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Nonlinear study on the structure-soil-structure interaction of seismic response among high-rise buildings

机译:高层建筑地震反应结构 - 土结构相互作用的非线性研究

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Based on the 1-3 identical high-rise buildings with pile-raft foundation, a series of building-site two-dimensional finite element analysis models with different building spacings is established. Then, considering the nonlinear characteristics of soil and structure, the static-dynamic coupled numerical simulations are conducted to study the structure-soil-structure interaction (SSSI) under different ground motion. The results show that: 1) Adjacent highrise buildings have the most unfavorable impact on the peak acceleration of the 1/4-1/2 height floors of the middle building, and increase the normalized response acceleration spectra value of acceleration near the second natural period of the structure; 2) Adjacent high-rise buildings have the most significant impact on the inter-story drift of the top, bottom and basement of the middle building; 3) Adjacent high-rise buildings redistribute the total horizontal shear force of the pile top of the middle building among the pile foundations, so that the peak value of the pile top shear force of each pile changes significantly, which is extremely unfavorable to the seismic safety of the structure. It should be taken seriously in the seismic design of structures. In addition, the structure spacing that results in favorable or unfavorable effects is discussed, and the reasons for the impact are analyzed.
机译:基于1-3个相同的高层建筑,采用桩筏基础,建立了一系列具有不同建筑间距的建筑工地二维有限元分析模型。然后,考虑到土壤和结构的非线性特性,进行了静态耦合数值模拟,以研究不同地面运动下的结构 - 土结构相互作用(SSSI)。结果表明:1)相邻的高层建筑对中间建筑的1/4-1 / 2高度地板的峰值加速度具有最不利的影响,并提高了第二自然时期附近加速度的标准化响应加速度值。结构; 2)相邻的高层建筑对中间建筑的顶部,底部和地下室的故事际漂移具有最大的影响; 3)相邻的高层建筑重新分配了桩基础之间的中间建筑物桩顶的总水平剪切力,使每个桩的桩顶剪切力的峰值显着变化,这极其不利于地震结构的安全性。应该认真对待结构的结构。另外,讨论了导致有利或不利影响的结构间隔,分析了影响的原因。

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