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Three-dimensional viscous fingering of miscible fluids in porous media

机译:多孔介质中混溶性流体的三维粘性指法

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摘要

Viscous fingering is a flowinstability that is induced at the displacement front when a lessviscous fluid (LVF) displaces a more-viscous fluid (MVF). Because of the opaque nature of porous media, most experimental investigations of the structure of viscous fingering and its development in time have been limited to two-dimensional porous media or Hele-Shaw cells. In this study, we investigate the three-dimensional characteristics of viscous fingering in porous media using a microfocused x-ray computer tomography (CT) scanner. Similar to two-dimensional experiments, characteristic events such as tip-splitting, shielding, and coalescence were observed in three-dimensional viscous fingering as well. With an increase in the Pclet number at a fixed viscosity ratio, M, the fingers appearing on the interface tend to be fine; however, the locations of the tips of the fingers remain the same for the same injected volume of the LVF. The finger extensions increase in proportion to lnM, and the number of fingers emerging at the initial interface increases with M. This fact agrees qualitatively with linear stability analyses. Within the fingers, the local concentration of NaI, which is needed for the x-ray CT scanner, linearly decreases, whereas it sharply decreases at the tips of the fingers. A locally high Pclet number as well as unsteady motions in lateral directions may enhance the dispersion at the tips of the fingers. As the viscosity ratio increases, the efficiency of each sweep monotonically decreases and reaches an asymptotic state; in addition, the degree of mixing increases with the viscosity ratio. For high flow rates, the asymptotic value of the sweep efficiency is low for high viscosity ratios, while there is no clear dependence of the asymptotic value on the Peclet number.
机译:粘性指法是当储度的流体(LVF)移位更粘性的流体(MVF)时在位移前方感应的流动性。由于多孔介质的不透明性,大多数实验研究粘性指法结构及其开发的时间都仅限于二维多孔介质或Hele-Shaw细胞。在这项研究中,我们使用微煤X射线计算机断层扫描(CT)扫描仪研究多孔介质中粘性指法的三维特征。类似于二维实验,在三维粘性指法中观察到诸如尖端分裂,屏蔽和聚结的特征事件。随着固定粘度比的PCLET数量的增加,界面上出现的手指趋于正常;然而,对于LVF的相同注入体积,指状物的尖端的位置保持不变。手指延伸率与LNM成比例地增加,并且在初始界面中出现的手指数量随M的增加而增加。这一事实与线性稳定性分析进行了定性。在手指内,X射线CT扫描仪所需的Nai局部浓度线性降低,而它在手指的尖端处急剧下降。局部高的PCLET数以及横向方向上的不稳定动作可以增强指状物的尖端处的分散。随着粘度比增加,每次扫描的效率单调减少并达到渐近状态;另外,混合程度随着粘度比而增加。对于高流量速率,扫描效率的渐近值对于高粘度比率低,而渐近值没有明确依赖于Peclet数。

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  • 来源
    《Nature Microbiology》 |2017年第10期|共16页
  • 作者单位

    Tokyo Inst Technol Dept Mech Engn Midori Ku 4259-G3-31 Yokohama Kanagawa 2268502 Japan;

    Tokyo Inst Technol Dept Mech Engn Midori Ku 4259-G3-31 Yokohama Kanagawa 2268502 Japan;

    Tokyo Inst Technol Dept Mech Engn Midori Ku 4259-G3-31 Yokohama Kanagawa 2268502 Japan;

    Tokyo Univ Agr &

    Technol Chem Engn 2-24-16 Naka Cho Koganei Tokyo 1848588 Japan;

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  • 正文语种 eng
  • 中图分类 微生物学;
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