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Initial probabilistic studies into a deflection-based design format for concrete floors exposed to fire

机译:初始概率研究进入基于偏转的设计格式,用于暴露于火灾的混凝土地板

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Performance Based Design is increasingly applied in structural fire engineering, sometimes entailing the use of deflection-based criteria to demonstrate adequate performance. Since no deflection-based design format currently exists which takes into account the many uncertainties associated with structural performance during fire, the attainment of an 'adequate safety level' is not necessarily ensured. Building on earlier studies, the feasibility of a deflection-based design format with a single global safety factor is explored for concrete floors exposed to fire. Considering the common assumption of lognormality for slab deflections, safety factors can be defined. The subsequent feasibility study however indicates that the assumption of a lognormal distribution is problematic in case of fire. A conceptual alternative to the global safety factor is explored, where the load on the slab is stepwise increased up to the point where a predefined deflection criterion is reached. This alternative approach seems promising, as it results in a known distribution type for the calculated maximum distributed load. Next steps for the development of this concept are identified.
机译:基于性能的设计越来越多地应用于结构消防工程,有时需要使用基于偏转的标准来证明适当的性能。由于目前没有基于偏转的设计格式,这考虑了在火灾期间与结构性能相关的许多不确定性,因此不一定确保了“适当安全水平”的达到。在早期的研究中,探讨了偏转的基于偏转的设计格式的可行性,用于防火的混凝土地板。考虑到Lognormal性的常见假设,可以定义安全因子。然而,随后的可行性研究表明,在发生火灾时,伐诺常规分布的假设是有问题的。探索了全球安全系数的概念替代品,其中板上的负载逐步增加到达到预定偏转标准的点。这种替代方法似乎很有希望,因为它导致已知的最大分布式负载的已知分布类型。确定了该概念发展的下一个步骤。

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