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Transport and return of an oilfield scale inhibitor reverse micelle nanofluid: impact of preflush and overflush

机译:油田量表抑制剂反向胶束流体的运输和返回:素质和溢流的影响

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摘要

In this study, oilfield scale inhibitor reverse micelle nanomaterials and a nanomaterial fluid (nanofluid) were investigated to expand their use in the delivery of a scale inhibitor into reservoir formation for oilfield mineral scale control. The prepared inhibitor nanomaterials are in a non-aqueous medium designed for application in low water cut or water sensitive production wells. The transport behavior of the inhibitor nanofluid was evaluated with a focus on examining the impacts of flow rate and preflush fluid. It shows that an increase in flow rate can improve the transportability of the nanomaterials in a calcite medium. The increase in flow rate can also lead to a reduced tendency of nanomaterials to be collected by a calcite medium. An isooctane preflush can enhance the transport of the nanomaterial compared with an aqueous brine preflush. Inhibitor return performance of the nanofluid was evaluated by laboratory squeeze simulation tests. It shows that the prepared inhibitor reverse micelle nanomaterials demonstrated an extended squeeze lifetime compared with the conventional pill solution. Furthermore, it is evident that an aqueous brine overflush can improve the return performance of the nanomaterials, compared with an isooctane overflush. This can be explained by the adsorption-desorption dynamics of the previously attached nanomaterials. Laboratory transport and squeeze simulation studies suggest that the inhibitor nanofluid has the potential to serve as a delivery vehicle to improve placement and return of inhibitors inside formation for oilfield scale control.
机译:在该研究中,研究了油田量表抑制剂反向胶束材料和纳米材料(纳米流体),以扩大它们在将水垢抑制剂递送到油田矿物化控制的储层形成中的用途。制备的抑制剂纳米材料是在低水切割或水敏感生产井中施用的非水性介质中。抑制剂纳米流体的运输行为被评估,重点是检查流速和预填充液的影响。结果表明,流速的增加可以改善纳米材料在方解石培养基中的可运输性。流速的增加也可以导致通过方解石培养基将纳米材料的趋势降低。与水性盐水填充剂相比,异辛烷率可以增强纳米材料的运输。通过实验室挤压模拟试验评估纳米流体的抑制剂返回性能。结果表明,与常规丸溶液相比,所制备的抑制剂反向胶束纳米材料表现出延长的挤压寿命。此外,明显看出,与异辛烷溢流相比,盐水溢流可以改善纳米材料的返回性能。这可以通过先前附着的纳米材料的吸附 - 解吸动力学来解释。实验室运输和挤压仿真研究表明,抑制剂纳米流体具有作为递送载体的潜力,以改善油田规模控制地层内部形成的抑制剂的放置和返回。

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  • 来源
    《RSC Advances》 |2016年第71期|共10页
  • 作者单位

    Rice Univ Dept Civil &

    Environm Engn Houston TX 77005 USA;

    Rice Univ Dept Civil &

    Environm Engn Houston TX 77005 USA;

    Rice Univ Dept Civil &

    Environm Engn Houston TX 77005 USA;

    Rice Univ Dept Civil &

    Environm Engn Houston TX 77005 USA;

    Rice Univ Dept Civil &

    Environm Engn Houston TX 77005 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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