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Probabilistic evaluation of soil-foundation-structure interaction effects on seismic structural response

机译:土-基础-结构相互作用对地震结构响应的概率评估

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Complex seismic behaviour of soil-foundation-structure (SFS) systems together with uncertainties in system parameters and variability in earthquake ground motions result in a significant debate over the effects of soil-foundation-structure interaction (SFSI) on structural response. The aim of this study is to evaluate the influence of foundation flexibility on the structural seismic response by considering the variability in the system and uncertainties in the ground motion characteristics through comprehensive numerical simulations. An established rheological soil-shallow foundation-structure model with equivalent linear soil behaviour and nonlinear behaviour of the superstructure has been used. A large number of models incorporating wide range of soil, foundation and structural parameters were generated using a robust Monte-Carlo simulation. In total, 4.08 million time-history analyses were performed over the adopted models using an ensemble of 40 earthquake ground motions as seismic input. The results of the analyses are used to rigorously quantify the effects of foundation flexibility on the structural distortion and total displacement of the superstructure through comparisons between the responses of SFS models and corresponding fixed-base (FB) models. The effects of predominant period of the FB system, linear vs nonlinear modelling of the superstructure, type of nonlinear model used and key system parameters are quantified in terms of different probability levels for SFSI effects to cause an increase in the structural response and the level of amplification of the response in such cases. The results clearly illustrate the risk of underestimating the structural response associated with simplified approaches in which SFSI and nonlinear effects are ignored.
机译:土-基础-结构(SFS)系统的复杂地震行为,以及系统参数的不确定性和地震地震动的变化性,引起了关于土-基础-结构相互作用(SFSI)对结构响应的影响的重大争论。这项研究的目的是通过综合数值模拟,通过考虑系统的可变性和地震动特征的不确定性,评估地基柔性对结构地震响应的影响。建立了具有等效线性土特性和上部结构非线性特性的流变土浅基础结构模型。使用健壮的蒙特卡洛模拟,生成了包含广泛的土壤,基础和结构参数的大量模型。总共采用了40个地震地震动作为地震输入,对采用的模型进行了408万次时程分析。分析结果用于通过比较SFS模型和相应的固定基础(FB)模型的响应来严格量化基础柔性对上部结构的结构变形和总位移的影响。 FB系统的主要周期,上部结构的线性与非线性建模,所使用的非线性模型的类型以及关键系统参数的影响通过SFSI效应的不同概率水平进行量化,从而导致结构响应和结构水平的增加。在这种情况下反应的放大。结果清楚地说明了低估与简化方法有关的结构响应的风险,在简化方法中,忽略了SFSI和非线性效应。

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