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Numerical simulation of topographical and geological site effects. Applications to canonical topographies and Rognes hill, South East France

机译:地形和地质场地效应的数值模拟。在法国东南部典型地形和罗格尼斯山的应用

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摘要

A two-year seismological experiment in Rogues (South Eastern France) confirms the site effects responsible for the severe damage experienced during the 1909 Provence earthquake. Many experimental and numerical studies have been dedicated to quantify and understand the effect of topography on seismic ground motion. However, these local amplifications depend on many parameters and their causes are not yet fully known. Numerical simulation is an interesting tool to try to explain these phenomena and simplified models are helpful for parametric analysis. For this, we use a discontinuous Galerkin finite element method to study the amplification along 2D profiles. First, an extensive numerical study considering an idealized hill topography investigates the combined effects of the steepness, heterogeneity and the angle of incidence on the surface response and focuses in particular on strong amplifications recorded in gentle slope configurations. Secondly, simulations are applied to a realistic 2D profile of the Rogues area. The confrontation of these numerical results with data from a seismological survey help to confirm the influence of both the topography and in-depth geology.
机译:在Rogues(法国东南部)进行的为期两年的地震实验证实了造成1909年普罗旺斯地震的严重破坏的现场影响。许多实验和数值研究致力于量化和了解地形对地震地震动的影响。但是,这些局部扩增取决于许多参数,其原因尚不完全清楚。数值模拟是尝试解释这些现象的有趣工具,简化的模型有助于参数分析。为此,我们使用不连续的Galerkin有限元方法来研究沿2D轮廓的放大。首先,考虑理想山丘地形的广泛数值研究调查了陡度,非均质性和入射角对表面响应的综合影响,尤其着重于以缓坡构造记录的强放大率。其次,将模拟应用于Rogues区域的逼真的2D轮廓。这些数值结果与地震勘测数据的对立,有助于确认地形和深度地质的影响。

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