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The influence of beams design and the slabs effect on the progressive collapse resisting mechanisms development for RC framed structures

机译:光束设计的影响及平板对RC框架结构进行逐渐塌陷机制开发的影响

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摘要

Using numerical approaches, this paper investigates the structural response of RC framed buildings subjected to accidental/abnormal loads (explosion, impact, etc.). Beside the contribution of the beams, currently considered in the progressive collapse analyses, the effect of the slab structural element through its specific resisting mechanisms (Flexural Action, Yield Line Mechanism, Membrane Action) is also assessed. In addition, the influence of three distinct beam design parameters (the ductility class of the beam longitudinal reinforcement, the beam flexibility in terms of beam height over the beam clear span ratios, respectively the beam longitudinal reinforcement ratio) on the progressive collapse behavior of RC structures is evaluated. Based on previously calibrated numerical models, a consistent series of nonlinear push-down advanced analyses are performed using the Finite Element Method approach. The results indicate that the slab influence is significant at the internal forces transfer and load redistribution mechanisms level: it completely changes the resisting elements behavior when considered in the numerical model. Original findings based on the conducted parametric studies are drawn and compared with results currently available in technical literature.
机译:本文采用数值方法调查了患有意外/异常载荷的RC框架建筑物的结构响应(爆炸,影响等)。除了在逐步塌陷分析中考虑的光束的贡献之外,还评估了平板结构元件通过其特定抗蚀机制(弯曲作用,产量线机制,膜动作)的影响。此外,三种不同光束设计参数的影响(梁纵向加固的延展性等级,梁高度在光束上的光束高度方面的光束柔韧性分别在RC的渐进塌陷行为上分别为梁纵向增强比)评估结构。基于先前校准的数值模型,使用有限元方法方法进行一系列一致的非线性推挽高级分析。结果表明,在内部力转移和载荷再分配机制水平中,板坯的影响是显着的:在数值模型中考虑时,它完全改变抗蚀元件行为。基于进行的参数研究的原始发现并与技术文献目前可用的结果进行了比较。

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