Structural Pounding Effect on the Seismic Performance of a Multistorey Reinforced Concrete Frame Structure

IF 2.7 Q2 CONSTRUCTION & BUILDING TECHNOLOGY
Kosmas E. Bantilas, M. C. Naoum, Ioannis E. Kavvadias, C. Karayannis, A. Elenas
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Abstract

During intense ground motion excitations, the pounding between adjacent buildings may result in extensive structural damage. Despite the provision of regulations regarding the minimum separation gap required to prevent structural collisions, the majority of existing structures are poorly separated. The modern seismic design and assessment of structures are based on the definition of acceptable response levels in relation to the intensity of seismic action, which is usually determined by an acceptable probability of exceedance. From this point of view, the seismic performance of a typical eight-storey reinforced concrete (RC) frame structure is evaluated in terms of pounding. In particular, the performance is evaluated using six different separation gap distances as a fraction of the EC8 minimum distance. As the height of the adjacent structure affected the required separation distance, the examined RC structure was assumed to interact with four idealized rigid structures of one to four storeys. The typical storey height was equal between the examined structures; therefore, collision could occur at the diaphragm level. To this end, incidental dynamic analyses (IDAs) were performed, and the fragility curves for different limit states were obtained for each case. Finally, the seismic fragility was combined with the hazard data to evaluate the seismic performance probabilistically.
结构冲击对多层钢筋混凝土框架结构抗震性能的影响
在强烈的地震动激励下,相邻建筑物之间的碰撞可能导致大范围的结构损伤。尽管规定了防止结构碰撞所需的最小分离间隙,但大多数现有结构的分离效果不佳。现代结构的抗震设计和评估基于与地震作用强度相关的可接受响应水平的定义,地震作用强度通常由可接受的超越概率决定。从这个角度出发,对一个典型的八层钢筋混凝土框架结构的抗震性能进行了冲击评估。特别地,使用六个不同的分离间隙距离作为EC8最小距离的一部分来评估性能。由于相邻结构的高度会影响所需的分离距离,因此假设所检查的RC结构与四个理想化的一到四层刚性结构相互作用。受检结构之间的典型层高相等;因此,碰撞可能发生在振膜水平。为此,进行了偶然动力分析(IDA),并获得了每种情况下不同极限状态的脆性曲线。最后,将地震易损性与危险性数据相结合,对其抗震性能进行概率评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Infrastructures
Infrastructures Engineering-Building and Construction
CiteScore
5.20
自引率
7.70%
发文量
145
审稿时长
11 weeks
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