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Thermal Contact Conductance-Based Thermal Behavior Analytical Model for a Hybrid Floor at Elevated Temperatures

机译:基于热接触电导的热性能分析模型在升高温度下的混合地板

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摘要

Hybrid floors infilled with polymeric materials between two steel plates were developed as a prefabricated floor system in the construction industry. However, the floor’s fire resistance performance has not been investigated. To evaluate this, fire tests suggested by the Korean Standards should be performed. As these tests are costly and time consuming, the number of variables were limited. However, many variables can be investigated in other ways such as furnace tests and finite element analysis (FEA) with less cost and time. In this study, furnace tests on heated surface areas smaller than 1 m2 were conducted to investigate the thermal behavior of the hybrid floor at elevated temperatures. To obtain the reliability of the proposed thermal behavior analytical (TBA) model, verifications were conducted by FEAs. Thermal contact conductance including interfacial thermal properties between two materials was adopted in the TBA model, and the values at elevated temperatures were suggested based on thermo-gravimetric analyses results and verified by FEA. Errors between the tests and TBA model indicated that the model was adequate in predicting the temperature distribution in small-scale hybrids. Furthermore, larger furnace tests and analysis results were compared to verify the TBA model’s application to different sized hybrid floors.
机译:用两个钢板之间的聚合物材料渗出的混合地板被开发为建筑业的预制地板系统。但是,楼层的耐火性能尚未被调查。为了评估这一点,应进行韩国标准建议的消防测试。随着这些测试的昂贵且耗时,变量的数量有限。然而,可以以其他方式调查许多变量,例如炉子测试和具有较少成本和时间的有限元分析(FEA)。在该研究中,进行了小于1m 2的加热表面区域的炉子测试,以研究杂交地板在升高的温度下的热行为。为了获得所提出的热行为分析(TBA)模型的可靠性,通过欺骗进行验证。在TBA模型中采用热接触电导,包括两种材料之间的界面热性质,基于热重量分析结果并通过FEA验证,提出升高温度的值。测试和TBA模型之间的误差表明该模型足够预测小规模混合物中的温度分布。此外,比较了较大的炉子测试和分析结果,以验证TBA模型对不同大小的混合地板的应用。

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