Two Superior Shale Oil Enhanced Recovery Methods for the Utica Shale

R. Downey, K. Venepalli, J. Erdle
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引用次数: 1

Abstract

The Utica Shale is a very large, important oil and gas resource in the eastern United States. While gas production dominates, oil production from horizontal shale oil wells in the Utica has grown from 15 BOPD in June 2011 to a peak of 50,000 BOPD in September, 2019 with 2,485 horizontal shale oil wells in production. The Utica shale dips to the east, shallow in east-central Ohio to deep in western Pennsylvania. Likewise, hydrocarbons in the Utica trend from light oil with low GOR in eastern Ohio to dry gas in western Pennsylvania. Liquid hydrocarbons are produced from the shale via solution gas drive. The shallow, black oil area of the play has to date been noncommercial. A recent enhanced oil recovery test in the shallow black oil area of the Utica has provided encouraging results. Our objective is to introduce two novel EOR processes that can greatly increase the production and recovery of oil and gas from the Utica shale, while reducing the cost per barrel of recovered oil, and reducing GHG emissions and water consumption/production/disposal. Two superior shale oil EOR methods are proposed that utilize a triplex pump to inject a solvent liquid into the shale oil reservoir, and an efficient method to recover the injectant at the surface, for storage and reinjection. One of the methods also incorporates the application of rock mechanics to further enhance oil and gas recovery. The processes are designed and integrated during operation using compositional reservoir simulation in order to optimize oil recovery. Compositional simulation model of a Utica shale horizontal well producing rich gas condensate was conducted to obtain a history match on oil, gas, and water production. The matched model was then utilized to evaluate two novel shale oil EOR methods under a variety of operating conditions. The modeling indicates that for this particular well, incremental oil production of 500% over primary EUR may be achieved in the first five years of EOR operation via the SuperEOR method. A further enhanced EOR method, UltraEOR, is shown to potentially increase oil recovery by 850% in the first five years of EOR operation, and as much as 1100% after 12 years. These methods, which are patent-pending, have numerous advantages over cyclic gas injection, such as much greater oil recovery, much better economics/lower cost per barrel, reduced gas containment issues, use of far less horsepower and fuel, shorter injection time, longer production time, smaller injection volumes, scalability, faster implementation, precludes the need for artificial lift, elimination of the need to buy and sell injectant during each cycle, ability to optimize each cycle by integration with compositional reservoir simulation modeling, and lower emissions. These superior shale oil EOR methods have been modeled in seven major US shale oil plays, indicating large incremental oil recovery potential. Core tests have confirmed the SuperEOR modeling results and demonstrated high oil recovery, and field tests have been successfully completed that confirm reservoir simulation modelling projections. If implemented early in the life of a shale oil well, application of these processes can slow the production decline rate, recover far more oil earlier and at lower cost, greatly improve profitability and extend the life of the well by several years, while precluding the need for artificial lift.
Utica页岩两种优越的页岩油提高采收率方法
尤蒂卡页岩是美国东部一个非常大、重要的石油和天然气资源。虽然天然气产量占主导地位,但Utica地区水平页岩油井的石油产量已从2011年6月的15桶/天增长到2019年9月的5万桶/天的峰值,其中2485口水平页岩油井正在生产。尤蒂卡页岩向东倾斜,俄亥俄州中东部较浅,宾夕法尼亚州西部较深。同样,Utica的碳氢化合物也从俄亥俄州东部低GOR的轻质油转向宾夕法尼亚州西部的干气。液态烃通过溶液气驱从页岩中开采出来。迄今为止,该油藏的浅层黑色油区是非商业性的。最近在Utica浅层黑油区进行的提高采收率测试取得了令人鼓舞的结果。我们的目标是引入两种新的EOR工艺,这两种工艺可以大大提高Utica页岩油气的产量和采收率,同时降低每桶采收率的成本,减少温室气体排放和水的消耗/生产/处理。提出了两种较好的页岩油EOR方法,即利用三泵向页岩油储层注入溶剂型液体,以及在地面回收注入剂进行储存和回注的有效方法。其中一种方法还结合了岩石力学的应用,以进一步提高油气采收率。为了优化采收率,在作业过程中,通过组合油藏模拟来设计和集成这些工艺。建立了Utica页岩富凝析气藏水平井成分模拟模型,获得了油气水产量的历史拟合。然后利用匹配模型对两种新的页岩油提高采收率方法在各种工况下进行了评价。模型表明,对于这口井来说,通过SuperEOR方法,在前5年的EOR操作中,可以实现500%的原油产量增量。一种进一步增强的EOR方法,UltraEOR,在EOR操作的前5年有可能将石油采收率提高850%,12年后可提高1100%。与循环注气相比,这些正在申请专利的方法具有许多优点,例如更高的采收率、更高的经济性/更低的每桶成本、更少的气体密封问题、使用更少的马力和燃料、更短的注入时间、更长的生产时间、更小的注入量、可扩展性、更快的实施速度、不需要人工举升、不需要在每个循环中购买和出售注入剂。能够通过集成储层模拟建模来优化每个循环,并降低排放。这些优越的页岩油EOR方法已经在美国7个主要页岩油区进行了模拟,表明石油采收率有很大的增加潜力。岩心测试证实了SuperEOR模型的结果,并证明了高采收率,现场测试已经成功完成,证实了油藏模拟模型的预测。如果在页岩油井的早期阶段实施,这些工艺可以减缓产量下降速度,以更低的成本更早地开采更多的石油,大大提高盈利能力,延长油井寿命数年,同时避免了人工举升的需要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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