斜面剪力墙位置对框架结构地震反应的影响

Upama Acharya, J. Shrestha
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引用次数: 1

摘要

据观察,在过去的地震中,丘陵地区的建筑物经历了高度的破坏,导致倒塌,尽管它们的设计是为了保证居住者免受自然灾害的安全。因此,在这些丘陵和地震活跃地区采用多层建筑的做法时,应特别注意这些建筑的抗震性能。对于斜坡地面上的建筑物,柱基以下的柱高度不相同,影响了建筑物在地震作用下的性能。因此对提高建筑剪力墙的抗震性能起着非常重要的作用。确定剪力墙的最有效位置是十分必要的。剪力墙布置必须准确,否则反而会产生负面影响。本文旨在预测不同形状的钢筋混凝土剪力墙定位对斜面上钢筋混凝土建筑结构响应的影响。分别编制了考虑土压力和不考虑土压力的8种模型。建筑物的位移由非线性静力推覆分析确定。为了进行推覆分析和响应谱分析,采用了基于有限元的软件SAP 2000。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The impact of shear wall location on the seismic response of RC frame buildings resting on sloping ground
It is observed during the past earthquakes, buildings in hilly regions have experienced high degree of damage leading to collapse though they have been designed for safety of the occupants against natural hazards. Hence, while adopting practice of multistory buildings in these hilly and seismically active areas, utmost care should be taken for making these buildings earthquake resistant. For the buildings on sloping ground, the height of columns below plinth level is not same which affects the performance of building during earthquake. Hence to improve the seismic performance of building shear walls play very important role.It is very necessary to determine the most effective location of shear walls. Shear wall arrangement must be accurate, because if not, it will cause negative effect instead. This paper is aimed at predicting the effect of positioning RC shear wall of different shape on the structural response of RC building resting on sloping ground. Eight models have been prepared considering earth pressure and without considering earth pressure. The displacement of building is to be determined by nonlinear static pushover analysis. For the purpose of pushover analysis and response spectrum analysis finite element-based software SAP 2000 has been utilized.
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