Numerical Study on Transient Magnetic Field inside Ultra High-Rise Building during Lightning Stroke

Qibin Zhou, Jingjie Ye, Yanyong Mao, Zhen Yang
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Abstract

Transient electromagnetic field will endanger the safety and normal operation of personnel and equipment inside the an ultra high-rise building when lightning strikes at it. The electromagnetic field method is more efficient to analyze the electromagnetic environment of lightning strike at large and complex buildings. By adopting the finite element method (FEM) in the frequency domain, the electromagnetic field method is used to evaluate the magnetic field in a building and validated by comparing with experiment results. With this method, a simplified model of the 488.9m ultra high-rise building, Chengdu Zhonghai Tower, is established and the magnetic field distribution inside this building is evaluated and analyzed. The simulation results are valuable for optimizing the installation of sensitive equipment in this building and can also give guidelines for improving the design of the lightning protection system (LPS) of ultra high-rise buildings.
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雷击时超高层建筑内部瞬变磁场数值研究
超高层建筑被雷击时,会产生瞬变电磁场,危及建筑物内人员和设备的安全及正常运行。电磁场法对大型复杂建筑物雷击的电磁环境分析更为有效。采用频域有限元法,将电磁场法应用于某建筑物的磁场评估,并与实验结果进行对比验证。利用该方法建立了488.9m超高层建筑成都中海大厦的简化模型,并对该建筑内部的磁场分布进行了评价和分析。仿真结果对该建筑敏感设备的优化安装具有一定的参考价值,也可为超高层建筑防雷系统的改进设计提供指导。
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