首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >InSAR and GPS derived coseismic deformation and fault model of the 2017 Ms7.0 Jiuzhaigou earthquake in the Northeast Bayanhar block
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InSAR and GPS derived coseismic deformation and fault model of the 2017 Ms7.0 Jiuzhaigou earthquake in the Northeast Bayanhar block

机译:INSAR和GPS衍生的2017 MS7.0 MS7.0 MS7.0九寨沟地震的电影变形和故障模型在东北巴彦邦块

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摘要

On 8 August 2017, a Ms7.0 earthquake stroke the city of Jiuzhaigou, Sichuan, China. The Jiuzhaigou earthquake occurred on a buried fault in the vicinity of three well-known active faults and this event offers a unique opportunity to study tectonic structures in the epicentral region and stress transferring. Here we present coseismic displacement field maps for this earthquake using descending and ascending Sentinel-1A Interferometric Synthetic Aperture Radar (InSAR) data. Deformation covered an area of approximately 50 x 50 km, with a maximum line-of-sight (LOS) displacement of similar to 22 cm in ascending and similar to 14 cm in descending observations on the west side of the source fault. Based on InSAR and Global Positioning System (GPS) measurements, both separately and jointly, we constructed a one-segment model to invert the coseismic slip distribution and dip angle of this event. Our final fault slip model suggests that slip was concentrated at an upper depth of 15 km; there was a maximum slip of similar to 1.3 m and the rupture was dominated by a left-lateral strike-slip motion. The inverted geodetic moment was approximately 6.75 x 10(18) Nm, corresponding to a moment magnitude of Mw6.5, consistent with seismological results. The calculated static Coulomb stress changes indicate that most aftershocks occurred in stress increasing zones caused by the mainshock rupture; the Jiuzhaigou earthquake has brought the western part of the Tazang fault 0.1-0.4 MPa closer to failure, indicating an increasing seismic hazard in this region. The Coulomb stress changes caused by the 2008 Mw7.8 Wenchuan earthquake suggest that stress loading from this event acted as a trigger for the Jiuzhaigou earthquake.
机译:2017年8月8日,中国四川市九寨沟市的MS7.0地震中风。九寨沟地震发生在三个着名的积极故障附近的埋地断层上,这一活动提供了学习震中区域和应力转移中构造结构的独特机会。在这里,我们使用下降和上升的哨声-1a干涉性合成孔径雷达(Insar)数据呈现这种地震的电影位移场地图。变形覆盖了约50×50千米的面积,最大瞄准线(LOS)位移与22厘米的升序,类似于14厘米,在源故障的西侧下降观察中的下降观察。基于INSAR和全球定位系统(GPS)测量,既单独和共同,我们都构建了一个单段模型,以反转该事件的电动滑动分布和倾角。我们的最终故障滑移模型表明,滑动浓缩,高度为15公里;最大的情况下类似于1.3米,破裂是由左侧滑动运动的主导。倒置的大地测量力矩约为6.75×10(18)nm,对应于MW6.5的片刻幅度,与地震结果一致。计算出的静态库仑应力变化表明,大多数余震发生在由主轴破裂引起的压力增加区域;九寨沟地震已将西部的Tazang Fault的Western部分更接近失败,表明该地区的地震危害越来越多。由2008 MW7.8汶川地震造成的库仑应力变化表明,这一事件的压力负担担任九寨沟地震的触发器。

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