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Seismic response analysis of reinforced concrete frames including soil flexibility

机译:钢筋混凝土框架的抗震分析包括土的柔韧性

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The seismic response of RC space frame structures with isolated footing resting on a shallow soil stratum on rock is presented in this paper. Homogeneous soil stratum of different stiffness in the very soft to stiff range is considered. Soil, footing and super structure are considered to be the parts of an integral system. A finite element model of the integrated system is developed and subjected to scaled acceleration time histories recorded during two different real earthquakes. Dynamic analysis is performed using mode superposition method of transient analysis. A parametric study is conducted to investigate the effect of flexibility of soil in the dynamic behaviour of low- rise building frames. The time histories and Fourier spectra of roof displacement, base shear and structural response quantities of the space frame on compliant base are presented and compared with the fixed base condition. Results indicate that the incorporation of soil flexibility is required for the realistic estimate of structural seismic response especially for single storey structures resting on very soft soil.
机译:本文提出了RC空间框架结构在地震作用下的孤立立足点,它位于岩石的浅土层上。考虑了在非常软至硬范围内不同刚度的均质土壤地层。土壤,基础和上层建筑被认为是整体系统的组成部分。建立了集成系统的有限元模型,并对其进行了两次不同的真实地震记录的按比例缩放的加速时间历史记录。动态分析是使用瞬态分析的模式叠加方法进行的。进行了参数研究,以研究土壤的柔韧性对低层建筑框架动力行为的影响。给出了在柔性基础上屋盖位移,基础剪力和空间框架的结构响应量的时程和傅立叶谱,并与固定基础条件进行了比较。结果表明,对于结构地震响应的实际估计,特别是对于搁置在非常柔软的土壤上的单层结构,需要结合土的柔韧性。

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