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Effects of heterogeneity in forced convection in a porous medium: parallel plate channel or circular duct

机译:多孔介质中强制对流的非均质性影响:平行板通道或圆形管道

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摘要

The effects of variation (in the transverse direction) of permeability and thermal conductivity, on fully developed forced convection in a parallel plate channel or circular duct filled with a saturated porous medium, is investigated analytically on the basis of a Darcy or Dupuit-Forchheimer model. It is shown that the Dupuit-Forchheimer problem reduces to the Darcy problem with a changed permeability variation. The cases of isoflux and isothermal boundaries are treated in turn. The bulk of the results pertain to a two-step variation. but the case of a weak continuous variation is also considered. The results for the parallel plate geometry and for the circular duct geometry are qualitatively similar. The replacement of isoflux boundaries by isothermal boundaries leads to a reduction of Nusselt number but otherwise there is little change in the pattern. The results demonstrate that the effect of permeability variation is that an above average permeability near the walls leads to an increase in Nusselt number, and this is explained in terms of variation in the curvature of the temperature profile. The effect of conductivity variation is more complex, there are two opposing effects and the Nusselt number is not always a monotonic function of the conductivity variation.
机译:在Darcy或Dupuit-Forchheimer模型的基础上,通过分析研究了渗透率和导热率的变化(沿横向方向)对平行板通道或充满饱和多孔介质的圆形管道中完全展开的对流的影响。 。结果表明,随着渗透率变化的变化,Dupuit-Forchheimer问题简化为Darcy问题。等流量和等温边界的情况依次处理。结果的大部分与两步变化有关。但是也考虑了连续变化较弱的情况。平行板几何形状和圆形管道几何形状的结果在质量上相似。等温边界替换为等温边界会导致Nusselt数减少,但否则模式几乎没有变化。结果表明,渗透率变化的影响是壁附近的渗透率高于平均水平会导致Nusselt数增加,这可以用温度曲线曲率的变化来解释。电导率变化的影响更为复杂,存在两个相反的影响,努塞尔数并不总是电导率变化的单调函数。

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