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Analytical study on the Critical Water Cut for Water Plugging: Water cut increasing control and production enhancement

机译:水堵井临界水切割的分析研究:水减少控制和生产增强

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摘要

During the high water-cut period,water plugging treatment is a commonly selected development strategy to reduce the production decline rate.However,determination of the appropriate water-cut to implement water plugging is rarely studied and therefore it is often decided based on the experience of reservoir engineers,which could result in potential oil production loss and ineffective water plugging treatment.In this paper,an analytical model to predict water-cut increasing was derived and the increase in water-cut under different pressure drawdown multipliers was examined.Then,an approach to determine the critical water cut to apply plugging was proposed and the critical condition of water plugging in high water-cut formation was analyzed.Based on the sensitivity study conducted at different water-cut and different pressure drawdown multipliers,the lower oil viscosity leads to a lower critical plugging water cut,which implies that water plugging treatment might not be suitable for all types of reservoirs.Furthermore,this finding is practiced in actual oilfield extraction and the critical plugging water-cut calculation method does improve production performance.Thus,this analytical approach is capable to enhance oilfield production performance and optimize the effectiveness of water plugging.
机译:在高水路期间,水堵塞处理是一种常用的开发策略,以降低产量下降率。然而,利用适当的水堵漏的测定很少研究,因此它通常根据经验决定储层工程师,这可能导致潜在的石油生产损失和无效的水堵塞处理。在此文件中,探测了预测水切口越来越多的分析模型,并研究了不同压力绘制倍增器下的水切口的增加。那么,提出了一种确定临界水切口施加堵塞的方法,并分析了高水切口中的水堵塞的临界条件。基于不同水切和不同压力拉伸倍增器进行的敏感性研究,较低的油粘度导致一个较低的临界堵塞水切割,这意味着水堵塞可能不适合所有t ypes of respoirs.furtimore,这种发现在实际的油田提取和临界堵塞水切口计算方法中实行了提高生产性能。这种分析方法能够提高油田生产性能,优化水堵漏的有效性。

著录项

  • 来源
    《Energy》 |2021年第1期|119012.1-119012.13|共13页
  • 作者单位

    China University of Petroleum (East China) Qingdao 266580 China CNOOC Research Institute Co. Ltd. No.6 Taiyang Gong South Street Chaoyang District Beijing 100028 China;

    China University of Petroleum (East China) Qingdao 266580 China;

    CNOOC Research Institute Co. Ltd. No.6 Taiyang Gong South Street Chaoyang District Beijing 100028 China;

    CNOOC Research Institute Co. Ltd. No.6 Taiyang Gong South Street Chaoyang District Beijing 100028 China;

    CNOOC Research Institute Co. Ltd. No.6 Taiyang Gong South Street Chaoyang District Beijing 100028 China;

    CNOOC Research Institute Co. Ltd. No.6 Taiyang Gong South Street Chaoyang District Beijing 100028 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Water plugging; Water flooding; High water-cut; Production optimization;

    机译:漏水;水洪水;高污水;生产优化;

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