几何参数对倾斜水道中带有蒸发的两层水流模式的影响

E.E. Makarov
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引用次数: 0

摘要

本文重点研究了倾斜层中液体的两层静止对流以及伴随的气体和蒸汽流动,同时考虑了传热和传质的影响。假定热毛细管边界条件不可变形。在具有不透水固体壁的无限通道中,两层流动的数学模型是基于微分对流方程特殊形式的精确解法。在系统的上层考虑了热扩散和扩散导热的影响。气体中的蒸汽被假定为不影响气体性质的混合物。当蒸汽浓度函数满足通道上壁流量为零的条件时,对流动进行研究。以 "苯-空气 "系统为例,研究了层厚度对流动拓扑结构的影响。作者的程序代码有助于生成数据集,用于绘制不同厚度层的纵向速度剖面图以及温度和蒸汽的浓度分布图。同时,系统的所有其他参数保持不变。本文中的结果是在满足液体流动的闭合条件和气体流速给定值的情况下得出的。结果表明,层厚度的变化会导致流动过程的特征发生量变和质变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Impact of Geometrical Parameters on Two-Layer Flow Patterns with Evaporation in an Inclined Channel
The paper focuses on studying two-layer stationary convective flows of liquid and the accompanying flows of gas and vapor in inclined layers, taking into consideration the effects of heat and mass transfer. The thermocapillary boundary condition is assumed to be non-deformable. Mathematical modeling of two-layer flows in an infinite channel with solid impermeable walls is based on the exact solutions of a special form of differential convective equations. The effects of thermal diffusion and diffusive thermal conductivity are considered in the upper layer of the system. The vapor in the gas is assumed to be an admixture that does not affect the properties of the gas. The flow is studied when the vapor concentration function meets the condition of zero flux on the upper wall of the channel. The influence of the layer thicknesses on the flow topology is studied using the exemplary “benzine — air” system. The author’s programming code helps produce the data set for plotting the profiles of longitudinal velocity and concentration distributions of temperature and vapor for layers with different thicknesses. At the same time, all the other parameters of the system remain fixed. The results presented in the paper are obtained for the case when the closure condition for liquid flow is fulfilled, and at a given value of the gas flow rate. It is shown that a change in the thickness of the layer leads to both quantitative and qualitative changes in the characteristics of the flow process.
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