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Probabilistic failure analysis of reinforced concrete beam-column sub-assemblage under column removal scenario

机译:柱去除场景下钢筋混凝土梁柱子组件的概率故障分析

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摘要

Column removal failure is a common failure type of reinforced concrete (RC) structures subjected to progressive collapse. Thus, it is widely adopted to use the experimental/numerical column removal scenario to assess the progressive collapse capacity of RC structures. However, most of existing studies neglect the uncertainties involved in the structures, e.g., geometric size and material properties, while it may have great influence on the overall behavior of the structure under progressive collapse. In this paper, a probabilistic analysis of RC beam-column sub-assemblage under column removal scenario is performed. An efficient numerical model based on the finite element software OpenSEES is firstly developed for progressive collapse analysis of RC structures. The model adopts fiber beam-column element with co-rotational formulation to simulate the extreme behavior of frame members under column removal scenario, and uses a Min-Max material to apply the material failure criterion. Then the probability density evolution method (PDEM) is employed to conduct the probabilistic failure analysis. Two benchmark column removal tests of RC sub-assemblages are selected as the numerical case study examples. The deterministic analysis results indicates that the proposed finite element model is effective to reproduce the typical behavior of the sub-assemblages, while the probabilistic analysis provides mean values, standard variations and probability density functions (PDFs) of the whole progressive collapse process. Finally, the influence (or sensitivity) of the uncertain parameters on the global and local behaviors of RC beam-column sub-assemblage under column removal are quantified.
机译:柱去除失败是经过逐渐崩溃的钢筋混凝土(RC)结构的常见故障类型。因此,广泛采用了实验/数值柱去除场景来评估RC结构的渐进塌陷能力。然而,大多数现有研究忽略了结构中涉及的不确定性,例如几何尺寸和材料特性,而在逐渐崩溃下的结构的整体行为可能会产生很大影响。在本文中,执行了在列移除场景下RC光束列子组合的概率分析。首先开发了基于有限元软件开放的有效数值模型,用于RC结构的渐进塌陷分析。该模型采用具有共旋转配方的光纤束柱元素,以模拟框架成员在列移除场景下的极端行为,并使用MIN-MAX材料来应用材料故障标准。然后采用概率密度进化法(PDEM)来进行概率性故障分析。选择RC子组件的两个基准柱去除测试作为数值案例研究示例。确定性分析结果表明,所提出的有限元模型可有效地再现子组件的典型行为,而概率分析提供了整个渐进崩溃过程的平均值,标准变化和概率密度函数(PDF)。最后,量化了在列移除下RC光束柱子组合的全局和局部行为的不确定参数的影响(或敏感性)。

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