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毛细管元件纵横比对多孔网络内动态渗吸的影响。

Effect of capillary element aspect ratio on the dynamic imbibition within porous networks.

作者信息

Ridgway Cathy J, Gane Patrick A C, Schoelkopf Joachim

机构信息

Omya AG, Oftringen, CH 4665, Switzerland.

出版信息

J Colloid Interface Sci. 2002 Aug 15;252(2):373-82. doi: 10.1006/jcis.2002.8468.

DOI:10.1006/jcis.2002.8468
PMID:16290802
Abstract

The Washburn equation is widely accepted for describing capillary imbibition. It has, however, been shown to be insufficient at very short times due partly to the lack of inertial terms. Bosanquet (C. H. Bosanquet, Philos. Mag. ser. 645, 525 (1923)) applied an inertial term via momentum, Szekely et al. (J. Szekely, A. W. Neumann, and Y. K. Chang, J. Colloid Interface Sci.35, 273 (1971)) examined single capillaries based on a revised boundary-condition model, and Sorbie et al. (K. S. Sorbie, Y. Z. Wu, and S. R. McDougall, J. Colloid Interface Sci. 289 (1995)) reviewed and applied Szekely's work to examine the effects of comparative imbibition into a parallel pore doublet. The study here extends the work of Sorbie et al. by applying the equation of Bosanquet to a three-dimensional network model, Pore-Cor. All authors agree that, with the inclusion of inertial terms at short times, smaller radius capillaries will initially fill faster than larger radius capillaries which disagrees with the Washburn equation. It is shown that the aspect ratio of a capillary, defined as its length divided by its radius, plays an important role, in combination with the capillary radii themselves, in determining the filling rate of individual elements. The distribution of this ratio associated with the capillary throat elements within a network structure is investigated. The result is that a preferred pathway of permeation is observed under supersource imbibition conditions in the case where a broad size distribution of capillary elements occurs within a network structure.

摘要

沃什伯恩方程在描述毛细管吸渗方面被广泛接受。然而,已表明在极短时间内它并不充分,部分原因是缺乏惯性项。博赞奎特(C. H. 博赞奎特,《哲学杂志》第6卷第45期,525页(1923年))通过动量引入了一个惯性项,塞克利等人(J. 塞克利、A. W. 诺伊曼和Y. K. 张,《胶体与界面科学杂志》35卷,273页(1971年))基于修正的边界条件模型研究了单个毛细管,索比等人(K. S. 索比、Y. Z. 吴和S. R. 麦克杜格尔,《胶体与界面科学杂志》289页(1995年))回顾并应用塞克利的工作来研究比较吸渗到平行孔隙双联体中的影响。此处的研究通过将博赞奎特方程应用于三维网络模型Pore - Cor扩展了索比等人的工作。所有作者都同意,在短时间内包含惯性项时,较小半径的毛细管最初填充速度将比较大半径的毛细管快,这与沃什伯恩方程不同。结果表明,毛细管的纵横比(定义为其长度除以半径)与毛细管半径本身相结合,在确定单个单元的填充速率方面起着重要作用。研究了与网络结构内毛细管喉部单元相关的该比率的分布。结果是,在网络结构内毛细管单元尺寸分布较宽的情况下,在超源吸渗条件下观察到了优先渗透路径。

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