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首页> 外文期刊>Pure and Applied Geophysics >Spatial Variations of Aftershock Parameters and their Relation to Geodetic Slip Models for the 2010 Mw8.8 Maule and the 2011 Mw9.0 Tohoku-oki Earthquakes
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Spatial Variations of Aftershock Parameters and their Relation to Geodetic Slip Models for the 2010 Mw8.8 Maule and the 2011 Mw9.0 Tohoku-oki Earthquakes

机译:2010年Mw8.8 Maule和2011 Mw9.0东北隐地震余震参数的空间变化及其与大地滑移模型的关系

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摘要

Recent development in analysis tools and deployments of the geodetic and seismic instruments give an opportunity to investigate aftershock sequences at local scales, which is important for the seismic hazard assessment. In particular, we study the dependencies between aftershock sequences properties and deformational/geological data on a scale of the rupture extension of megathrust earthquakes. For this goal we use, on one hand, published models of inter-, co- and postseismic slip and geological information and, on the other hand, aftershock parameters, obtained by fitting a modified Epidemic Type Aftershock Sequence (ETAS) model. The altered ETAS model takes into account the mainshock rupture extension and it distinguishes between primary and the secondary aftershock triggering involved in the total seismicity rate. We estimate the Spearman correlation coefficients between the spatially distributed aftershock parameters estimated by the modified ETAS model and crustal physical properties for the Maule 2010 Mw8.8 and the Tohoku-oki 2011 Mw9.0 aftershock sequences. We find that: (1) modified ETAS model outperforms the classical one, when the mainshock rupture extension cannot be neglected and represented as a point source; (2) anomalous aftershock parameters occur in the areas of the reactivated fault systems; (3) aftershocks, regardless of their generation, tend to occur in the areas of high coseismic slip gradient, afterslip and interseismic coupling; (4) aftershock seismic moment releases preferentially in regions of large coseismic slip, coseismic slip gradient and interseismically locked areas; (5) b value tends to be smaller in interseismically locked regions.
机译:分析工具的最新发展以及大地测量和地震仪器的部署为研究局部尺度的余震序列提供了机会,这对于地震危险性评估非常重要。特别是,我们研究了余震序列特性与变形/地质数据在巨型逆冲地震破裂扩展尺度上的依赖关系。为了实现这一目标,我们一方面使用已发表的地震间、共震和地震后滑移和地质信息模型,另一方面,通过拟合改进的流行型余震序列 (ETAS) 模型获得的余震参数。改变后的ETAS模型考虑了主震破裂的延伸,并区分了总地震活动率中涉及的原发和次级余震触发。我们估计了修正后的ETAS模型估计的空间分布余震参数与Maule 2010 Mw8.8和东北2011 Mw9.0余震序列的地壳物理性质之间的Spearman相关系数。我们发现:(1)修正后的ETAS模型优于经典模型,当主激波破裂延伸不能被忽视并表示为点源时;(2)在重新激活的断层系统区域出现异常余震参数;(3)余震,无论其产生如何,都倾向于发生在高同震滑移梯度、余滑和震间耦合地区;(4)余震地震矩释放优先在大同震滑移、同震滑坡梯度和震间锁定区;(5)B值在地震间锁定区趋于较小。

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