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On the Performance of Grounding, Bonding, and Shielding Systems for Direct and Indirect Lightning Strikes

机译:关于直接和间接雷击的接地,粘接和屏蔽系统的性能

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A full-wave solution method of Maxwell's equations is adopted for the analysis of the performance of grounding, bonding, and shielding systems of a metallic enclosure subjected to direct and indirect lightning strikes. The method is based on a numerical solution of the electric field integral equation by the method of moments. An array of conducting wires and metallic surfaces is used to represent the lightning channel and structures in its proximity. An improved antenna theory model approach based on the concept of the distributed source is adopted for the electromagnetic analysis of indirect lightning. The methodology enables an efficient electromagnetic compatibility analysis of a combined network of metallic plates, wires, and cables exposed to direct and indirect lightning strikes. The effectiveness of most common protective schemes-namely grounding, shielding, and bonding-is examined for cables located inside a metallic enclosure with apertures. A safety assessment analysis is performed for the case of indirect lightning and is compared to the case where the lightning current is injected directly into the top of the enclosure.
机译:采用麦克斯韦方程的全波解决方法分析了经受直接和间接雷击的金属外壳的接地,粘接和屏蔽系统的性能。该方法基于通过矩的方法的电场积分方程的数值解。导线阵列和金属表面用于表示雷电通道和结构的邻近。采用基于分布源概念的改进的天线理论模型方法,用于间接闪电的电磁分析。该方法能够实现金属板,电线和电缆组合网络的有效电磁兼容性分析,暴露于直接和间接雷击。最常见的保护方案的有效性 - 即接地,屏蔽和粘接 - 用于位于具有孔的金属外壳内的电缆。对间接闪电的情况进行了安全评估分析,并且与雷电电流直接注入到外壳顶部的情况进行比较。

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