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Characteristics and displacement mechanisms of the dispersed particle gel soft heterogeneous compound flooding system

机译:分散颗粒凝胶软非均质复合驱体系的特征与驱替机理

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Considering high temperature and high salinity in the reservoirs, a dispersed particle gel soft heterogeneous compound(SHC) flooding system was prepared to improve the micro-profile control and displacement efficiency. The characteristics and displacement mechanisms of the system were investigated via core flow tests and visual simulation experiments. The SHC flooding system composed of DPG particles and surfactants was suitable for the reservoirs with the temperature of 80-110 °C and the salinity of 1×104-10×104 mg/L. The system presented good characteristics: low viscosity, weak negatively charged, temperature and salinity resistance, particles aggregation capacity, wettability alteration on oil wet surface, wettability weaken on water wet surface, and interfacial tension(IFT) still less than 1×10-1 mN/m after aging at high temperature. The SHC flooding system achieved the micro-profile control by entering formations deeply and the better performance was found in the formation with the higher permeability difference existing between the layers, which suggested that the flooding system was superior to the surfactants, DPG particles, and polymer/surfactant compound flooding systems. The system could effectively enhance the micro-profile control in porous media through four behaviors, including direct plugging, bridging, adsorption, and retention. Moreover, the surfactant in the system magnified the deep migration capability and oil displacement capacity of the SHC flooding system, and the impact was strengthened through the mechanisms of improved displacement capacity, synergistic emulsification, enhanced wettability alteration ability and coalescence of oil belts. The synergistic effect of the two components of SHC flooding system improved oil displacement efficiency and subsequently enhanced oil recovery.
机译:考虑到储层中的高温高盐度,制备了分散的颗粒状凝胶软质非均质化合物驱油体系,以提高微剖面控制和驱油效率。通过岩心流动试验和视觉模拟实验研究了系统的特性和位移机理。由DPG颗粒和表面活性剂组成的SHC驱油系统适用于温度为80-110°C,盐度为1×104-10×104 mg / L的储层。该体系具有良好的特性:低粘度,带负电性弱,耐温盐性,颗粒聚集能力,油湿表面的润湿性改变,水湿表面的润湿性减弱,界面张力(IFT)仍小于1×10-1高温老化后的mN / m。 SHC驱油系统通过深层进入地层实现了微剖面控制,层之间存在较高的渗透率差异,从而发现了更好的性能,这表明该驱油系统优于表面活性剂,DPG颗粒和聚合物/表面活性剂复合驱系统。该系统可通过四种行为(包括直接封堵,桥接,吸附和保留)有效增强多孔介质中的微轮廓控制。此外,系统中的表面活性剂扩大了SHC驱油系统的深层迁移能力和驱油能力,并通过提高驱替能力,协同乳化,增强润湿性改变能力和油带聚结的机制增强了影响。 SHC驱油系统的两个组成部分的协同作用提高了驱油效率,并随后提高了采油率。

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