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Structure-soil-structure interaction in a group of buildings using 3D nonlinear analyses

机译:使用3D非线性分析的一组建筑物结构 - 土结构相互作用

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The current study compares the effect of structure-soil-structure interaction (SSSI) on the dynamic responses of adjacent buildings and isolated structures including soil-structure interaction (SSI) with the responses of fixed-base structures. Structural responses such as the relative acceleration, displacement, drift and shear force were considered under earthquake ground motion excitation. For this purpose, 5-, 10- and 15-story structures with 2-bay moment resisting frames resting on shallow foundations were modeled as a group of buildings in soft soil media. Viscous lateral boundaries and interface elements were applied to the soil model to simulate semi-infinite soil media, frictional contact and probable slip under seismic excitation. The direct method was employed for fully nonlinear time-history dynamic analysis in OpenSees using 3D finite element soil-structure models with different building positions. The results showed that the responses of the grouped structures were strongly influenced by the adjacent structures. The responses were as much as 4 times greater for drift and 2.3 times greater for shear force than the responses of fixed-base models.
机译:目前的研究比较了结构 - 土结构相互作用(SSSI)对相邻建筑物和隔离结构的动态响应的影响,包括固定基础结构的响应的土壤结构相互作用(SSI)。在地震地面运动激发下考虑了诸如相对加速,位移,漂移和剪切力的结构响应。为此目的,具有2架托架矩抵抗框架的5级,10层和15层结构被建模为软土壤介质中的一组建筑物。粘性横向边界和界面元件被应用于土壤模型,以模拟半无限土壤介质,摩擦接触和地震激励下的可能性。使用具有不同建筑物位置的3D有限元土结构模型,采用直接方法进行完全非线性时间历史动态分析。结果表明,分组结构的反应受相邻结构的强烈影响。漂移的响应高达4倍,剪切力比固定基础模型的响应更大的剪力力越大。

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