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Seismic Induced Ground Deformation and Ionospheric Perturbations of the 29 July 2021, M_w 8.2 Chignik Earthquake, Alaska

机译:Seismic Induced Ground Deformation and Ionospheric Perturbations of the 29 July 2021, M_w 8.2 Chignik Earthquake, Alaska

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摘要

The subsurface, surface, and ionospheric characteristics associated with the 29 July 2021 M~w 8.2 Chignik Earthquake are studied in detail using continuous Global Positioning System (cGPS) data over Alaska. The cGPS-inverted coseismic displacements demonstrate that the slip is distributed along the rupture area northeast of the epicenter with a maximum coseismic slip of ~3.85 m occurring at a depth of ~24.25 km. The vertical surface displacement estimated from the coseismic slip exhibits a similar deformation pattern with a maximum uplift of ~1.0 m over the highly slip area. The ionospheric electron density perturbations associated with the Chignik earthquake were investigated using cGPS-derived Total Electron Content (TEC) data. Unlike the northeast-directed coseismic rupture and surface uplift, the ionospheric imprints of this event are more dominant southwest of the epicenter. This study reveals that the Earth's magnetic field and the ionospheric background electron density significantly controlled the TEC perturbation orientation and amplitudes rather than the rupture propagation and coseismic uplift pattern.
机译:地下,表面和电离层特征与2021年7月29日详细研究了M ~ w 8.2 Chignik地震使用连续的全球定位系统(本金保证产品)数据在阿拉斯加。滑动位移证明东北沿断裂分布区域震中,最大同震的纸条~ 3.85米~ 24.25公里的深度。垂直的表面位移的估计同震的滑动展示类似的变形模式与最大~ 1.0 m的隆起高度滑移区。密度扰动与Chignik有关使用cGPS-derived地震了总电子含量(TEC)数据。northeast-directed同震断裂和表面这一事件的隆起,电离层痕迹西南更占主导地位的中心。本研究表明,地球的磁场背景场和电离层电子密度明显控制了侦探扰动方向和振幅比破裂传播和同震的隆起模式。

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