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Bayesian inversion for finite fault earthquake source models – II: the 2011 great Tohoku-oki, Japan earthquake

机译:有限断层震源模型的贝叶斯反演II:2011年日本东北冲地震

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摘要

We present a fully Bayesian inversion of kinematic rupture parameters for the 2011 M_w 9 Tohoku-oki, Japan earthquake. Albeit computationally expensive, this approach to kinematic source modelling has the advantage of producing an ensemble of slip models that are consistent with physical a priori constraints, realistic data uncertainties, and realistic but simplistic uncertainties in the physics of the kinematic forward model, all without being biased by non-physical regularization constraints. Combining 1 Hz kinematic GPS, static GPS offsets, seafloor geodesy and near-field and far-field tsunami data into a massively parallel Monte Carlo simulation, we construct an ensemble of samples of the posterior probability density function describing the evolution of fault rupture. We find that most of the slip is concentrated in a depth range of 10–20 km from the trench, and that slip decreases towards the trench with significant displacements at the toe of wedge occurring in just a small region. Estimates of static stress drop and rupture velocity are ambiguous. Due to the spatial compactness of the fault rupture, the duration of the entire rupture was less than approximately 150 s.
机译:我们提出了2011年日本东北冲地震M_w 9的运动破裂参数的完整贝叶斯反演。尽管在计算上很昂贵,但是这种运动学源建模方法的优点是可以生成滑移模型的集合,这些集合与运动学前向约束的物理先验约束,现实数据不确定性以及现实但简单的不确定性相一致,而无需受非物理正则化约束的偏见。将1 Hz运动学GPS,静态GPS偏移,海底大地测量以及近场和远场海啸数据组合到大规模并行的蒙特卡洛模拟中,我们构造了后验概率密度函数样本集合,描述了断裂破裂的演化过程。我们发现,大多数滑移集中在距沟槽10–20 km的深度范围内,并且滑移向沟槽的方向逐渐减小,楔形脚趾的明显位移仅在很小的区域内发生。静态应力下降和破裂速度的估计是模棱两可的。由于断层破裂的空间紧凑性,整个破裂的持续时间少于约150 s。

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