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Nonlinear seismic behaviour of wall-frame dual systems accounting for soil-structure interaction

机译:土-结构相互作用的墙框双系统非线性地震行为

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The aim of this paper is to study the effects of soil-structure interaction on the seismic response of coupled wall-frame structures on pile foundations designed according to modern seismic provisions. The analysis methodology based on the substructure method is recalled focusing on the modelling of pile group foundations. The nonlinear inertial interaction analysis is performed in the time domain by using a finite element model of the superstructure. Suitable lumped parameter models are implemented to reproduce the frequency-dependent compliance of the soil-foundation systems. The effects of soil-structure interaction are evaluated by considering a realistic case study consisting of a 6-storey 4-bay wall-frame structure founded on piles. Different two-layered soil deposits are investigated by varying the layer thicknesses and properties. Artificial earthquakes are employed to simulate the earthquake input Comparisons of the results obtained considering compliant base and fixed base models are presented by addressing the effects of soil-structure interaction on displacements, base shears, and ductility demand. The evolution of dissipative mechanisms and the relevant redistribution of shear between the wall and the frame are investigated by considering earthquakes with increasing intensity. Effects on the foundations are also shown by pointing out the importance of both kinematic and inertial interaction. Finally, the response of the structure to some real near-fault records is studied.
机译:本文的目的是研究根据现代地震规定设计的桩基础上的土-结构相互作用对耦合墙框架结构地震响应的影响。回顾了基于子结构方法的分析方法,重点是桩基基础建模。通过使用上部结构的有限元模型,在时域中进行了非线性惯性相互作用分析。实施合适的集总参数模型以重现土壤基础系统的频率依赖性。通过考虑一个现实的案例研究来评估土壤-结构相互作用的影响,该案例研究包括一个基于桩的6层4湾墙框架结构。通过改变层的厚度和性质来研究不同的两层土壤沉积物。人工地震被用来模拟地震输入。通过考虑土-结构相互作用对位移,基础剪力和延性需求的影响,提出了考虑顺应性基础模型和固定基础模型的结果的比较。通过考虑强度不断增加的地震,研究了墙体和框架之间的耗散机制的演变以及剪力的相关重新分布。通过指出运动学和惯性相互作用的重要性,也显示了对基础的影响。最后,研究了结构对一些实际的近故障记录的响应。

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