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首页> 外文期刊>Bulletin of the Seismological Society of America >Abruzzo, Italy, earthquakes of April 2009: Heterogeneous fault-slip models and stress transfer from accurate inversion of ENVISAT-InSAR data
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Abruzzo, Italy, earthquakes of April 2009: Heterogeneous fault-slip models and stress transfer from accurate inversion of ENVISAT-InSAR data

机译:意大利阿布鲁佐(Abruzzo),2009年4月地震:ENVISAT-InSAR数据精确反演的非均质断层滑动模型和应力传递

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摘要

The seismic sequence that occurred in the Abruzzo Apennines near L'Aquila (Italy) in April 2009 caused extensive damage and a large number of casualties (more than 300). The earthquake struck an area in the Italian Apennines chain where several faults, belonging to adjacent seismotectonic domains, create a complex tectonic regime resulting from the interaction among regional stress buildup, local stress changes caused by individual earthquakes, and viscous-elastic stress relaxation. Understanding such complex interaction in the Apennines can lead to a large step forward in the seismic risk mitigation in Italy. The Abruzzo earthquake has been very well recorded by interferometric synthetic aperture radar (InSAR) data, much better than the first Italian earthquake ever recorded by satellites, namely, the 1997 Umbria-Marche earthquake. ENVISAT (ENVIronmental SATellite) data for the Abruzzo earthquake are, in fact, very clear and allow an accurate reconstruction of the faulting mechanism. We present here an accurate inversion of vertical deformation data obtained by ENVISAT images, aimed to give a detailed reconstruction of the fault geometry and slip distribution. The resulting fault models are then used to compute, by a suitable theoretical model based on the elastic dislocation theory, the stress changes induced on the neighboring faults. The correlation of the subsequent mainshocks and aftershocks of the Abruzzo sequence with the volumes undergoing increasing Coulomb stress clearly evidence the triggering effect of coseismic stress changes on further seismicity. Moreover, this analysis put in evidence which seismotectonic domains have been more heavily charged by stress released by the Abruzzo mainshocks. The most important faults significantly charged by the Abruzzo sequence belong to the Sulmona and Avezzano tectonic domains. Taking into account the average regional stress buildup in the area, the positive Coulomb stress changes caused by this earthquake can be seen as anticipating the next earthquakes in the neighboring domains of 15-20 yr.
机译:2009年4月,发生在意大利拉奎拉(L'Aquila)附近的阿布鲁佐(Abruzzo)亚平宁山脉(Abruzzo Apennines)发生的地震序列造成了广泛的破坏,并造成大量人员伤亡(超过300人)。地震袭击了意大利亚平宁山脉的一个区域,该区域的几个断层属于相邻的地震构造区域,由于区域应力累积,个别地震引起的局部应力变化以及粘弹性应力松弛之间的相互作用,形成了复杂的构造机制。了解亚平宁山脉中如此复杂的相互作用可以使意大利在减轻地震风险方面迈出一大步。干涉式合成孔径雷达(InSAR)数据已经很好地记录了阿布鲁佐地震,比有史以来第一次由卫星记录的意大利地震,即1997年翁布里亚-马尔什地震更好。实际上,阿布鲁佐地震的ENVISAT(环境卫星)数据非常清楚,可以准确地重建断层机制。我们在这里提出由ENVISAT图像获得的垂直变形数据的准确反演,目的是对断层几何形状和滑动分布进行详细的重建。然后,基于弹性位错理论,通过合适的理论模型将所得的断层模型用于计算在相邻断层上引起的应力变化。阿布鲁佐序列随后的主震和余震与经历不断增加的库仑应力的相关性清楚地证明了同震应力变化对进一步地震活动的触发作用。此外,该分析提供了证据,表明阿布鲁佐主震释放的应力使构造构造区域带了更多电荷。阿布鲁佐层序充斥的最重要的断层属于苏尔莫纳和阿维扎诺构造域。考虑到该地区平均区域应力的累积,这次地震引起的库仑应力正变化可以看作是预期在15-20年附近区域内的下一次地震。

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