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Vulnerability and damage analysis of reinforced concrete framed buildings subjected to near field blast events

机译:钢筋混凝土框架房屋在近场爆炸中的脆弱性和破坏分析

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摘要

Terrorists usually target high occupancy iconic and public buildings using vehicle borne incendiary devices in order to claim a maximum number of lives and cause extensive damage to public property. While initial casualties are due to direct shock by the explosion, collapse of structural elements may extensively increase the total figure. Most of these buildings have been or are built without consideration of their vulnerability to such events. Therefore, the vulnerability and residual capacity assessment of buildings to deliberately exploded bombs is important to provide mitigation strategies to protect the buildings' occupants and the property. Explosive loads and their effects on a building have therefore attracted significant attention in the recent past.ududComprehensive and economical design strategies must be developed for future construction. This research investigates the response and damage of reinforced concrete (RC) framed buildings together with their load bearing key structural components to a near field blast event. Finite element method (FEM) based analysis was used to investigate the structural framing system and components for global stability, followed by a rigorous analysis of key structural components for damage evaluation using the codes SAP2000 and LS DYNA respectively. The research involved four important areas in structural engineering. They are blast load determination, numerical modelling with FEM techniques, material performance under high strain rate and non-linear dynamic structural analysis. The response and damage of a RC framed building for different blast load scenarios were investigated. The blast influence region for a two dimensional RC frame was investigated for different load conditions and identified the critical region for each loading case. Two types of design methods are recommended for RC columns to provide superior residual capacities. They are RC columns detailing with multi-layer steel reinforcement cages and a composite columns including a central structural steel core. These are to provide post blast gravity load resisting capacity compared to typical RC column against a catastrophic collapse. Overall, this research broadens the current knowledge of blast and residual capacity analysis of RC framed structures and recommends methods to evaluate and mitigate blast impact on key elements of multi-storey buildings.
机译:恐怖分子通常使用车载燃烧装置瞄准高占用率的标志性和公共建筑,以夺取最大生命并严重损害公共财产。虽然最初的人员伤亡是由于爆炸直接造成的,但结构元件的倒塌可能会大大增加总数。这些建筑物中的大多数已经建成或未考虑其易受此类事件影响而建造。因此,对建筑物故意炸弹的脆弱性和剩余容量评估对于提供缓解策略以保护建筑物的居住者和财产很重要。因此,爆炸载荷及其对建筑物的影响最近引起了极大的关注。 ud ud必须为将来的建筑开发全面而经济的设计策略。这项研究调查了钢筋混凝土(RC)框架建筑物及其承载关键结构部件对近场爆炸事件的响应和破坏。使用基于有限元方法(FEM)的分析来研究结构框架系统和组件的整体稳定性,然后分别使用代码SAP2000和LS DYNA严格分析关键结构组件,以进行破坏评估。该研究涉及结构工程的四个重要领域。它们是爆破载荷确定,使用有限元技术进行数值建模,高应变速率下的材料性能以及非线性动态结构分析。研究了不同爆炸荷载情况下钢筋混凝土框架房屋的响应和破坏情况。研究了二维RC框架在不同载荷条件下的爆炸影响区域,并确定了每种载荷情况下的临界区域。推荐两种类型的设计方法用于RC色谱柱,以提供出色的残留容量。它们是钢筋混凝土柱,配有多层钢筋笼和复合柱,其中包括中央结构钢芯。与典型的RC柱相比,它们具有抗爆炸性的能力,可防止发生爆炸性倒塌。总体而言,这项研究拓宽了目前对钢筋混凝土框架结构的爆炸和剩余承载力分析的知识,并提出了评估和减轻爆炸对多层建筑关键要素影响的方法。

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