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Influence of wall emissivity and convective heat transfer coefficient on the adiabatic surface temperature as thermal/structural parameter in fire modeling

机译:火灾模拟中壁的发射率和对流传热系数对绝热表面温度的影响作为热/结构参数

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摘要

In fire engineering analysis, one of the open problem is the transfer of thermal parameters obtained by fire CFD model to FEM models for structural analysis. In this study the new useful concept of "Adiabatic Surface Temperature" or more commonly known as AST, introduced by Wickstrom, is investigated. The adiabatic surface temperature offers the opportunity to transfer both thermal information of the gas and the net heat flux to the solid phase model, obtained by CFD analysis. In this study two CFD analyses are carried out in order to evaluate the effect of emissivity and of convective heat transfer coefficient to determine the AST. First one CFD analysis simulating a fire scenario, "conjugate heat transfer", with a square steel beam exposed to hot surface is carried out to calculate AST, heat convective coefficient and temperature field in the beam. Second one, a conductive analysis is carried out on "standalone beam" imposing a third type boundary condition on its boundaries assuming the AST, evaluated in the conjugate analysis, as external temperature. Different heat convective coefficients are imposed on the beam walls. The comparison between results obtained by means of the two proposed analyses shows the use of AST as transfer thermal parameter between CFD (Computational Fluid Dynamic) and FEM (Finite Element Method) models is appropriate when the convective heat transfer coefficient is properly evaluated.
机译:在消防工程分析中,未解决的问题之一是将通过消防CFD模型获得的热参数转换为用于结构分析的FEM模型。在这项研究中,研究了由Wickstrom提出的“绝热表面温度”或更通常称为AST的新有用概念。绝热表面温度提供了将气体的热信息和净热通量传递到固相模型的机会,固相模型是通过CFD分析获得的。在这项研究中,进行了两次CFD分析,以评估发射率和对流传热系数对AST的影响。首先进行CFD分析,模拟火灾情景“共轭传热”,使方形钢梁暴露于热表面,以计算AST,梁中的对流系数和温度场。第二,对“独立束”进行传导分析,在其边界上施加第三类型边界条件,假定在共轭分析中评估的AST为外部温度。在梁壁上施加了不同的热对流系数。通过两个提议的分析获得的结果之间的比较表明,当正确评估对流传热系数时,使用AST作为CFD(计算流体动力学)模型和FEM(有限元方法)模型之间的传热参数是合适的。

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