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Lightning return stroke current radiation in presence of a conducting ground: 1. Theory and numerical evaluation of the electromagnetic fields

机译:存在导电地面的雷电回程电流辐射:1.电磁场的理论和数值评估

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摘要

The general theory describing the electromagnetic field radiated by a lightning stroke over a conducting ground is presented in this paper. The derivation of the Green functions necessary to solve the problem is discussed in detail, and the determination of the expressions for the electromagnetic field components is carried out in a form that minimizes the final computational costs. A method for the numerical evaluation of the electromagnetic field is then proposed, and it is shown that it can be used starting from any "engineering model" representation for the lightning current distribution along the channel. Such method is based on a new efficient evaluation of the so-called Sommerfeld's integrals appearing in the electromagnetic field expressions, without resorting to any kind of approximated formulas for them. The numerical treatment of the Sommerfeld's integrals is characterized by a proper subdivision of the integration domain, the use of the Romberg technique and the determination of a suitable upper bound for the error due to the integral truncation. In the second part of this work it will be shown how the results provided by the developed theory can be used in order to assess the validity of the most common simplified approach for the calculation of the lightning radiation over a lossy ground plane. Copyright 2008 by the American Geophysical Union.
机译:本文介绍了描述雷击在导电地面上辐射的电磁场的一般理论。详细讨论了解决该问题所需的格林函数的推导,并且以最小化最终计算成本的形式确定了电磁场分量的表达式。然后提出了一种对电磁场进行数值评估的方法,结果表明该方法可从任何“工程模型”表示形式开始用于沿通道的雷电流分布。这种方法是基于对出现在电磁场表达式中的所谓Sommerfeld积分的一种新的有效评估,而无需求助于它们的任何近似公式。 Sommerfeld积分的数值处理的特征是对积分域进行了适当的细分,使用了Romberg技术,并确定了因积分截断而导致的误差的合适上限。在这项工作的第二部分中,将展示如何使用已发展的理论提供的结果来评估最常见的简化方法在有损地面上的雷电辐射计算的有效性。美国地球物理联盟版权所有2008。

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