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Performance limit states for progressive collapse analysis of reinforced concrete framed buildings

机译:钢筋混凝土框架结构逐步倒塌分析的性能极限状态

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The definition of performance limit states for progressive collapse design and assessment of civil structures is an open issue and deserves special attention in view of future building codes and standards. In this study, the main findings of a multilevel sensitivity analysis are presented to characterize the progressive collapse capacity of a selected class of modern European buildings having a reinforced concrete framed structure. After that a group of capacity model properties are assumed as random variables on the basis of earlier studies, the sensitivity of both ultimate load capacity and corresponding maximum and residual drifts to the ultimate steel strain and location of column-removal scenario is assessed. Then, the influence of the capacity model properties on maximum drift demand corresponding to a code-compliant design gravity load is evaluated. Finally, five performance limit states associated with increasing levels of damage are introduced and the corresponding load capacity is quantified under varying capacity model properties. Analysis results indicate a high sensitivity to the ultimate steel strain, column location in plan, beam span and yield steel strength.
机译:用于渐进式倒塌设计和土木结构评估的性能极限状态的定义是一个未解决的问题,鉴于未来的建筑规范和标准,应特别注意。在这项研究中,提出了多级敏感性分析的主要发现,以表征具有钢筋混凝土框架结构的所选现代欧洲建筑的渐进倒塌能力。之后,根据先前的研究,将一组容量模型的属性假定为随机变量,然后评估了极限载荷容量以及相应的最大和残余漂移对极限钢应变和柱拆除场景的敏感性。然后,评估了容量模型属性对与符合规范的设计重力载荷相对应的最大漂移需求的影响。最后,引入了与损坏程度增加相关的五个性能极限状态,并在变化的容量模型属性下量化了相应的负载容量。分析结果表明,它对极限钢应变,平面中的柱位置,梁跨度和屈服强度具有很高的敏感性。

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