Seismic Behaviour of the Low-Rise RC Buildings in Nonlinear Static and Dynamic Analysis

Saugat Tiwari, S. Adhikari
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Abstract

This paper presents the behavior of three different types of irregular low-rise buildings, subjected to earthquake load. The study is performed by numerically modelling the buildings for the linear static analysis. Structural parameters displacements, drift, and storey shear are checked for various time periods of the building. The same models are also analyzed using nonlinear pushover analysis. The model is made nonlinear by introducing the hinges in the beam and column. The execution of nonlinear analysis is done by applying push in X and push in Y directions in controlled displacement mode. After the execution of nonlinear pushover analysis, different colours of hinges were formed, which were used as a basis for the study. The parameters like maximum displacement, max storey drift, and storey shear were computed in both in X and Y directions. Peak ground acceleration of Gorkha earthquake, EI Centro earthquake, and Kobe earthquakes was used for time history analysis. The results for max displacement, base shear, and max storey drift are presented and the comparison is made for the different building models. The study showed that a building behaves well in seismic loading even though they have an irregular plan with a larger structure size, compared to a building that has a regular plan and a smaller structural member size.
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非线性静动力分析中低层钢筋混凝土建筑的抗震性能
本文研究了三种不同类型的不规则低层建筑在地震荷载作用下的性能。该研究是通过对建筑物进行线性静力分析的数值模拟来完成的。结构参数,位移,漂移,和楼层剪力检查的各个时间段的建筑。同样的模型也用非线性推覆分析进行了分析。通过在梁和柱中引入铰链使模型非线性化。非线性分析的执行是通过在控制位移模式下施加X方向和Y方向的推力来完成的。在进行非线性推覆分析后,形成不同颜色的铰链,作为研究的依据。在X和Y方向上分别计算了最大位移、最大层间位移和层间剪切等参数。利用廓尔喀地震、EI Centro地震和神户地震的峰值地面加速度进行时程分析。给出了最大位移、基底剪力和最大层位移的计算结果,并对不同的建筑模型进行了比较。研究表明,与具有规则平面图和较小结构构件尺寸的建筑物相比,即使具有较大结构尺寸的不规则平面图的建筑物在地震荷载下表现良好。
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