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Radiative Heat Transfer in Finite Cylindrical Enclosures with Nonhomogeneous Participating Media

机译:具有非均匀参与介质的有限圆柱外壳中的辐射传热

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摘要

Results of a numerical solution for radiative heat transfer in homogeneous and nonhomogeneous participating media are presented. The geometry of interest is a finite axisymmetric cylindrical enclosure. The integral formulation for radiative transport is solved by the YIX method. A three-dimensional solution scheme is applied to two-dimensional axisymmetric geometry to simplify kernel calculations and to avoid difficulties associated with treating boundary conditions. As part of the effort to improve modeling capabilities for turbulent jet diffusion flames, predicted distributions for flame temperature and soot volume fraction are used to calculate radiative heat transfer from soot particles in such flames. It is shown that the nonhomogeneity of radiative property has very significant effects. The peak value of the divergence of radiative heat flux could be underestimated by 2 factor of 7 if a mean homogeneous radiative property is used. Since recent studies have shown that scattering by soot agglomerates is significant in flames, the effect of magnitude of scattering is also investigated and found to be nonnegligible.
机译:给出了均匀和非均匀参与介质中辐射传热数值解的结果。感兴趣的几何形状是有限的轴对称圆柱外壳。辐射传输的积分公式通过YIX方法求解。将三维求解方案应用于二维轴对称几何,以简化内核计算并避免与处理边界条件相关的困难。作为改进湍流射流火焰建模能力的一部分,使用火焰温度和烟灰体积分数的预测分布来计算此类火焰中烟灰颗粒的辐射热传递。结果表明,辐射特性的非均匀性具有非常显着的影响。如果使用平均均一的辐射特性,则辐射热通量散度的峰值可能会低估2的7倍。由于最近的研究表明,烟灰团聚体在火焰中的散射非常明显,因此还对散射幅度的影响进行了研究,发现散射的影响不可忽略。

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  • 作者

    Ku, Jerry C.; Hsu, Pei-Feng;

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  • 年度 1994
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