Time Domain Analysis of the Effect of Apertures on the Shielding Effectiveness of Buildings

A. V, S. K., Ravishankar K
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引用次数: 1

Abstract

High intensity electric and magnetic fields produced by lightning discharge can penetrate through any structure in its vicinity. Installation of a sensitive component inside any structure complying the Electromagnetic Compatibility standards need the information of exposure limit of the equipment in the installation environment. Any structure provides natural shielding to electromagnetic field and its limit depends on the material properties. In addition the structure dimension plays key role in defining the limit of shielding. This paper investigates the effect of aperture on the shielding effectiveness of building structure made of construction material against lightning electromagnetic fields. Building structures constructed in computer aided design (CAD) tool, are subjected to lighting electromagnetic field in FEKO Electromagnetic simulation software. Time domain approach is used to compute the shielding effectives of the building for different structural variations. It is seen that apertures decrease the shielding effectiveness of the building . As the structure size increases the percentage decrease in shielding effectiveness due to the presence of aperture increases. For magnetic field, construction material does not provide considerable shielding.
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孔径对建筑物屏蔽效果影响的时域分析
雷击放电产生的高强度电场和磁场可以穿透其附近的任何结构。在符合电磁兼容标准的结构内部安装敏感元件时,需要了解设备在安装环境中的暴露限值信息。任何结构对电磁场都有天然的屏蔽作用,其极限取决于材料的性质。此外,结构尺寸对确定屏蔽极限起着关键作用。本文研究了孔径对建筑材料建筑结构对雷电电磁场屏蔽效果的影响。在计算机辅助设计(CAD)工具中构建的建筑物结构,在FEKO电磁仿真软件中受到光照电磁场的影响。采用时域方法计算了建筑物在不同结构变化情况下的屏蔽效应。可以看出,孔洞降低了建筑物的屏蔽效果。随着结构尺寸的增大,由于孔径的存在而导致的屏蔽效能下降百分比增加。对于磁场,建筑材料不能提供相当大的屏蔽作用。
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