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Green's function solution for transient heat conduction in concrete-filled CHS subjected to fire

机译:用于火灾中的混凝土填充CHS瞬态热传导的格林函数解决方案

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摘要

The heat transfer analysis of concrete-filled steel circular hollow sections (CHS) subjected to fire is essentially classified as the process of deriving a solution for transient heat conduction in a composite medium in a cylindrical coordinate system. In this paper, an efficient numerical approach based on an analytical Green's function (GF) solution is developed, where the spatial variable is analytically tractable without recourse to spatial discretization. The thin steel layer is conveniently treated as a lumped heat capacitance with uniform temperature distribution to avoid tedious analytical solutions for hollow cylinders. A computational model is developed based on Duhamel's principle, incorporating time-varying fire conditions. The choice of sampling time is not constrained by numerical stability and can be as large as 30 min in one time step. The numerical approach can be used to predict the temperature field inside the entire composite domain and the heat flux at the fire and the steel-concrete interfaces, as well as to verify more sophisticated numerical codes, e.g. finite element codes, of heat transfer.
机译:遭受火灾的钢管混凝土圆形空心截面(CHS)的传热分析基本上被归类为在圆柱坐标系中得出复合介质中瞬态热传导解决方案的过程。在本文中,开发了一种基于解析格林函数(GF)解的有效数值方法,其中空间变量在分析上易于处理,而无需求助于空间离散。薄的钢层通常被视为具有均匀温度分布的集总热容,从而避免了中空圆柱体的繁琐分析解决方案。基于Duhamel原理开发了一种计算模型,其中包含了时变的火灾情况。采样时间的选择不受数值稳定性的限制,在一个时间步中可以长达30分钟。数值方法可用于预测整个复合材料区域内部的温度场以及火和钢-混凝土界面处的热通量,还可用于验证更复杂的数字代码,例如:传热的有限元代码。

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