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首页> 外文期刊>Journal of Colloid and Interface Science >Enhanced oil displacement by nanofluid’s structural disjoining pressure in model fractured porous media
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Enhanced oil displacement by nanofluid’s structural disjoining pressure in model fractured porous media

机译:纳米流体在模型裂缝多孔介质中的结构脱节压力增强了油位移

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Graphical abstractDisplay OmittedAbstractNanofluids for improved oil recovery has been demonstrated through laboratory corefloods. Despite numerous experimental studies, little is known about the efficacy of nanofluids in fractured systems. Here, we present studies of nanofluid injection in fractured porous media (both water-wet and oil-wet) formed by sintering borosilicate glass-beads around a dissolvable substrate. The fracture inside the porous medium is characterized and visualized using a high resolution X-ray microtomography. Based on a simple displacement theory, the nanofluid injection is conducted at a rate where structural disjoining pressure driven oil recovery is operational. An additional 23.8% oil was displaced using nanofluid after brine injection with an overall recovery efficiency of 90.4% provided the matrix was in its native wettability state. But only 6% additional oil was displaced by nanofluid following brine injection when the bead-pack was rendered oil-wet. Nanofluids appear to be a good candidate for enhanced oil recovery (EOR) in fractured water-wet to weakly water-wet media but not necessarily for strongly oil-wet systems. Our laboratory studies enable us to understand limitations of nanofluids for improving oil recovery in fractured media.]]>
机译:<![cdata [ 图形摘要 显示省略 抽象 通过实验室内普罗斯证明了改善储油的纳米流体。尽管有许多实验研究,但对于裂缝系统中的纳米流体的功效很少。在此,我们呈现在围绕可溶解基材周围烧结硼硅酸盐玻璃珠粒形成的骨折多孔介质(水湿和油湿)中的纳米流体注射研究。多孔介质内部的裂缝的特征和可视化,使用高分辨率X射线显微镜监测。基于简单的位移理论,以结构脱充压力驱动的油回收是可操作的,纳米流体喷射进行。在盐水注入后,使用纳米流体在其天然润湿性状态下,使用纳米流体在盐水注入后,使用纳米流体移位另外的23.8%的油。但是在盐水注射后,含有纳米流体后,只有6%的油被含有珠粒包装的油湿润。纳米流体似乎是增强碎水湿湿湿介质中的储蓄(EOR)的良好候选者,但不一定是强烈的油湿系统。我们的实验室研究使我们能够了解纳米流体的局限性,以改善骨折介质中的溢油。 ]]>

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