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Oil Recovery From Fractured Carbonates by Surfactant-Aided Gravity Drainage: Laboratory Experiments and Mechanistic Simulations

机译:表面活性剂辅助重力排水从裂缝性碳酸盐中采油:实验室实验和机理模拟

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摘要

Waterflooding recovers little oil from naturally fractured carbonate reservoirs if the matrix is oil-wet and fracture intensity is high. Laboratory experiments and mechanistic simulations have been conducted to understand the injection of dilute anionic surfactant solutions into oil-wet, fractured reservoirs. In this process, surfactant diffuses into the matrix, lowering the interfacial tension (IFT) and contact angle, which decreases the capillary pressure and increases oil relative permeability, enabling gravity to drain up the oil. The rate of oil recovery increases with an increase in matrix permeability, a decrease in initial gas saturation, a decrease of fracture height or spacing, and an increase in the wettability-altering capabilities of the surfactant. Increasing the surfactant concentration does not necessarily enhance the oil recovery rate, because IFT and wettability alterations are not linearly related to surfactant concentration. Adsorption of anionic surfactants on cal-cite can be suppressed with an increase in pH and a decrease in salinity.
机译:如果基质是油湿的且裂缝强度很高,则注水几乎无法从天然裂缝性碳酸盐岩储层中采收油。为了了解将稀阴离子表面活性剂溶液注入油湿裂隙油藏的方法,已进行了实验室实验和机理模拟。在此过程中,表面活性剂扩散到基体中,从而降低了界面张力(IFT)和接触角,从而降低了毛细管压力并增加了油的相对渗透率,从而使重力将油排出。随着基质渗透率的增加,初始气体饱和度的降低,裂缝高度或裂缝的减小以及表面活性剂的改变润湿性的能力的提高,采油率增加。增加表面活性剂的浓度并不一定会提高采油率,因为IFT和润湿性的变化与表面活性剂的浓度并不线性相关。可以通过增加pH值和降低盐度来抑制阴离子表面活性剂在钙硅石上的吸附。

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