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Effects of conductivity perturbations in time-dependent global electric circuitmodel

机译:电导率扰动的影响时间依赖全球电动circuitmodel

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This paper contributes to the understanding of the influence of conductivity perturbations on the ionospheric potential in the Earth's global electric circuit (GEC). The conductivity perturbations appearing in the middle atmosphere produced by ray bursts from magnetars are studied first. The transient response of the ionospheric potential is modeled in this case, and timescales of interest are identified (0.01–10s). In this case modification of ionospheric potential is small. Additionally, the principal effects of topography and reduction of conductivity inside the thundercloud are studied. Both of these factors effectively increase the ionospheric potential for a classic source in the GEC represented by a current dipole leading to formation of two main charge centers of the thunderstorm. On the other hand, for GEC including topography and conductivity reduction in thunderclouds the contribution of sequence of negative cloud-to-ground lightning discharges to the ionospheric potential is decreased. Simulation results show a very good agreement with equivalent circuit models for conductivity perturbations with horizontal dimensions exceeding 20 km.
机译:本文有助于理解电导率的扰动的影响在地球的全球电离层的潜力电路(GEC)。大气扰动出现在中间从磁星是研究由射线爆发第一。潜力是在这种情况下,建模和时间表-10年代的兴趣识别(0.01)。电离层电位的情况下修改小。地形和减少内部电导率研究了雷云。有效提高电离层的因素通用电气潜在的一个经典的来源由电流偶极子导致的两个主要负责中心的形成雷雨。包括地形和电导率降低在雷云序列的贡献消极地闪电放电电离层电位却降低了。仿真结果表明一个很好的协议电导率与等效电路模型扰动与横向尺寸超过20公里。

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