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Source rupture process of the 2003 Tokachi-oki earthquake determined by joint inversion of teleseismic body wave and strong ground motion data

机译:用远震体波和强地面运动数据联合反演确定的2003年十胜冈地震震源破裂过程

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The spatio-temporal slip distribution of the 2003 Tokachi-oki, Japan, earthquake was estimated from teleseismic body wave and strong ground motion data. To perform stable inversion, we applied smoothing constraints to the slip distribution with respect to time and space, and determined the optimal weights of constraints using an optimized Akaike's Bayesian Information Criterion (ABIC). We found that the rupture propagates mainly along the dip direction, and the length of the rupture area is shorter than its width. The mean rise time in the shallow asperity is significantly longer than that in the deep asperity, which might be attributed to variable frictional properties or lower strength of the plate interface at shallower depths. The average rupture velocity of deep asperity extends to the shear-wave velocity. The derived source parameters are as follows: seismic moment Mo = 1.7 1021 Nm (Mw 8.0); source duration = 50 sec. We also estimated the shear stress change due to the mainshock on and around the major fault zone. It appears that many aftershocks on the plate boundary took place in and adjacent to the zones of stress increase due to the rupture of the mainshock.
机译:根据远震体波和强地面运动数据估算了2003年日本十胜冈地震的时空滑移分布。为了执行稳定的反演,我们将滑移约束应用于相对于时间和空间的滑动分布,并使用优化的Akaike贝叶斯信息准则(ABIC)确定约束的最佳权重。我们发现,破裂主要沿倾角方向传播,破裂区域的长度短于其宽度。浅表面粗糙处的平均上升时间明显长于深表面粗糙处的时间,这可能归因于较浅深度处的可变摩擦特性或较低的板界面强度。深孔的平均破裂速度扩展到剪​​切波速度。推导的震源参数如下:地震矩Mo = 1.7 1021 Nm(Mw 8.0);源持续时间= 50秒。我们还估计了主要断层带及其周围主震引起的剪应力变化。似乎由于主震破裂,在板块边界上发生了许多余震,并在应力增加区域附近发生了余震。

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