A circuit model of electrical wiring nearby building structure for lightning surge analysis

IF 0.4 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Hideyuki Dei, Yoki Ikeda, Naoto Nagaoka
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引用次数: 0

Abstract

A model expressing beams, pillars, and electrical wiring in a building for lightning surge simulation by circuit analysis method is proposed in this paper. The proposed model expresses the self-surge impedance of the electrical wiring as a function of the distance between conductors and the radius of the electrical wiring. The mutual impedance is expressed by the distance between the surfaces of a structure and a nearby wire instead of the distance between the conductor centers. In the case of two conductors having far different radii in proximity, the distribution of electromagnetic fields around the two conductors is similar in horizontal and vertical arrangements. Thus, the electrical wiring nearby pillars can be treated as a horizontal conductor. The circuit analysis results show that the voltage difference generated between the structure and the electrical wiring is calculated more precisely by the proposed model than by the conventional model.

建筑物结构附近电线的电路模型,用于雷击浪涌分析
本文提出了一种用电路分析方法表示建筑物内的梁、柱和电线的模型,用于雷电浪涌仿真。所提出的模型将电线的自浪涌阻抗表示为导体之间的距离和电线半径的函数。相互阻抗由结构表面与附近导线之间的距离而不是导体中心之间的距离来表示。在两个导体的邻近半径相差很大的情况下,两导体周围的电磁场分布在水平和垂直方向上是相似的。因此,柱子附近的电线可以看作是水平导体。电路分析结果表明,与传统模型相比,该模型能更精确地计算出结构与电线之间产生的电压差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Electrical Engineering in Japan
Electrical Engineering in Japan 工程技术-工程:电子与电气
CiteScore
0.80
自引率
0.00%
发文量
51
审稿时长
4-8 weeks
期刊介绍: Electrical Engineering in Japan (EEJ) is an official journal of the Institute of Electrical Engineers of Japan (IEEJ). This authoritative journal is a translation of the Transactions of the Institute of Electrical Engineers of Japan. It publishes 16 issues a year on original research findings in Electrical Engineering with special focus on the science, technology and applications of electric power, such as power generation, transmission and conversion, electric railways (including magnetic levitation devices), motors, switching, power economics.
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