首页> 外文期刊>Journal of Asian earth sciences >Ionospheric disturbances triggered by the 25 April, 2015 M7.8 Gorkha earthquake, Nepal: Constraints from GPS TEC measurements
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Ionospheric disturbances triggered by the 25 April, 2015 M7.8 Gorkha earthquake, Nepal: Constraints from GPS TEC measurements

机译:由尼泊尔2015年4月25日M7.8地震引起的电离层扰动:GPS TEC测量的限制

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摘要

The ionosphere response to the April 11, 2015 (Mw 7.8) Gorkha earthquake, occurring in the Himalayan arc, is analysed using GPS Total Electron Content (TEC) measurements, from GPS sites in Nepal and India, situated both close to and far from the epicentre. In the near field, the Coseismic Ionospheric disturbance (CID) following the earthquake rupture propagation arrive east of the epicentre, within 5-7 min with a propagation velocity of 980 m/s, equal to the speed of the shock acoustic waves at the ionospheric heights, and on to the west with a reduced speed of 650 m/s, within 8-11 min, after the earthquake occurrence. The phenomenon of CID splitting into two modes, east and west of the epicentre is observed. In the far-field region, up to epicentral distances of 2200 km, Rayleigh wave induced ionospheric diSturbance are recorded with a propagation speed of 2.6 km/s. Higher TEC amplitude of 0.2-1.5 TECU is observed east of the epicentre compared to the west with 0.1-0.3 TECU. The characteristics of this dip-slip earthquake are well projected in the TEC waveforms. The ambient magnetic field in the mid latitudes prohibited the propagation of ionospheric disturbance in the northward direction. In the present study the observed primary CID is essentially in congruence with the rupture propagation of the earthquake in E-SE direction. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用尼泊尔和印度的GPS总电子含量(TEC)测量值,分析了喜马拉雅弧线在2015年4月11日(Mw 7.8)发生的Gorkha地震对电离层的响应。震中。在近场中,地震破裂传播后的同震电离层扰动(CID)在5-7分钟内到达震中中心以980 m / s的传播速度,等于电离层冲击声波的速度地震发生后8到11分钟内,高空以650 m / s的速度向西移动。观测到CID分为震中东部和西部两种模式的现象。在远场区域,直到震中距离达2200 km,记录到瑞利波引起的电离层扰动,传播速度为2.6 km / s。震中以东的TEC振幅为0.2-1.5 TECU,而西部的为0.1-0.3 TECU。在TEC波形中很好地预测了这种倾滑地震的特征。中纬度的环境磁场阻止电离层扰动向北传播。在本研究中,观测到的主要CID与E-SE方向地震的破裂传播基本一致。 (C)2016 Elsevier Ltd.保留所有权利。

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