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Simplified probabilistic evaluation of the variability of soil-structure interaction parameters on the elastic transmission of ground movements

机译:基于地面运动弹性传动的土壤结构相互作用参数变异的简化概率评价

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An efficient probabilistic approach is presented to consider the uncertainty related to the evaluation of the transmission of ground movements to structures considering the influence of the variability of the soil-structure interaction (SSI) parameters (namely the building stiffness EI/B, the soil modulus k and the structure length L). These movements can be produced by tunnels excavation, sinkholes, mining subsidence, etc. This probabilistic approach aims to quantify the relative importance of the variability of the main SSI parameters on the structure response via a sensitivity analysis (SA). The structure response is evaluated using analytical and numerical models. The analytical model is applied using Mathematica where the structure is modeled by an elastic Euler-Bernoulli beam and the soil by a combination of elastic springs as per the Winkler model. The numerical model is developed using Plaxis 2D coupled with the programming tool Python for a significant number of numerical simulations to validate the analytical results obtained. The objective is to evaluate the impact of the parameters variability which are assumed to be of a random nature. To avoid time and computation difficulties, a simplified analytical meta-model that reflects the structure response is proposed. Based on this meta-model, the SA is performed using three selected procedures, one local and two global, namely, one-way analysis, Sobol and McKay respectively. Results reveal the contribution of each input parameter on the variability of the response using various sampling techniques, such as random Monte-Carlo Simulations (MCS) and Latin Hypercube Sampling (LHS). Accordingly, the effect of EI/B increases with the increasing values of the relative stiffness (rho*); however, the effect of k increases when rho* decreases. Results also reveal the influence of the variability of the main SSI parameters on the rate of the ground movement that is transmitted to structures; confidence intervals are set and can be used by engineers and designers when evaluating the induced building damage in response to the transmission of ground movements taking into consideration these uncertainties.
机译:提出了一种有效的概率方法,以考虑与考虑土壤结构相互作用(SSI)参数(即建筑物刚度EI / B,土壤模量)的变异性对结构进行地面运动传播到地面运动传播的不确定性k和结构长l)。这些运动可以通过隧道挖掘,下沉,矿化沉降等来生产这种概率方法旨在通过灵敏度分析(SA)量化主SSI参数变异性的相对重要性。使用分析和数值模型来评估结构响应。使用MathematicA应用分析模型,其中结构由弹性欧拉-Bernoulli梁和土壤通过弹性弹簧的组合根据Winkler模型进行建模。使用与编程工具Python耦合的PLAXIS 2D开发了数值模型,以实现大量数值模拟以验证所获得的分析结果。目的是评估参数变异性的影响,这被认为是随机性的。为避免时间和计算困难,提出了一种反映结构响应的简化分析元模型。基于该元模型,SA使用三个选定的程序,一个本地和两个全局,即单向分析,索尔和Mckay进行。结果揭示了每个输入参数对使用各种采样技术的响应可变性的贡献,例如随机蒙特卡罗仿真(MCS)和拉丁超立体采样(LHS)。因此,EI / B的效果随着相对刚度(RHO *)的增加而增加;然而,当rho *减少时,k的效果增加。结果还揭示了主SSI参数的可变性对传输到结构的地运动速率的影响;设定置信区间,并且在考虑到这些不确定性时,工程师和设计者可以由工程师和设计者使用响应地面运动传输的诱导建筑损坏。

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