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An Investigation on the Feasibility of Combined Refracturing of Horizontal Wells and Huff and Puff Gas Injection for Improving Oil Recovery from Shale Petroleum Reservoirs

机译:水平井和沟槽和浮气注射液综合抑制可行性调查,从而改善页岩石油储层

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Huff and Puff gas injection through horizontal wells in shale petroleum reservoirs is moving cautiously from being a promising theoretical possibility, to becoming a reality for increasing oil recovery. This study investigates how oil recoveries from shales can be increased by (1) a combination of refracturing and huff and puff gas injection, and (2) huff and puff gas injection when the length of the gas injection and production cycles are increased over time. The possibility of improving oil recoveries from shales by a combination of refracturing and huff and puff gas injection is investigated using a compositional simulation approach. Previous studies published in the literature, have considered the implementation of regular constant-time cycles throughout the huff and puff process. This may not be the optimum strategy. In this work, the use of cycles with increasing time- lengths is investigated with a view to maximize the oil recovery by huff and puff gas injection. The combination of (1) huff and puff gas injection followed by (2) refracturing and (3) stopping gas injection is found to be a good option to increase oil recovery from shale petroleum reservoirs when the initial hydraulic fracturing (IHF) has been successful. The benefits of this approach are demonstrated through a comparison made when refracturing is carried out without previous huff and puff injection. If the IHF has not been implemented properly, the huff and puff gas injection does not provide attractive recoveries. In this case, a refracturing job followed by huff and puff gas injection is shown to improve recoveries significantly. A comparison of the different scenarios considered in this paper shows that proper design of the injection and production schedule is very important in the development of a huff and puff gas injection. Optimizing the schedule by using the appropriate cycles with variable increasing-time spans can lead to improving the huff and puff performance. This study investigates how to increase oil recovery from shale petroleum reservoirs by (1) the combined use of refracturing and huff and puff gas injection, and (2) the use of cycles of variable length as opposed to the regular-length constant-time cycles considered in previous publications. To the best of our knowledge, the two cases considered in this paper are novel and have not been published previously in the literature.
机译:通过在页岩石油储层中通过水平井注射沟槽和吹气气体注射正在谨慎地致力于成为一个有前途的理论可能性,成为增加石油回收的现实。本研究调查了Shales的回收率如何增加(1)耐压和呼吸气体注射的组合,以及(2)当气体喷射和生产循环的长度随时间增加时,(2)呼吸气体注射。使用组合模拟方法研究通过组合模拟方法来改善来自Shales和粉扑气体注射的石头的油回收率的可能性。以前发表在文献中的研究,已经考虑了整个Huff和Puff过程中定期恒定时间循环的实施。这可能不是最佳策略。在这项工作中,研究了随着时间长度的增加的循环的使用,以便通过Huff和Puff气体注入最大化油回收。 (1)Huff和Puff气体注入的组合,然后被发现耐腐蚀和(3)停止气体注射是一种良好的选择,可以在最初的液压压裂(IHF)成功时增加来自页岩石油储存器的石油储存。通过在没有先前的Huff和Puff注射的情况下进行耐压时进行的比较来证明这种方法的益处。如果IHF尚未正常实施,则Huff和Puff气体注入不能提供有吸引力的回收率。在这种情况下,示出了抑制作业,然后显示出呼吸气体注射液,显着提高回收率。本文考虑的不同情景的比较表明,在沟槽和泡沫喷气口的开发方面,注射和生产计划的适当设计非常重要。通过使用具有可变升高时间跨度的适当周期来优化计划,可以导致提高Huff和Puff性能。本研究调查了如何通过(1)抑制和呼吸和泡沫气体注入的组合使用(1)将石油储层增加石油储存和(2)使用可变长度的循环与常规长度恒定时间循环相反的使用在以前的出版物中考虑。据我们所知,本文考虑的两种案例是新颖的,并未在文献中发表。

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