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A Comparison of Hybrid Steam-Assisted Gravity Drainage Models in Top Water Reservoirs

机译:顶部水库混合蒸汽辅助重力排水模型的比较

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摘要

Top Water Reservoirs are continually being exploited by oil companies to meet the increasing energy demands. This type of reservoir is considered fragile and requires thorough development strategies to achieve acceptable recovery factors. This study discusses the advantages of the SAGD, Steam Assisted Gravity Drainage, system in the development of Top Water Reservoirs. A literature review shows that SAGD has the edge in cumulative oil recovery in comparison with CSS, Cyclic Steam Stimulation. This is because the SAGD system can maintain a consistent steam injection pressure throughout the production of the Top Water Reservoir. A consistent pressure system is necessary in this type of reservoir to achieve higher oil recovery rates.;The oil industry utilizes different gas mixtures to recover heavy oil and bitumen from top water reservoirs. The different gas mixtures used are: solvent-steam, nitrogen-steam, and methane-Steam gas mixtures. A generic, sink/source, SAGD model was developed using CMG to compare the effects of the three gas mixtures mentioned above on the behavior of the top-water zone and reservoir. The results showed that nitrogen-steam and methane-steam gas mixtures can delay a top water zone collapse. It was found that nitrogen-steam and methane-steam mixtures minimize heat loss to the top-water zone in comparison to the solvent-steam gas injection mixture.
机译:石油公司不断开发顶级水库来满足不断增长的能源需求。这种类型的储层被认为是脆弱的,需要彻底的开发策略才能达到可接受的采收率。这项研究讨论了SAGD(蒸汽辅助重力排水)系统在顶级水库开发中的优势。文献综述表明,与CSS(循环蒸汽刺激)相比,SAGD在累积油采收方面具有优势。这是因为SAGD系统可以在整个顶层水库的生产过程中保持一致的蒸汽注入压力。在这种类型的油藏中,必须有一个一致的压力系统才能获得更高的采油率。石油工业利用不同的气体混合物从顶水油藏中开采重油和沥青。使用的不同气体混合物是:溶剂-蒸汽,氮气-蒸汽和甲烷-蒸汽的气体混合物。使用CMG开发了一个通用的汇/源SAGD模型,以比较上述三种混合气体对顶水区和储层行为的影响。结果表明,氮气-蒸汽和甲烷-蒸汽的混合物可以延迟顶部水带的塌陷。发现与溶剂-蒸汽气体注入混合物相比,氮气-蒸汽和甲烷-蒸汽混合物使到顶部水区域的热损失最小。

著录项

  • 作者

    El Shazly, Ahmed Salah.;

  • 作者单位

    New Mexico Institute of Mining and Technology.;

  • 授予单位 New Mexico Institute of Mining and Technology.;
  • 学科 Petroleum engineering.;Engineering.
  • 学位 M.S.
  • 年度 2017
  • 页码 87 p.
  • 总页数 87
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 文学理论;
  • 关键词

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