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Viscoelastic relaxation and long-lasting after-slip following the 1997 Umbria-Marche (Central Italy) earthquakes.

机译:1997年翁布里亚-马什(意大利中部)地震后,粘弹性松弛和长时滑移。

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摘要

We combine Global Positioning System (GPS) measurements with forward modelling of vis- coelastic relaxation and after-slip to study the post-seismic deformation of the 1997 Umbria- Marche (Central Apennines) moderate shallow earthquake sequence. Campaign GPS mea- surements spanning the time period 1999–2003 are depicting a clear post-seismic deformation signal. Our results favour a normal faulting rupture model where most of the slip is located in the lower part of the seismogenic upper crust, consistent with the rupture models obtained from the inversion of strong motion data. The preferred rheological model, obtained from viscoelastic relaxation modelling, consists of an elastic upper crust, underlain by a transition zone with a viscosity of 1018 Pa s, while the rheology of deeper layers is not relevant for the observed time-span. Shallow fault creep and after-slip at the base of the seismogenic upper crust are the first order processes behind the observed post-seismic deformation. The deep after-slip, below the fault zone at about 8 km depth, acting as a basal shear through localized time-dependent deformation, identifies a rheological discontinuity decoupling the seismogenic upper crust from the low-viscosity transition zone.
机译:我们将全球定位系统(GPS)测量与粘弹性松弛和后滑动的正演模型相结合,以研究1997年翁布里亚-马尔凯(中亚平宁山脉)中度浅层地震序列的地震后变形。在1999年至2003年期间进行的GPS运动测量显示出清晰的地震后变形信号。我们的结果偏向于正常断层破裂模型,其中大部分滑动位于产地震上地壳的下部,这与从强运动数据反演获得的破裂模型一致。从粘弹性松弛模型获得的优选流变模型由弹性上地壳组成,该地壳下垫有过渡层,其粘度为1018 Pa s,而较深层的流变与观察到的时间跨度无关。浅地震断层蠕变和震源上地壳底部的后滑动是观测到的地震后变形背后的第一阶过程。在断层带下方约8 km的深度处的深层滑移,通过局部随时间变化的变形,作为基础剪切作用,表明流变学的不连续性将发震的上地壳与低粘度过渡带分离了。

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