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Seismic Analysis and Design Of Vertically Irregular RC Building Frames

机译:竖向不规则RC建筑框架的抗震分析与设计

摘要

This paper is concerned with the effects of various vertical irregularities on the seismic response of a structure. The objective of the project is to carry out Response spectrum analysis (RSA) and Time history Analysis (THA) of vertically irregular RC building frames and to carry out the ductility based design using IS 13920 corresponding to Equivalent static analysis and Time history analysis.. Three types of irregularities namely mass irregularity, stiffness irregularity and vertical geometry irregularity were considered. According to our observation, the storey shear force was found to be maximum for the first storey and it decreases to minimum in the top storey in all cases. The mass irregular structures were observed to experience larger base shear than similar regular structures. The stiffness irregular structure experienced lesser base shear and has larger inter-storey drifts. The absolute displacements obtained from time history analysis of geometry irregular structure at respective nodes were found to be greater than that in case of regular structure for upper stories but gradually as we moved to lower stories displacements in both structures tended to converge. Lower stiffness results in higher displacements of upper stories. In case of a mass irregular structure, time history analysis gives slightly higher displacement for upper stories than that in regular structures whereas as we move down lower stories show higher displacements as compared to that in regular structures. High rise structure subjected to high frequency ground motion results in small displacements. Similarly, if a low rise structure is subjected to high frequency ground motion it results in larger displacements whereas small displacements occur when the high rise structure is subjected to low frequency ground motion
机译:本文关注各种垂直不规则对结构地震响应的影响。该项目的目的是对垂直不规则的RC建筑框架进行响应谱分析(RSA)和时程分析(THA),并使用与等效静力分析和时程分析相对应的IS 13920进行基于延性的设计。考虑了三种类型的不规则,即质量不规则,刚度不规则和垂直几何不规则。根据我们的观察,在所有情况下,第一层的层间剪切力最大,而顶层的层间剪切力减小至最小。观察到大块的不规则结构比类似的规则结构经历更大的基础剪切。刚度不规则结构的基础剪力较小,层间漂移较大。通过对各个节点处的几何不规则结构的时程分析获得的绝对位移被发现大于上层规则结构的情况下的绝对位移,但是随着我们移至下层情况,两种结构的位移趋于收敛。较低的刚度导致较高层的位移。在整体结构不规则的情况下,时程分析给出的高层故事的位移比规则结构的位移略高,而当我们向下移动时,底层故事的位移比规则结构的位移高。经受高频地面运动的高层结构导致较小的位移。类似地,如果低层结构受到高频地面运动,则会导致较大的位移,而当高层结构受到低频地面运动时,会产生小的位移

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