Probabilistic models for thermal properties of concrete

Balša Jovanovi?, N. Khorasani, Thomas Thienpont, R. Chaudhary, R. V. Coile
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引用次数: 6

Abstract

Thermal conductivity and specific heat of concrete are highly influential parameters for the heat transfer into the material during fire exposure. Reviewing the available literature has shown that there is a large scatter in the data for these thermal parameters. To quantify that uncertainty, novel probabilistic models for thermal conductivity and specific heat of concrete at elevated temperatures are developed. Analysis of available experimental data indicates that a temperature-dependent Gamma distribution can be recommended for both thermal properties. Closed-form equations for the temperature-dependent mean and standard deviation are derived. Thus, for both the thermal conductivity and the specific heat, a continuous probability distribution as a function of temperature is obtained, which can be easily implemented in numerical simulations. Using the example of the probabilistic analysis of a simply supported concrete slab exposed to the standard fire, the models are compared with the commonly used deterministic representation of the thermal properties. It is shown that the calculated probabilities of failure using the deterministic models are an order of magnitude lower and therefore unconservative. This analysis suggests that accounting for the uncertainty in thermal properties for concrete slabs can have a significant effect on evaluating the safety and therefore should not be ignored in cases of high importance.
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混凝土热性能的概率模型
混凝土的导热系数和比热是影响火灾过程中材料传热的重要参数。回顾现有的文献表明,这些热参数的数据有很大的分散。为了量化这种不确定性,开发了高温下混凝土导热系数和比热的新型概率模型。对现有实验数据的分析表明,可以为这两种热性能推荐一个温度相关的伽马分布。导出了与温度相关的平均值和标准差的封闭形式方程。从而得到导热系数和比热随温度的连续概率分布,便于在数值模拟中实现。以标准火灾下简支混凝土板的概率分析为例,将模型与常用的热性能确定性表示进行了比较。结果表明,使用确定性模型计算的失效概率要低一个数量级,因此是非保守的。这一分析表明,考虑混凝土板热性能的不确定性对评估安全性有重大影响,因此在高度重要的情况下不应忽视。
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