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Probabilistic Evaluation of Structural Pounding Between Adjacent Buildings Subjected to Repeated Seismic Excitations

机译:反复地震激励下相邻建筑物之间结构碰撞的概率评估

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This research investigates the effects of structural pounding (collision of structures) caused by insufficient gaps between adjacent buildings when subjected to repeated earthquakes. The structural performance of adjacent buildings experiencing structural pounding under the effect of moderate repeated ground motions is analyzed using incremental dynamic analysis. Fragility curves for different performance levels are developed to represent the capacity of the adjacent buildings. Two four-story and two ten-story frames, regular and irregular, are combined to represent nine different cases of structural pounding and subsequently analyzed under three artificial seismic sequences. Three gap cases that measure 1 mm (contact structures), 10 cm, and 1 m are assigned to consider possible pounding combinations. Analysis results show that structural damage is directly proportional to ground motion intensity and structural irregularity and inversely proportional to gaps between structures. A minimum spacing of 1 m is proposed for buildings in areas that experience repeated earthquakes to avoid structural pounding. In regular frames, main damage is concentrated in the bottom story beams. Meanwhile, damage in irregular frames is concentrated in top and bottom story beams. Hence, additional stiffness that corresponds to the height of short buildings should be assigned to beams (immediate above and bottom). Meanwhile, the damage is concentrated in ground floor columns. Therefore, to avoid soft story failure mechanism, additional stiffness should be added to columns at bottom stories, especially on the ground floor. Based on the obtained results, modern seismic design codes need to be updated to address these findings on structural pounding to reduce damage in adjacent buildings during moderate to major seismic events.
机译:这项研究调查了相邻建筑物之间反复缝隙不足引起的结构撞击(结构碰撞)的影响。使用增量动力分析来分析在中等程度的重复地震动作用下遭受结构撞击的相邻建筑物的结构性能。绘制了不同性能水平的易碎曲线,以表示相邻建筑物的容量。将两个规则和不规则的四层和两个十层框架组合起来,以代表九种不同的结构碰撞情况,随后在三个人工地震序列下进行分析。分配了三个间隙箱,分别测量1毫米(接触结构),10厘米和1 m,以考虑可能的冲击组合。分析结果表明,结构破坏与地震动强度和结构不规则度成正比,与结构之间的间隙成反比。对于遭受反复地震的区域中的建筑物,建议最小间距为1 m,以避免结构撞击。在常规框架中,主要损坏集中在底层的横梁上。同时,不规则框架中的损坏集中在顶部和底部楼层梁中。因此,应将对应于短建筑物高度的附加刚度分配给梁(在上方和下方)。同时,损坏集中在地下圆柱上。因此,为避免软故事失效机制,应在底部故事(尤其是一楼)的柱子上增加刚度。根据获得的结果,需要更新现代抗震设计规范,以解决这些有关结构冲击的发现,以减少在中等至主要地震事件中相邻建筑物的破坏。

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