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Finite amplitude convection and heat transfer in inclined porous layer using a thermal non-equilibrium model

机译:热非平衡模型在倾斜多孔层中的有限振幅对流和传热

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摘要

Finite amplitude convection in a inclined porous layer heated from below is studied by using local thermal non-equilibrium (LTNE) as mathematical model which takes into account the heat transferred between the solid phase and the fluid phase. Consequently, in addition to Darcy-Rayleigh number Ra and the inclination angle φ, two further non dimensional numbers are introduced: the inter-phase heat transfer parameter H and the porosity modified conductivity ratio γ. In a recent paper (Barletta and Rees, 2015), the linear stability analysis of the basic monocellular flow indicated that the inclination angle promotes the appearance of longitudinal rolls as the preferred mode of convection. The current paper focuses on the nonlinear evolution of longitudinal rolls in a supercritical regime of convection. A weakly nonlinear analysis, using a derived amplitude equation, is adopted to determine the nonlinear effects of the parameters Ra,φ,H and γ. The results indicate that in inclined layers (i) the nonlinearity decelerates the mean flow; (ii) the heat transfer, determined by the evaluation of the Nusselt number (Nu) at the layer boundary, corresponds to the one obtained for horizontal layers by scaling Ra with cos φ, i.e. Nu = Nu(Ra cos φ,H,γ); (iii) in accordance with existing laboratory experiments, the slope of Nu is less than 2, where 2 is the value predicted by the local thermal equilibrium model, and the slope represents the derivative of Nu with respect to the distance of the critical parameter from the threshold value for the onset of instability; (iv) increasing values of both H and y produce an enhancement of the heat transfer across the layer. Finally, the comparison between the LTNE theoretical predictions and existing experiments conducted with various combinations of solid matrix and fluids suggests a possible alternative way to determine the heat transfer coefficient H.
机译:利用局部热不平衡(LTNE)作为数学模型,研究了从下方加热的倾斜多孔层中的有限振幅对流,该模型考虑了固相和液相之间的热传递。因此,除了达西-瑞利数Ra和倾斜角φ之外,还引入了另外两个无量纲数:相间传热参数H和孔隙率修正的电导率比γ。在最近的一篇论文中(Barletta和Rees,2015年),基本单细胞流动的线性稳定性分析表明,倾斜角可促进纵向辊的出现,这是对流的首选方式。当前的论文集中在对流超临界状态下纵向轧辊的非线性演化。采用微分非线性分析,使用导出的振幅方程式,确定参数Ra,φ,H和γ的非线性影响。结果表明,在倾斜层中,(i)非线性会降低平均流量; (ii)通过评估层边界处的努塞尔特数(Nu)确定的热传递对应于通过用cosφ缩放Ra来获得水平层的热传递,即Nu = Nu(Ra cosφ,H,γ ); (iii)根据现有的实验室实验,Nu的斜率小于2,其中2是局部热平衡模型预测的值,并且该斜率代表Nu相对于关键参数与目标之间的距离的导数。不稳定开始的阈值; (iv)增加H和y的值会增强整个层的热传递。最后,将LTNE理论预测与使用固体基质和流体的各种组合进行的现有实验之间的比较提出了一种确定传热系数H的可能替代方法。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2017年第10期|399-410|共12页
  • 作者单位

    Laboratoire de Mecanique de Lille, CNRS, FRE 3723, Universite de Lille I, Bd Paul Langevin, 59655 Villeneuve d'Asq, France;

    Laboratoire de Mecanique de Lille, CNRS, FRE 3723, Universite de Lille I, Bd Paul Langevin, 59655 Villeneuve d'Asq, France;

    Department of Industrial Engineering, Alma Mater Studiorum Universita di Bologna, Viale Risorgimento 2, Bologna 40136, Italy;

    Department of Industrial Engineering, Alma Mater Studiorum Universita di Bologna, Viale Risorgimento 2, Bologna 40136, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Porous medium; Darcy's law; Nonlinear stability; Inclined layer; Local thermal non-equilibrium;

    机译:多孔介质达西定律;非线性稳定性;倾斜层;局部热不平衡;

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