Complex Assemblies of Soft Matter, CNRS-Solvay-UPenn UMI 3254, Bristol, Pennsylvania 19007-3624, USA.
Solvay Research and Innovation Centre, Aubervilliers, France 93300.
Phys Rev E. 2017 Dec;96(6-1):062908. doi: 10.1103/PhysRevE.96.062908. Epub 2017 Dec 20.
We characterize the water repartition within the partially saturated (two-phase) zone (PSZ) during evaporation from mixed wettable porous media by controlling the wettability of glass beads, their sizes, and as well the surrounding relative humidity. Here, capillary numbers are low and under these conditions, the percolating front is stabilized by gravity. Using experimental and numerical analyses, we find that the PSZ saturation decreases with the Bond number, where packing of smaller particles have higher saturation values than packing made of larger particles. Results also reveal that the extent (height) of the PSZ, as well as water saturation in the PSZ, both increase with wettability. We also numerically calculate the saturation exclusively contained in connected liquid films and results show that values are less than the expected PSZ saturation. These results strongly reflect that the two-phase zone is not solely made up of connected capillary networks but also made of disconnected water clusters or pockets. Moreover, we also find that global saturation (PSZ + full wet zone) decreases with wettability, confirming that greater quantity of water is lost via evaporation with increasing hydrophilicity. These results show that connected liquid films are favored in more-hydrophilic systems while disconnected water pockets are favored in less-hydrophilic systems.
我们通过控制玻璃珠的润湿性、粒径以及周围相对湿度来描述混合润湿性多孔介质蒸发过程中部分饱和(两相)区(PSZ)内的水分分布。在这里,毛细数较低,在这些条件下,由重力稳定的渗透前沿。通过实验和数值分析,我们发现 PSZ 饱和度随邦德数的增加而降低,其中较小颗粒的堆积具有较高的饱和度值,而较大颗粒的堆积则具有较低的饱和度值。结果还表明,PSZ 的范围(高度)以及 PSZ 中的水饱和度都随润湿性的增加而增加。我们还数值计算了仅包含在连通液体膜中的饱和度,结果表明该值小于预期的 PSZ 饱和度。这些结果强烈反映出两相区不仅由连通的毛细网络组成,还由不连通的水团或水袋组成。此外,我们还发现全局饱和度(PSZ+全湿区)随润湿性的增加而降低,这证实了随着亲水性的增加,通过蒸发失去的水量更多。这些结果表明,在更亲水的系统中,连通的液体膜更受欢迎,而在较不亲水的系统中,不连通的水袋更受欢迎。