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- W2895281712 abstract "Undrained and drained Poisson's ratios are mechanical properties that control poroelastic rebound modelling but are still not well understood. Here, we utilized displacement data from the dense GPS network in northern Honshu and a few GPS/Acoustic sites in offshore regions to delineate Poisson's ratio by investigating poroelastic rebound after the 2011 Tohoku earthquake. GPS time-series after the 2011 Tohoku earthquake were modelled by afterslip, viscoelastic relaxation and poroelastic rebound as the post-seismic deformation, as well as by optimized undrained and drained Poisson's ratios. The estimated undrained and drained Poisson's ratios were found to be 0.34 and 0.25, respectively. The estimated surface displacements due to poroelastic rebound in the vicinity of the rupture region were as high as ∼36 cm horizontally, and ∼21 cm vertically (uplift). The afterslip-only model is prone to overestimating the displacement; hence, to significantly improve the data model fit, the use of viscoelastic relaxation and poroelastic rebound is preferable. Furthermore, poroelastic rebound is necessary to allow us to use near-field vertical data, such as GPS/Acoustic data, to better resolve the post-seismic slip distribution." @default.
- W2895281712 created "2018-10-12" @default.
- W2895281712 creator A5010755682 @default.
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- W2895281712 date "2018-10-01" @default.
- W2895281712 modified "2023-10-16" @default.
- W2895281712 title "Probing the Poisson's ratio of poroelastic rebound following the 2011 Mw 9.0 Tohoku earthquake" @default.
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- W2895281712 doi "https://doi.org/10.1093/gji/ggy403" @default.
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