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多孔介质中表观润湿性的孔隙几何控制

Pore geometry control of apparent wetting in porous media.

作者信息

Rabbani Harris Sajjad, Zhao Benzhong, Juanes Ruben, Shokri Nima

机构信息

School of Chemical Engineering and Analytical Science, The University of Manchester, Manchester, M13 9PL, United Kingdom.

Department of Civil Engineering, McMaster University, Hamilton, ON, Canada.

出版信息

Sci Rep. 2018 Oct 24;8(1):15729. doi: 10.1038/s41598-018-34146-8.

Abstract

Wettability, or preferential affinity of a fluid to a solid substrate in the presence of another fluid, plays a critical role in the statics and dynamics of fluid-fluid displacement in porous media. The complex confined geometry of porous media, however, makes upscaling of microscopic wettability to the macroscale a nontrivial task. Here, we elucidate the contribution of pore geometry in controlling the apparent wettability characteristics of a porous medium. Using direct numerical simulations of fluid-fluid displacement, we study the reversal of interface curvature in a single converging-diverging capillary, and demonstrate the co-existence of concave and convex interfaces in a porous medium-a phenomenon that we also observe in laboratory micromodel experiments. We show that under intermediate contact angles the sign of interface curvature is strongly influenced by the pore geometry. We capture the interplay between surface chemical properties and pore geometry in the form of a dimensionless quantity, the apparent wettability number, which predicts the conditions under which concave and convex interfaces co-exist. Our findings advance the fundamental understanding of wettability in confined geometries, with implications to macroscopic multiphase-flow processes in porous media, from fuel cells to enhanced oil recovery.

摘要

润湿性,即在存在另一种流体的情况下流体对固体基质的优先亲和力,在多孔介质中流体 - 流体驱替的静态和动态过程中起着关键作用。然而,多孔介质复杂的受限几何形状使得将微观润湿性放大到宏观尺度成为一项艰巨的任务。在这里,我们阐明了孔隙几何形状在控制多孔介质表观润湿性特征方面的作用。通过流体 - 流体驱替的直接数值模拟,我们研究了单个收缩 - 扩张毛细管中界面曲率的反转,并证明了多孔介质中凹面和凸面界面的共存——这一现象我们在实验室微观模型实验中也观察到了。我们表明,在中间接触角下,界面曲率的符号受孔隙几何形状的强烈影响。我们以一个无量纲量——表观润湿性数的形式捕捉了表面化学性质和孔隙几何形状之间的相互作用,该无量纲量预测了凹面和凸面界面共存的条件。我们的研究结果推进了对受限几何形状中润湿性的基本理解,对多孔介质中的宏观多相流过程具有启示意义,从燃料电池到提高石油采收率等领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69b5/6200799/65290977c131/41598_2018_34146_Fig1_HTML.jpg

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