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INCREASING ROBUSTNESS OF REINFORCED CONCRETE STRUCTURES UNDER COLUMN LOSS SCENARIO

机译:在柱损地下增加钢筋混凝土结构的稳健性

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This paper presents a simple technique to enhance robustness of reinforced concrete (RC) plane frames to progressive collapse under column loss scenario. The response of the enhanced/mitigated RC frames is analyzed using fiber force-based finite element analysis and applying displacement-controlled nonlinear static pushdown at the location of failed column. The technique involves addition of external unbounded steel cables to the continuous beam in each floor at anchorage and deviator locations. The cables transfer the loads above the failed column to the anchorages and deviators that are assumed to perform as rigid arms, which in turn redistribute the loads to adjacent columns. The numerical model computes the frame progressive collapse robustness using push-down analysis to simulate a column elimination and estimate the effects of cable catenary action on the frame. Two-dimensional RC frame of six stories and four bays was adopted in the study. The numerical results demonstrate the prospect of increasing robustness of RC frames to progressive collapse using presented technique.
机译:本文提出了一种简单的技术,可以提高钢筋混凝土(RC)平面框架的稳健性,以在列损失方案下逐渐崩溃。使用基于光纤的有限元分析分析增强型/减速的RC帧的响应,并在故障柱的位置应用位移控制的非线性静态下推。该技术涉及在锚固和脱模位置的每个楼层的连续梁中加入外部无界钢电缆。电缆将故障柱上方的负载传送到假定作为刚性臂的锚固和偏差器,这反过来将负载重新分配到相邻列。数值模型计算帧逐行崩溃的稳健性,使用下推分析来模拟列消除并估计电缆屏蔽动作对框架的影响。研究中采用二维RC框架和四个海湾。数值结果证明了使用呈现的技术提高RC帧的富于逐渐崩溃的前景。

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