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Idealisation of soil-structure system to determine inelastic seismic response of mid-rise building frames

机译:确定中层建筑框架的非弹性地震响应的土壤结构系统的理想化

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摘要

In this study, a novel and enhanced soil-structure model is developed adopting the direct analysis method using FLAC 2D software to simulate the complex dynamic soil-structure interaction and treat the behaviour of both soil and structure with equal rigour simultaneously. To have a better judgment on the inelastic structural response, three types of mid-rise moment resisting building frames, including 5, 10, and 15 storey buildings are selected in conjunction with three soil types with the shear wave velocities less than 600 m/s, representing soil classes C-e, D-e and E-e, according to Australian Standards. The above mentioned frames have been analysed under two different boundary conditions: (i) fixed-base (no soil-structure interaction) and (ii) flexible-base (considering soil-structure interaction). The results of the analyses in terms of structural displacements and drifts for the above mentioned boundary conditions have been compared and discussed. It is concluded that considering dynamic soil-structure interaction effects in seismic design of moment resisting building frames resting on soil classes D-e and E-e is essential. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在这项研究中,采用FLAC 2D软件直接分析方法,开发了一种新颖的,增强的土壤结构模型,以模拟复杂的动态土壤-结构相互作用,并同时以相同的严格性处理土壤和结构的行为。为了更好地判断非弹性结构响应,结合剪切波速度小于600 m / s的三种土壤类型,选择了三种类型的中层抗弯矩建筑框架,包括5、10和15层建筑,根据澳大利亚标准代表的土壤类别为Ce,De和Ee。在两个不同的边界条件下分析了上述框架:(i)固定基础(无土壤-结构相互作用)和(ii)柔性基础(考虑了土壤-结构相互作用)。对上述边界条件在结构位移和漂移方面的分析结果进行了比较和讨论。结论是,在基于D-e和E-e土类的抗弯建筑框架的抗震设计中考虑动态土-结构相互作用的影响至关重要。 (C)2014 Elsevier Ltd.保留所有权利。

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