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Comprehensive Water-Alternating-Gas (WAG) injection study to evaluate the most effective method based on heavy oil recovery and asphaltene precipitation tests

机译:基于重油采收和沥青质沉淀试验的综合水交替气(WAG)注入研究,以评估最有效的方法

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This research provides a laboratory displacement study of several Enhanced-Oil-Recovery ([OR) scenarios including water, hot water, N-2, CO2, associated gas, and four Water-Alternating-Gas (WAG) (CO2/water, N-2/water, associated gas/water, and associated gas/hot water) injections to obtain the optimum injection fluid with respect to the ultimate oil recovery and asphaltene precipitation tests. Crude oil degrees API, viscosity, and asphaltene content are 19.94, 13.11 cp. and 12.773 wt%, respectively. Asphaltene content has been measured during the natural depletion for different planned injection scenarios. Asphaltene precipitation is strengthened during an increase of injected gas mole percent. Our static results demonstrated that associated gas injection resulted in the lowest precipitation among the injection scenarios. The ultimate recoveries and breakthrough times for water, hot water, CO2, N2, and associated gas injections were (52%, 90 min), (63%, 100 min), (64.5%, 60 min), (59.5%, 65 min), and (73%, 175 min), respectively. Regarding the results, due to the higher ultimate oil recovery and later breakthrough time, hot water flooding is much more efficient than water flooding. After, the four different WAG injection tests were done to obtain the best method in terms of oil recovery. The best ultimate recovery was 88.5%, and it was for hot water alternating associated gas: moreover, gas and water breakthrough times were 215 and 255 min, respectively. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项研究提供了一个实验室驱替研究,涉及几种强化油采收率(OR)情景,包括水,热水,N-2,CO2,伴生气和四种水交替气(WAG)(CO2 /水,N -2 /水,伴生气/水和伴生气/热水)注入,以获得关于最终采油和沥青质沉淀测试的最佳注入液。原油API度,粘度和沥青质含量为19.94、13.11cp。和12.773重量%。在自然消耗期间,针对不同的计划注射方案测量了沥青质含量。在注入的气体摩尔百分比增加的过程中,沥青烯的沉淀会增强。我们的静态结果表明,在相应的注入方案中,伴有气体注入的降水最少。水,热水,CO2,N2和伴生气的最终回收率和突破时间分别为(52%,90分钟),(63%,100分钟),(64.5%,60分钟),(59.5%,65)分钟)和(分别为73%,175分钟)。关于结果,由于较高的最终采油量和较晚的突破时间,热水驱比水驱效率更高。之后,进行了四个不同的WAG注入测试,以获得就油采收而言最好的方法。最佳最终回收率为88.5%,这是热水与伴生气交替进行的结果:此外,天然气和水的穿透时间分别为215分钟和255分钟。 (C)2015 Elsevier B.V.保留所有权利。

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