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Influence of frequency-dependent soil electrical parameters on the evaluation of lightning electromagnetic fields in air and underground

机译:频率相关的土壤电学参数对空气和地下雷电电磁场评估的影响

摘要

This paper is aimed at analyzing the influence of the frequency-dependent behavior of the ground electrical parameters (conductivity and ground permittivity) on the electromagnetic field radiated by a cloud-to-ground lightning return stroke. Both radiation in air (over the conducting ground plane) and underground are considered in the analysis. The adopted method is based on the classical Sommerfeld's theory and takes advantage of an efficient ad hoc numerical procedure to face with the slow converging Sommerfeld's integrals. This feature allows the electromagnetic field to be computed without any sort of mathematical approximation and, since it is carried out in the frequency domain, can be used either if the ground permittivity and conductivity are considered constant or if they vary with the working frequency with any functional law. Simulations have been performed to identify the cases in which the approximation of constant ground permittivity and conductivity leads to satisfactory results. It is shown that for soils with water contents of 2% to 10% (ground conductivities in the order of 0.001 to 0.01 S/m), the assumption of constant electrical parameters appears to be reasonable. However, for either very poorly conducting soils (10 S/m or so) or highly conducting soils (10 S/m), the electromagnetic field components appear to be significantly affected by the frequency dependence of the ground electrical parameters. Copyright 2009 by the American Geophysical Union.
机译:本文旨在分析地电参数(电导率和地介电常数)的频率相关行为对云对地雷电回程辐射电磁场的影响。分析中考虑了空气(在导电接地平面上)和地下的辐射。所采用的方法基于经典的Sommerfeld理论,并利用有效的自组织数值程序来面对缓慢收敛的Sommerfeld积分。此功能允许在不进行任何数学近似的情况下计算电磁场,并且由于它是在频域中进行的,因此如果接地电容率和电导率被认为是恒定的,或者如果它们随工作频率而变化,则可以使用它。功能法则。已经进行了仿真,以识别恒定介电常数和电导率近似导致令人满意的结果的情况。结果表明,对于含水量为2%至10%(地面电导率约为0.001至0.01 S / m)的土壤,恒定电参数的假设似乎是合理的。但是,对于导电性很差的土壤(大约10 S / m)或导电性很强的土壤(10 S / m),电磁场分量似乎受到地面电参数频率依赖性的显着影响。美国地球物理联盟版权所有2009。

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