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Reservoir simulation study for the South Slattery Field.

机译:南部泥石流油田的储层模拟研究。

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摘要

A detailed understanding of the reservoir in the successful operation of mature oil fields is so essential that can be used to determine the optimum recovery method. However, reservoir management and characterization has seldom been carried out by small and medium operators due to lack of reservoir data and technical personnel (Babadagli, 2005). There are thousands of oil and gas fields in mature basins that haven't had the benefit of more detailed study.; In this study, ECLIPSE is used to simulate the South Slattery Field, validated by the history match on primary production. Our goal is to build a general reservoir simulation model for the South Slattery Field, which can be applied for the further recovery process. This study will assist in making decisions on the further recovery scheme and operations.; Based on a satisfactory history match result, it is concluded that the primary drive mechanism is water influx, which accounts for 95%, and other mechanisms, including rock compaction and oil expansion, have a 5% contribution. Since there is very little gas dissolved in the reservoir fluid, the gas drive mechanism can be ignored. After more than 40 years production, the field oil recovery has reached 30%, which implies the reservoir still has plenty of remaining oil in place (10.71MMSTB) that would be suitable for some other form of enhanced oil recovery. It has been determined that the infill-drilling strategy is an effective method that could be taken to enhance oil recovery. The field oil recovery could be enhanced from 34% to almost 40% in the next 10 years. The preliminary result of the polymer flood for the South Slattery Field also draws a promising conclusion: the field oil recovery can be enhanced from 34% to 37% in the next 10 years and the water cut can be greatly reduced within the first several years.; It is recommended that additional reservoir parameters be collected and a more detailed study be implemented because of the large potential for additional oil recovery indicated by this reservoir study.
机译:对成熟油田成功运行中的储层的详细了解是如此重要,可以用来确定最佳采收方法。但是,由于缺乏储层数据和技术人员,中小型运营商很少进行储层管理和描述(Babadagli,2005)。成熟的盆地中有成千上万的油气田,没有得到更详细的研究。在本研究中,ECLIPSE用于模拟南部泥石流场,并通过一次生产的历史记录匹配进行了验证。我们的目标是为南部泥石场建立一个通用的油藏模拟模型,该模型可用于进一步的开采过程。这项研究将有助于对进一步的恢复方案和操作做出决策。根据令人满意的历史拟合结果,可以得出结论,主要驱动机制是水涌入,占95%,而其他机制(包括岩石压实和油膨胀)贡献了5%。由于几乎没有气体溶解在储层流体中,因此可以忽略气体驱动机构。经过40多年的生产,油田的采收率已达到30%,这意味着该油藏中仍有大量剩余油(10.71MMSTB),适合于其他形式的强化采油。已经确定,填充钻井策略是可以用来提高油采收率的有效方法。未来十年,油田采油率可以从34%提高到近40%。 South Slattery油田聚合物驱的初步结果也得出了令人鼓舞的结论:在未来10年中,油田采油率可以从34%提高到37%,并且在头几年可以大大减少含水率。 ;建议收集更多的储层参数,并进行更详细的研究,因为该储层研究表明有更多的采油潜力。

著录项

  • 作者

    Wang, Linna.;

  • 作者单位

    University of Wyoming.$bChemical & Petroleum Engineering.;

  • 授予单位 University of Wyoming.$bChemical & Petroleum Engineering.;
  • 学科 Engineering Electronics and Electrical.; Engineering Petroleum.
  • 学位 M.S.
  • 年度 2007
  • 页码 112 p.
  • 总页数 112
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;石油、天然气工业;
  • 关键词

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