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The macroscopic and microscopic analysis on the performance of steam foams during thermal recovery in heavy oil reservoirs

机译:稠油油藏热采过程中蒸汽泡沫性能的宏观和微观分析

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摘要

In heavy oil reservoirs, steam channeling and steam override seriously decrease oil production and the ultimate oil recovery during steam flooding. Aiming at the two problems, some experiments were carried out to analyze the EOR mechanisms through injecting foaming agents along with steam injection in heavy oil reservoirs. An orthogonal method was employed to analyze the multiple factors on foam's properties to optimize foaming agent for steam injection. Then a novel 2D-visualization experiment was carried out to quantitatively study the characteristics of steam channeling and the variation of sweep efficiency during steam or steam foams flooding. Based on the experimental results, many bubble's characteristics, such as migration, retention, regeneration and etc., were analyzed through the macroscopic and microscopic perspectives. The experimental results show that the Jamin effect increases the flow resistance of steam-phase in porous media to obviously enlarge the macro sweep efficiency and effectively increase micro oil displacement efficiency. On a macroscopic level, because of the unique structure, foams decrease steam override or steam channeling to improve sweep efficiency; on a microscopic level, due to the expansion effect of gas-phase, bubbles can desquamate the oil film on the pore wall and even the oil drop in the blind pore to decrease the residual oil saturation. In our experiments, the ultimate recovery of steam flooding can only reach 48.48%. However, the ultimate recovery of steam foams can reach 59.95%, which is 11.47% higher than steam flooding.
机译:在稠油储层中,蒸汽窜流和蒸汽超控严重降低了石油产量,并在蒸汽驱期间最终降低了石油采收率。针对这两个问题,进行了一些实验,以分析在稠油油藏中通过注入发泡剂和注入蒸汽来提高采收率的机理。采用正交方法分析泡沫性能的多种因素,优化注汽用发泡剂。然后进行了新颖的二维可视化实验,定量研究了蒸汽或蒸汽泡沫驱油过程中蒸汽通道的特征和扫掠效率的变化。根据实验结果,从宏观和微观的角度分析了许多气泡的特征,如迁移,保留,再生等。实验结果表明,贾明效应增加了蒸汽在多孔介质中的流动阻力,从而明显提高了宏观扫油效率,有效提高了微驱油效率。从宏观上讲,由于其独特的结构,泡沫减少了蒸汽覆盖率或蒸汽通道,从而提高了清扫效率。在微观水平上,由于气相的膨胀作用,气泡会使孔壁上的油膜脱去,甚至使盲孔中的油滴脱落,从而降低残余油饱和度。在我们的实验中,蒸汽驱的最终回收率只能达到48.48%。但是,蒸汽泡沫的最终回收率可以达到59.95%,比蒸汽驱高出11.47%。

著录项

  • 来源
    《Fuel》 |2018年第1期|166-176|共11页
  • 作者单位

    China Univ Petr, State Key Lab Petr Resources & Engn, Beijing 102249, Peoples R China;

    China Univ Petr, Fac Petr Engn, Beijing 102249, Peoples R China;

    CNOOC Ltd, Tianjin Bohai Oilfield Inst, Tianjin 300452, Peoples R China;

    CNOOC Ltd, Tianjin Bohai Oilfield Inst, Tianjin 300452, Peoples R China;

    CNOOC Ltd, Tianjin Bohai Oilfield Inst, Tianjin 300452, Peoples R China;

    CNOOC Ltd, Tianjin Bohai Oilfield Inst, Tianjin 300452, Peoples R China;

    CNOOC Ltd, Tianjin Bohai Oilfield Inst, Tianjin 300452, Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Heavy oil; Steam flooding; Foams; Visualization; Experiment;

    机译:重油;蒸汽驱;泡沫;可视化;实验;

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