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3D soil structure of the Mygdonian basin for site response analysis

机译:Mygdonian盆地的3D土壤结构用于场地响应分析

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The 3D structure of the Mygdonian sedimentary basin (N. Greece) is investigated. The aim of this study is to propose a 3D model of this sedimentary structure that can later be used to model the seismic records currently being obtained by the permanent accelerograph network operating in the area. This model builds on previous efforts and incorporates new data. The geometry and dynamic properties of the soil layers were inverted using data from microtremor array measurements, seismic refraction profiles, boreholes, and geotechnical investigations. Phase-velocity dispersion curves of Rayleigh waves were determined at 27 sites in the basin using the spatial autocorrelation method (SPAC) introduced by Aki[1]. S-wave velocity profiles were inverted from these dispersion curves and the whole valley structure was interpolated using our new results and all previously available data. The proposed 3D model describes the geometry and shear-wave velocities of the Mygdonian and pre-Mygdonian sedimentary systems, and the top bedrock surface. Our results indicate that this 3D model correctly reflects the geometry and dynamic properties of the sedimentary layers. The case of Euroseistest, where the subsoil structure is the result of bringing together many disparate data, could be used as an example for similar alluvial basins throughout the world, where usually only scarce data is available.
机译:研究了Mygdonian沉积盆地(希腊北部)的3D结构。这项研究的目的是提出这种沉积结构的3D模型,以后可以用来对该地区的永久性加速度计网络目前正在获取的地震记录进行建模。该模型建立在先前的努力基础之上,并合并了新数据。利用微震阵列测量,地震折射剖面,井眼和岩土研究获得的数据,对土壤层的几何形状和动态特性进行了反演。利用Aki [1]提出的空间自相关方法(SPAC),在盆地27个位置确定了瑞利波的相速度色散曲线。从这些频散曲线中反转了S波速度剖面,并使用我们的新结果和所有先前可获得的数据对整个谷结构进行了插值。拟议的3D模型描述了Mygdonian和Mygdonian以前的沉积系统的几何形状和剪切波速度,以及基岩顶面。我们的结果表明,该3D模型正确反映了沉积层的几何形状和动力学特性。 Euroseistest案例的底土结构是汇集了许多不同数据的结果,可以作为世界上类似冲积盆地的一个例子,而这些地区通常只有很少的数据。

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