Kim Jung J, Youm Kwang-Soo, Reda Taha Mahmoud M
School of Architecture, Kyungnam University, Changwon-si 631-701, Republic of Korea.
GS E&C Research Institute, Gyeonggi-do 449-831, Republic of Korea.
ScientificWorldJournal. 2014;2014:242806. doi: 10.1155/2014/242806. Epub 2014 Aug 11.
A numerical method to identify thermal conductivity from time history of one-dimensional temperature variations in thermal unsteady-state is proposed. The numerical method considers the change of specific heat and thermal conductivity with respect to temperature. Fire test of reinforced concrete (RC) columns was conducted using a standard fire to obtain time history of temperature variations in the column section. A thermal equilibrium model in unsteady-state condition was developed. The thermal conductivity of concrete was then determined by optimizing the numerical solution of the model to meet the observed time history of temperature variations. The determined thermal conductivity with respect to temperature was then verified against standard thermal conductivity measurements of concrete bricks. It is concluded that the proposed method can be used to conservatively estimate thermal conductivity of concrete for design purpose. Finally, the thermal radiation properties of concrete for the RC column were estimated from the thermal equilibrium at the surface of the column. The radiant heat transfer ratio of concrete representing absorptivity to emissivity ratio of concrete during fire was evaluated and is suggested as a concrete criterion that can be used in fire safety assessment.
提出了一种根据热非稳态下一维温度变化的时间历程来识别热导率的数值方法。该数值方法考虑了比热容和热导率随温度的变化。使用标准火灾对钢筋混凝土(RC)柱进行火灾试验,以获取柱截面温度变化的时间历程。建立了非稳态条件下的热平衡模型。然后通过优化模型的数值解以符合观测到的温度变化时间历程来确定混凝土的热导率。接着将所确定的随温度变化的热导率与混凝土砖的标准热导率测量值进行验证。得出的结论是,所提出的方法可用于保守地估计混凝土的热导率以用于设计目的。最后,根据柱表面的热平衡估算了RC柱混凝土的热辐射特性。评估了混凝土在火灾期间表示吸收率与发射率之比的辐射热传递率,并建议将其作为可用于消防安全评估的具体标准。