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Dynamic Interfacial Tension Phenomenon and Wettability Alteration of Crude Oil-Rock-Alkaline-Surfactant Solution Systems

机译:原油-岩石-碱性-表面活性剂溶液系统的动态界面张力现象和润湿性改变

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It has long been recognized that an alkaline-surfactant (AS) flood is an effective enhanced oil recovery (EOR) process. When an AS solution is injected into an acidic oil reservoir, it causes the interfacial tension (IFT) reduction and wettability alteration, which subsequently affect the flood performance to a large extent. Quantitative descriptions of this dynamic IFT phenomenon and wettability alteration are of great interest to the petroleum industry. In this paper, the axisymmetric drop shape analysis (ADSA) technique for the sessile drop case is employed to measure the dynamic IFT and the contact angle of a crude oil drop on a reservoir rock in several aqueous solutions. Based on the modern digital image acquisition, analysis and processing techniques, the ADSA technique obtains the accurate digital image of the sessile oil drop and accomplishes the relevant measurements. The aqueous solutions include alkaline solutions and AS solutions at different alkali, cationic and anionic surfactant concentrations. It has been found that the measured IFT varies with time. This dynamic IFT phenomenon is then interpreted in terms of the surfactant generation and adsorption at the interface and its subsequent dissolution into the adjacent bulk phases as well. Meanwhile, it has also been observed that the measured contact angle changes with time in a peculiar manner. When the crude oil is made in contact with an alkaline solution, a water-wet reservoir rock quickly becomes more water-wet to different degrees at different alkali concentrations. At the beginning, the contact angle increases but eventually decreases close to its initial value. This wettability alteration corresponds well to the measured dynamic IFTs. In addition, the synergistic effects of AS solutions on wettability alteration are studied. It has been found that the wettability alteration in a cationic surfactant-alkaline solution has a rather different trend from that in an anionic surfactant-alkaline solution. More specifically, a cationic surfactant can make a water-wet reservoir rock become oil-wet, whereas an anionic surfactant can only cause minor change of its wettability. It is speculated that adsorption of the cationic surfactant onto the rock surface is strong and stable so that the wettability alteration is irreversible. This laboratory study not only provides an improved understanding of the interfacial interactions in the crude oil-reservoir rock-AS solution systems but also helps to fully develop the oil recovery potential of AS flood processes in field applications.
机译:早已认识到,碱性表面活性剂(AS)驱油是有效提高采收率(EOR)的过程。当将AS溶液注入酸性储油层时,会引起界面张力(IFT)降低和润湿性改变,从而在很大程度上影响驱油性能。这种动态IFT现象和润湿性变化的定量描述引起石油行业的极大兴趣。本文采用无轴滴情况下的轴对称滴形状分析(ADSA)技术来测量几种水溶液中油滴在储层岩石上的动态IFT和接触角。基于现代数字图像采集,分析和处理技术,ADSA技术获得无柄油滴的精确数字图像并完成相关测量。水溶液包括不同浓度的碱,阳离子和阴离子表面活性剂的碱溶液和AS溶液。已经发现,所测量的IFT随时间变化。然后根据表面活性剂在界面上的生成和吸附以及其随后溶解到相邻本体相中来解释这种动态IFT现象。同时,还已经观察到,所测量的接触角以独特的方式随时间变化。当原油与碱性溶液接触时,在不同的碱浓度下,水湿的储集岩很快就会变得不同程度的水湿。在开始时,接触角增加,但最终减小到接近其初始值。这种润湿性变化与测得的动态IFT很好地对应。此外,研究了AS溶液对润湿性变化的协同作用。已经发现,在阳离子表面活性剂-碱性溶液中的润湿性改变具有与在阴离子表面活性剂-碱性溶液中的润湿性改变相当不同的趋势。更具体地,阳离子表面活性剂可以使水润湿的储集岩变成油润湿的,而阴离子表面活性剂只能引起其润湿性的微小变化。据推测,阳离子表面活性剂在岩石表面上的吸附是强而稳定的,因此润湿性的改变是不可逆的。这项实验室研究不仅可以更好地理解原油-储层岩石-AS解决方案系统中的界面相互作用,而且还可以帮助充分开发AS驱过程在现场应用中的采油潜力。

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