济阳页岩油层多尺度孔隙结构的核磁共振润湿性及吸胀机理

IF 5.3 3区 工程技术 Q2 ENERGY & FUELS
Qi Lv, Jian Hou*, Ziyan Cheng, Jianxun Chen, Yanfeng Ji, Jing Lv, Yang Song, Jianguang Wei and Ying Yang, 
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引用次数: 0

摘要

页岩孔隙的润湿性是影响流固相互作用效果的关键因素。本文主要有两方面的贡献。首先,采用接触角法评价了不同岩相页岩的宏观润湿性,并通过自吸和二维核磁共振技术阐明了页岩多尺度孔隙结构的微观润湿性特征。其次,揭示了包括润湿性在内的各种因素对不同页岩岩相吸胀效率的影响。结果表明:(a)油滴接触角大于90°,表明宏观亲水性:a块(150.5°)>;C块(149.9°)>;B区块(143.7°)。(b)微孔具有亲水性,自发吸油比为2.64 ~ 4.96;中尺度孔隙亲脂性为0.08 ~ 0.61;宏观孔隙亲脂性为0.08 ~ 0.56。(c)自发渗吸水油比越高,小孔和大孔的渗吸采收率越高,最终渗吸采收率越高。(d)与压裂液相比,渗吸剂的总采收率提高了3.2%,岩性、水油比和微孔比例是主要控制因素。本文的研究成果对提高页岩油采收率具有重要的科学意义和工程意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Wettability and Imbibition Mechanism of the Multiscale Pore Structure of Jiyang Shale Oil Formation by NMR

Wettability and Imbibition Mechanism of the Multiscale Pore Structure of Jiyang Shale Oil Formation by NMR

The wettability of shale pores is the key factor affecting the effectiveness of fluid–solid interaction. In this paper, two contributions were made. First, the macroscopic shale wettability of different lithofacies is evaluated by the contact angle method, and the microscopic wettability characteristics of the multiscale shale pore structure are elucidated via spontaneous imbibition and two-dimensional nuclear magnetic resonance (NMR) technology. Second, the effect of various factors, including wettability, on the imbibition efficiency of different shale lithofacies is revealed. Results show that (a) the contact angle of oil droplets is greater than 90°, indicating macroscopic hydrophilicity: block A (150.5°) > block C (149.9°) > block B (143.7°). (b) Microscale pores are hydrophilic, with a spontaneous imbibition water–oil ratio of 2.64–4.96; mesoscale pores are lipophilic, with a ratio of 0.08–0.61; macroscale pores are lipophilic, with a ratio of 0.08–0.56. (c) The higher the spontaneous imbibition water–oil ratio, the higher the imbibition recovery rate of small and large pores, and the higher the final imbibition recovery. (d) Compared with fracturing fluid, the overall recovery rate of the imbibition agent increased by 3.2%, and lithology, water–oil ratio, and micropore proportion are the main controlling factors. The research results of this article have important scientific and engineering significance for improving the recovery rate of shale oil.

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来源期刊
Energy & Fuels
Energy & Fuels 工程技术-工程:化工
CiteScore
9.20
自引率
13.20%
发文量
1101
审稿时长
2.1 months
期刊介绍: Energy & Fuels publishes reports of research in the technical area defined by the intersection of the disciplines of chemistry and chemical engineering and the application domain of non-nuclear energy and fuels. This includes research directed at the formation of, exploration for, and production of fossil fuels and biomass; the properties and structure or molecular composition of both raw fuels and refined products; the chemistry involved in the processing and utilization of fuels; fuel cells and their applications; and the analytical and instrumental techniques used in investigations of the foregoing areas.
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