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多孔介质中非牛顿流体流动中的纳米颗粒输运。

Nanoparticle transport within non-Newtonian fluid flow in porous media.

作者信息

Shende Takshak, Mangal Deepak, Conrad Jacinta C, Niasar Vahid, Babaei Masoud

机构信息

Department of Chemical Engineering, The University of Manchester, Manchester, United Kingdom.

Department of Chemical and Biomolecular Engineering, University of Houston, Houston, Texas 77004, USA.

出版信息

Phys Rev E. 2022 Jul;106(1-2):015103. doi: 10.1103/PhysRevE.106.015103.

Abstract

Control over dispersion of nanoparticles in polymer solutions through porous media is important for subsurface applications such as soil remediation and enhanced oil recovery. Dispersion is affected by the spatial heterogeneity of porous media, the non-Newtonian behavior of polymer solutions, and the Brownian motion of nanoparticles. Here, we use the Euler-Lagrangian method to simulate the flow of nanoparticles and inelastic non-Newtonian fluids (described by Meter model) in a range of porous media samples and injection rates. In one case, we use a fine mesh of more than 3 million mesh points to model nanoparticles transport in a sandstone sample. The results show that the velocity distribution of nanoparticles in the porous medium is non-Gaussian, which leads to the non-Fickian behavior of nanoparticles dispersion. Due to pore-space confinement, the long-time mean-square displacement of nanoparticles depends nonlinearly on time. Additionally, the gradient of shear stress in the pore space of the porous medium dictates the transport behavior of nanoparticles in the porous medium. Furthermore, the Brownian motion of nanoparticles increases the dispersion of nanoparticles along the longitudinal and transverse direction.

摘要

控制纳米颗粒在聚合物溶液中通过多孔介质的分散对于土壤修复和强化采油等地下应用非常重要。分散受到多孔介质的空间非均质性、聚合物溶液的非牛顿行为以及纳米颗粒的布朗运动影响。在此,我们使用欧拉-拉格朗日方法来模拟纳米颗粒和非弹性非牛顿流体(由米特模型描述)在一系列多孔介质样品和注入速率下的流动。在一种情况下,我们使用超过300万个网格点的精细网格来模拟纳米颗粒在砂岩样品中的传输。结果表明,多孔介质中纳米颗粒的速度分布是非高斯的,这导致纳米颗粒分散的非菲克行为。由于孔隙空间限制,纳米颗粒的长时间均方位移非线性地依赖于时间。此外,多孔介质孔隙空间中的剪切应力梯度决定了纳米颗粒在多孔介质中的传输行为。此外,纳米颗粒的布朗运动增加了纳米颗粒沿纵向和横向的分散。

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