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Seismic Fragility Evaluation of Lightly Reinforced Concrete-Block Shear Walls for Probabilistic Risk Assessment

机译:轻度钢筋混凝土剪力墙的地震易损性评估,用于概率风险评估

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With the North American seismic codes moving toward adopting performance-based seismic design (PBSD) approaches, there is a need to develop seismic probabilistic risk assessment (PRA) tools for different construction systems, including reinforced masonry (RM). The current study focuses on the development of analytical fragility curves based on the performance of RM walls tested under base excitation generated by a shake table. The study has two phases. In the first phase, the seismic response of the RM shear walls is modeled using a simplified analytical model that was calibrated using previously reported shake table experimental results. The second phase of the study focuses on the development of fragility curves, as an essential component of a PRA framework, for two-story lightly reinforced masonry walls. In this phase, relevant limit states are defined and the corresponding capacities of the walls are quantified based on the shake table test results. The wall seismic demand levels are then determined through a probabilistic seismic demand analysis (PSDA) approach by performing 120 nonlinear response history analyses using the analytical model developed in the first phase. Fragility curves are derived based on the experimental capacity data and the analytical PSDA results. The results indicate that the lightly reinforced masonry shear wall category considered in this study would experience acceptable seismic performance associated with moderate lateral wall top-roof drifts even when subjected to ground motion records representing some of the highest seismic regions in eastern and western Canada. The study is a part of a larger ongoing PRA research program to provide the needed seismic performance data to facilitate the inclusion of different RM construction categories within the next generation of PBSD codes in North America. (C) 2014 American Society of Civil Engineers.
机译:随着北美地震法规朝着采用基于性能的地震设计(PBSD)方法迈进,有必要针对不同的建筑系统,包括加筋砌体(RM),开发地震概率风险评估(PRA)工具。当前的研究重点是根据在振动台产生的基础激励下测试的RM壁的性能,开发分析性脆性曲线。研究分为两个阶段。在第一阶段,使用简化的分析模型对RM剪力墙的地震响应进行建模,该模型使用先前报告的振动台实验结果进行了校准。研究的第二阶段着眼于脆性曲线的发展,这是PRA框架的重要组成部分,用于两层轻度增强的砖石墙。在这一阶段,定义了相关的极限状态,并根据振动台测试结果量化了相应的墙体容量。然后通过使用第一阶段开发的分析模型执行120次非线性响应历史分析,通过概率地震需求分析(PSDA)方法确定墙的地震需求水平。脆性曲线是根据实验容量数据和PSDA分析结果得出的。结果表明,即使受到代表加拿大东部和西部某些最高地震区域的地震动记录,本研究中考虑的轻度增强的砌体剪力墙类别也会经历与中等侧壁顶棚位移有关的可接受的地震性能。这项研究是一项正在进行的大型PRA研究计划的一部分,该计划旨在提供所需的地震性能数据,以促进在北美的下一代PBSD代码中纳入不同的RM施工类别。 (C)2014年美国土木工程师学会。

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