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An investigation into the effect of soil-foundation interaction on the seismic performance of tunnel-form buildings

机译:地基相互作用对隧道式建筑物抗震性能的影响研究

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Great weight and stiffness can potentially intensify the forces induced to the tunnel-form buildings during seismic events. To overcome the adverse effects of these two parameters on the seismic reliability of buildings benefitting from this structural system, it appears critically essential to account for the soil-structure interaction (SSI) in the modeling process. Accordingly, this paper aims to assess the level of seismic performance as well as the safety condition of buildings against sliding and overturning phenomena. For this purpose, the soil underlying two tunnel-form buildings with 5 and 10 stories was modeled using the linear springs and then, the analysis results were captured for two cases of rigid and flexible base. Based on the results, as the building height and earthquake intensity increases, the SSI effects on the structural responses such as the shear forces and storey drifts and location of damage initiation became profounder. Comparatively, probability of reaching the primary damage levels along with sliding and overturning increased by at least 30 and 10%, respectively in the case of flexible base. In sum, it is concluded that in seismically active areas formed by soft soil, the SSI effect can hinder tall buildings from achieving the predefined performances.
机译:巨大的重量和刚度可能会在地震事件中加剧对隧道式建筑物的感应力。为了克服这两个参数对受益于该结构系统的建筑物的地震可靠性的不利影响,在建模过程中考虑土-结构相互作用(SSI)显得至关重要。因此,本文旨在评估抗震性能水平以及建筑物抗滑和倾覆现象的安全条件。为此,使用线性弹簧对两座分别为5层和10层的隧道式建筑物下的土壤进行建模,然后针对两种刚性和柔性基底情况获取分析结果。根据结果​​,随着建筑物高度和地震烈度的增加,SSI对结构响应(如剪力和层间位移以及破坏发生位置)的影响变得更加深刻。相比之下,在采用柔性基座的情况下,达到主要破坏水平以及滑动和倾覆的可能性分别增加了至少30%和10%。总而言之,可以得出结论,在由软土形成的地震活动区域中,SSI效应会阻碍高层建筑达到预定的性能。

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