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Supercritical CO2 and brine displacement in geological carbon sequestration: Micromodel and pore network simulation studies

机译:地质碳固存中的超临界二氧化碳和盐水置换:微观模型和孔隙网络模拟研究

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The competence of geological carbon sequestration to a large extent relies on the short-term injection efficiency and the long-term capillary trapping and geological stability. This study uses a high-pressure micromodel and pore network simulation to investigate pore-scale displacement phenomena during the injection of supercritical carbon dioxide (scCO(2)) into brine-saturated reservoirs. Results show that the brine displacement can be enhanced by increasing the scCO(2) injection rate, but hindered by brine salinity which alters the interfacial contact properties and displacement patterns. The scCO(2)-brine displacement ratio increases with the capillary number N-c, increasing which by adding viscosifiers or surfactants would enhance the overall scCO(2) injection efficiency in microscopic flows. Results also suggest that better injection efficiency and capillary trapping capacity can be achieved in reservoirs with more widely-distributed pore sizes. It is not evident that mutual solubility and upscaling using the Leverett-J function readily allow to expand the injection efficiency results of microscopic flows to reservoirs; yet, the effects of salinity and pore size distribution on the scCO(2)-brine displacement process remain pertinent in both microscopic and macroscopic flows through porous media. (C) 2015 Elsevier Ltd. All rights reserved.
机译:地质固碳的能力在很大程度上取决于短期的注入效率以及长期的毛细管捕集和地质稳定性。这项研究使用高压微模型和孔隙网络模拟来研究超临界二氧化碳(scCO(2))注入饱和盐水的储层中的孔隙尺度位移现象。结果表明,可以通过增加scCO(2)注入速率来提高盐水驱替率,但受盐水盐度的阻碍,因为盐水盐度会改变界面接触特性和驱替模式。 scCO(2)-盐水置换率随毛细管数N-c的增加而增加,通过添加增粘剂或表面活性剂可增加微观流动中的总体scCO(2)注入效率。结果还表明,在孔径分布较广的储层中,可以实现更好的注入效率和毛细管捕集能力。尚不明显,使用Leverett-J函数的互溶性和放大规模很容易扩大微观流向储层的注入效率结果;然而,盐度和孔径分布对scCO(2)-盐水置换过程的影响在通过多孔介质的微观和宏观流动中仍然是相关的。 (C)2015 Elsevier Ltd.保留所有权利。

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