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Broadscale postseismic gravity change following the 2011 Tohoku-Oki earthquake and implication for deformation by viscoelastic relaxation and afterslip

机译:2011年东北冲积地震后发生的大规模地震后重力变化及其对粘弹性松弛和后滑的影响

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摘要

The analysis of GRACE gravity data revealed postseismic gravity increase by 6 μGal over a 500 km scale within a couple of years after the 2011 Tohoku-Oki earthquake, which is nearly 40–50% of the coseismic gravity change. It originates mostly from changes in the isotropic component corresponding to the Mrr moment tensor element. The exponential decay with rapid change in a year and gradual change afterward is a characteristic temporal pattern. Both viscoelastic relaxation and afterslip models produce reasonable agreement with the GRACE free-air gravity observation, while their Bouguer gravity patterns and seafloor vertical deformations are distinctly different. The postseismic gravity variation is best modeled by the biviscous relaxation with a transient and steady state viscosity of 1018 and 1019 Pa s, respectively, for the asthenosphere. Our calculated higher-resolution viscoelastic relaxation model, underlying the partially ruptured elastic lithosphere, yields the localized postseismic subsidence above the hypocenter reported from the GPS-acoustic seafloor surveying.
机译:GRACE重力数据的分析显示,在2011年东北冲积地震发生后的几年内,地震后重力在500公里范围内增加了6μGal,几乎是同震重力变化的40%至50%。它主要源自与Mrr矩张量元素对应的各向同性分量的变化。指数衰减随着一年的快速变化和随后的逐渐变化是一个特征性的时间模式。粘弹性松弛模型和后滑模型都与GRACE自由空气重力观测结果产生了合理的一致性,而它们的布格重力模式和海底垂直变形却明显不同。震后重力的最佳变化是用双粘性松弛模拟的,软流圈的瞬态和稳态粘度分别为10 18 和10 19 Pa s。我们计算出的高分辨率的粘弹性松弛模型(位于部分破裂的弹性岩石圈的下面)产生了GPS声学海底测量报告的震源上方的局部地震后沉降。

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