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Near-field Explosion Effects on the Behaviour of Reinforced Concrete Columns: A Numerical Investigation

机译:近场爆炸对钢筋混凝土柱性能的影响:数值研究

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The high incidence of global terrorism and accidental explosions have highlighted the vulnerability of built infrastructure to blast loading. Thus, owners of iconic structures are looking for ways to protect their critical assets from the effects of explosions. Many of the research efforts, in this light, have been devoted to the effects of far-field explosions on structural elements. The effects of near-field explosions on structural elements, especially columns, have not been as widely investigated. This paper presents the results of a comprehensive research program designed to investigate the effects of near-field explosions on the behaviour of reinforced concrete columns designed and detailed for regions of different levels of seismicity. The numerical study shows that reinforced concrete columns subjected to blast loading from higher explosive charge masses have higher deflections than those subjected to blast loading from lower charge masses, but at the same scaled distance. Also, the effect of closely spaced transverse reinforcement is significant at smaller scaled distances. Thus, reinforced concrete columns designed and detailed for areas of high seismicity have an inherently high blast resistance.
机译:全球恐怖主义和意外爆炸的高发突出了已建基础设施对爆炸载荷的脆弱性。因此,标志性建筑的所有者正在寻找保护其重要资产免受爆炸影响的方法。有鉴于此,许多研究工作都致力于远场爆炸对结构元件的影响。尚未广泛研究近场爆炸对结构元件(尤其是圆柱)的影响。本文介绍了一项综合研究计划的结果,该计划旨在调查近场爆炸对针对不同地震烈度区域设计并详细描述的钢筋混凝土柱性能的影响。数值研究表明,在爆炸荷载较高的情况下承受爆炸荷载的钢筋混凝土柱的挠度要比在爆炸荷载较大的情况下承受爆炸荷载的钢筋混凝土柱的挠度大,但缩放比例相同。同样,在较小的比例距离上,紧密间隔的横向钢筋的效果也很明显。因此,为高地震区域设计和详细设计的钢筋混凝土柱具有固有的高抗爆性。

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