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Evaluation of foam performance at different temperature for enhanced oil recovery process

机译:评估不同温度下的泡沫性能以提高采油率

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Purpose-Application of foam in enhanced oil recovery requires a production of foam that is strong and stable enough to withstand a long period. There are numerous factors that may affect the performance of foam, among which is temperature. Therefore, this study aims to observe the foam performance at different temperature by evaluating the foamability and the stability of the foam.Design/methodology/approach-In this study, bulk foam test using FoamScan was conducted to examine the effect of temperature on foam in the presence of crude oil. Nitrogen gas was sparged through the mixture of crude oil, an in-house developed surfactant, and sodium chloride solution as the brine at different temperatures to produce foam at a certain height. The crude oil was extracted from an oilfield in East Malaysia and the in-house developed surfactant was a mixture of amphoteric and anionic surfactants. A camera continuously recorded the height of foam during the generation and the collapse of the foam. The foamability and foam stability properties of each sample were taken as the indicators for foam performance. Furthermore, the entering, spreading and bridging analysis was run to observe the effect of the presence of crude oil on foam performance. Findings-In general, the higher the temperature, the less stable the foam is. As the stability of foam is associated with the rate of liquid drainage, it was observed that as temperature increases, the rate of liquid drainage also increases. On the other hand, the entering, spreading and bridging analysis shows that there is entering of oil droplet happening on the interface of foam film that may promote the rupture of the foam film even more. Originality/value-It was found that the temperature has a small impact on foamability, whereas the foam stability was significantly affected by the temperature. Therefore, it can be concluded that foamability is not necessarily interrelated to foam stability, contradicting to the findings of few authors.
机译:用途泡沫在提高采油率方面的应用要求泡沫的生产足够坚固,稳定,可以长期使用。有许多因素可能影响泡沫的性能,其中包括温度。因此,本研究旨在通过评估泡沫的可发泡性和稳定性来观察在不同温度下的泡沫性能。设计/方法/方法-在本研究中,使用FoamScan进行了散装泡沫试验,以检验温度对泡沫的影响。原油的存在。在不同温度下,将氮气,内部开发的表面活性剂和氯化钠溶液(如盐水)的混合物喷入氮气,以在一定高度下产生泡沫。原油是从东马来西亚的一个油田中提取的,内部开发的表面活性剂是两性和阴离子表面活性剂的混合物。照相机连续记录泡沫的产生和破裂期间的泡沫高度。将每个样品的起泡性和泡沫稳定性质作为泡沫性能的指标。此外,进行进入,扩散和桥接分析以观察原油的存在对泡沫性能的影响。研究结果-通常,温度越高,泡沫的稳定性越差。由于泡沫的稳定性与液体排出速率相关,因此观察到随着温度的升高,液体排出速率也增加。另一方面,进入,扩散和桥接分析表明,在泡沫膜的界面上出现油滴的进入,这可能进一步促进泡沫膜的破裂。原创性/价值-发现温度对起泡性影响很小,而泡沫的稳定性受温度影响很大。因此,可以得出结论,起泡性不一定与泡沫稳定性相关,这与少数作者的发现相矛盾。

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