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Gravity-driven postseismic deformation following the Mw 6.3 2009 L’Aquila (Italy) earthquake

机译:2009年Mw 6.3拉奎拉(意大利)地震后的重力驱动的地震后变形

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摘要

The present work focuses on the postseismic deformation observed in the region of L’Aquila (central Italy) following the Mw 6.3 earthquake that occurred on April 6, 2009. A new, 16-month-long dataset of COSMO-SkyMed SAR images was analysed using the Persistent Scatterer Pairs interferometric technique. The analysis revealed the existence of postseismic ground subsidence in the mountainous rocky area of Mt Ocre ridge, contiguous to the sedimentary plain that experienced coseismic subsidence. The postseismic subsidence was characterized by displacements of 10 to 35 mm along the SAR line of sight. In the Mt Ocre ridge, widespread morphological elements associated with gravitational spreading have been previously mapped. We tested the hypothesis that the postseismic subsidence of the Mt Ocre ridge compensates the loss of equilibrium induced by the nearby coseismic subsidence. Therefore, we simulated the coseismic and postseismic displacement fields via the finite element method. We included the gravitational load and fault slip and accounted for the geometrical and rheological characteristics of the area. We found that the elastoplastic behaviour of the material under gravitational loading best explains the observed postseismic displacement. These findings emphasize the role of gravity in the postseismic processes at the fault scale.
机译:本工作着重于2009年4月6日发生的6.3级地震之后在拉奎拉(意大利中部)地区观察到的地震后变形。分析了一个新的长达16个月的COSMO-SkyMed SAR图像数据集使用“持久散射体对”干涉技术。分析表明,在奥克雷山脊的山区岩石地区存在地震后地面沉降,毗邻经历过地震沉降的沉积平原。地震后沉降的特征是沿SAR视线的位移为10到35 mm。在奥克山山脊中,先前已经绘制了与重力扩散有关的广泛形态元素。我们检验了以下假设:Mt Ocre脊的地震后沉降补偿了附近同震沉降引起的平衡损失。因此,我们通过有限元方法模拟了同震和后震位移场。我们包括了重力载荷和断层滑动,并考虑了该区域的几何和流变特性。我们发现,重力作用下材料的弹塑性行为可以最好地解释观察到的地震后位移。这些发现强调了重力在断层尺度上在地震过程中的作用。

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