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Visualization of Pore-level Displacement Mechanisms During CO2 Injection and EOR Processes

机译:CO2注射和EOR过程中孔径位移机制的可视化

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Multiphase flow and fluid displacements at pore-level were visualized in two-dimensional micromodels retaining essential characteristics of porous rocks. Microvisual data during CO2 injection for enhanced oil recovery was obtained from high resolution images using UV-sensitive dye to improve contrast. The dominating mechanisms were piston-like displacement of one fluid by another, either by a stable moving interface or through Haines-lrke jumps. Film thickening, film drainage, snap-off mechanisms and capillary trapping of CO2 were also observed. Both stable and unstable flow regimes were identified as the front advanced through the network during two-phase flow. In the latter regime, instabilities in the displacements were manifested by capillary fingering perpendicular to the main flow direction. Oil was found to be spreading in the water-oil-gas system at the experimental conditions. This led to an efficient oil production at pore-level from CO2 gas injection, even at high water saturation. The injected gaseous CO2 contacted only oil in three-phase systems, and led to direct oil displacement, whereas water was displaced through double or multiple displacement events.
机译:孔隙水平的多相流动和流体位移在二维微摩擦中可视化,保持多孔岩石的基本特征。在使用紫外敏感染料的高分辨率图像中获得CO 2注射期间的微血管数据,从高分辨率图像中获得高分辨率染料以提高对比度。主导机制是一种通过稳定的移动界面或通过Haines-Lrke跳跃的一种流体的活塞状位移。还观察到薄膜增稠,薄膜排水,传送机构和CO 2的毛细管捕获。在两相流期间通过网络识别稳定和不稳定的流动制度都是通过网络的前线。在后一种方案中,位移中的不稳定性通过垂直于主流量方向而表现为毛细管手指。发现油在实验条件下在水油系统中蔓延。这导致孔隙水平的高效石油生产,即使在高水位饱和度。注入的气态CO2仅接触三相系统中的油,并导致直接油位移,而水通过双或多个位移事件移位。

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