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不规则毛细管中的毛细吸入和润湿液体流动:百年回顾。

Capillary imbibition and flow of wetting liquid in irregular capillaries: A 100-year review.

机构信息

State Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum, Beijing 102249, PR China.

Institute of Geophysics and Geomatics, China University of Geosciences, Wuhan 430074, PR China.

出版信息

Adv Colloid Interface Sci. 2022 Jun;304:102654. doi: 10.1016/j.cis.2022.102654. Epub 2022 Mar 29.

Abstract

Capillary imbibition, such as plant roots taking up water, reservoir rocks absorbing brine and a tissue paper wiping stains, is pervasive occurred in nature, engineering and industrial fields, as well as in our daily life. This phenomenon is earliest modeled through the process that wetting liquid is spontaneously propelled by capillary pressure into regular geometry models. Recent studies have attracted more attention on capillary-driven flow models within more complex geometries of the channel, since a detailed understanding of capillary imbibition dynamics within irregular geometry models necessitates the fundamentals to fluid transport mechanisms in porous media with complex pore topologies. Herein, the fundamentals and concepts of different capillary imbibition models in terms of geometries over the past 100 years are reviewed critically, such as circular and non-circular capillaries, open and closed capillaries with triangular/rectangular cross-sections, and heterogeneous geometries with axial variations. The applications of these models with appropriate conditions are discussed in depth accordingly, with a particular emphasize on the capillary flow pattern as a consequence of capillary geometry. In addition, a universal model is proposed based on the dynamic wetting condition and equivalent cylindrical geometry to describe the capillary imbibition process in terms of various solid topologies. Finally, future research is suggested to focus on analyzing the dynamics during corner flow, the snap-off of wetting fluid, the capillary rise of non-Newtonian fluids and applying accurate physical simulation methods on capillary-driven flow processes. Generally, this review provides a comprehensive understanding of the capillary-driven flow models inside various capillary geometries and affords an overview of potential advanced developments to enhance the current understanding of fluid transport mechanisms in porous media.

摘要

毛细浸润作用,如植物根系吸水、储层岩石吸收盐水以及纸巾擦拭污渍等,广泛存在于自然界、工程和工业领域以及我们的日常生活中。这种现象最早是通过润湿液体在毛细压力作用下自发地被推进到规则几何模型中的过程来建模的。最近的研究更多地关注了通道中更复杂几何形状内的毛细驱动流动模型,因为要详细了解不规则几何模型内的毛细浸润动力学,就需要了解具有复杂孔隙拓扑结构的多孔介质中流体传输机制的基础。本文批判性地回顾了过去 100 年来不同毛细浸润模型在几何形状方面的基础和概念,例如圆形和非圆形毛细管、具有三角形/矩形横截面的开式和闭式毛细管以及具有轴向变化的非均匀几何形状。相应地,深入讨论了这些模型在适当条件下的应用,特别强调了毛细几何形状对毛细流动模式的影响。此外,还提出了一种基于动态润湿条件和等效圆柱几何形状的通用模型,用于描述各种固体拓扑结构中的毛细浸润过程。最后,建议未来的研究集中分析角流过程中的动力学、润湿流体的断开、非牛顿流体的毛细上升以及在毛细驱动流动过程中应用准确的物理模拟方法。总的来说,本文综述提供了对各种毛细几何形状内毛细驱动流动模型的全面理解,并概述了潜在的先进发展方向,以增强对多孔介质中流体传输机制的现有理解。

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