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The Electromagnetic Fields of an Accelerating Charge: Applications in Lightning Return-Stroke Models

机译:加速电荷的电磁场:在雷电回程模型中的应用

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摘要

In the literature, three procedures have been used to calculate the electromagnetic fields from return strokes. In the first technique, the source is described only in terms of current density and the fields are expressed entirely in terms of the return-stroke current. In the second technique, the source is expressed in terms of the current and the charge densities and the fields are given in terms of both the current and the charge density. In the third technique, the fields are expressed in terms of the apparent charge density. The fields are connected to the source terms through the vector and scalar potentials. In this paper, the standard equations for the electromagnetic fields generated by an accelerating charge are utilized to evaluate the electromagnetic fields from lightning return strokes. It is shown that the total fields evaluated at any distance using these expressions are identical to those obtained using other techniques. However, the composition of the terms that vary as 1/R, 1/R2, and 1/R3 of the total electric field is different from those of other formulations. In the case of the transmission-line model, where the return stroke is described as a current pulse propagating with uniform velocity, radiation emanates only from the bottom of the channel where current is generated. When the speed of propagation is equal to the speed of light, the total field throughout the entire space becomes radiation. The procedure is also applied here to obtain the electric fields of the traveling-current-source model. The electric fields obtained for this case, too, agree with the previous study. It is also shown how the equations can be applied rather conveniently to evaluate: 1) the electromagnetic fields generated by current pulses propagating along overhead power lines; and 2) the electromagnetic fields generated by vertical conductors and towers during lightning strikes.
机译:在文献中,已经使用了三种程序来根据返回行程计算电磁场。在第一种技术中,仅根据电流密度来描述源,而根据回程电流来完全表示磁场。在第二种技术中,以电流和电荷密度来表示源,并且以电流和电荷密度两者来给出场。在第三种技术中,以视在电荷密度表示场。这些字段通过矢量和标量电势连接到源项。在本文中,利用由加速电荷产生的电磁场的标准方程式来评估雷电回击产生的电磁场。结果表明,使用这些表达式在任何距离处评估的总场与使用其他技术获得的总场相同。但是,以总电场的1 / R,1 / R2和1 / R3变化的术语组成与其他公式不同。在传输线模型的情况下,回程被描述为以均匀速度传播的电流脉冲,辐射仅从产生电流的通道底部发出。当传播速度等于光速时,整个空间的总场变为辐射。这里还应用该程序以获得行进电流源模型的电场。这种情况下获得的电场也与先前的研究一致。还显示了如何轻松地将这些方程式应用于评估:1)沿架空电力线传播的电流脉冲产生的电磁场; 2)雷击期间垂直导体和铁塔产生的电磁场。

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