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首页> 外文期刊>Acta polytechnica >A METHOD FOR MEASURING THE SENSITIVITY OF BUILDING STRUCTURAL MEMBERS TO FIRE DECAY PHASES
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A METHOD FOR MEASURING THE SENSITIVITY OF BUILDING STRUCTURAL MEMBERS TO FIRE DECAY PHASES

机译:一种测量建筑结构构件衰变相位敏感性的方法

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Firefighters face a major threat when intervening in a building during a fire: the possibility of structural collapse during the cooling phase of the fire, or soon thereafter. At present, this threat is amplified by the fact that the behaviour of structures after the time of peak gas temperature is not well understood, and is not taken into account in the design. This work presents an analysis of the behaviour of different structural members under natural fires, and develops a method for characterizing their sensitivity to fire decay phases. Thermo-mechanical numerical simulations based on the non-linear finite element method are conducted using the parametric fire model of the Eurocode to represent natural fires. The results show that, for all the members (a column, a beam) and materials (reinforced concrete, steel and timber) that are studied here, structural failure during or after the cooling phase of a fire is a possible event. The major factors that promote delayed structural failure are thermal inertia and the constituting material of the member. A method, based on a new indicator, is proposed for quantifying the propensity to delayed failure for structural members under natural fire. This work enhances the understanding of the behaviour of structures under natural fires, and has important implications for the safety of fire brigades and of people responsible for making a building inspection after a fire.
机译:消防员在火灾中干预建筑物时面临主要威胁:在火灾的冷却阶段或之后不久,建筑物会坍塌。目前,这种威胁由于以下事实而被放大:对气体峰值温度之后的结构的行为还没有很好的了解,因此在设计中并未考虑到这一点。这项工作对自然火灾下不同结构构件的行为进行了分析,并提出了表征其对火灾衰减阶段敏感性的方法。使用Eurocode的参数火灾模型代表自然火灾,基于非线性有限元方法进行了热机械数值模拟。结果表明,对于此处研究的所有构件(圆柱,梁)和材料(钢筋混凝土,钢和木材)而言,火灾冷却阶段期间或之后的结构故障都是可能的。导致延迟结构破坏的主要因素是热惯性和构件的构成材料。提出了一种基于新指标的方法,用于量化自然火灾下结构构件延迟失效的可能性。这项工作增进了人们对自然火灾下建筑物行为的理解,并对消防队和火灾后负责建筑物检查的人员的安全产生重要影响。

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