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Experimental study on timing and pattern of gas injection in low permeability reservoir

机译:低渗透油藏注气时机和规律的实验研究

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Experiments were conducted to study the selection of development methods for low permeability reservoir exploitation after water drive, including the effects of different gas injection cycle times and different injection modes on oil displacement efficiency. Results showed that both gas injection cycle time and injection mode have significant effects on oil displacement efficiency. Based on the results of gas injection cycle time of the displacement with mode shifting to gas drive when water cut reaches 50% and 100%, it can be concluded that in the low permeability reservoir, which is exploited by water drive in the early time, the sooner the gas injection, the higher the oil displacement efficiency is. Because high water saturation can cause serious water-blocking effect, leading to a large amount of trapped oil and low displacement efficiency. Further, in view of the results of water drive, gas injection, and water alternating gas (WAG) flooding, it is obvious that WAG flooding is one of the best methods in enhanced oil recovery. Under the effect of gravity differentiation, WAG flooding can spread to the upper reservoir, which cannot be swept by water drive. Thus, the oil recovery factor can be improved effectively. However, it should be noted that gas injectivity should be considered in the field test.
机译:通过实验研究了注水后低渗透油藏开发方法的选择,包括不同注气周期和不同注入方式对驱油效率的影响。结果表明,注气循环时间和注入方式均对驱油效率有显着影响。根据注水量在含水率分别达到50%和100%时向气驱模式转换的注气循环时间,可以得出结论:在早期渗透率驱动的低渗透油藏中,气体注入越早,驱油效率越高。由于高的水饱和度会导致严重的阻水作用,从而导致大量的油被捕集,驱替效率低下。此外,考虑到注水,注气和交替注水(WAG)驱油的结果,很明显,注水驱油是提高采油率的最佳方法之一。在重力分异的作用下,WAG驱油可以扩散到上层储层,而水驱无法将其扫除。因此,可以有效地提高采油率。但是,应注意,在现场测试中应考虑气体注入性。

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