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Mitigation of Fine Particles Migration in Deep Bed Filters Treated by a Nanofluid Slug: An Experimental Study

机译:纳米流体粘土机治疗深层过滤器中细颗粒迁移的减轻:实验研究

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Fine particles migration in porous media (deep bed filters) is one of the main reasons causing formation damage especially during any well stimulation techniques or enhanced oil recovery (EOR) processes. It has been explained by lifting of in-situ fine particles present in the medium, their motion with the flow, and finally their capture at some pore throats. Attachment of particles to the rock surface during EOR agent injection into the reservoir can be a very promising remedy for the aforementioned challenge. In this experimental study, the role of nanoparticles -treated medium as an adsorbent of suspended particles has been investigated. Different concentrations of MgO and SiO_2 nanoparticles were utilized to treat the synthetic porous media. In several core flooding tests, a stable suspension was injected into the already nanoparticles-treated medium and particles concentration of effluents was measured by turbidity analysis. In order to quantify the effect of nanoparticles to alter the medium surface characteristics, zeta potential analysis and dynamic light scattering methods have been applied. The results indicated that the presence of nanoparticles on the medium surface alters the zeta potential of the rock which in rum, results in critically reduction of particles concentration in the effluent samples compared with the non-treated media. It was found that treating with 0.03 wt% of MgO nanoparticles is the best scenario among the tests performed in this study. This finding was confirmed by DLVO theory by which the total energy of interactions existing between a particle and the rock surface was calculated.
机译:微粒迁移多孔介质(深床过滤器)是在任何油井增产技术或强化油采收(EOR)工艺尤其造成地层损害的主要原因之一。它已被提升在一些孔喉解释的原位微粒存在于培养基中,其与流运动,并且最后其捕获。颗粒EOR剂注射到贮存期间在岩石表面的附着可以是对于前述的挑战一个非常有前途的补救措施。在本实验研究,作为悬浮颗粒的吸附材料进行了研究纳米粒子的作用 - 处理的介质。不同浓度的MgO和SiO_2纳米粒子被用于处理合成多孔介质。在几个岩心驱替试验,稳定的悬浮液注射到流出物的纳米颗粒已经处理介质和颗粒浓度通过浊度分析来测量。为了量化纳米粒子的效果,以改变介质的表面特性,ζ电位分析和动态光散射方法已经得到了应用。结果表明,纳米粒子的所述介质表面改变其存在于朗姆酒,结果在流出物样品在危重减少颗粒浓度与未处理的介质相比,岩石的ζ电势。结果发现,与氧化镁纳米颗粒的0.03%(重量)治疗是本研究中进行的实验之间的最佳方案。这一发现已被通过其计算的颗粒和岩石表面之间存在相互作用的总能量DLVO理论证实。

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