纳米锻造对建筑材料屏蔽效果影响的定量分析

K. Ravishankar, A. V, S. K.
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引用次数: 2

摘要

雷击放电产生的高强度电场和磁场可以穿透附近的任何建筑物。在暴露环境中,墙体材料对结构允许的场侵彻程度起着重要的决定作用。此类结构内的任何敏感设备都可能无意中对暴露的磁场产生反应,因此最好了解为设备提供的屏蔽以确保安全运行。在时域上量化了由混凝土和玻璃纤维增强石膏(GFRG)构成的结构对雷电电磁场穿透的屏蔽效果。在FEKO电磁仿真软件中进行仿真研究。为了研究纳米锻造对结构屏蔽性能的影响,在基层混凝土中加入碳纳米管(CNT)进行改性。纳米锻造基层混凝土材料的屏蔽效果显著提高。此外,碳纳米管混合混凝土填料有望改善GFRG面板提供的电场屏蔽,从而增加了安装优势。对于磁场,建筑材料不提供相当大的屏蔽。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantitative Analysis of the Effect of Nanoforging on the Shielding Effectiveness of Building Construction Materials
High intensity electric and magnetic fields produced by lightning discharge can penetrate through any structure in the vicinity. In the exposure environment, the wall materials play significant role in deciding the extent of field penetration allowed by structures. Any sensitive equipment inside such structures may respond unintentionally to the field exposed and it is advisable to know the shielding provided to the equipment to ensure safe operation. The paper quantifies the shielding effectiveness provided by structure made of concrete and glass fiber reinforced gypsum (GFRG) against lightning electromagnetic field penetration in time domain. Simulation study is conducted in FEKO electromagnetic simulation software. To study the effect of nano forging on the shielding properties of structures, the base concrete is modified with addition of carbon nano tubes (CNT). Substantial increase in shielding effectiveness is noted on nano forged base concrete material. Besides, CNT mixed concrete fillers promises improvement in the electric field shielding offered by GFRG panels thus adding to the installation advantage. For magnetic field, construction material does not render considerable shielding.
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