基于雷电分形模型的架空线路绕击特性分析试验
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TM75

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国家重点研发计划资助项目(2023YFE0115700)


Experimental analysis of flashover characteristics for overhead power lines based on the lightning fractal model
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    摘要:

    近年来,一类在电气几何模型、先导发展模型等基础上提出的可以体现雷电曲折性和分散性的分形模型逐步被用于架空线路雷电屏蔽性能研究。文中基于模拟试验和自然雷电的等效性,搭建1∶40缩比试验平台,以常见500 kV输电线路用ZB6T型杆塔为研究对象,施加160/2 500 μs负极性操作冲击波,分别研究绕击率与空间分布和保护角的关系。基于WZ模型和有限差分法建立雷电分形模型,在缩比试验间隙配置下进行线路绕击特性仿真分析。模拟试验和仿真结果均表明:输电线绕击率高的点集中在靠近传输线处,绕击空间整体呈现倒抛物线型,符合绕击规律。保护角减小,则绕击率相应降低,同时绕击空间略有减小。仿真结果与试验数据对比表明,文中构建的雷电分形模型在线路绕击率预测上具有较高可靠性。

    Abstract:

    In recent years,a fractal model that can reflect the tortuosity and dispersion of lightning has been gradually used in the research of lightning shielding performance for overhead power lines,based on electrical geometric models and pioneering development models. In this paper,a 1:40 scaled experimental platform based on the equivalence between simulation experiments and natural lightning is constructed,with the ZB6T type tower commonly used in 500 kV transmission lines as the research object. A negative polarity impulse wave of 160/2 500 μs is applied to investigate the relationship between flashover probability,spatial distribution,and protection angle. Based on the WZ model and finite difference method,a lightning fractal model is established,and the characteristics of line flashover are simulated and analyzed under the configuration of the scaled experimental gap. Both the simulation experiments and the simulation results indicate that the points with high flashover probability are concentrated near the transmission line,and the overall flashover space presents a parabolic shape,conforming to the flashover law. As the protection angle decreases,the flashover probability decreases correspondingly,and the flashover space slightly decreases. The simulation results verify the reliability of the simulation experiments and the correctness of the model. Comparing the simulation results with the experimental data,the model shows a high level of reliability.

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占金涛,杨天翼,郭俊.基于雷电分形模型的架空线路绕击特性分析试验[J].电力工程技术,2025,44(1):126-135

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  • 收稿日期:2024-06-12
  • 最后修改日期:2024-08-09
  • 录用日期:2024-01-10
  • 在线发布日期: 2025-01-23
  • 出版日期: 2025-01-28
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