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Tridimensional reconstruction of the Co-Seismic Ionospheric Disturbance around the time of 2015 Nepal earthquake

机译:2015年尼泊尔地震前后同震电离层扰动的三维重建

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摘要

The Co-Seismic Ionospheric Disturbance of the 2015 Nepal earthquake is analyzed in this paper. GNSS data are used to obtain the Satellite-Station TEC sequences. After removing the de-trended TEC variation, a clear ionospheric disturbance was observed 10 min after the earthquake, while the geomagnetic conditions, solar activity, and weather condition remained calm according to the Kp, Dst, F10.7 indices and meteorological records during the period of interest. Computerized ionosphere tomography (CIT) is then used to present the tridimensional ionosphere variation with a 10-min time resolution. The CIT results indicate that (1) the disturbance of the ionospheric electron density above the epicenter during the 2015 Nepal earthquake is confined at a relatively low altitude (approximately 150-300 km); (2) the ionospheric disturbances on the west side and east sides of the epicenter are precisely opposite. A newly established electric field penetration model of the lithosphere-atmosphere-ionosphere coupling is used to investigate the potential physical mechanism.
机译:本文分析了2015年尼泊尔地震的同震电离层扰动。 GNSS数据用于获取卫星站TEC序列。消除下降趋势的TEC变化后,地震后10分钟观察到了明显的电离层扰动,而根据地震期间的Kp,Dst,F10.7指数和气象记录,地磁条件,太阳活动和天气条件保持平静。感兴趣的时间段。然后使用计算机电离层层析成像(CIT)来以10分钟的时间分辨率显示三维电离层变化。 CIT结果表明:(1)2015年尼泊尔地震中震中上方电离层电子密度的扰动仅限于相对较低的高度(大约150-300 km); (2)震中西侧和东侧的电离层扰动正好相反。利用新建立的岩石圈-大气-电离层耦合电场渗透模型研究了潜在的物理机制。

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