三维模型多孔介质中非润湿流体侵入前沿的多尺度结构

É. Clément, C. Baudet, J. Hulin
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引用次数: 18

摘要

我们报告了通过缓慢垂直注入液体,非润湿,木质金属到非固结破碎玻璃中获得的入侵前沿结构的实验测量。分析了平行于流动方向和垂直于流动方向的侵流锋面切割的几何形状。垂直切口的结构在1 ~ 20的长度尺度范围内具有自相似性,分形维数为1.65。从平行切面测得的饱和度曲线与侵入渗流模型在定性上一致。讨论了对水平切割几何形状可能的理论预测措施,即结构、锋面、侵入、倾斜、注入、金属、木材、非移动、非块状、verre桩、非固结。分析了垂直方向和平行方向的几何耦合。两种不同模型的剖面、平行剖面的比较
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multiple scale structure of non wetting fluid invasion fronts in 3D model porous media
We report experimental measurements on the structure of invasion fronts obtained by slow vertical injection of liquid, non wetting, Wood metal into non consolidated crushed glass. The geometry of plane cuts of the invasion front both parallel and perpendicular to the flow direction is analysed. The structure of perpendicular cuts is self similar in a length scale range of 1 to 20 with a fractal dimension 1.65. Saturation profiles measured from parallel cuts are in qualitative agreement with invasion percolation models. Possible theoretical predictions for the geometry of horizontal cuts are discussed Mesures de la structure de fronts d'invasion obtenus par une injection verticale lente de metal de Wood non mouillant dans un massif de verre pile non consolide. On analyse la geometrie de coupes du front d'invasion perpendiculaires et paralleles a la direction d'ecoulement. Comparaison des profils des coupes paralleles avec les modeles de percolation
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