Coupling between internal and external mass transfer during stage-1 evaporation in capillary porous media: Interfacial resistance approach

传质 材料科学 多孔介质 饱和(图论) 毛细管作用 毛细管压力 非平衡态热力学 蒸发 联轴节(管道) 热力学 多孔性 机械 化学物理 复合材料 物理 组合数学 数学
作者
Marouane Talbi,Marc Prat
出处
期刊:Physical review [American Physical Society]
卷期号:104 (5) 被引量:2
标识
DOI:10.1103/physreve.104.055102
摘要

The coupling boundary condition to be imposed at the evaporative surface of a porous medium is studied from pore network simulations considering the capillary regime. This paper highlights the formation of a thin edge effect region of smaller saturation along the evaporative surface. It is shown that this thin region forms in the breakthrough period at the very beginning of the drying process. The size of this region is studied and shown to be not network size dependent. This region is shown to be the locus of a nonlocal equilibrium effect. The features lead to the consideration of a coupling boundary condition involving an interfacial mass transfer resistance and an external mass transfer resistance. Contrary to previous considerations, it is shown that both resistances depend on the variation of the saturation, i.e., the fluid topology, and the size of the external mass transfer layer, i.e., the mass transfer rate. This is explained by the evolution of the vapor partial pressure distribution at the surface which becomes increasingly heterogeneous during evaporation and depends on both the evolving fluid distribution in the interfacial region and the mass transfer rate. However, the geometric effects due to the configuration of the fluids can be separated from rate effects that arise due to the nonequilibrium mass transport.
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