehensive analysis was performed for the lightning accidents. On this basis, the poles and towers requiring transformation for lightning protection were determined by considering the four influencing factors of line corridor, i.e., ground flash density, topography, grounding resistance of poles and towers, and lightning withstand level. In view of the lightning protection measures of improving the insulation level, reducing the grounding resistance, and installing lightning arresters, analysis was conducted for the poles and towers one by one, and transformation measures for differentiated lightning protection were put forward on the basis of ensuring the lightning protection capability, with reference to the on-site construction of the lines and the economic conditions of line transformation. Upon completion of the line transformation, the trip rate and equipment damage rate caused by lightning are significantly reduced, which proves the scientificity and effectiveness of the transformation plan.

     

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