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Effect of soil variability on nonlinear site response predictions: Application to the Lotung site

机译:土壤变异对非线性部位反应预测的影响:应用于LOTUNG网站的应用

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摘要

The shear wave velocity profile and dynamic soil properties are known to be affected by aleatory uncertainty. This paper aims to investigate the effect of a statistical variation in the initial stiffness profile, stiffness degradation and damping curves on ground response predictions by conducting stochastic analysis. The Large Scale Seismic Test site in Lotung, Taiwan, is back-analysed with a fully-coupled finite element procedure using an advanced kinematic hardening soil model. Two ground motions recorded at the site, one strong and one weak, are applied at bedrock level. The results reveal that the site response prediction is sensitive to the seismic intensity of the input motion. When the level of induced shear strain is higher, i.e. in the case of the stronger motion, the spatial variability of the stiffness degradation and damping curves has a pronounced effect on the predicted site response. In contrast, when the weaker motion is considered the prediction is particularly sensitive to the statistical variation in the initial stiffness profile. This is mainly due to the stiffness degradation at very small strains shown by the laboratory data on LSST soils, which is captured in the paper by assuming an appropriate elastic domain in the constitutive model calibration.
机译:已知剪切波速度曲线和动态土壤性质受到蜕膜不确定性的影响。本文旨在通过进行随机分析来研究初始刚度曲线,刚度降解和阻尼曲线对地面响应预测的统计变化的影响。台湾莲的大型地震检测部位,采用先进的运动硬化土壤模型用全耦合的有限元手术进行后分析。在网站上录制的两个地面运动,一个强度和一个弱,适用于基岩水平。结果表明,站点响应预测对输入运动的地震强度敏感。当感应剪切应变水平较高时,即在运动的情况下,刚度降低和阻尼曲线的空间可变性对预测的位点响应具有明显的影响。相反,当考虑较弱的运动时,预测对初始刚度曲线中的统计变化特别敏感。这主要是由于LSST土壤上的实验室数据所示的非常小的菌株的刚度降解,通过假设本构模型校准中的合适的弹性域在纸张中捕获。

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