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FDTD Simulation of LEMPs Considering Ground Geometry and Grounded Structure

机译:考虑地面几何和接地结构的甲板的FDTD模拟

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Radiation components of vertical electric field and azimuthal magnetic field, generated by a vertical lightning return stroke attached to a flat, well-conducting ground, are inversely proportional to the horizontal distance from the lightning return-stroke channel. Field magnitudes at far distances are reduced by a low-conducting ground, while they are enhanced by the presence of a tall grounded strike object. In this paper, vertical electric and azimuthal magnetic fields generated by a lightning strike to the top of a mountain, those due to a lightning strike to the top of a tall grounded object on the top of a mountain, are computed using the finite-difference time-domain (FDTD) method in the two-dimensional (2D) cylindrical coordinate system. Computed results for these cases are then compared with corresponding results computed for a lightning strike to flat ground.
机译:通过附接到平坦的良好导电地的垂直闪电返回行程产生的垂直电场和方位角磁场的辐射分量与距闪电返回行程通道的水平距离成反比。通过低导电地面,远距离的场幅度减小,而它们通过存在高大的接地攻击物体而增强。在本文中,通过雷击到山顶产生的垂直电气和方位角磁场,由于雷击到山顶上的高大接地物体顶部的雷击,使用有限差异计算二维(2D)圆柱坐标系中的时域(FDTD)方法。然后将这些情况的计算结果与计算到平面的雷击的相应结果进行比较。

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