Lithosphere-atmosphere-ionosphere coupling associated with four Yutian earthquakes in China from GPS TEC and electromagnetic observations onboard satellites

IF 2.1 3区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS Journal of Geodynamics Pub Date : 2023-03-01 DOI:10.1016/j.jog.2022.101943
Xuemin Zhang , Jing Liu , Angelo De Santis , Loredana Perrone , Pan Xiong , Xin Zhang , Xiaohui Du
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Abstract

During 2008–2020, four strong earthquakes occurred in Yutian, Xinjiang Uygur Automous Region, northwest China, in particular, two M7 + and two M6 + earthquakes demonstrating the high tectonic activity of this region. We systematically use multiple electromagnetic data from satellites and ground, such as GIM TEC (Global Ionospheric Mapping Total Electron Content) published by JPL (Jet Propulsion Laboratory), and the ULF (Ultra Low Frequency) electromagnetic waves and plasma parameters onboard DEMETER (Detection of Electro-Magnetic Emission Transmitted from Earthquake Regions), Swarm and CSES (China Seismo-Electromagnetic Satellite) satellites. The ionospheric perturbations were revealed frequently around the four case studies, but mostly within 10 days before, over the epicentral area, and sometimes over its conjugate region at southern hemisphere. The abnormal amplitude is quite larger in years with high solar activity than in those with low solar activity. We employ the SAMI2 model to simulate the variations from the effects of E × B under different plasma background in 2008 and 2014 to explain the great difference in different solar years. The similarity of the anomalies in this region demonstrates the higher electromagnetic and chemical emissions, implying that the electric field is possibly generated by the preparation of the seismic events in the epicentral area inducing the ionospheric disturbances above this area and its conjugate region through this coupling channel.

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基于GPS TEC和卫星电磁观测的中国玉田四次地震的岩石圈-大气-电离层耦合
2008-2010年,西北新疆维吾尔自治区于田发生了4次强烈地震,特别是2次M7+和2次M6+地震,表明该地区具有较高的构造活动性。我们系统地使用了来自卫星和地面的多种电磁数据,如JPL(喷气推进实验室)发布的GIM-TEC(全球电离层总电子含量测绘),以及DEMETER(地震区电磁发射探测)上的ULF(超低频)电磁波和等离子体参数,Swarm和CSES(中国地震电磁卫星)卫星。电离层扰动在四个案例研究周围频繁出现,但大多是在10天前,在震中区域,有时在南半球的共轭区域。高太阳活动年份的异常振幅比低太阳活动年份大得多。我们使用SAMI2模型模拟了2008年和2014年不同等离子体背景下E×B效应的变化,以解释不同太阳年的巨大差异。该区域异常的相似性表明了更高的电磁和化学发射,这意味着电场可能是由震中区域的地震事件的准备产生的,通过该耦合通道在该区域及其共轭区域上方引发电离层扰动。
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来源期刊
Journal of Geodynamics
Journal of Geodynamics 地学-地球化学与地球物理
CiteScore
4.60
自引率
0.00%
发文量
21
审稿时长
6-12 weeks
期刊介绍: The Journal of Geodynamics is an international and interdisciplinary forum for the publication of results and discussions of solid earth research in geodetic, geophysical, geological and geochemical geodynamics, with special emphasis on the large scale processes involved.
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