首页> 外文期刊>哈尔滨工业大学学报(英文版) >On the combined heat transfer of natural convection, radiation and conduction in the non-gray semitransparent thermal fibrous insulation
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On the combined heat transfer of natural convection, radiation and conduction in the non-gray semitransparent thermal fibrous insulation

机译:非灰色半透明热纤维绝缘体中自然对流,辐射和传导的组合传热

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摘要

A detailed numerical modeling is performed to investigate heat transfer in high-porous, high-temperature non-gray semitransparent silica insulation materials. Radiation between fibers, conduction within fibers and convection from the fibers to the surrounding fluid are considered. Macroscopic ( porous media) modeling is used to determine the velocity, pressure and temperatures fields for fibrous insulation with a random packing geometry under natural convection. Based on a non-gray application of the solution to the radiative transfer equation, the value of the refractive index(n,m) is used to generate macroscopic average radiative properties such as extinction coefficient, scattering albedo and phase function. Key features of the macroscopic model include two-dimensional effects,non-gay radiative exchange, and the relaxation of the local thermodynamic non-equilibrium. The effectiveness of this numerical model is validated by the previous experimental data.
机译:进行了详细的数值建模,以研究高孔,高温非灰色半透明二氧化硅绝缘材料中的传热。考虑了纤维之间的辐射,纤维内的传导以及从纤维到周围流体的对流。宏观(多孔介质)建模用于确定自然对流下具有随机堆积几何形状的纤维绝缘的速度,压力和温度场。基于该解决方案在辐射传递方程上的非灰色应用,折射率(n,m)的值用于生成宏观平均辐射特性,例如消光系数,散射反照率和相位函数。宏观模型的主要特征包括二维效应,非同性恋辐射交换以及局部热力学非平衡的松弛。该数值模型的有效性已通过先前的实验数据验证。

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