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Combined Radiation And Natural Convection Within An Open ended Porous Channel - Validity Of The Rosseland Approximation

机译:开放结束多孔通道内的辐射和自然对流 - rosseland近似的有效性

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The present work deals with a numerical study of coupled fluid flow and heat transfer by transient natural convection and thermal radiation in a vertical channel opened at both ends and filled with a fluid-saturated porous medium. The bounding walls of the channel are isothermal and gray. In the present study we suppose the validity of the Darcy flow model and the local thermal equilibrium assumption. In order to examine the validity of the Rosseland approximation, the radiative term in the energy conservation equation was expressed via two different approaches. The first is based on the resolution of the radiative transfer equation (RTE) in the most general case while the second is based on assuming the Rosseland approximation to be valid. Numerical results show that the Rosseland approximation is valid only for optically thick media and far from the bounding walls. A parametric study shows that this approximation can be used with high confidence for large Planck number values, for temperature ratios close to 1 and/or for single scattering albedo near or equal to 1.
机译:本工作涉及通过在两端开口的瞬时自然对流和垂直通道中的瞬态自然对流和热辐射的数值研究,并且填充有流体饱和的多孔介质。通道的边界壁是等温和灰色。在本研究中,我们假设达西流模型的有效性和局部热平衡假设。为了检查rosseland近似的有效性,通过两种不同的方法表示节能方程中的辐射术语。第一个基于最常规情况下的辐射传输方程(RTE)的分辨率,而第二个是基于假设rosseland近似有效。数值结果表明,Rosseland近似仅适用于光学厚的介质,远离边界壁。参数研究表明,该近似可以与大的普通值的高置信度,用于接近1和/或用于接近或等于1的单个散射反玻璃的温度比。

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