Flooding Performance and Optimization of Injection Parameters of Nanosized Oil Displacement Agents in Extra-Low-Permeability Reservoirs

水驱 石油工程 磁导率 洪水(心理学) 流离失所(心理学) 提高采收率 环境科学 材料科学 地质学 化学 心理学 生物化学 心理治疗师
作者
Zhiying Deng,Zhiwei Li,Peng Li,Wenchao Wu,Liwei Xiong,Zhanhui Zhang,Yuxi Yang,Youyou Cheng
出处
期刊:ACS omega [American Chemical Society]
卷期号:9 (17): 19043-19050
标识
DOI:10.1021/acsomega.3c07863
摘要

There have been few studies on the role of nanofluids in oil displacement and injection parameters, despite their significant impact on the oil displacement effect. To enhance oil recovery in an ultralow-permeability reservoir, the nanosized oil-displacement agent with nano-SiO2 modified by a silane coupling agent as a main component was selected for the first time in the Changqing oilfield. To assess the performance of the nanofluid, various factors such as particle size, contact angle, interfacial tension, and emulsion stability were taken into consideration. The oil displacement effect of nanofluids was evaluated by a microscopic model and ultralow-permeability core displacement experiment, and its optimal injection parameters were determined. The average particle size of the nano-oil displacement agent is 22–30 nm. It can change the wetting condition of the rock from oil-wet to water-wet and reduce the oil–water interfacial tension. Even at 80 °C, the emulsion formed by the agent remained stable. The oil displacement experiment shows that the nano-oil displacement agent whose injection pressure increases can displace the residual oil trapped in small pores that cannot be affected by conventional water flooding. The injection mode of "nanoflooding agent drive + water drive + nanoflooding agent drive", injection rate of 0.1 mL/min, injection concentration of 0.5%, and injection volume of 0.5 PV (0.25 PV per segment), which can effectively guide the injection of the oil displacement agent, achieve the best oil displacement effect.
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