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Comparative study of ultrasound assisted water and surfactant flooding

机译:超声辅助水和表面活性剂洪水的比较研究

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Ultrasound technique is an economic advantageous and environmental friendly unconventional enhanced oil recovery (EOR) method that has been of great interest to researchers and reservoir engineers. The integration of ultrasound with water flooding and ultrasound with surfactant has been proven to be effective in increasing oil recovery by decreasing surfactant adsorption. Previous studies focused on the phase behaviour of surfactant-brine-oil to determine if ultrasonic with surfactant can actually decrease the rate of surfactant consumption. However, phase behaviour alone cannot answer this question. In this study therefore, the role of critical micelle concentration (CMC) in ultrasound assisted surfactant flooding, and the effect of surfactant concentration on oil recovery during ultrasound at different intensities were investigated. An unconsolidated sand-pack model placed inside an ultrasonic bath and ultrasonic radiation was used for this purpose. Ultrasound assisted water and surfactant flooding improve recovery up to 11% and 12% respectively. The formation of micro-emulsion (micelles) during surfactant flooding in the presence of ultrasonic wave was the most significant mechanism responsible for the increased recovery. Ultrasound vibration is more efficient at higher concentration of surfactant, preferably above CMC and at higher intensity of ultrasound.
机译:超声波技术是一种经济有利和环保的非常规的增强型石油恢复(EOR)方法,对研究人员和水库工程师来说是非常兴趣的。通过降低表面活性剂吸附,已经证明,已经证明,通过降低表面活性剂吸附来增加超声与水淹水和超声带有表面活性剂的整合。以前的研究侧重于表面活性剂 - 盐水 - 油的相行为,以确定超声波具有表面活性剂是否实际降低表面活性剂消耗的速率。但是,单独的相行为无法回答这个问题。因此,在本研究中,研究了临界胶束浓度(CMC)在超声辅助表面活性剂泛滥中的作用,以及表面活性剂浓度对不同强度以超声波恢复的影响。用于在超声波浴和超声波辐射内部放置的未覆盖的砂包模型用于此目的。超声波辅助水和表面活性剂洪水分别提高恢复至11%和12%。在超声波存在下的表面活性剂洪水中形成微乳液(胶束)是最重要的机制,负责增加的恢复。超声振动在较高浓度的表面活性剂,优选高于CMC和更高的超声波强度下更有效。

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