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Electric field close to lightning channel in the presence of current reflections from the ground

机译:电场接近闪电通道在当前从地面的反射

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The extended generalized traveling current source (extended GTCS) return stroke model with current reflections from the ground is used to explain the appearance of an overcompensated positive electric field in most vertical field measurements performed very close to the channel core. As suggested by experiments in triggered lightning conditions or in measurements of simulated return strokes in the laboratory we assumed that the ground reflection coefficient depends on the current magnitude. We separated the channel-base current into two components. The first current component is fast and with a greater peak value, while the second component is slower and with a lower peak. We analysed two return strokes with simultaneously measured channelbase currents and close electric waveforms. A new channel charging function is calculated according to the extended GTCS model, as well as the value of the ground reflection coefficient for the analysed strokes. On the other, the calculated values of the ground reflection coefficients confirm the results reported in other independent studies performed in natural or laboratory conditions. Finally, the concept of the extended GTCS model, that takes into account current pulse reflections from the ground, is proved to be correct. The obtained results can be used for lightning protection as well as for the insulation coordination in the power delivery.
机译:使用来自地面的电流反射的扩展广义行进电流源(扩展GTCS)返回行程模型用于解释在大多数垂直场测量中的过度补偿正电场的外观非常接近通道核心。如在触发闪电条件的实验或实验室中的模拟返回行程中的实验所提出的,我们假设地面反射系数取决于当前幅度。我们将通道基电流分成两个组件。第一电流分量快速且具有更大的峰值,而第二组件较慢,峰值较低。我们分析了两个返回行程,同时测量了ChannelBase电流和关闭电动波形。根据扩展GTCS模型计算新的通道充电功能,以及分析笔画的地面反射系数的值。另一方面,地反射系数的计算值证实了在自然或实验室条件下进行的其他独立研究中报告的结果。最后,证明了从地面考虑当前脉冲反射的扩展GTCS模型的概念,被证明是正确的。所得到的结果可用于防雷保护以及电力输送中的绝缘配位。

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