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Eos modeling and reservoir simulation study of bakken gas injection improved oil recovery in the elm coulee field, Montana.

机译:在蒙大拿州的榆树古力油田,Bakken注气的Eos建模和油藏模拟研究提高了采收率。

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摘要

The Bakken Formation in the Williston Basin is one of the most productive liquid-rich unconventional plays. The Bakken Formation is divided into three members, and the Middle Bakken Member is the primary target for horizontal wellbore landing and hydraulic fracturing because of its better rock properties. Even with this new technology, the primary recovery factor is believed to be only around 10%. This study is to evaluate various gas injection EOR methods to try to improve on that low recovery factor of 10%. In this study, the Elm Coulee Oil Field in the Williston Basin was selected as the area of interest. Static reservoir models featuring the rock property heterogeneity of the Middle Bakken Member were built, and fluid property models were built based on Bakken reservoir fluid sample PVT data. By employing both compositional model simulation and Todd-Longstaff solvent model simulation methods, miscible gas injections were simulated and the simulations speculated that oil recovery increased by 10% to 20% of OOIP in 30 years. The compositional simulations yielded lower oil recovery compared to the solvent model simulations. Compared to the homogeneous model, the reservoir model featuring rock property heterogeneity in the vertical direction resulted in slightly better oil recovery, but with earlier CO2 break-through and larger CO2 production, suggesting that rock property heterogeneity is an important property for modeling because it has a big effect on the simulation results. Long hydraulic fractures shortened CO2 break-through time greatly and increased CO 2 production. Water-alternating-gas injection schemes and injection-alternating-shut-in schemes can provide more options for gas injection EOR projects, especially for gas production management. Compared to CO2 injection, separator gas injection yielded slightly better oil recovery, meaning separator gas could be a good candidate for gas injection EOR; lean gas generated the worst results. Reservoir simulations also indicate that original rock properties are the dominant factor for the ultimate oil recovery for both primary recovery and gas injection EOR. Because reservoir simulations provide critical inputs for project planning and management, more effort needs to be invested into reservoir modeling and simulation, including building enhanced geologic models, fracture characterization and modeling, and history matching with field data. Gas injection EOR projects are integrated projects, and the viability of a project also depends on different economic conditions.
机译:威利斯顿盆地的巴肯组是产油量最高的非常规油藏之一。 Bakken地层分为三个部分,Bakken中间部分由于其较好的岩石特性而成为水平井筒着陆和水力压裂的主要目标。即使有了这项新技术,据信主要的回收率也只有10%左右。这项研究旨在评估各种注气EOR方法,以尝试提高10%的低采收率。在这项研究中,Williston盆地的Elm Coulee油田被选为关注区域。建立了以巴肯中段岩石性质非均质性为特征的静态油藏模型,并基于巴肯油藏流体样本PVT数据建立了流体性质模型。通过同时使用成分模型模拟和Todd-Longstaff溶剂模型模拟方法,对可混溶气体进行了模拟,模拟结果表明,在30年内,石油采收率可提高OOIP的10%至20%。与溶剂模型模拟相比,组成模拟产生的油采收率较低。与均质模型相比,在垂直方向上具有岩石性质非均质性的油藏模型可提高采收率,但具有较早的CO2突破和较大的CO2产量,这表明岩石性质非均质性是建模的重要属性,因为它具有对仿真结果影响很大。长时间的水力压裂大大缩短了CO2突破时间,并增加了CO 2产量。注水交替注气方案和注水交替关停方案可以为注气EOR项目(尤其是天然气生产管理)提供更多选择。与CO2注入相比,分离器注气的采收率略高,这意味着分离器气可能是EOR注气的良好选择。贫气产生的结果最差。储层模拟也表明原始岩石性质是初次采油和注气EOR最终采油的主要因素。由于油藏模拟为项目规划和管理提供了关键的输入,因此需要在油藏建模和模拟上投入更多的精力,包括建立增强的地质模型,裂缝表征和建模以及与现场数据的历史匹配。注气EOR项目是集成项目,项目的可行性还取决于不同的经济条件。

著录项

  • 作者

    Pu, Wanli.;

  • 作者单位

    Colorado School of Mines.;

  • 授予单位 Colorado School of Mines.;
  • 学科 Engineering Petroleum.;Engineering General.;Energy.
  • 学位 M.S.
  • 年度 2013
  • 页码 139 p.
  • 总页数 139
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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