Influence of Thickness of the Porous Layer on Thin Film Condensation in Forced Convection in a Canal Whose Walls are Covered with a Porous Material: Determination of Lengths of Entry

Pape Tamsir Ndiaye, M. Ndiaye, Goumbo Ndiaye, O. Thiam, M. Sow, C. Mbow
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Abstract

We have examined film condensation in a channel whose walls are covered with porous media numerically. The transfers in the porous medium and the liquid film are respectively described by the Darcy-Brinkman-Forchheimer model and the equations of the hydrodynamic and thermal boundary layers and are solved by the decentered implicit finite difference method and the iterative Gauss-Seidel method. After validating, the influence of the thickness of the porous layer on the longitudinal velocity and the temperature profiles in both media (pure liquid and porous medium), the thickness of the liquid film, the local Nusselt number and the lengths of entry have been studied. We note that an increase in the thickness of the porous layer increases the friction and decreases the contact of the fluid with the cold plate and allows a decrease in the longitudinal velocity and an increase in the temperatures in the porous medium and the pure liquid, a decrease liquid film thickness (disadvantaged condensation) and increases the local Nusselt number and also an increase in the length of entry. The increase in length of entry is quasi-linear. The sensitivity of condensation to a change in thickness of the porous layer is constant.
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多孔层厚度对多孔材料覆盖管道强制对流中薄膜凝结的影响:入口长度的测定
我们用数值方法研究了壁面被多孔介质覆盖的通道中的膜凝结现象。多孔介质和液膜中的传热分别用Darcy-Brinkman-Forchheimer模型和流体动力边界层和热边界层方程来描述,并采用去中心隐式有限差分法和迭代高斯-塞德尔法进行求解。验证后,研究了多孔层厚度对两种介质(纯液体和多孔介质)纵向速度和温度分布、液膜厚度、局部努塞尔数和入口长度的影响。我们注意到,多孔层厚度的增加增加了摩擦,减少了流体与冷板的接触,允许纵向速度的降低和多孔介质和纯液体中的温度的升高,液膜厚度的减少(不利的冷凝),增加了局部努塞尔数,也增加了进入的长度。入口长度的增加是准线性的。冷凝对多孔层厚度变化的敏感性是恒定的。
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