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Engineering Lightning Return Stroke Models Incorporating Current Reflection From Ground and Finitely Conducting Ground Effects

机译:包含地面电流反射和有限传导地面效应的工程雷电回程模型

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A return stroke model that incorporates a reflected wave from ground without introducing any current discontinuities at the return stroke front is introduced. The incident current is treated using current generation concepts and the reflected current using current dissipation concepts. It is shown that the effect of the reflected current wave is to cause flattening of close electric field waveforms within about 10 μs. Additionally, it is shown how a return stroke model could be utilized to study the effect of ground conductivity on the return stroke current. The results show that the peak time derivative of current in lightning strokes terminating on poorly conducting ground is significantly lower than in the case of highly conducting ground. The model is also used to predict the spatial variation of return stroke velocity. The results show that the return stroke velocity increases initially, reaches a peak, and then decays with increasing height.
机译:引入了一个回程模型,该模型合并了来自地面的反射波,而没有在回程前面引入任何电流不连续性。使用电流生成概念来处理入射电流,并使用电流耗散概念来处理反射电流。结果表明,反射电流波的作用是使闭合电场波形在约10μs内变平。此外,它还显示了如何使用回程模型来研究接地电导率对回程电流的影响。结果表明,终止于导电不良的地面的雷击电流的峰值时间导数明显低于导电性较高的情况。该模型还用于预测回程速度的空间变化。结果表明,回程速度最初增加,达到峰值,然后随着高度增加而衰减。

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