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Seismic response analyses and performance assessment of masonry-infilled reinforced concrete frame buildings in Bhutan without and with soft storey

机译:有软层和不软层的不丹砌筑钢筋混凝土框架结构的地震反应分析和性能评估

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摘要

Bhutan locates in a high seismicity region but has no seismic design code of its own. Recent devastating earthquake in Nepal, which is located in the same region as Bhutan and with similar construction types, raises the concern on the seismic safety of building structures in Bhutan. This study is aimed at assessing the performance of masonry-infilled and soft storey reinforced concrete frame buildings in Bhutan under the 475- and 2475-year return period ground motions predicted from the Probabilistic Seismic Hazard Analysis. A nonlinear strut model is used to model the infill wall, and the influence of openings and soil-structure interaction are considered in the analyses. The result suggests that the masonry-infilled reinforced concrete frame buildings in Bhutan could suffer repairable and irreparable damages under the 475-year return period ground motions and severe damages and even collapse under the 2475-year return period ground motion. The buildings with the soft storey are found to be more vulnerable than the normal masonry-infilled reinforced concrete buildings. The design recommendation of Indian Seismic Code improves the performance of soft storey buildings but cannot fully negate the soft storey effect. This study is the first such effort in assessing the performance of general building stocks in the high seismicity Bhutan. The results can guide the seismic strengthening options and can be used for further loss predictions for seismic preparedness of the country.
机译:不丹位于高地震活动区,但没有自己的抗震设计规范。尼泊尔最近发生的毁灭性地震与不丹位于同一地区,建筑类型相似,这引起了人们对不丹建筑结构的地震安全性的关注。这项研究旨在评估根据概率地震危险性分析预测的475年和2475年回归期地面运动在不丹的砖石填充和软层钢筋混凝土框架房屋的性能。使用非线性支撑模型对填充墙进行建模,并在分析中考虑了开口和土-结构相互作用的影响。结果表明,不丹的砖石填充钢筋混凝土框架建筑物在475年回归期地面运动下可能遭受可修复且无法修复的破坏,在2475年回归期地面运动下可能遭受严重破坏甚至崩溃。发现具有软层的建筑物比普通砖石填充的钢筋混凝土建筑物更脆弱。印度地震法典的设计建议提高了软层建筑的性能,但不能完全抵消软层的影响。这项研究是评估高地震强度不丹地区一般建筑材料性能的首次此类工作。结果可以指导抗震加固方案,并可用于对该国地震准备工作的进一步损失预测。

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