2022年7月至12月伊朗扎格罗斯山脉法尔斯弧东南部的地震序列

Malte Metz, Behnam Maleki Asayesh, Mohammad Mohseni Aref, Mohammadreza Jamalreyhani, Pınar Büyükakpınar, Torsten Dahm
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摘要

在2023年7月1日的两个小时内,伊朗法尔斯弧东侧发生了三次5.8-6.0级地震。在接下来的几个月里,以伊朗和阿拉伯板块碰撞、逆冲断层和盐底液作用为特征的地区发生了120多次3.1-5.2级余震,其中最大的两次余震发生在2023年7月23日的1分钟内,在空间上彼此相邻。我们使用了不同的技术,如联合过程中地震和卫星变形数据的反演和余震定位,对大主震和余震进行了分析。我们的研究结果表明,在该地区较低的沉积盖层内,逆冲断层的活动伴随着较大深度的高余震活动,支持了有争议的法尔斯弧碰撞期间地壳应变解耦模型。我们解决了地震和可能由余震引起的联合地震和卫星变形反演之间的震级差异>0.2个震级单位,从而可以在国际机构的结果和早期研究之间建立桥梁。我们还发现了在沉积盖层和基底内激活相同或相邻断层的双重事件和三重事件的证据
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July-December 2022 earthquake sequence in the southeastern Fars arc of Zagros mountains, Iran
Within two hours on 01 July 2023, three earthquakes of Mw 5.8-6.0 hit the SE Fars arc, Iran. In the following months, the region characterized by the collision of the Iranian and the Arabian plate, thrust faulting, and salt diapirism was stroke by more than 120 aftershocks of mL 3.1-5.2, of which two of the largest events occurred within one minute on 23 July 2023 in spatial vicinity to each other. We analyzed both the large mainshocks and aftershocks using different techniques, such as the inversion of seismic and satellite deformation data in a joint process and aftershock relocation. Our results indicate the activation of thrust faults within the lower sedimentary cover of the region along with high aftershock activity in significantly larger depth, supporting the controversial model of a crustal strain decoupling during the collision in the Fars Arc. We resolved a magnitude difference of >0.2 magnitude units between seismic and joint seismic and satellite deformation inversions probably caused by afterslip, thereby allowing to bridge between results from international agencies and earlier studies. We also find evidence for an event doublet and triplet activating the same or adjacent faults within the sedimentary cover and the basement
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