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The physical background and GPS TEC processing technology for identification of ionospheric anomalies forming over seismically active zones and leading to GNSS signals degradation

机译:用于识别在地震活动区域的电离层异常的物理背景和GPS TEC处理技术,导致GNSS信号降解

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The recent extended studies have demonstrated that the low latitude ionosphere is very sensitive to the anomalous electric fields generated during the most last stage of the strong earthquake preparation (few days before the seismic shock). We can mention three main types of large scale (from several hundred up to several thousand km) forming over the seismically active zones: formation of positive/negative deviation of GPS TEC from undisturbed state, modification of the shape of equatorial anomaly (crests movement, changes of crest-to-trough relation, anomaly deformation), spread-F effect due to formation of plasma bubbles. Other characteristic features of seismo-ionospheric anomalies are the magnetically conjugated effect (anomaly appears also over the area magnetically conjugated to the impended epicentral area) and longitudinal effect (asymmetry in zonal direction to the position of impending epicenter) (S. A. Pulinets, International Journal of Geophysics, doi:10.1155/2012/131842, 2012).
机译:最近的扩展研究表明,低纬度电离层对在强烈地震准备最多阶段(在地震休克前几天)产生的异常电场非常敏感。我们可以提到三个主要类型的大规模(从几百高达几千公里),形成在地震活跃区:形成从静止状态GPS TEC的正/负偏差,赤道异常(波峰运动的形状的改变,冠状波特关系的变化,异常变形),由于等离子体泡沫形成引起的扩散F效应。地震电离层异常的其他特征是磁性共轭效果(异常出现在磁性缀合的区域,磁性缀合的区域)和纵向效应(局部局部的局部方向的不对称)(SA Pulinet,国际期刊地球物理,DOI:10.1155 / 2012/131842,2012)。

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