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Topographical and structure-soil-structure interaction effects on dynamic behavior of shear-wall buildings on coastal scarp

机译:地形与结构 - 土结构相互作用对沿海围巾剪力墙建筑物动态行为的互动影响

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This paper investigates numerically the influence of slope topography, soil stratigraphy and dynamic interaction between close shear-wall buildings of typical residential projects on coastal scarp. A numerical model based on real buildings taken as cases for this study, is calibrated with field measurements. A nonlinear finite element dynamic analysis is conducted to derive topographical aggravation factors prior to excavation and construction of the buildings and to assess structural responses after their construction for different interaction scenarios and ground motion inputs. We concluded that the surface profile has a large effect on the dynamic response of a stiff low-rise building when their characteristic wavelengths are close each other and it can play a detrimental role increasing up to 80% the interstory drift, 35% the seismic coefficient and 57% the fixed-base fundamental period depending on the input. In several other input cases including far-field earthquake records, dynamic soilstructure interaction is beneficial. Furthermore, it is shown that the structure-soil-structure scenario has negligible additional effect from a practical point of view with respect to soil-structure interaction for this case of study. These results suggest that similar residential projects should be cautious in the design of low-rise buildings located near a slope crest.
机译:本文研究数值斜率地形,土壤地层学和对沿海崖典型的住宅项目紧密剪力墙建筑物之间动态相互作用的影响。基于作为案件这项研究真正的建筑物的数值模型,进行校准实地测量。非线性有限元动力分析以之前挖掘和建筑物的施工派生地形加重因素和它们的结构为不同的交互场景和地面运动输入后,以评估结构响应。我们的结论是,表面轮廓有一个坚硬的低层建筑的动态响应有很大的影响时,他们的特征波长接近对方,它能起到不利的作用提高到80%间位移,35%的地震系数和57%的固定基基本周期根据输入。在其他几个输入的情况下,包括远场地震记录,动态soilstructure互动是有益的。此外,示出该结构,土壤结构方案具有从实用的角度相对于土壤结构相互作用对于这种情况的研究可忽略的附加效果。这些结果表明,类似的住宅项目应在靠近一个坡顶低层建筑设计谨慎。

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