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The effect of ultrasonic waves on the phase behavior of a surfactant-brine-oil system

机译:超声波对表面活性剂-盐水-油体系的相行为的影响

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摘要

In recent years, most of the mature oilfields in the world have needed enhanced oil recovery (EOR) techniques to maintain their production level. Nevertheless, each EOR technique suffers from a number of limitations. Surfactant flooding, which is a conventional EOR method, can cause emulsification and displacement of the trapped oil in the reservoir. Surfactants are the most expensive components in a microemulsion. Therefore, selecting a proper surfactant formulation which can mobilize oil without considerable surfactant adsorption is very important. The application of ultrasound is one of the unconventional EOR methods. This causes emulsification of oil and water in the reservoir. Integration of surfactant flooding and ultrasound has the potential to decrease surfactant consumption. Therefore, in the case of integrated ultrasound-surfactant flooding, the phase behavior of surfactant-brine-oil, herewith referred to as the SBO system, is crucial and needs to be investigated. In this study, the effect of ultrasonic stimulation duration on the phase behavior of an SBO system was investigated, and changes in solubilization parameters and optimal salinities are discussed. By comparing the results of the phase behavior of SBO under short and long durations of ultrasonic stimulation, it was concluded that a short duration of stimulation (15 min) yields more volume of microemulsion compared to cases using no ultrasound and a longer duration of ultrasound stimulation. Therefore, by using short durations of ultrasonic stimulation in the integrated ultrasound-surfactant flooding process, the interfacial tension remains low and the surfactant consumption decreases. (C) 2015 Elsevier B.V. All rights reserved.
机译:近年来,世界上大多数成熟油田都需要增强采油率(EOR)技术来维持其生产水平。然而,每种EOR技术都受到许多限制。表面活性剂驱油是一种常规的EOR方法,可引起油藏中被困油的乳化和驱替。表面活性剂是微乳液中最昂贵的组分。因此,选择合适的表面活性剂配方能够在没有大量表面活性剂吸附的情况下使油动员是非常重要的。超声的应用是非常规EOR方法之一。这导致油藏中的油和水乳化。表面活性剂驱入和超声的集成具有减少表面活性​​剂消耗的潜力。因此,在集成的超声-表面活性剂驱油情况下,表面活性剂-盐水-油的相态特性(以下称为SBO系统)至关重要,需要进行研究。在这项研究中,研究了超声刺激持续时间对SBO系统相行为的影响,并讨论了增溶参数和最佳盐度的变化。通过比较短时间和长时间超声波刺激下SBO的相行为结果,可以得出结论,与不使用超声波和较长时间的超声波刺激相比,短时间的刺激(15分钟)可产生更多的微乳液。 。因此,通过在集成的超声波表面活性剂驱油过程中使用短时间的超声波刺激,界面张力保持较低,并且表面活性剂的消耗减少。 (C)2015 Elsevier B.V.保留所有权利。

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