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Optimized polymer enhanced foam flooding for ordinary heavy oil reservoir after cross-linked polymer flooding

机译:交联聚合物驱后普通稠油油藏的优化聚合物增强泡沫驱

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A successful cross-linked polymer flooding has been implemented in JD reservoir, an ordinary heavy oil reservoir with high permeability zones. For all that, there are still significant volumes of continuous oil remaining in place, which can not be easily extracted due to stronger vertical heterogeneity. Considering selective plugging feature, polymer enhanced foam (PEF) flooding was taken as following EOR technology for JD reservoir. For low cost and rich source, natural gas was used as foaming gas in our work. In the former work, the surfactant systems CEA/FSA1 was recommended as foam agent for natural gas foam flooding after series of compatibility studies. Foam performance evaluation experiments showed that foaming volume reached 110?mL, half-life time reached 40?min, and dimensionless filter coefficient reached 1.180 when CEA/FSA1 reacted with oil produced by JD reservoir. To compare the recovery efficiency by different EOR technologies, series of oil displacement experiments were carried out in a parallel core system which contained cores with relatively high and low permeability. EOR technologies concerned in our work include further cross-linked polymer (C-P) flooding, surfactant-polymer (S-P) flooding, and PEF flooding. Results showed that PEF flooding had the highest enhanced oil recovery of 19.2?% original oil in place (OOIP), followed by S-P flooding (9.6?% OOIP) and C-P flooding (6.1?% OOIP). Also, produced liquid percentage results indicated PEF flooding can efficiently promote the oil recovery in the lower permeability core by modifying the injection profile.
机译:JD油藏已成功实施了交联聚合物驱,这是一种具有高渗透率区域的普通稠油油藏。尽管如此,仍然存在大量的连续油,由于较强的垂直非均质性,不容易提取。考虑到选择性堵漏的特点,采用了聚合物增强泡沫驱(PEF)技术,遵循了JD油藏的EOR技术。为了低成本和丰富的来源,在我们的工作中,天然气被用作泡沫气体。在以前的工作中,经过一系列相容性研究,表面活性剂体系CEA / FSA1被推荐用作天然气泡沫驱的泡沫剂。泡沫性能评估实验表明,当CEA / FSA1与JD油藏产生的油反应时,泡沫体积达到110?mL,半衰期达到40?min,无因次过滤系数达到1.180。为了比较采用不同的EOR技术的采收率,在平行岩心系统中进行了一系列驱油实验,该系统包含具有相对较高和较低渗透率的岩心。我们工作中涉及的EOR技术包括进一步的交联聚合物(C-P)驱油,表面活性剂-聚合物(S-P)驱油和PEF驱油。结果表明,PEF驱油的最高采收率提高了原位原油(OOIP)的19.2%,其次是S-P驱油(9.6 %% OOIP)和C-P驱油(6.1 %% OOIP)。同样,产生的液体百分比结果表明,PEF驱替可以通过修改注入曲线来有效地促进低渗透岩心的采油。

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