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Flow reversal in combined laminar mixed convection heat and mass transfer with phase change in a vertical channel

机译:垂直通道内层流混合对流传热传质过程中的相变

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This paper, deals with a numerical study of the effects of buoyancy forces on an upward, steady state, laminar flow of humid air in a vertical parallel-plate channel. The plates are wetted by a thin liquid water film and maintained at a constant temperature which is lower than that of the air entering the channel. A 2D fully elliptical model, associated with the Boussinesq assumption, is used to take into account axial diffusion. The solution of this mathematical model is based on the finite volume method and the velocity-pressure coupling is handled by the SIMPLER algorithm. Numerical results show that buoyancy forces have a significant effect on the hydrodynamic, thermal and mass fraction fields. Additionally, these forces induce flow reversal for high air temperatures and mass fractions at the channel entrance. It is established that heat transfer associated with phase change is, sometimes, more significant than sensible heat transfer. Furthermore, this importance depends on the mass fraction gradient. The conditions for the existence of flow reversal are presented in charts and analytical expressions specifying the critical thermal Grashof number as a function of the Reynolds number for different values of the solutal Grashof number and different aspect ratios of the channel.
机译:本文涉及浮力对垂直平行板通道中向上,稳定,层流的湿空气影响的数值研究。板被薄的液态水膜润湿并保持在恒定温度下,该温度低于进入通道的空气的温度。与Boussinesq假设相关联的2D完全椭圆模型用于考虑轴向扩散。该数学模型的解决方案基于有限体积法,而速度-压力耦合由SIMPLER算法处理。数值结果表明,浮力对流体动力场,热力场和质量分数场具有显着影响。另外,这些力在通道入口处引起高空气温度和质量分数的逆流。已经确定,与相变相关的热传递有时比显热传递更重要。此外,该重要性取决于质量分数梯度。在图表和分析表达式中给出了存在流动逆转的条件,这些表达式和公式指定了临界热Grashof数作为雷诺数的函数,用于不同的Grashof稀溶液数和通道的不同长宽比。

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