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Investigation of Polymer-Enhanced Foam Flooding With Low Gas/Liquid Ratio for Improving Heavy Oil Recovery

机译:低气/液体比改善重油回收率的聚合物增强泡沫泛滥

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Severe viscous fingering during water flooding of heavy oil leaves a large amount of oil untouched in the reservoir. Improving sweep efficiency is vital for increasing heavy oil recovery. Previous researches have proved that foam flooding can increase the sweep efficiency and control gas mobility, and thus increase oil recovery. However, researches on foam flooding were always focusing on the effect of high gas/liquid ratio (The gas/liquid ratio is usually larger than 1:1). Little research was conducted on foam flooding with low gas/liquid ratio. This paper presents the results of a laboratory study of polymer enhanced foam flooding with low gas/liquid ratio for heavy oil in Shengli oilfield. For polymer enhanced foam (PEF), the displacement medium is N2 mixed with surfactant as foaming agent and HPAM. The experimental investigation evaluated the performance of foaming agent and studied the use of polymer to enhance foam properties. Polymer enhanced foam flooding were performed in cores, sandpacks and 3D physical model to study the factors affecting displacement efficiency such as gas/liquid ratio, injection slug size, and the viscosity of crude oil. The results of sandpack flood tests showed that the tertiary oil recovery of polymer enhanced foam flooding with the gas/liquid ratio of 0.2:1 could reach 39% IOIP for heavy oil with the viscosity of 325mPa·s at 55 , which was 11% higher than the alkali/surfactant/polymer flooding by injecting a 0.3 pore volume (PV) of the same chemical slug. However, the tertiary oil recovery decreased with the increasing viscosity of crude oil. The result obtained in 3D physical simulation indicated that polymer enhanced foam system had excellent profile modification effect to increase sweep area and thus increase oil recovery. The above results demonstrate that polymer enhanced foam flooding with low gas/liquid ratio is a promising economical method for improving heavy oil recovery after water flooding.
机译:重型油水淹没过程中的严重粘性手指留下了大量的油,在水库中不受影响。提高扫描效率对于增加重油回收至关重要。以前的研究证明,泡沫洪水可以提高扫描效率和控制气体流动性,从而提高溢油。然而,对泡沫洪水的研究始终专注于高气/液体比的影响(气/液比通常大于1:1)。对气/液/液体比的泡沫洪水进行了很少的研究。本文介绍了胜利油田重油低气/液比的聚合物增强泡沫洪水的实验室研究结果。对于聚合物增强的泡沫(PEF),位移介质是与表面活性剂混合作为发泡剂和HPAM的N2。实验研究评估了发泡剂的性能,并研究了聚合物的使用以增强泡沫性质。在核心,散装网和3D物理模型中进行聚合物增强的泡沫洪水,以研究影响位移效率的因素,如气/液比,注射块尺寸和原油粘度。 Sandpack洪水试验结果表明,聚合物增强泡沫溢出的第三型溢油液与0.2:1的气/液体比率达到39%的IoIP,粘度为325MPa·s,55°率为11%通过注入相同化学渣的0.3孔体积(PV)来碱/表面活性剂/聚合物泛抗。然而,随着原油粘度的增加,第三次采油减少。在3D物理模拟中获得的结果表明,聚合物增强泡沫系统具有优异的型材改性效果,以增加扫描区域,从而提高溢油。上述结果表明,具有低气/液体比的聚合物增强的泡沫泛涌是一种有希望的经济学方法,用于改善水淹水后的重油恢复。

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