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Risk-based cost-benefit analysis of frame structures considering progressive collapse under column removal scenarios

机译:基于风险的帧结构成本效益分析,考虑列移除方案下的逐行崩溃

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The decision to design a frame structure to bridge over a column lost due to accidental loading has obvious impacts on construction costs. Moreover, not all structures are potential targets of hazards likely leading to column loss events. In this context, we propose a formulation for risk-based cost-benefit analysis of design for load bridging over failed columns. The formulation combines normal with abnormal loading conditions, treating column loss probability as an independent parameter. The proposed formulation is employed in design of continuous beams, typical RC floors and regular frame structures. The study reveals the conditions for load bridging design in frame structures to be cost-effective. We show that column loss probabilities play a major role in optimal design and reinforcement decisions. The proposed formulation allows optimal design of frame structures addressing competition between failure modes. Under discretionary column removal, competition between local bending and local pancake failures is typical of regular frame buildings, as stronger beams favor pancake compression failures.
机译:决定设计框架结构在丢失的柱子上桥接由于意外负载而损失的柱子对施工成本具有明显的影响。此外,并非所有结构都是可能导致柱损失事件的潜在目标。在这方面,我们提出了一种制定的基于风险的成本效益分析,用于在失败的列上的负载桥接的装载。该配方与异常负载条件相结合,将柱损耗概率处理为独立参数。所提出的配方在连续梁,典型的RC地板和常规框架结构的设计中使用。该研究揭示了框架结构中负载桥接设计的条件,其具有成本效益。我们表明列损耗概率在最佳设计和强化决策中起主要作用。所提出的配方允许帧结构的最佳设计解决故障模式之间的竞争。在酌情柱拆除下,当地弯曲与本地煎饼失效之间的竞争是常规框架建筑的典型,因为较强的光束有利于煎饼压缩失败。

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