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Evaluating hydrocarbon-in-place and recovery factor in a hybrid petroleum system: Case of Bakken and three forks in North Dakota

机译:在杂交石油系统中评估烃类和恢复因子:北达科他州的Bakken和三叉的情况

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摘要

An integrated workflow to estimate the hydrocarbon-in-place and recovery factor is applied in the Bakken-Three Forks petroleum system. Evaluating factors that control the generation and storage of hydrocarbon, such as the total organic carbon, maturity of shale, thickness, porosity, and permeability is a challenge in any shale play study. In addition, the hybrid nature of the Bakken petroleum system, where the source and reservoir rock are present within a short depth interval, adds complexity to the production interpretation and outlook of the play. One complexity is the contribution from Upper and Lower Bakken organic-rich shales to the production of horizontal wells completed in the Middle Bakken low-permeability laminated sandstone/siltstone and Upper Three Forks sandy/silty dolostone. We have performed geologic and petrophysical studies and calculate and map the hydrocarbon pore volume. For fluid characterization, we use three models to accurately cover a range of American Petroleum Institute gravity and gas/oil ratio. We evaluate the contribution of Upper and Lower Bakken to production by constructing simulation models and used that knowledge to estimate the recovery factor of the horizontal wells. Production depletes the Middle Bakken, creating a pressure difference between the Middle Bakken and the Upper/Lower Bakken, which in turn depletes the Upper/Lower Bakken. Vertical permeability controls production from the Upper and Lower Bakken, and higher vertical permeability increases the contribution of the two shale members. An understanding of the maturity and trap mechanism can help to explain the water-saturation distribution, and understanding these factors is crucial to any future development of the play.
机译:在Bakken-T3叉子石油系统中应用估计碳氢化合物和恢复因子的综合工作流程。评估控制烃的产生和储存的因素,例如总有机碳,页岩,厚度,孔隙度和渗透率的总体碳,是任何页岩作用研究的挑战。此外,Bakken石油系统的混合性质,源和水库岩石的存在在短的深度间隔内,增加了对戏剧的生产解释和前景的复杂性。一种复杂性是从上层和下部Bakken有机富有的Hales贡献到中间Bakken低渗透层压砂岩/硅铁晶和上三叉子砂质/丝状苔藓甾酮的生产水平孔的贡献。我们已经进行了地质和岩石物理研究并计算并映射烃孔体积。为了流体表征,我们使用三种模型来准确地覆盖一系列美国石油研究所的重力和气体/油比。我们通过构建模拟模型来评估上下Bakken对生产的贡献,并使用该知识来估计水平井的恢复因子。生产耗尽了中间的Bakken,在中间Bakken和鞋面/下巴肯之间产生压力差,这反过来耗尽鞋面/下巴克。垂直渗透率控制从上下Bakken的生产,垂直渗透率更高增加了两个页岩构件的贡献。对成熟度和陷阱机制的理解可以有助于解释水饱和分布,并理解这些因素对戏剧的未来发展至关重要。

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  • 来源
    《Interpretation》 |2019年第3期|共18页
  • 作者单位

    Univ Texas Austin Bur Econ Geol Jackson Sch Geosci Austin TX 78712 USA;

    Univ Texas Austin Bur Econ Geol Jackson Sch Geosci Austin TX 78712 USA;

    Univ Texas Austin Bur Econ Geol Jackson Sch Geosci Austin TX 78712 USA;

    Univ Texas Austin Bur Econ Geol Jackson Sch Geosci Austin TX 78712 USA;

    Univ Texas Austin Cockrell Sch Engn Dept Petr &

    Geosyst Engn Austin TX 78712 USA;

    Univ Texas Austin Bur Econ Geol Jackson Sch Geosci Austin TX 78712 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

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