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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Numerical simulations of local thundercloud field enhancements caused by runaway avalanches seeded by cosmic rays and their role in lightning initiation
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Numerical simulations of local thundercloud field enhancements caused by runaway avalanches seeded by cosmic rays and their role in lightning initiation

机译:当地的雷云领域的数值模拟增强引起的失控的雪崩播种由宇宙射线和他们的角色在闪电初始化

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We investigate the possibility of the production of an ionized domain by the ionization of the atmosphere by cosmic rays amplified by relativistic runaway electron avalanches (RREAs), the polarization of which could lead to the localized boosting of thundercloud fields, triggering the sequence of processes leading to lightning development. For this goal, a 2D numerical model was developed of atmospheric discharges in a self-consistent electric field allowing for the kinetics of high-energy REs, low-energy electrons, and positive and negative ions. The effects are tested for cosmic ray air showers and for the continuous background of low-energy cosmic radiation. It is shown that lightning cannot be triggered by the joint action of the cosmic ray shower and RREAs. On the contrary, with realistic rates of the cloud charging, the RREAs seeded by low-energy cosmic rays, produce a plasma domain, at the edges of which the electric field of the cloud is enhanced above the magnitude required for the selfsustained growth of the free electron population, potentially resulting in lightning initiation.
机译:我们研究生产的可能性电离的域的电离气氛由宇宙射线放大相对论性电子雪崩失控(RREAs),这可能导致的两极分化雷云的局部增加字段,触发的顺序流程导致闪电的发展。数值模型是发达的大气在自洽电场放电允许高能REs的动力学,低能电子,和积极的和消极的离子。淋浴和连续的背景低能量宇宙辐射。闪电不能引发的联合行动宇宙射线的淋浴间和RREAs。相反,在实际利率的云充电时,由低能宇宙RREAs播种射线,产生等离子体域的边缘云的电场增强以上所需的大小自由电子的selfsustained增长人口,可能导致闪电启动。

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