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Performance of different seismic retrofitting techniques in case of blastinduced progressive collapse

机译:爆破逐渐塌陷的情况下不同地震改造技术的性能

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Extreme loading conditions such as man-made malicious actions, fires or natural events could induce local failure mechanisms (e.g., a loss of a member) which may trigger progressive collapse. The design or the assessment of a critical infrastructure needs to address the possibility of such an extreme circumstance taking place during its effective life-time. It is observed that blast-induced progressive collapse mechanisms involve non-linear structural behavior similar to that due to earthquakes. This work focuses on probabilistic analysis of progressive collapse of a typical RC structure, induced by a blast event. The objective is to verify the effectiveness of seismic retrofitting schemes against explosions and the eventual progressive collapse. The probabilistic analysis is performed by taking into account the uncertainties in loading such as planar configuration and amplitude of the blast loading. A standard Monte Carlo simulation method is employed to generate various realizations of the uncertain parameters within the problem. For a given realization, various component-level dynamic analyses are preformed within a certain range of distance, in order to quantify and locate the damage induced by shock wave on structural elements. As a case study, a 5-storey reinforced concrete frame structure designed for gravity loading only is considered. As possible retrofitting schemes, steel bracing, FRP wrapping and RC jacketing are compared. The probability of collapse considering both blast and earthquake for the structure before and after retrofit are compared.
机译:极端装载条件,如人为恶意行动,火灾或自然事件可以诱导局部失效机制(例如,成员的丢失),这可能引发逐步崩溃。关键基础设施的设计或评估需要解决在其有效的生命期间发生这种极端情况的可能性。观察到爆炸引起的逐渐崩溃机制涉及与地震相似的非线性结构行为。这项工作侧重于爆炸事件诱导的典型RC结构逐步崩溃的概率分析。目的是验证地震改造方案对爆炸的有效性和最终的逐步崩溃。通过考虑加载中的不确定性,例如爆破载荷的平面配置和幅度的不确定性来进行概率分析。使用标准的蒙特卡罗模拟方法来在问题中产生不确定参数的各种实现。对于给定的实现,各种组分级动态分析在一定距离范围内被预先形成,以便量化和定位由结构元件上的冲击波引起的损坏。如案例研究,考虑了设计用于重力载荷的五层钢筋混凝土框架结构。与可能的改造方案,比较钢支撑,FRP包装和RC夹套。比较了对改装前后结构的爆炸和地震的崩溃概率。

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