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A physical model for inception and propagation of upward lightning leader from a 1200 kV AC power transmission line

机译:用于从1200 kV交流输电线路接收和传播上行闪电的物理模型

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UHV power transmission lines have high probability of shielding failure due to their higher height, larger exposure area and high operating voltage. Lightning upward leader inception and propagation is an integral part of lightning shielding failure analysis and need to be studied in detail. In this paper a model for lightning attachment has been proposed based on the present knowledge of lightning physics. Leader inception is modeled based on the corona charge present near the conductor region and the propagation model is based on the correlation between the lightning induced voltage on the conductor and the drop along the upward leader channel. The inception model developed is compared with previous inception models and the results obtained using the present and previous models are comparable. Lightning striking distances (final jump) for various return stroke current were computed for different conductor heights. The computed striking distance values showed good correlation with the values calculated using the equation proposed by the IEEE working group for the applicable conductor heights of up to 8 m. The model is applied to a 1200 kV AC power transmission line and inception of the upward leader is analyzed for this configuration.
机译:特高压输电线路具有较高的高度,较大的暴露区域和较高的工作电压,因此很有可能发生屏蔽故障。雷电先导者的起始和传播是雷电屏蔽故障分析不可或缺的一部分,需要详细研究。在本文中,我们基于闪电物理学的现有知识,提出了一个闪电附着模型。基于导体区域附近存在的电晕电荷对引导者开始进行建模,并且传播模型基于导体上的雷电感应电压与沿向上引导者通道的压降之间的相关性。将开发的初始模型与以前的初始模型进行比较,并且使用当前模型和先前模型获得的结果是可比较的。针对不同的导体高度,计算了各种回程电流的雷击距离(最终跳变)。计算出的触击距离值与IEEE工作组针对适用的导体高度高达8 m的方程式计算出的值具有良好的相关性。该模型应用于1200 kV交流输电线路,并针对该配置分析了向上引导的开始。

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