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Three-Dimensional Numerical Simulation of Lightning Discharge Based on DBM Model

机译:基于DBM模型的雷电放电三维数值模拟。

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The modeling and simulation of lightning discharge are very important for the lightning protection engineering and lightning research. In this paper, with the thundercloud electrostatic model and potential equation in the space, a threedimensional(3-D) numerical simulation of lightning discharge at 50-m resolution was presented. The dielectric breakdown model(DBM) based on fractal theory and bidirectional leaders independent develop mechanism were employed to simulate the lightning leader progression. The effects of probability exponent n and internal E-field Ein along the channel on the on-ground E-field distribution were analyzed respectively. The results show that the distribution of E-field at the ground level below the stepped leader is similar to Gauss distribution. The peak value of the E-field at the ground level increases with the probability exponent and internal E-field along the channel decreasing.
机译:雷电放电的建模与仿真对于防雷工程和雷电研究具有十分重要的意义。本文利用雷云静电模型和空间中的电势方程,提出了分辨率为50 m的雷电放电三维(3-D)数值模拟。采用基于分形理论的电介质击穿模型(DBM)和双向引线独立发展机制来模拟闪电引线的发展。分别分析了沿通道的概率指数n和内部电场Ein对地面电场分布的影响。结果表明,阶梯状引线下方地面的电场分布与高斯分布相似。地平面上电场的峰值随概率指数的增加而增加,沿通道的内部电场减小。

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