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Site effects in 3D basins using 1D and 2D models: an evaluation of the differences based on simulations of the seismic response of Euroseistest

机译:使用1D和2D模型在3D盆地中的场地效应:基于Euroseistest地震响应的模拟评估差异

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摘要

Site effects are one of the most predictable factors of destructive earthquake ground motion but results depend on the type of model chosen. We compare simulations of ground motion for a 3D model of the Mygdonian basin in northern Greece (Euroseistest) using different approximation for this basin. Site effects predicted using simple 1D models at many points inside the basin are compared to site effects predicted using four different 2D cross sections across the basin and with results for a full 3D simulation. Surface topography was neglected but anelastic attenuation was included in the simulations. We show that lateral heterogeneity may increase ground motion amplification by 100 %. Larger amplification is distributed in a wide frequency range, and amplification may occur at frequencies different from the expected resonant frequencies for the soil column. In contrast, on a different cross section, smaller conversion of incident energy into surface waves and larger dispersion leads to similar amplitudes of ground motion for 2D and 1D models. In general, results from 2D simulations are similar to those from a complete 3D model. 2D models may overestimate local surface wave amplitudes, especially when the boundaries of the basin are oblique to the selected cross section. However, the differences between 2D and 3D site effects are small, especially in regard of the difficulties and uncertainties associated to building a reliable 3D model for a large basin.
机译:场地效应是破坏性地震地面运动最可预测的因素之一,但结果取决于所选模型的类型。我们比较了希腊北部(Euroseistest)的Mygdonian盆地3D模型的地面运动模拟,使用了该盆地的不同近似值。将使用简单的1D模型在盆地内部的许多点预测的场地效果与使用整个盆地的四个不同2D横截面预测的场地效果进行比较,并进行完整的3D模拟。表面形貌被忽略,但是在模拟中包括了弹性衰减。我们表明,横向异质性可能会使地震动放大率提高100%。较大的放大倍数分布在较宽的频率范围内,并且放大倍数可能发生在与土柱的预期共振频率不同的频率上。相反,在不同的横截面上,入射能量到表面波的较小转换和较大的色散会导致2D和1D模型的地面运动振幅相似。通常,来自2D模拟的结果与来自完整3D模型的结果相似。 2D模型可能会高估局部表面波振幅,尤其是在盆地边界倾斜于所选横截面的情况下。但是,2D和3D站点效果之间的差异很小,特别是在为大型盆地建立可靠的3D模型方面存在困难和不确定性方面。

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