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Study on Prevention of Gas Channelling of Acid-resistant Gel Foam in CO 2 Flooding of Low Permeability Reservoir

机译:低渗透储层耐酸凝胶泡沫耐酸凝胶泡沫气体通道的研究

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With the shortage of recoverable reserves in conventional oil reservoirs, the development of low-permeability oil reservoirs has received more and more attention. The oil recovery of low-permeability reservoirs can be significantly improved by CO2 flooding, as it can effectively supply formation energy. CO2 flooding is an effective technology for increasing oil production in low-permeability reservoirs. However, because of the heterogeneity of the reservoir and the effect of natural fractures, CO2 gas channelling easily occurs during CO2 flooding, seriously reducing CO2 flooding effect. In this study, the gas channelling technology of acid-resistant gel foam was investigated. Preferred acid-resistant gel foam system formula was found as 0.1% by mass of AOS foaming agent with 0.3% to 0.4% by mass of instant HPAM polymer and 1% to 2% by mass of water-soluble phenolic resin crosslinking agent. This system still has a good foaming ability and blocking performance under at pH=2 and a salinity of 10×10~(4)mg/L. After 60 days of aging under oil reservoir conditions, there is no obvious water separation, and the plugging strength retention rate reached more than 60%. The gel foam channelling system can be applied to highly heterogeneous and low permeability reservoirs with a permeability gradient higher than 14 and can increase the recovery rate by more than 20% based on the CO2 flooding. Acid-resistant gel foam channelling technology can effectively inhibit CO2 gas channelling and improve CO2 flooding effect in low permeability reservoirs.
机译:随着传统油藏中可收回储量的短缺,低渗透油藏的发展越来越多地关注。通过CO2洪水可以显着提高低渗透水库的储存,因为它可以有效地提供形成能量。二氧化碳洪水是一种有效的技术,用于增加低渗透油藏油生产。然而,由于储层的异质性和自然骨折的效果,在二氧化碳泛滥期间容易发生CO 2气体,严重减少二氧化碳泛滥效应。在该研究中,研究了耐酸凝胶泡沫的气体通道技术。优选的耐酸凝胶泡沫系统配方为0.1质量%的AOS发泡剂,其瞬间HPAM聚合物0.3%至0.4质量%,1%至2质量%的水溶性酚醛树脂交联剂。该系统仍然具有良好的发泡能力,并在pH = 2下阻断性能和10×10〜(4)mg / L的盐度。在储物储层条件下老化60天后,没有明显的水分离,堵塞强度保持率达到60%以上。凝胶泡沫通道系统可以应用于高于14的渗透率梯度的高度异质和低渗透储存器,并且基于CO 2泛滥,可以将回收率提高20%以上。耐酸性凝胶泡沫通道技术可以有效地抑制CO 2气体通道,并改善低渗透储层中的二氧化碳泛滥效果。

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