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Influence of 2D heterogeneous elastic soil properties on surface ground motion spatial variability

机译:2D异质弹性土壤性能对表面地面运动空间变异性的影响

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摘要

Spatial variability of earthquake ground motion (SVEGM) refers to the differences in amplitude and phase between recordings of the same earthquake at different locations. In the near-surface, geological processes (sedimentation, erosion) and anthropogenic activities can lead to small scale spatial heterogeneities of soil mechanical properties, which may affect SVEGM. In this paper, the effect of shallow 2D spatial variability of the shear wave velocity (Vs) on the surface ground motion is assessed through a set of numerical experiments, using a simple 2D velocity structure (a sedimentary layer over a half-space). Non-linearity or damping are not considered in the wave propagation calculation in order to solely focus on the effects of soil elastic property variability. Vs is modeled as a random field using the EOLE method (Expansion Optimal Linear Estimation) and considering three statistical parameters: the coefficient of variation, and the horizontal and vertical auto correlation distances. Seismic ground motions are numerically simulated for a plane wave excitation with SV polarization. Modeling results clearly highlight the scattering of surface waves by ground heterogeneities, leading to large spatial variations in surface ground motion. We computed surface ground motion indicators (resonance frequency, spectral amplification, Arias intensity and duration) and we showed that their spatial variability is mainly controlled by the Vs coefficient of variation. A comparison between 2D and 1D ground motion probabilistic modeling shows that the 1D probabilistic approach may correctly reproduce average fundamental resonance frequencies and corresponding amplification. However, the 1D approach significantly under-predicts both ground motion amplification at higher frequencies and related variabilities, as well as Arias intensities and inferred durations, which are all controlled by the generation of locally diffracted surface waves.
机译:地震地面运动的空间变异(SVEGM)是指不同地区在同一地震录制之间的幅度和相位的差异。在近表面,地质过程(沉淀,腐蚀)和人为活性可能导致土壤机械性能的小规模空间异质性,这可能影响SVEGM。在本文中,通过一组数值实验,通过一组数值实验评估剪力波速度(Vs)对表面地面运动的浅2D空间可变性的影响,使用简单的2D速度结构(半空间上的沉积层)。在波传播计算中不考虑非线性或阻尼,以专注于土壤弹性性能变异性的影响。 VS使用EOTE方法(扩展最佳线性估计)和考虑三个统计参数:变化系数和水平和垂直自动相关距离。用于使用SV偏振的平面波激发进行数值模拟地震地面运动。建模结果清楚地突出了地面异质性表面波的散射,导致表面地面运动的大空间变化。我们计算了表面地面运动指示器(共振频率,光谱放大,arias强度和持续时间),我们表明它们的空间可变性主要由VS系数控制。 2D和1D地面运动概率建模的比较表明,1D概率方法可以正确地再现平均基本谐振频率和相应的放大。然而,1D方法在较高的频率和相关变性下显着地预测了地面运动扩增,以及各种各样的强度和推断持续时间,这些强度都通过产生局部衍射表面波来控制。

著录项

  • 来源
    《Soil Dynamics and Earthquake Engineering》 |2019年第8期|75-90|共16页
  • 作者单位

    Univ Grenoble Alpes Univ Savoie Mont Blanc CNRS IRD IPSTTAR ISTerre F-38000 Grenoble France|Lebanese Univ Fac Engn Geotochn Engn Sci Reaserch Ctr Engineerin & CSRI Beirut Lebanon;

    Univ Grenoble Alpes Univ Savoie Mont Blanc CNRS IRD IPSTTAR ISTerre F-38000 Grenoble France;

    Univ Grenoble Alpes Univ Savoie Mont Blanc CNRS IRD IPSTTAR ISTerre F-38000 Grenoble France;

    Lebanese Univ Fac Engn Geotochn Engn Sci Reaserch Ctr Engineerin & CSRI Beirut Lebanon;

    Cent Supelec Paris Saclay Univ CNRS UMR 8579 MSSMat Lab 3 Rue Joliot Curie F-91190 Gif Sur Yvette France;

    Lebanese Univ Fac Engn Geotochn Engn Sci Reaserch Ctr Engineerin & CSRI Beirut Lebanon;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Seismic response; Spatial variability; Probabilistic modeling;

    机译:地震反应;空间变异性;概率造型;

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