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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Lightning return stroke current radiation in presence of a conducting ground: 2. Validity assessment of simplified approaches
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Lightning return stroke current radiation in presence of a conducting ground: 2. Validity assessment of simplified approaches

机译:存在导电接地的雷电回程电流辐射:2.简化方法的有效性评估

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摘要

In this paper, the developed formulation, which we shall call the “reference” one, is used to assess the validity of the most popular simplified approach for the calculation of the lightning electromagnetic field over a conducting earth, namely, the Cooray-Rubinstein (CR) approximation. This formula provides a simple method to evaluate the radial component of the electric field which is the component most affected by the finite ground conductivity and which plays an important role within the Agrawal et al. (1980) field-to-transmission line-coupling model. Several configurations are examined, with different values for the ground conductivity and different field observation points. A thorough analysis of all the simulated field components is carried out and comparisons are also made with the “ideal” field, namely, the field that would be present under the assumption of perfectly conducting ground. It is shown that for channel base current typical of subsequent strokes and for very low conductivities, the CR formula exhibits some deviations from the reference one but it still represents a conservative estimation of the radial field component, since it behaves as un upper bound for the exact curve. The developed algorithm is characterized by fast performances in terms of CPU time, lending itself to be used for several applications, including a coupling code for lightning induced overvoltages calculations.
机译:在本文中,我们将开发的公式(我们称为“参考”公式)用于评估最流行的简化方法用于计算导电地球上的雷电电磁场的有效性,即Cooray-Rubinstein( CR)近似值。该公式提供了一种简单的方法来评估电场的径向分量,该径向分量是受有限接地电导率影响最大的分量,并且在Agrawal等人的论文中起着重要作用。 (1980)场-传输线耦合模型。检查了几种配置,它们具有不同的接地电导率值和不同的现场观察点。对所有模拟场分量进行了彻底的分析,并且还与“理想”场进行了比较,即理想接地场下可能存在的场。结果表明,对于随后的行程典型的通道基极电流和非常低的电导率,CR公式与参考公式存在一些偏差,但是它仍然代表着径向场分量的保守估计,因为它的作用范围不大。精确曲线。所开发的算法的特点是在CPU时间方面具有快速的性能,可用于多种应用,包括用于雷电感应过电压计算的耦合代码。

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