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Implications of non-synchronous excitation induced by nonlinear site amplification and of soil-structure interaction on the seismic response of multi-span bridges founded on piles

机译:非线性部位扩增诱导的非同步激励和土壤结构相互作用对桩上桩基桥梁地震响应的影响

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This work investigates the effects of soil-structure interaction and spatial variability of seismic motion due to nonlinear site amplification on the seismic behaviour of long multi-span bridges founded on piles. An analysis framework able to include the spatial variation of ground motion induced by specific geological and geomorphological scenarios in the seismic soil-structure interaction analysis of long bridges is adopted, exploiting advantages of the substructure approach. The methodology is applied to a case study constituted by a pile-supported multi-span bridge founded in a soft clay deposit overlaying a stiff bedrock with three different configurations: horizontal, inclined and wedge-shaped. The reference input motion at the outcropping bedrock is represented by a set of real accelerograms and different seismic response models are used to compute site amplification effects, discussing the contribution to the free-field ground motion of both the two-dimensional configuration of the deposit and the nonlinear soil behaviour. The ground motions obtained from the different models are then used for computing the foundation input motion accounting for the pile-soil kinematic interaction; thereafter, inertial interaction analyses are performed on structural models with either fixed or compliant base, considering the non-synchronous seismic actions at the piers foundation. The results, compared in terms of piers head displacements, ductility demand and deck transverse bending moments, finally show the relative importance of bedrock morphology, soil nonlinearity and soil-structure interaction on the structural response.
机译:这项工作调查了土壤 - 结构相互作用和地震运动的空间变异性因非线性部位扩增对桩上成立时长的多跨度桥梁地震行为的影响。采用分析框架,能够包括长桥的地震土结构相互作用分析中特定地质和地貌情景引起的地面运动的空间变化,利用子结构方法的优点。该方法应用于由覆盖具有三种不同配置的软粘土沉积物中的桩支撑的多跨桥构成的案例研究,其具有三种不同的配置:水平,倾斜和楔形。露节基岩的参考输入运动由一组真实的加速器局表示,不同的地震反应模型用于计算站点放大效果,讨论对沉积物的二维配置的自由场地面运动的贡献非线性土壤行为。然后用于从不同型号获得的地面运动来计算用于桩土对运动相互作用的基础输入运动核算;此后,考虑到码头基础的非同步地震动作,对具有固定或柔顺基座的结构模型进行惯性相互作用分析。结果,在墩头位移方面比较,延展性需求和甲板横向弯矩,最终显示基岩形态,土壤非线性和土壤 - 结构相互作用对结构反应的相对重要性。

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