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Building a three dimensional model of the active Plio-Quaternary basin of Argostoli (Cephalonia Island, Greece): An integrated geophysical and geological approach

机译:建立阿格洛斯托利(Cephalonia Island,Greece)的活性Plio-armation盆地的三维模型:综合地球物理和地质方法

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This work is a multidisciplinary approach from geological and geophysical surveys to build a 3D geological model of Argostoli Basin (Cephalonia Island, Greece) aiming to be used for computational 3D simulation of seismic motion. Cephalonia Island is located at the north-western end of the Aegean subduction frontal thrust that is linked to the dextral Cephalonia Transform Fault (west of Cephalonia) where the seismic hazard is high in terms of earthquake frequency and magnitude. The Plio-Quaternary Koutavos-Argostoli basin site was selected within the French Research Agency PIA SINAPS@ project (www.institut-seism.fr/projets/sinaps/ - last accessed on November 25th 2019) to host a vertical accelerometer array. The long-term goal is to validate three-dimensional nonlinear numerical simulation codes to assess the site-specific amplification and nonlinearity. Herein the geological and geophysical surveys carried out from 2011 to 2017 are presented and in particular the complementary investigations that led to the identification of the main stratigraphic units and their structures. In addition, coral debris sampled from the vertical array deep borehole cores were used for Th-230/U-234 measurements, which confirmed the Pleistocene age of the Koutavos basin. The characterization of the three-dimensional structure of the stratigraphic units was achieved by coupling geological cross-sections (i.e., depth geometry) and geophysical surveys based of surface wave analysis.
机译:这项工作是来自地质和地球物理调查的多学科方法,建立阿格洛斯托利盆地(Cephalonia岛,希腊)的3D地质模型,旨在用于地震运动的计算3D模拟。 Cephalonia Island位于爱琴海郊区的西北末端前推,与右旋心阳炎变换故障(位于头顶)的地震危险在地震频率和幅度方面。 Plio-armaternary Koutavos-Aggostoli盆地网站被选中在法国研究机构Pia Sinaps @项目(www.institutututisism.fr/projets/sinaps/ - 2019年11月25日访问)举办垂直加速度计阵列。长期目标是验证三维非线性数值模拟码,以评估特定于站点的放大和非线性。这里提出了从2011年到2017年实施的地质和地球物理调查,特别是互补调查,导致识别主要地层单位及其结构。此外,从垂直阵列深层钻孔核中取样的珊瑚碎片用于TH-230 / U-234测量,证实了Koutavos盆地的百良生水时代。通过基于表面波分析的地质横截面(即,深度几何)和地球物理调查来实现地层单元的三维结构的表征。

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