架空线路上的雷击电压

G. Evdokunin, N. N. Petrov
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引用次数: 7

摘要

该报告致力于建立一个模型,用于计算从通道基电流开始的间接雷击回击期间架空线路上的雷击电压。雷击电压的计算一般采用以下方法:1)利用雷电回击电流随时间和通道高度的函数模型,沿线路长度计算电磁场。将闪电电流的通道取为直的垂直天线;2)利用电磁场计算感应电压,利用耦合模型描述了电磁场与线路导体之间的相互作用。该模型基于传输线理论;3)在距离雷击任意距离的线路上,波形的形状和振幅是基于计算的感应电压。该程序用于分析架空线路两端等距的间接雷击所产生的电压。研究了雷电放电、触点和负载电流终止阻抗等参数对感应电压幅值和波形的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lightning-induced voltage on overhead lines
The report is devoted to creating a model for calculation of lightning-induced voltages on overhead lines during indirect lightning return strikes starting from the channel-base current. The calculation of lightning-induced voltages is generally performed in the following way: 1) electromagnetic field is calculated across the length of the line, using the model of the lightning return-stroke current as a function of time and the height of the channel. The channel of the lightning current is taken as a straight vertical antenna; 2) the electromagnetic field is then used to calculate the induced voltages using of a coupling model, which describes the interaction between the field and the line conductors. This model is based on the transmission line theory; 3) the shape and amplitude of the waves on the line at an arbitrary distance from the lightning stroke is based on the calculated induced voltage. The procedure is applied for the analysis of the voltages induced on overhead line by indirect lightning strikes with an equidistant point from the ends of the line. The influence of some parameters such as lightning discharge, striking point and terminating impedance of load currents on the induced voltage amplitude and waveshape is examined.
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