A'/> Deep postseismic viscoelastic relaxation excited by an intraslab normal fault earthquake in the Chile subduction zone
首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Deep postseismic viscoelastic relaxation excited by an intraslab normal fault earthquake in the Chile subduction zone
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Deep postseismic viscoelastic relaxation excited by an intraslab normal fault earthquake in the Chile subduction zone

机译:智利俯冲区的intraslab常规故障地震激发了深度后粘弹性松弛

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Abstract The 2005 M w 7.8 Tarapaca earthquake was the result of normal faulting on a west-dipping plane at a depth of ~90km within the subducting slab down-dip of the North Chilean gap that partially ruptured in the 2014 M 8.2 Iquique earthquake. We use Envisat observations of nearly four years of postseismic deformation following the earthquake, together with some survey GPS measurements, to investigate the viscoelastic relaxation response of the surrounding upper mantle to the coseismic stress. We constrain the rheological structure by testing various 3D models, taking into account the vertical and lateral heterogeneities in viscosity that one would expect in a subduction zone environment. A viscosity of 4–8×1018 Pas for the continental mantle asthenosphere fits both InSAR line-of-sight (LOS) and GPS horizontal displacements reasonably well. In order to test whether the Tarapaca earthquake and associated postseismic relaxation could have triggered the 2014 Iquique sequence, we computed the Coulomb stress change induced by the co- and postseismic deformation following the Tarapaca earthquake on the megathrust interface and nodal planes of its M 6.7 foreshock. These static stress calculations show that the Tarapaca earthquake may have an indirect influence on the Iquique earthquake, via loading of the M 6.7
机译:<![cdata [ 抽象 2005 M w 7.8 tarapaca地震是西浸平面上正常断层的结果,深度〜 90 在北智利差距的下降板下降,在2014年的北智隙差点中,部分地在2014年中断 M 8.2伊基克地震。我们使用近四年的地震后近四年的近四年的envisat观察,以及一些调查GPS测量,研究周围的上部地幔与电影压应力的粘弹性松弛响应。我们通过测试各种3D模型来限制流变结构,考虑到粘度的垂直和横向异质性,即人们将期望在俯冲区域环境中。粘度为4-8 × 10 18 PA 用于欧式地幔的近距离展示侧面展示(LOS)和GPS水平位移。为了测试Tarapaca地震和相关的后近的后近突发,我们计算了塔拉帕卡地震术后巨大界面和其 m 6.7 foreShock。这些静态应力计算表明,通过加载 m 6.7

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