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Computer simulations on sprite initiation for realistic lightning models with higher frequency surges

机译:具有较高频率浪涌的逼真的闪电模型的精灵启动的计算机模拟

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摘要

[1] Computer simulations on transient luminous emissions in the mesosphere and lower ionosphere have been performed for realistic lightning modelings with fast-varying current surges (M components) superimposed on the lightning continuing current (CC). The algorithm used here is an electromagnetic (EM) code, which enables us to estimate self-consistently the reduced electric field, electron density, conductivity, and luminosity as a function of space and time by solving the Maxwell equations. It is found that M components in the CC with small amplitudes, but with a fast-varying EM effect, can initiate or enhance the occurrence of sprites. Even for a return stroke (RS) without CC, subsequent high-frequency current variations (like M components) are found to lead to dramatic changes in the sprite occurrence. The physics underlying these changes is studied by means of, e.g., temporal and spatial variations of luminosity, electron density, and conductivity. As the conclusion, the RS is a fundamental agency for spites, but high-frequency variations as EM effects exhibit an additional essential influence on sprite occurrence. These computational results are used to offer some useful ideas concerning the unsolved problems of sprites and halos, including polarity asymmetry, long-delay characteristics, and morphological shapes of sprites.
机译:[1]对中层和下层电离层中的瞬态发光发射进行了计算机仿真,以实现现实的雷电建模,在雷电持续电流(CC)上叠加快速变化的电涌(M分量)。此处使用的算法是电磁(EM)代码,通过求解麦克斯韦方程,我们可以根据空间和时间自洽地估计出减少的电场,电子密度,电导率和光度随空间和时间的变化。已经发现,CC中的M分量具有较小的幅度,但具有快速变化的EM效应,可以启动或增强Sprite的出现。即使对于没有CC的回程(RS),也发现随后的高频电流变化(如M分量)会导致子画面出现剧烈变化。通过例如发光度,电子密度和电导率的时间和空间变化研究这些变化背后的物理学。结论是,RS是精灵的基本代理,但是由于EM效应而引起的高频变化对精灵的出现产生了额外的基本影响。这些计算结果可用于提供有关精灵和光环未解决问题的一些有用想法,包括极性不对称,长时延特性和精灵的形态。

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