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Enhancing Oil Recovery With Bottom Water Drainage Completion

机译:通过完成底水排放提高采油量

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摘要

Field trials and physical modeling of wells with downhole water sink (DWS) completions have demonstrated controlled water coning and increased oil production rate. However, no field trials were long enough to show DWS potential in improving of oil recovery in comparison with conventional wells. Presented here are theoretical and experimental results from a DWS recovery performance study. The recovery study involved experiments with a physical model and computer simulations. The experimental results reveal that DWS dramatically accelerates the recovery process; a fivefold increase of the oil production rate was reached by adjusting the water drainage rate at the bottom completion. The results also show a 70% increase of oil recovery; from 0.52 to 0.88 for conventional and DWS completions, respectively. The computer-simulated experiments with commercial reservoir simulator demonstrate progressive improvement of recovery with downhole water drainage from 0.61 to 0.79 with no drainage and maximum drainage, respectively-a 24% increase of recovery factor, and a fivefold reduction of the time required to reach the limiting value of water cut, 0.98. However, the accelerated recovery process with DWS requires a substantial, up to 3.5-fold, increase of total water production. The simulation experiments also show that the main advantage of using DWS is its flexibility in controlling the recovery process. For conventional completions, recovery could be slightly increased by reducing production rates and largely increasing production times. For DWS, a combination of the top and bottom rates could be optimized for maximum recovery and minimum production time.
机译:带有井下水槽(DWS)完井的井场试验和物理模型表明,控制了水锥进并提高了产油率。然而,与常规井相比,尚无足够长的现场试验表明DWS具有改善油采收率的潜力。这里介绍的是DWS恢复性能研究的理论和实验结果。恢复研究涉及具有物理模型和计算机模拟的实验。实验结果表明,DWS极大地加快了恢复过程。通过调节底部完井的排水速率,可以使产油率提高五倍。结果还表明,采油量增加了70%。对于常规和DWS完成,分别为0.52至0.88。使用商业油藏模拟器进行的计算机模拟实验表明,井下排水的采收率从0.61逐步提高到0.79,无排水和最大排水,采收率分别提高了24%和5倍。含水极限值为0.98。但是,DWS的加速回收过程需要将总产水量提高多达3.5倍。仿真实验还表明,使用DWS的主要优势在于它在控制恢复过程中的灵活性。对于常规完井,可以通过降低生产率和大幅增加生产时间来稍微提高采收率。对于DWS,可以优化最高和最低汇率的组合,以实现最大的回收率和最短的生产时间。

著录项

  • 来源
    《Journal of Energy Resources Technology》 |2014年第4期|042906.1-042906.7|共7页
  • 作者单位

    Schlumberger, PTS, 16a bld 3 Leningradskoe Shosse, Moscow 125171, Russia;

    Louisiana State University, Baton Rouge, LA 70803;

    Chevron NA DWEP, 1500 Louisiana, Room 37-179, Houston, TX 77002;

  • 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

  • 入库时间 2022-08-18 00:28:53

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