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Amplification of seismic ground motion in the Tunis basin: Numerical BEM simulations vs experimental evidences

机译:突尼斯盆地地震地震动的放大:BEM数值模拟与实验证据

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This paper aims at the analysis of seismic wave amplification in a deep alluvial basin in the city of Tunis in Tunisia. This sedimentary basin is 3000 m wide and 350 m deep. Since the seismic hazard is significant in this area, the depth of the basin and the strong impedance ratio raise the need for an accurate estimation of seismic motion amplification. Various experimental investigations were performed in previous studies to characterize site effects. The boundary element method is considered herein to assess the parameter sensitivity of the amplification process and analyze the prevailing phenomena. The various frequencies of maximum amplification are correctly estimated by the BEM simulations. The maximum amplification level observed in the field is also well retrieved by the numerical simulations but, due to the sensitivity of the location of maximum amplification in space, the overall maximum amplification has to be considered. The influence of the wave-field incidence and material damping is also discussed.
机译:本文旨在分析突尼斯突尼斯市一个深冲积盆地中的地震波放大。该沉积盆地宽3000 m,深350 m。由于该区域的地震危险很大,盆地的深度和强阻抗比增加了对地震运动放大率进行准确估计的需要。在先前的研究中进行了各种实验研究以表征部位效应。本文考虑使用边界元方法来评估扩增过程的参数敏感性并分析普遍现象。通过BEM仿真可以正确估计各种最大放大频率。数值模拟也可以很好地恢复在野外观察到的最大扩增水平,但是由于空间中最大扩增位置的敏感性,必须考虑整体最大扩增。还讨论了波场入射和材料阻尼的影响。

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