Variations of Micropores in Oil Reservoir Before and After Strong Alkaline Alkaline-surfactant-polymer Flooding

Yong-qiang Bai, Yang Chunmei, L. Mei, Jiang Zhenxue
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Abstract

Enhanced oil recovery (EOR) provides a significant contribution for increasing output of crude oil. Alkaline-surfactantpolymer (ASP), as an effective chemical method of EOR, has played an important role in advancing crude oil output of the Daqing oilfield, China. Chemical flooding utilized in the process of ASP EOR has produced concerned damage to the reservoir, especially from the strong alkali of ASP, and variations of micropore structure of sandstones in the oil reservoirs restrain output of crude oil in the late stages of oilfield development. Laboratory flooding experiments were conducted to study sandstones’ micropore structure behavior at varying ASP flooding stages. Qualitative and quantitative analysis by cast thin section, scanning electric microscopy (SEM), atomic force microscopy (AFM) and electron probe X-Ray microanalysis (EPMA) explain the mechanisms of sandstones’ micropore structure change. According to the quantitative analysis, as the ASP dose agent increases, the pore width and pore depth exhibit a tendency of decrease-increase-decrease, and the specific ASP flooding stage is found in which flooding stage is most affective from the perspective of micropore structures. With the analysis of SEM images and variations of mineral compositions of samples, the migration of intergranular particles, the corrosions of clay, feldspar and quartz, and formation of new intergranular substances contribute to the alterations of sandstone pore structure. Results of this study provide significant guidance for further application to ASP flooding.
强碱性-表面活性剂-聚合物驱前后油藏微孔的变化
提高原油采收率(EOR)是提高原油产量的重要手段。碱性表面活性剂聚合物(ASP)作为一种有效的提高原油采收率的化学方法,在提高大庆油田原油产量方面发挥了重要作用。三元复合驱提高采收率过程中采用的化学驱对储层造成了较大的损害,特别是三元复合驱的强碱对储层造成了较大的损害,油藏砂岩微孔结构的变化在油田开发后期制约了原油的产量。通过室内驱油实验,研究了不同三元复合驱阶段砂岩微孔结构特征。通过铸型薄片、扫描电镜(SEM)、原子力显微镜(AFM)和电子探针x射线显微分析(EPMA)等定性和定量分析,解释了砂岩微孔结构变化的机理。定量分析发现,随着三元复合剂剂量的增加,孔隙宽度和孔隙深度呈现减小-增大-减小的趋势,并从微孔结构的角度找到了对三元复合驱的具体驱油阶段影响最大的驱油阶段。通过对样品的SEM图像和矿物组成变化的分析发现,粒间颗粒的迁移、粘土、长石和石英的腐蚀以及新的粒间物质的形成是导致砂岩孔隙结构改变的原因。研究结果对三元复合驱的进一步应用具有重要的指导意义。
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