采用多条形分析MSA评价层对层排列建筑尾排钢筋混凝土框架的地震易损性

Hossameldeen Mohamed, Ghada Elyamany
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引用次数: 0

摘要

在地震激发期间,相邻的建筑物开始不同步(在不同的方向上)振动,导致相互碰撞,造成严重的破坏,这种现象被称为结构冲击。提出的研究分析了几个案例研究的冲击效应,这些案例研究代表了埃及建筑分类中发现的一种关键冲击配置,即建筑在建筑物的末尾。为了减少概率性能评估的计算量,采用了50条地面运动记录的多条带分析方法(MSA)。将得到的研究案例的结构性能以易碎性函数的形式表示,并与相应的参考案例(即无相邻建筑的结构)进行比较。这些结果提供了对导致所研究案例的整体崩溃的失效机制类型的见解。在这些结果的基础上,还开发了不同极限状态的脆性函数,以进一步得出关于冲击总体影响的结论。结果突出了与参考案例相比,所涉及案例的预期性能之间的主要差异。最后,研究结果表明,冲击效应与考虑案例的整体性能相关,因此大规模地震风险评估研究应考虑考虑不同冲击配置的脆弱性函数。
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Assessment of seismic vulnerability of RC frames at the end-of-row of buildings with floor-to-floor alignment using multi-strips analysis MSA
During earthquakes’ excitation, adjacent buildings start vibrating out of phase (in different directions) leading to collisions with each other causing severe damage in a phenomenon known as structural pounding. The proposed study analyses the pounding effects for several case studies representing one of the critical pounding configurations found in the Egyptian buildings taxonomy which is building at the end-of-row of buildings. The multi-strip analysis approach (MSA) using fiftyground motion records has been adopted to reduce the computational effort required for probabilistic performance assessment. The obtained structural performances of the studied cases, expressed in the form of fragility functions, were compared with the corresponding reference cases (i.e., structures with no adjacent buildings). The results provide insights into the type of failure mechanism that contributes to the global collapse of the studied cases. Fragility functions are also developed for different limit states based on these results to extract further conclusions regarding the overall influence of pounding. Results highlight the main differences between the expected performance of the poundinginvolved cases compared to the reference cases. Finally, results indicate the relevance of the pounding effect on the overall performance of the considered cases therefore large-scale seismic risk assessment studies should consider fragility functions accounting for different pounding configurations.
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