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Heat transfer in a cylinder sheathed by flame-resistant fabrics exposed to convective and radiant heat flux

机译:圆柱体中的传热,该圆柱体由暴露于对流和辐射热通量的耐火织物包裹

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摘要

A numerical model is developed which investigates heat transfer in a cylinder sheathed by flame-resistant fabrics when suddenly exposed to convective and radiant heat flux from simulated pre-flashover fire radiation. The column inside the cylinder system simulating the human body is assumed to keep at a constant temperature. This model incorporates characteristics of the heat-induced changes in flame-resistant fabrics and dry air thermo-physical properties. Temperature distribution was calculated with the help of a one-dimensional radial heat transfer model. A skin burn equation is quoted to predict second-degree skin burn injuries based on the numerical model. The effects of air gap thickness on mean incident heat flux to the skin simulant surface are also discussed. Results from the numerical model contribute to a better understanding of the heat transfer process within flame-resistant fibrous materials and fabrics in intensively high-temperature environment. At the same time, the method in the paper also helps to establish a systematic method for analyzing heat transfer in other cylindrical applications.
机译:建立了一个数值模型,用于研究在突然暴露于模拟预闪火火灾中的对流和辐射热通量的情况下,阻燃织物包裹的圆柱体内的传热。假设圆柱系统内部模拟人体的柱子保持恒定的温度。该模型结合了阻燃织物中热引起的变化和干燥空气的热物理特性的特征。借助一维径向传热模型计算温度分布。引用了皮肤烧伤方程,以基于该数值模型来预测二级皮肤烧伤。还讨论了气隙厚度对皮肤模拟表面平均入射热通量的影响。数值模型的结果有助于更好地了解高温环境下阻燃纤维材料和织物中的传热过程。同时,本文中的方法还有助于建立分析其他圆柱应用中传热的系统方法。

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