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Influence of the variability of soil profile properties on weak and strong seismic response

机译:土壤轮廓特性变异性对弱和强烈地震反应的影响

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摘要

Characterizing the potential effect of local site conditions on the amplification of ground motions is a critical aspect of seismic hazard and risk assessment. The aim of this study is to investigate the reliability and the limit of using the average shear wave velocity in the upper 30 m of the soil profile v(s,30), as single proxy, to characterize seismic site effects for weak and strong events.To this regard, a dataset of 300 one-dimensional soil profiles with a given v(s,30) are generated through a Monte Carlo approach. Their seismic responses are computed for a set of 40 real accelerograms, with different seismic features. The vertical propagation from the bottom of the generated columns is modeled using a finite element spatial discretization, accounting for both linear and nonlinear soil behavior.The site dominant frequency f(0) and the shear wave velocity gradient in the profile B-30 are proposed as proxies to characterize seismic site effects and the variability of the response spectra for the numerical signals, at the free surface of the set of columns, is discussed. Correlations between site-specific amplification factors deduced using the numerical response spectra and the proposed site proxies are analyzed for different sub-ranges of periods. The obtained amplification factors are then compared to those proposed by different international and national design codes. The results, obtained under assumption of linear and nonlinear behavior of soil, emphasize the need to introduce complementary site parameters proxies, in addition to v(s,30), to characterize the expected site effects in design response spectra.
机译:表征局部位点状况对地面运动扩增的潜在影响是地震危害和风险评估的关键方面。本研究的目的是探讨使用土壤剖面v(S,30)的上部30米的平均剪切波速度的可靠性和限制,如单一代理,以表征弱和强烈事件的地震现场效应在这方面,通过蒙特卡罗方法产生具有给定V(S,30)的300个一维土壤分布的数据集。它们的地震响应被计算为一套40个真实的加速局,具有不同的地震特征。来自所生成的列的底部的垂直传播使用有限元空间离散化进行建模,占线和非线性土壤行为。提出了概况B-30中的站点主频率f(0)和剪切波速度梯度讨论了表征地震部位效果的代理和数值信号的响应光谱的可变性,在该组列的自由表面处被讨论。分析了使用数值响应光谱和所提出的网站代理推断的场地特异性放大因子之间的相关性,用于不同的周期范围。然后将获得的扩增因子与由不同国际和国家设计代码提出的那些进行比较。在土壤的线性和非线性行为的假设下获得的结果,强调需要引入互补部位参数代理,除V(S,30)外,还要在设计响应光谱中表征预期的位点效应。

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