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Thermal Properties and Heat Transfer in Concrete Filled Steel Tube Reinforced Concrete Columns Exposed to Fire

机译:混凝土钢管钢管钢管混凝土柱的热性能和传热

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The thermal properties of concrete and steel were concerned. Specific heat, thermal conductivity, density and thermal contact conductance at the steel-concrete interface were compared from different researchers. Different ways of calculation method of heat transfer were summarized. A finite element method (FEM) procedure was suggested to calculate temperature distribution of concrete filled steel tube reinforced concrete (CFSTRC) column with suitable thermal properties of concrete and steel. The results showed that different models of thermal properties of concrete and steel dispersed widely. The dispersion of thermal properties of steel was smaller than that of concrete. Moisture and aggregate type had some influence on specific heat of concrete, and aggregate type had some influence on thermal conductivity of concrete. Thermal conductivity of reinforcing steel and stainless steel showed a reverse trend with temperature increasing. The influence of temperature on density of concrete and steel was slightly. Cross-sectional type had some influence on thermal contact conductance at the steel-concrete interface in some models, but constant values have been used extensively by different researchers. According to experimental validation, the FEM procedure was capable of predicting temperature distribution of CFSTRC columns with an accuracy that was sufficient for design purposes.
机译:涉及混凝土和钢的热特性。与不同的研究人员比较了钢混凝土界面处的比热,导热性,密度和热接触电导。总结了传热计算方法的不同方式。有限元方法(FEM)程序有人试图计算混凝土钢管钢管钢筋混凝土(CFSTRC)柱的温度分布,采用混凝土钢的热性能。结果表明,广泛分散的混凝土和钢的热特性模型。钢的热性能的分散小于混凝土的分散性。水分和骨料类型对混凝土的比热有一些影响,骨料类型对混凝土的导热系数有一些影响。增强钢和不锈钢的导热系数显示出温度升高的反向趋势。温度对混凝土和钢密度的影响略有。在某些型号中,横截面类型对钢混凝土界面处的热接触电导有一些影响,但不同的研究人员已经广泛使用了恒定值。根据实验验证,有限元程序能够预测CFSTRC柱的温度分布,精度足以进行设计目的。

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