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Improved calculation method for insulation-based fire resistance of composite slabs

机译:复合板基于绝缘的耐火性的改进计算方法

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Floor slabs play a critical role in the fire resistance of buildings, not only by maintaining structural stability and integrity, but also by providing thermal insulation to limit the rise in temperature of floors above a fire. Composite slabs, consisting of concrete topping on steel decking, are common in steel building construction, but the profiled geometry of the decking makes the analysis of heat transfer in composite slabs more complex than for flat slabs. A method for calculating the insulation-based fire resistance of composite slabs with profiled steel decking is provided in Annex D of Eurocode 4 (EC4). However, the applicability of the EC4 calculation method is limited to a range of commonly used slab geometries from the 1990s, which is narrower than the range used in current practice. In addition, the EC4 calculation method assumes a specific value of moisture content for the concrete, and different values of moisture content can significantly affect the fire resistance, as shown in this study. This paper proposes an improved algebraic expression for estimation of the insulation-based fire resistance of composite slabs that explicitly accounts for moisture content and is applicable to an extended range of slab geometries. The proposed expression is developed based on computed values of fire resistance obtained from a validated finite element modeling approach. A set of 54 composite slab configurations are selected for analysis using a sequential experimental design. The accuracy of the proposed method is verified against numerical results for an additional set of 32 slab configurations and is also validated against experimental data. Comparisons of the proposed calculation method with the results of the verification analyses show deviations of less than 15 min in all cases for the insulation-based fire resistance of the composite slabs.
机译:楼板不仅通过保持结构的稳定性和完整性,而且通过提供隔热层以限制火灾后楼板温度的升高,在建筑物的耐火性中起着至关重要的作用。在钢结构建筑中,通常由钢面板上的混凝土浇筑物组成的复合板很常见,但是,由于盖板的异型几何形状,使得复合板中传热的分析比平面板更为复杂。欧洲规范4(EC4)的附录D中提供了一种用于计算具有异型钢甲板的复合板基于绝缘的耐火性的方法。但是,EC4计算方法的适用范围仅限于1990年代以来常用的板坯几何形状范围,该范围比当前实践中使用的范围窄。另外,如本研究所示,EC4计算方法假定混凝土的含水量为特定值,并且不同的含水量值会显着影响耐火性。本文提出了一种改进的代数表达式,用于估算复合板的基于绝缘的耐火性,该表达式明确考虑了水分含量,适用于扩展的板几何形状。根据从经过验证的有限元建模方法获得的耐火性计算值,开发了建议的表达式。使用顺序实验设计选择了一组54种复合板配置进行分析。针对另一组32个板坯配置的数值结果验证了所提方法的准确性,并针对实验数据进行了验证。所提出的计算方法与验证分析结果的比较表明,在所有情况下,复合板基于绝缘的耐火性偏差均小于15分钟。

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