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Critical Review of Stabilized Nanoparticle Transport in Porous Media

机译:多孔介质中稳定的纳米颗粒传输的评论。

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Over the past few decades, due to the special features (i.e., easily produced, large-surface-area-to-volume ratio, and engineered particles with designed surface properties), nanoparticles have not only attracted great attentions from the oil and gas industry but also had various applications from drilling and completion, reservoir characterization, to enhanced oil recovery (EOR). As sensors or EOR agents, thus, fate and behavior of nanoparticles in porous media are essential and need to be investigated thoroughly. Nevertheless, most of the published review papers focus on particle transport in saturated porous media, and all of them are about steady-state flow conditions. So far, no attempts have been extended to systematically review current knowledge about nanoparticle transport in porous media with single-phase and two-phase flow systems under both steady-state and unsteady-state conditions. Accordingly, this review will discuss nanoparticle transport phenomena in porous media with its focus on the filtration mechanisms, the underlying interaction forces, and factors dominating nanoparticle transport behavior in porous media. Finally, mathematical models used to describe nanoparticle transport in porous media for both single-phase flow and two-phase flow under steady-state and transient flow conditions will be summarized, respectively.
机译:在过去的几十年中,由于其特殊的功能(即易于生产,大表面积/体积比以及具有设计表面特性的工程颗粒),纳米颗粒不仅引起了石油和天然气行业的极大关注而且还具有从钻井和完井,储层表征到提高采油率(EOR)的各种应用。因此,作为传感器或EOR剂,多孔介质中纳米颗粒的命运和行为至关重要,需要进行彻底研究。但是,大多数已发表的综述论文都集中在饱和多孔介质中的颗粒传输上,并且所有这些都是关于稳态流动条件的。到目前为止,没有任何尝试进行系统地回顾有关在稳态和非稳态条件下单相和两相流系统中多孔介质中纳米颗粒传输的当前知识。因此,本综述将讨论多孔介质中的纳米颗粒传输现象,重点是过滤机理,潜在的相互作用力以及控制多孔介质中纳米颗粒传输行为的因素。最后,将分别总结用于描述多孔介质中稳态和瞬态流动条件下单相流和两相流中纳米颗粒传输的数学模型。

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