基于场路耦合的避雷线雷电弧根跳跃原理和影响因素分析OA
The principle and influencing factors analysis of lightning arc root jumping on overhead ground wire based on field-circuit coupling
在电网领域,避雷线(overhead ground wire,OGW)主要用于保护输电线路免受雷击损害.雷电弧根在OGW上发生跳跃,可能形成多个雷击点,导致 OGW多股绞线同时断裂,显著增加 OGW 的断线风险.目前针对雷电击中 OGW后雷电弧根跳跃物理过程的研究尚属空白.为此,文中基于场路耦合的仿真方法,对雷电弧根跳跃的原理和影响因素进行分析,为今后评估 OGW因雷电弧根跳跃引发的断线事故提供重要数据支持.首先,文中对雷电弧根跳跃的物理过程进行剖析,并分别分析风力和电磁力 2 种主要作用力对应的 3 种作用效果对弧根运动的影响.然后,基于目前链式模型的研究,提出一种基于场路耦合的雷电弧根跳跃模型.最后,通过仿真确定了雷电弧根跳跃的发生条件,并对雷电流脉冲分量幅值、持续分量幅值、每次回击持续时间、风速、空气边界层厚度等影响因素进行量化分析.结果表明,雷电弧根跳跃过程建立在弧根滑行现象的基础之上;在一次雷电弧根滑行和跳跃的连续过程中,弧根跳跃距离最少为 0.2 m,为滑行距离的 2倍以上;含有持续分量的多重回击雷在雷击时间超过 0.12 s时,可能导致弧根跳跃.在其他条件保持不变时,雷电流脉冲分量幅值与弧根跳跃距离大致呈正相关,而持续分量幅值与跳跃距离呈反相关;空气边界层厚度是影响跳跃的重要因素,仅当边界层厚度为 4~8 cm 时,弧根才会发生跳跃,且跳跃距离随边界层厚度增加而减小.文中得出的雷电弧根跳跃仿真结果及影响因素分析结论,为理解OGW因雷击导致的断线机制提供了新的思路,对提升电力系统输电安全性具有重要参考价值.
In the field of power grids,overhead ground wire(OGW)is primarily used to protect transmission lines from lightning strikes.Lightning arc root jumping causes multiple lightning strike points on the OGW,which may lead to simultaneous breakage of multiple strands,significantly increasing the risk of OGW breakage.Currently,research on the physical process of lightning arc root jumping after lightning strike to the OGW remains unexplored.Therefore,a field-circuit coupling simulation method is employed to analyze the principles and influencing factors of lightning arc root jumping,providing essential data support for future assessments of OGW breakage caused by lightning arc root jumping incidents.Firstly,the physical process of lightning arc root jumping is analyzed,focusing on the effects of the three action effects corresponding to the two main forces:wind force and electromagnetic force.Then,a lightning arc root jump model based on field-circuit coupling is proposed,building on existing chain model research.Finally,the occurrence conditions for lightning arc root jumping are determined through simulations,and influencing factors such as the amplitude of the lightning current pulse component,the magnitude of the sustained component,the interval between return strokes,wind speed,and air boundary layer thickness are quantitatively analyzed.The results indicate that the process of lightning arc root jumping is based on the sliding phenomenon of the roots.During the continuous process of lightning arc root sliding and jumping,the jumping distance is at least 0.2 m,which is more than twice the sliding distance.Multiple return strokes with a sustained component may induce arc root jumping when the lightning strike duration exceeds 0.12 seconds.When other conditions remain unchanged,the amplitude of the pulse component is roughly positively correlated with the jump distance,while the magnitude of the sustained component is negatively correlated with the jumping distance.The air boundary layer thickness is a significant factor affecting the jumping;arc roots only jumps when the boundary layer thickness is between 4 and 8 cm,and the jumping distance decreases as the boundary layer thickness increases.The simulation results and analysis conclusions on influencing factors of lightning arc root jumping obtained in this paper provide new insights into understanding the breakage mechanism of OGW caused by lightning strikes,and have important reference value for improving the transmission safety of power systems.
吕诗原;王珮沣;王锐;邓红雷;郭德明;刘刚
华南理工大学电力学院,广东 广州 510641华南理工大学电力学院,广东 广州 510641广东电网有限责任公司电力科学研究院,广东 广州 510080华南理工大学电力学院,广东 广州 510641华南理工大学电力学院,广东 广州 510641华南理工大学电力学院,广东 广州 510641
信息技术与安全科学
雷电弧根跳跃脉冲分量持续分量风力电磁力链式模型电场仿真空气边界层
lightning arc root jumppulse componentsustained componentwind forceelectromagnetic forcechain modelelectric field simulationair boundary layer
《电力工程技术》 2026 (8)
69-81,13
广东省基础与应用基础研究基金资助项目(2022A1515012523)中国博士后科学基金资助项目(2024M760942)
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