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Pore-scale displacement mechanisms as a source of hysteresis for two-phase flow in porous media

机译:孔隙尺度位移机制作为多孔介质中两相流滞后的来源

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摘要

The macroscopic description of the hysteretic behavior of two-phase flow in porous media remains a challenge. It is not obvious how to represent the underlying pore-scale processes at the Darcy-scale in a consistent way. Darcy-scale thermodynamic models do not completely eliminate hysteresis and our findings indicate that the shape of displacement fronts is an additional source of hysteresis that has not been considered before. This is a shortcoming because effective process behavior such as trapping efficiency of CO2 or oil production during water flooding are directly linked to pore-scale displacement mechanisms with very different front shape such as capillary fingering, flat frontal displacement, or cluster growth. Here we introduce fluid topology, expressed by the Euler characteristic of the nonwetting phase ((n)), as a shape measure of displacement fronts. Using two high-quality data sets obtained by fast X-ray tomography, we show that (n) is hysteretic between drainage and imbibition and characteristic for the underlying displacement pattern. In a more physical sense, the Euler characteristic can be interpreted as a parameter describing local fluid connectedness. It may provide the closing link between a topological characterization and macroscopic formulations of two-phase immiscible displacement in porous rock. Since fast X-ray tomography is currently becoming a mature technique, we expect a significant growth in high-quality data sets of real time fluid displacement processes in the future. The novel measures of fluid topology presented here have the potential to become standard metrics needed to fully explore them.
机译:多孔介质中两相流滞后行为的宏观描述仍然是一个挑战。如何以一致的方式在达西尺度上表示潜在的孔隙尺度过程尚不清楚。达西尺度的热力学模型不能完全消除滞后现象,我们的研究结果表明,位移前沿的形状是滞后现象的另一个来源,以前从未考虑过。这是一个缺点,因为有效的过程行为(例如注水期间的CO2捕集效率或产油量)直接与具有非常不同的前端形状(例如毛细管指法,平坦的前端位移或团簇生长)的孔隙尺度位移机制直接相关。在这里,我们介绍了由非润湿相((n))的欧拉特征表示的流体拓扑结构,作为位移前沿的形状度量。使用通过快速X射线断层扫描获得的两个高质量数据集,我们显示(n)在排水和吸水之间具有滞后作用,并且是潜在位移模式的特征。在更物理的意义上,欧拉特性可以解释为描述局部流体连通性的参数。它可能为多孔岩体中两相不混溶驱替的拓扑表征与宏观公式之间提供了紧密的联系。由于快速X射线断层摄影术目前正在成为一种成熟的技术,因此我们期望将来实时流体驱替过程的高质量数据集会显着增长。本文介绍的新颖的流体拓扑测量方法有可能成为全面探索它们所需的标准度量标准。

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  • 来源
    《Water resources research》 |2016年第3期|2194-2205|共12页
  • 作者单位

    UFZ, Helmholtz Ctr Environm Res, Dept Soil Phys, Halle, Germany|Oregon State Univ, Sch Chem Biol & Environm Engn, Corvallis, OR 97331 USA;

    Shell Global Solut Int BV, Rijswijk, Netherlands;

    Shell Global Solut Int BV, Rijswijk, Netherlands|Univ London Imperial Coll Sci Technol & Med, Dept Earth Sci & Engn, London, England;

    Univ New S Wales, Sch Petr Engn, Sydney, NSW, Australia;

    UFZ, Helmholtz Ctr Environm Res, Dept Soil Phys, Halle, Germany|Univ Halle Wittenberg, Inst Agrar & Ernahrungswissensch, D-06108 Halle, Germany;

    Univ Stuttgart, Inst Comp Phys, D-70174 Stuttgart, Germany;

    Oregon State Univ, Sch Chem Biol & Environm Engn, Corvallis, OR 97331 USA;

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

    hydrology; oil recovery; multiphase flow; integral geometry;

    机译:水文学采油多相流整体几何学;

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