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Seismic performance parameters of fully grouted reinforced masonry squat shear walls

机译:完全注浆的砌体蹲式剪力墙的抗震性能参数

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The displacement ductility, ductility-related seismic force modification factor, and the effective elastic stiffness are important force-based seismic design (FBD) parameters for reinforced masonry (RM) shear walls. In addition, stiffness degradation and equivalent viscous damping, are crucial displacement-based seismic design (DBD) parameters. This study analyzes previously reported test results of eight RM shear-dominated fully-grouted rectangular squat walls subjected to cyclic lateral excitations to evaluate the FBD and DBD parameters. The main variables of the tested walls are the level of axial compressive stress, vertical and horizontal reinforcement ratio, anchorage end detail, and the spacing of horizontal and vertical reinforcement. However, all tested walls had the same shear span to depth ratio equal to 1.25. The evaluated FBD parameters are compared to the Canadian, European and American standards. Moreover, based on the analysis, equations for the stiffness degradation of RM shear walls relative to their top drift limit or displacement ductility, are developed and presented for the examined walls. The ductility-related seismic force modification factor is computed on average 2.6, and 3.9, based on equal energy and equal displacement idealization, respectively. The US, and European standards ignore the axial stress effect on wall's elastic effective stiffness and highly overestimate its value for the tested walls. This study presents, based on the tested walls, a guide design values for squat shear-dominated walls category that can be used in FBD and DBD.
机译:位移延展性,与延性有关的地震力修正系数以及有效弹性刚度是用于钢筋混凝土(RM)剪力墙的基于力的重要抗震设计(FBD)参数。此外,刚度降低和等效粘性阻尼是基于位移的抗震设计(DBD)的关键参数。这项研究分析了先前报道的八个RM剪力支配的全灌浆矩形深蹲墙的试验结果,这些墙受到循环横向激励,以评估FBD和DBD参数。被测墙的主要变量是轴向压应力水平,垂直和水平钢筋比率,锚固端部细节以及水平和垂直钢筋的间距。但是,所有测试的墙具有相同的剪切跨度与深度之比,等于1.25。将评估的FBD参数与加拿大,欧洲和美国标准进行比较。此外,在分析的基础上,针对被检壁开发并提出了RM剪力墙相对于其顶部漂移极限或位移延性的刚度退化方程。与延性有关的地震力修正系数分别基于相等的能量和相等的位移理想化分别计算为平均值2.6和3.9。美国和欧洲标准忽略了轴向应力对墙体弹性有效刚度的影响,并高度高估了其在测试墙体中的价值。这项研究基于已测试的墙,提出了可用于FBD和DBD中的深蹲剪力墙类别的指导设计值。

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