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Seismic Reinforcement Detailing Effects on Blast Resistance of Reinforced Concrete Columns

机译:抗震细节对钢筋混凝土柱抗爆性能的影响

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The study of blast resistance of reinforced concrete columns has dramatically increased since the attack on the Alfred P. Murrah Building in Oklahoma City. Most of the research has concentrated on the response of columns to far-field blast loading. In certain cases the research has neglected the effects of reinforcement detailing or axial loading on the columns. This paper presents a numerical study to investigate the effects of axial loading on the response of reinforced concrete columns to blast loading from proximate explosions. A high-fidelity physics based finite element analysis tool, LS-DYNA, was used to model the reinforced concrete columns. The columns are subjected to free-air blast loading to evaluate the effects of axial loads on the response of concrete columns detailed in accordance with seismic detailing provisions of CSA A23.3-04. The results show that increased axial loading on reinforced concrete columns reduces the lateral deflection and the support rotation. Thus, columns in lower stories of high-rise buildings, where axial loading from gravity loads could be significant, are capable of resisting higher blast loading in comparison with similar columns in the low-rise buildings.
机译:自从俄克拉荷马城的Alfred P. Murrah大楼遭到袭击以来,对钢筋混凝土柱的抗爆炸性的研究急剧增加。大多数研究都集中在圆柱对远场爆炸载荷的响应上。在某些情况下,研究忽略了钢筋细节或轴向荷载对立柱的影响。本文提供了一个数值研究,以研究轴向载荷对钢筋混凝土柱对爆炸造成的爆炸载荷响应的影响。基于高保真物理的有限元分析工具LS-DYNA用于对钢筋混凝土柱进行建模。根据CSA A23.3-04的抗震细节规定,对柱子进行自由空气爆炸载荷,以评估轴向载荷对混凝土柱子响应的影响。结果表明,钢筋混凝土柱上轴向载荷的增加减小了侧向挠度和支撑架的旋转。因此,与低层建筑中的类似立柱相比,高层建筑中较低层的立柱(在重力荷载作用下可能产生很大的轴向载荷)能够抵抗较高的爆炸载荷。

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