渗吸
油页岩
毛细管压力
石油工程
润湿
毛细管作用
形状因子
多孔介质
致密油
接触角
相对渗透率
多孔性
机械
地质学
岩土工程
材料科学
复合材料
几何学
物理
植物
生物
发芽
古生物学
数学
作者
Xiukun Wang,James J. Sheng
出处
期刊:Energies
[Multidisciplinary Digital Publishing Institute]
日期:2020-09-10
卷期号:13 (18): 4709-4709
被引量:13
摘要
Spontaneous water imbibition plays an imperative role in the development of shale or tight oil reservoirs. Spontaneous water imbibition is helpful in the extraction of crude oil from the matrix, although it decreases the relative permeability of the hydrocarbon phase dramatically. The dynamic pore-scale network modeling of water imbibition in shale and tight reservoirs is presented in this work; pore network generation, local capillary pressure function, conductance calculation and boundary conditions for imbibition are all presented in detail in this paper. The pore network is generated based on the characteristics of Barnett shale formations, and the corresponding laboratory imbibition experiments are matched using this established dynamic pore network model. The effects of the wettability, throat aspect ratio, viscosity, shape factor, micro-fractures, etc. are all investigated in this work. Attempts are made to investigate the water imbibition mechanisms from a micro-scale perspective. According to the simulated results, wettability dominates the imbibition characteristics. Besides this, the viscous effects including viscosity, initial capillary pressure and micro-fractures increase the imbibition rate, while the final recovery factor is more controlled by the capillarity effect including the cross-area shape factor, contact angle and the average pore-throat aspect ratio.
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