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用于页岩和致密地层强化采油的表面活性剂溶液对比研究:实验评估与数值分析

A Comparative Study of Surfactant Solutions Used for Enhanced Oil Recovery in Shale and Tight Formations: Experimental Evaluation and Numerical Analysis.

作者信息

Chen Weidong, Geng Xiangfei, Ding Bin, Liu Weidong, Jiang Ke, Xu Qinglong, Guan Baoshan, Peng Lin, Peng Huan

机构信息

Key Laboratory of Oilfield Chemicals, China National Petroleum Corporation, Beijing 100083, China.

PetroChina Research Institute of Petroleum Exploration & Development, Beijing 100083, China.

出版信息

Molecules. 2024 Jul 12;29(14):3293. doi: 10.3390/molecules29143293.

Abstract

Applying chemical enhanced oil recovery (EOR) to shale and tight formations is expected to accelerate China's Shale Revolution as it did in conventional reservoirs. However, its screening and modeling are more complex. EOR operations are faced with choices of chemicals including traditional surfactant solutions, surfactant solutions in the form of micro-emulsions (nano-emulsions), and nano-fluids, which have similar effects to surfactant solutions. This study presents a systematic comparative analysis composed of laboratory screening and numerical modeling. It was conducted on three scales: tests of chemical morphology and properties, analysis of micro-oil-displacing performance, and simulation of macro-oil-increasing effect. The results showed that although all surfactant solutions had the effects of reducing interfacial tension, altering wettability, and enhancing imbibition, the nano-emulsion with the lowest hydrodynamic radius is the optimal selection. This is attributed to the fact that the properties of the nano-emulsion match well with the characteristics of these shale and tight reservoirs. The nano-emulsion is capable of integrating into the tight matrix, interacting with the oil and rock, and supplying the energy for oil to flow out. This study provides a comprehensive understanding of the role that surfactant solutions could play in the EOR of unconventional reservoirs.

摘要

将化学强化采油(EOR)应用于页岩和致密地层有望像在常规油藏中那样加速中国的页岩革命。然而,其筛选和建模更为复杂。EOR作业面临着化学剂的选择,包括传统表面活性剂溶液、微乳液(纳米乳液)形式的表面活性剂溶液以及与表面活性剂溶液效果相似的纳米流体。本研究进行了由实验室筛选和数值模拟组成的系统对比分析。该分析在三个尺度上进行:化学剂形态和性质测试、微观驱油性能分析以及宏观增油效果模拟。结果表明,尽管所有表面活性剂溶液都具有降低界面张力、改变润湿性和增强自吸作用的效果,但流体动力学半径最小的纳米乳液是最佳选择。这归因于纳米乳液的性质与这些页岩和致密油藏的特性匹配良好。纳米乳液能够融入致密基质,与油和岩石相互作用,并为油流出提供能量。本研究全面了解了表面活性剂溶液在非常规油藏EOR中可能发挥的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/192c/11279025/48526266dd9d/molecules-29-03293-g001.jpg

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