流量(数学)
多孔介质
有限体积法
机械
润湿
有限元法
流体力学
比例(比率)
多孔性
扩散
多相流
两相流
相(物质)
土壤孔隙空间特征
材料科学
地质学
岩土工程
化学
热力学
物理
复合材料
有机化学
量子力学
作者
Yan Zaretskiy,S. Geiger,K. S. Sorbie
标识
DOI:10.1504/ijogct.2012.046318
摘要
We present a finite element – finite volume simulation method for modelling fluid flow and solute transport accompanied by chemical reactions in experimentally obtained 3D pore geometries. The advantage of the proposed methodology with respect to other pore-scale modelling approaches is that no simplifications regarding the geometry of the porous space are required and no approximations to the flow equations are introduced. We apply this method in a proof-of-concept study of a digitised Fontainebleau sandstone sample. We use the calculated velocity profile with the finite volume procedure to simulate pore-scale transport and diffusion of the adsorbing solute. We also demonstrate how analysis of the pore geometry can be used to identify the locations of oil during the two-phase flow and couple this with the reactive transport modeling to show how this procedure can be used to estimate the potential of the enhanced oil recovery techniques.
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