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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Evaluation of earthquake triggering during the 2005-2008 earthquake sequence on Qeshm Island, Iran
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Evaluation of earthquake triggering during the 2005-2008 earthquake sequence on Qeshm Island, Iran

机译:伊朗库什姆岛2005-2008年地震序列触发地震的评估

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Coseismic static Coulomb stress changes may either advance or retard the timing of subsequent earthquakes on nearby faults in a manner that depends both on the relative orientations of faults within the vicinity of the primary rupture, as well as on the postseismic redistribution of stress. Here we examine interferometric synthetic aperture radar (InSAR) data spanning two earthquakes that occurred in close temporal and spatial proximity on Qeshm Island in southern Iran. Remote observations of earthquakes such as ground deformation or seismic waves allow us to infer earthquake source parameters, but in general, a nonunique family of solutions is consistent with the data, given our understanding of data noise and the limitations of our ability to model the real Earth. Here, we explore methods for assessing and propagating InSAR noise through our entire analysis of the stress triggering potential between these two earthquakes. We generate a range of source models for each earthquake based both on InSAR and seismic observations and assess whether the expected static Coulomb stress change during the first earthquake is likely to have brought the second event closer to or further from failure. Some combinations support the hypothesis that the first earthquake brought the second fault closer to failure, whereas some do not. Fault plane geometries that agree with InSAR constraints are more likely to suggest that the first earthquake increased the likelihood of the second earthquake, those based on the Harvard and global centroid moment tensor tend to not support triggering between the two events.
机译:同震静态库仑应力变化可能以既取决于初次破裂附近的断层的相对方向,又取决于地震后应力的重新分布的方式,提前或延缓附近断层后续地震的发生。在这里,我们研究了跨越两次地震的合成孔径雷达(InSAR)数据,这些地震发生在伊朗南部的格什姆岛,在时空上都非常接近。对地震的远程观测(例如地面变形或地震波)使我们能够推断出地震震源参数,但是总的来说,鉴于我们对数据噪声的理解以及对真实地震数据建模能力的局限性,非唯一解系列与数据是一致的地球。在这里,我们通过对这两次地震之间的应力触发电位的完整分析来探索评估和传播InSAR噪声的方法。我们根据InSAR和地震观测结果为每个地震生成一系列震源模型,并评估在第一次地震中预期的静态库仑应力变化是否可能使第二次地震更接近或远离破坏。有些组合支持这样的假设:第一次地震使第二次断层更接近于失败,而有些则没有。符合InSAR约束的断层平面几何更有可能表明第一次地震增加了第二次地震的可能性,而基于哈佛和整体质心矩张量的断层几何往往不支持这两个事件之间的触发。

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