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Combined radiation and conduction in glass foams

机译:玻璃泡沫中的辐射和传导

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摘要

Understanding of heat transfer in glass foams and the development of theoretical tools for predicting heat transfer properties of glass foams is critical to improving the efficiency of glass manufacturing. In this paper, combined radiation and conduction heat transfer in a semitransparent glass foam layer is analyzed. The foam layer is bounded by hot combustion gases on top and glass melt on bottom. Heat transfer is assumed to be one-dimensional perpendicular to the plane-parallel foam layer. A previously developed model is used to calculate effective extinction coefficients and scattering phase function of the foam layer using a void size distribution and assuming all voids to be spherical. These radiation properties are then used along with a Schuster-Schwarzchild two flux approximation to solve the radiative transfer equation (RTE). A method for obtaining the effective thermal conductivity of the foam layer is also presented. The RTE and the energy conservation equations are simultaneously solved using a numerical iteration procedure. The effect of foam thickness and bubble size on the temperature distribution in the foam layer is studied.
机译:了解玻璃泡沫中的热传递以及用于预测玻璃泡沫的传热性能的理论工具的发展对于提高玻璃制造效率至关重要。在本文中,分析了半透明玻璃泡沫层中的组合辐射和传导传热。泡沫层通过顶部和玻璃熔体上的热燃气层界定。假设传热是垂直于平面平行泡沫层的一维。先前开发的模型用于使用空隙尺寸分布计算泡沫层的有效消光系数和散射相位功能,并假设所有空隙是球形的。然后与Schuster-Schwarzchild两个磁通近似一起使用这些辐射性能以解决辐射传输方程(RTE)。还介绍了用于获得泡沫层的有效导热率的方法。使用数值迭代过程同时解决RTE和节能方程。研究了泡沫厚度和气泡尺寸对泡沫层中温度分布的影响。

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