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Modeling of ionospheric magnetic field perturbations induced by earthquakes

机译:建模的电离层磁场地震引起的扰动

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The objective of this study is to present a simple coupled seismo-ionospheric model to account for magnetic field perturbations in response to geophysical phenomena such as Earthquakes or tsunamis. For this purpose, we include a simple gravity wave model in the two dimensional mid latitude ionosphere model SAMI2. Following an earthquake, the disturbances in the neutral atmosphere density and velocity associated with gravity waves propagate vertically upward up to ionospheric altitudes 150-350 km, where significant coupling between the neutral atmosphere and the ionosphere occurs. As a result, a rapid variation in the ionospheric plasma density and temperature is observed associated with the photoionization of the perturbed neutral density. This variation in the electron density leads in turn to a variation in the total electron content (TEC). Strong variations in the TEC are observed close to the epicenter which correspond to large plasma density perturbations in this region associated with the ion acoustic mode. The calculation of magnetic perturbations is based on a set of reduced MHD equations. These are solved numerically using the finite element code TOPO coupled with the mid latitude ionospheric model SAMI2. The coupling between the two codes accounts for the variations in neutral gas density and the collisional drag force between ions and neutrals. Two wave modes are considered: the shear Alfven mode and the compressional mode. The results of the magnetic field perturbations and of ions' velocity perturbations associated with the shear Alfven and the compressional modes are presented. Variations in the TEC values are also computed for the compressional mode by taking into account the density perturbations transverse to the magnetic field. The results representing TEC perturbations associated with the compressional mode show strong variations at high latitudes both as a function of time and latitude.
机译:本研究的目的是提出一个简单的耦合seismo-ionospheric模型来解释磁场扰动响应如地震、地球物理现象海啸。在二维中重力波模型纬度SAMI2电离层模型。地震,中性的干扰大气密度和速度有关重力波传播垂直向上电离层高度150 - 350公里,在那里重要的中性之间的耦合大气和电离层发生。因此,快速电离层的变化等离子体密度和温度相关的光致电离摄动中性密度。电子密度进而导致的变化总电子含量(TEC)。TEC的变化观察接近中心对应于大型等离子体这个地区密度扰动有关与离子声波模式。磁扰动是基于一组减少磁流体动力方程。使用有限元数值代码威尼斯平底渔船加上中期纬度电离层模型SAMI2。占中性的气体的变化密度和之间的碰撞阻力离子和中性色。剪切阿尔芬模式和压缩模式。磁场扰动的结果和相关离子的速度扰动剪切阿尔芬和压缩模式提出了。也为压缩模式的计算考虑到密度扰动横向磁场。代表TEC扰动有关压缩模式显示强烈的变化高纬度地区和作为时间的函数纬度。

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