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Seismic analysis of the soil-structure interaction for a high rise building adjacent to deep excavation

机译:邻近深基坑的高层建筑土-结构相互作用的地震分析

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Soil-structure interaction is referred to the process in which the soil response is influenced by the structure motion while the latter is influenced by the soil motion. It is of note that the excavation adjacent to the buildings can intensify the effects of soil-structure interaction. In the current research, the soil-structure interaction model and the building-excavation interaction model along with the fixed-base structure model were analyzed on the basis of finite difference method using FLAC(2D), which is capable of analyzing the soil-structure interaction issues. Furthermore, the modified Mohr-Coulomb constitutive model was employed for the soil medium, allowing the implementation of dependency of stiffness on stress as well as the materials unloading behavior by means of the powerful programming language FISH (short for FLACish). Validation of the numerical model was accomplished based on the data extracted from the Tiltmeter installed on one of the columns of the building adjacent to the excavation and the Load Cells placed on the anchors of the excavation wall. The results illustrated that due to the high stiffness and rigidity of the retaining structure system, modeling of the building adjacent to the excavation, whether as surcharge or structural frame, would only influence the settlement profile of the building foundation under static conditions. On the other hand, in the seismic analysis, the type of modeling of the building adjacent to the excavation exerted a remarkable impact on the pile deformation, the bending moment of the pile, the condition for connection of the anchors and soil, the criteria for estimating the probable damage of the structure adjacent to the excavation, and the permanent settlement profile. (c) 2015 Elsevier Ltd. All rights reserved.
机译:土-结构相互作用是指土壤响应受结构运动影响而后者受土壤运动影响的过程。值得注意的是,与建筑物相邻的开挖会加剧土壤-结构相互作用的影响。在目前的研究中,基于有限差分法的FLAC(2D)分析了土-结构相互作用模型和建筑物-基坑相互作用模型以及固定基础结构模型,该模型能够分析土-结构。互动问题。此外,改良的Mohr-Coulomb本构模型用于土壤介质,通过功能强大的编程语言FISH(FLACish的缩写)实现了刚度对应力的依赖以及材料的卸载行为。数值模型的验证是基于从安装在与挖掘相邻的建筑物之一的立柱上的倾斜仪和放置在挖掘壁锚上的测力计提取的数据完成的。结果表明,由于保持结构系统的高刚度和刚度,与基坑相邻的建筑物的建模,无论是附加费还是结构框架,都只会在静态条件下影响建筑物基础的沉降轮廓。另一方面,在地震分析中,与开挖相邻的建筑物的建模类型对桩的变形,桩的弯矩,锚固与土壤的连接条件,锚固条件等产生了显着影响。估算与开挖相邻的结构的可能损坏以及永久沉降轮廓。 (c)2015 Elsevier Ltd.保留所有权利。

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