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Properties of the Aftershock Sequence of the 1999 M_w 7.1 Hector Mine Earthquake: Implications for Aftershock Hazard

机译:1999 M_w 7.1 Hector矿山地震余震序列的性质:对余震危害的影响

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摘要

We investigate the spatial and temporal seismicity parameters and the related probabilistic aftershock hazard for the aftershock sequence of the 1999 M_w 7.1 Hector Mine mainshock and compare it with the neighboring 1992 M_w 7.3 Landers sequence. Using a catalog of 11,000 earthquakes, we determine the earthquake size distribution (b-value), the aftershock decay rate (p-value), and the seismic activity rate (a-value). The b-values are high (b > 1.2) within the rupture area, significantly lower (b ≈ 0.7) north of the rupture area, and increase with time since the mainshock. Probabilistic aftershock hazard maps, computed automatically as early as 4 days after the mainshock, identified the northernmost part of the sequence as the highest-hazard region. These maps show a good agreement between the forecasts and the recorded large aftershocks. Based on the asymmetrical b-value and hazard patterns for both the Hector Mine and Landers sequences, we hypothesize that the mainshock rupture directivity and slip distribution influence aftershock hazard. Current static or dynamic stress triggering models cannot resolve this spatial and temporal evolution of the hazard. Stress tensor inversions of 1400 relocated first-motion focal mechanisms show predominantly a strike-slip stress state with a SW–NE trend of the greatest principal stress. The heterogeneity of the stress field is unusually high near the Hector Mine and Landers mainshock ruptures, particularly near patches of large slip.
机译:我们研究了1999 M_w 7.1赫克托雷矿主震余震序列的时空地震活动性参数以及相关的概率余震危害,并将其与邻近的1992 M_w 7.3 Landers序列进行了比较。使用11,000个地震的目录,我们确定地震的大小分布(b值),余震衰减率(p值)和地震活动率(a值)。在破裂区域内,b值较高(b> 1.2),在破裂区域以北b值明显较低(b≈0.7),并且自主震以来随时间增加。在主震发生后的第4天自动计算出的概率余震危害图将序列的最北部确定为最高危害区域。这些地图显示了预报与记录的大余震之间的良好一致性。基于赫克托矿山和兰德斯层序的不对称b值和危险性模式,我们假设主震破裂的方向性和滑动分布会影响余震危险性。当前的静态或动态应力触发模型无法解决危害的时空演变。 1400个重新定位的第一运动焦点机制的应力张量反转显示为走滑应力状态,其中SW-NE趋势为最大主应力。在赫克托矿和兰德斯主冲击破裂附近,特别是在大块滑动附近,应力场的非均质性异常高。

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