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A simplified approach for predicting temperatures in insulated RC members exposed to standard fire

机译:预测暴露于标准火中的绝缘RC构件中温度的简化方法

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摘要

Fire resistance of concrete structural members can be enhanced through the application of external fire insulation on the surfaces of concrete member. For evaluating fire resistance of such insulated RC members, temperatures in concrete and steel reinforcement are to be known. This paper develops a simplified approach for predicting cross-sectional temperatures in an insulated RC structural member exposed to standard fire. The approach is derived by replacing the insulation layer into an equivalent concrete thickness layer and then undertaking statistical regression analysis on temperature data of modified concrete section. The effect of critical parameters, including geometry of concrete member and insulation, thermal properties of concrete and fire insulation, and duration of fire exposure is accounted for in temperature equations. The validity of the approach is established by comparing predictions from the proposed equation with data generated from fire tests and finite element analysis. These comparisons show the proposed equation gives reasonable prediction of temperatures, within a range of +/- 10%, in insulated concrete members. The applicability of the proposed approach in design situations is illustrated though a numerical example. The simplicity of the proposed method makes it attractive for use in design situations and for incorporation in design manuals.
机译:通过在混凝土构件表面上应用外部防火材料可以增强混凝土构件的耐火性。为了评估这种绝缘RC构件的耐火性,已知混凝土和钢筋中的温度。本文开发了一种简化的方法来预测暴露于标准火中的绝缘RC结构构件的截面温度。该方法是通过将隔热层替换为等效的混凝土厚度层,然后对改性混凝土截面的温度数据进行统计回归分析而得出的。温度方程式说明了关键参数的影响,包括混凝土构件和保温材料的几何形状,混凝土和防火保温材料的热性能,以及着火持续时间。通过将拟议方程的预测与耐火试验和有限元分析生成的数据进行比较,可以确定该方法的有效性。这些比较表明,所提出的方程可对绝缘混凝土构件的温度进行合理的预测,范围为+/- 10%。通过数值示例说明了所提出方法在设计情况下的适用性。所提出的方法的简单性使其在设计情况下使用以及在设计手册中的应用都具有吸引力。

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