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Computer modelling of the effect of carbon dioxide and pentane as solvents combined with in-situ combustion on the recovery of heavy oil.

机译:计算机模拟二氧化碳和戊烷作为溶剂结合原位燃烧对重油回收的影响。

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摘要

In-situ combustion (ISC) has proven, under some circumstances, to be effective in heavy oil recovery. Carbon dioxide (CO2) injection also has proven to be a potentially important heavy oil recovery method (Issever & Topkaya, 1998). In this research, computer simulations were performed to investigate the effect of carbon dioxide injection when combined with in situ combustion during heavy oil recovery. The Eclipse 300 reservoir simulator was used to develop laboratory and field scale simulations of ISC. The laboratory scale simulator was validated with published laboratory results. The West Heidelberg field was used to validate the field scale model. Then a simulation that combined CO2 injection with the in-situ combustion process was run to determine whether the combination would result in additional oil production. An additional simulation using pentane, another hydrocarbon solvent, combined with in-situ combustion was also performed. Pentane was used because it has a higher solubility in oil. The amount of oil recovered from all three cases was compared.;The results indicate that CO2 injection before ISC slightly increased the total amount of heavy oil recovered when compared to the ISC process only. The injection of pentane with ISC also showed an increase in the amount of heavy oil recovered when compared to the ISC-only process.
机译:在某些情况下,现场燃烧(ISC)已被证明对重油采收有效。二氧化碳(CO2)注入也已被证明是潜在的重要重油回收方法(Issever&Topkaya,1998)。在这项研究中,进行了计算机模拟,以研究重油采收过程中二氧化碳注入与原位燃烧相结合的效果。 Eclipse 300油藏模拟器用于开发ISC的实验室和现场规模模拟。实验室规模模拟器已通过公开的实验室结果进行了验证。西海德堡油田用于验证油田规模模型。然后进行模拟,将二氧化碳注入与原位燃烧过程相结合,以确定该结合是否会导致额外的产油量。还进行了使用戊烷(另一种烃类溶剂)与原位燃烧相结合的附加模拟。使用戊烷是因为它在油中的溶解度更高。比较了所有三个案例中的油回收量。结果表明,与ISC工艺相比,在ISC之前注入CO2略微增加了重油回收总量。与仅使用ISC的过程相比,用ISC注入戊烷也显示出重油回收量的增加。

著录项

  • 作者

    Attobrah, Issac.;

  • 作者单位

    Montana Tech of The University of Montana.;

  • 授予单位 Montana Tech of The University of Montana.;
  • 学科 Petroleum engineering.;Energy.;Chemical engineering.
  • 学位 M.S.
  • 年度 2015
  • 页码 66 p.
  • 总页数 66
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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