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Dynamic interaction of adjacent tall building structures on deep foundations

机译:邻近高层建筑结构对深层基础的动态相互作用

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In design of low rise structures the effects of soil-structure interaction are often ignored. However, these effects are considerable for heavy structures such as skyscrapers or multi-level highway structures. The existence of this interaction phenomenon can also be extended to the adjacent buildings. For example, in an area congested with many nearby tall buildings, to account for the proximity effects of adjacent buildings will become critical. Previous few studies conducted in this area, were limited to 2D finite element plain-strain models. Assuming plain-strain for foundation soil may be valid, however, for a building structure which has limited dimensions in plan, this assumption could be erroneous. In the current study, in order to capture the proximity effects on the response of adjacent buildings under earthquake motions, 3D models of 15 and 30 storey building structures on group piles are used. The foundation soils considered are clay and sand. Dynamic analyses are performed under horizontal components of several actual earthquakes. Three different combinations of two adjacent buildings are considered, 1) two 15-stories, 2) two 30-stories, and 3) one 15- and one 30-stories. Seismic soil-structure interaction analyses in this study are based on direct method. Foundation soil behavior is assumed to be equivalent linear while structures are assumed to behave in elastic range. Results show that the interaction of adjacent buildings depends on structural heights, type and depth of the foundation soil, frequency content of the earthquake records, the type of proximity and the distance between the adjacent buildings.
机译:在低上升结构的设计中,土壤结构相互作用的影响通常被忽略。然而,这些效果对于诸如摩天大楼或多级公路结构之类的重型结构具有相当大。这种相互作用现象的存在也可以延伸到相邻建筑物。例如,在与许多附近的高层建筑拥挤的区域中,要考虑相邻建筑物的近似效果将变得至关重要。在该区域中进行的前几项研究仅限于2D有限元普通型模型。假设基础土壤的普通菌株可能是有效的,然而,对于在计划中具有有限的建筑结构,这种假设可能是错误的。在目前的研究中,为了捕获地震运动下相邻建筑物的响应的邻近效应,使用15个和30层建筑结构的3D模型。考虑的基础土壤是粘土和沙子。在几个实际地震的水平分量下进行动态分析。两个相邻建筑的三种不同组合被认为是1)两个15层,2)两个30层,3)一个15-和一个30层。本研究中地震土结构相互作用分析基于直接方法。假设基础土壤行为是等同的线性,而结构被假定在弹性范围内行动。结果表明,相邻建筑物的相互作用取决于基础土的结构高度,型型和深度,地震记录的频率含量,接近的类型和相邻建筑物之间的距离。

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