首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >FDTD simulation of LEMP propagation over lossy ground: Influence of distance, ground conductivity, and source parameters
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FDTD simulation of LEMP propagation over lossy ground: Influence of distance, ground conductivity, and source parameters

机译:LEMP在有损地面上传播的FDTD模拟:距离,地面电导率和源参数的影响

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We have computed lightning electromagnetic pulses (LEMPs), including the azimuthal magnetic field Hφ, vertical electric field Ez, and horizontal (radial) electric field Eh that propagated over 5 to 200 km of flat lossy ground, using the finite difference time domain (FDTD) method in the 2-D cylindrical coordinate system. This is the first systematic full-wave study of LEMP propagation effects based on a realistic return-stroke model and including the complete return-stroke frequency range. Influences of the return-stroke wavefront speed (ranging from c/2 to c, where c is the speed of light), current risetime (ranging from 0.5 to 5 μs), and ground conductivity (ranging from 0.1mS/m to ∞) on Hφ, Ez, and Eh have been investigated. Also, the FDTD-computed waveforms of Eh have been compared with the corresponding ones computed using the Cooray-Rubinstein formula. Peaks of Hφ, Ez, and Eh are nearly proportional to the return-stroke wavefront speed. The peak of Eh decreaseswith increasing current risetime,while those of Hφ and Ez are only slightly influenced by it. The peaks of Hφ and Ez are essentially independent of the ground conductivity at a distance of 5 km. Beyond this distance, they appreciably decrease relative to the perfectly conducting ground case, and the decrease is stronger for lower ground conductivity values. The peak of Eh increases with decreasing ground conductivity. The computed Eh/Ez is consistent with measurements of Thomson et al. (1988). The observed decrease of Ez peak and increase of Ez risetime due to propagation over 200 km of Florida soil are reasonably well reproduced by the FDTD simulation with ground conductivity of 1mS/m.
机译:我们已经使用有限差分时域(FDTD)计算了雷电电磁脉冲(LEMP),包括在5至200 km的平坦有损耗地面上传播的方位磁场Hφ,垂直电场Ez和水平(径向)电场Eh。 )方法在二维圆柱坐标系中。这是基于现实的回程模型并包括完整的回程频率范围的LEMP传播效应的首次系统全波研究。回程波前速度(从c / 2到c,其中c是光速),电流上升时间(从0.5到5μs范围)和地电导率(从0.1mS / m到∞)的影响对Hφ,Ez和Eh进行了研究。同样,已将Eh的FDTD计算波形与使用Cooray-Rubinstein公式计算的相应波形进行了比较。 Hφ,Ez和Eh的峰值几乎与回程波前速度成正比。 Eh的峰值随电流上升时间的增加而减小,而Hφ和Ez的峰值仅受其影响。 Hφ和Ez的峰值在5 km的距离上基本上与地面电导率无关。超过此距离,它们相对于完美导电的接地情况会明显减小,对于较低的接地电导率值,减小幅度更大。 Eh的峰值随地面电导率的降低而增加。计算的Eh / Ez与Thomson等人的测量结果一致。 (1988)。通过FDTD模拟以地面电导率为1mS / m合理地再现了由于在佛罗里达州200多公里土壤中传播而导致的观测到的Ez峰值下降和Ez上升时间增加。

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