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A Hybrid-Dimensional Coupled Pore-Network/Free-Flow Model Including Pore-Scale Slip and Its Application to a Micromodel Experiment

机译:一种混合耦合孔网/自由流模型,包括孔隙尺度滑动及其在微偶像实验中的应用

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摘要

Modeling coupled systems of free flow adjacent to a porous medium by means of fully resolved Navier-Stokes equations is limited by the immense computational cost and is thus only feasible for relatively small domains. Coupled, hybrid-dimensional models can be much more efficient by simplifying the porous domain, e.g., in terms of a pore-network model. In this work, we present a coupled pore-network/free-flow model taking into account pore-scale slip at the local interfaces between free flow and the pores. We consider two-dimensional and three-dimensional setups and show that our proposed slip condition can significantly increase the coupled model's accuracy: compared to fully resolved equidimensional numerical reference solutions, the normalized errors for velocity are reduced by a factor of more than five, depending on the flow configuration. A pore-scale slip parameter beta(pore) required by the slip condition was determined numerically in a preprocessing step. We found a linear scaling behavior of beta(pore) with the size of the interface pore body for three-dimensional and two-dimensional domains. The slip condition can thus be applied without incurring any run-time cost. In the last section of this work, we used the coupled model to recalculate a microfluidic experiment where we additionally exploited the flat structure of the micromodel which permits the use of a quasi-3D free-flow model. The extended coupled model is accurate and efficient.
机译:借助于完全分辨的Navier-Stokes方程,与多孔介质相邻的自由流动的耦合系统受到巨大计算成本的限制,因此对于相对小的域仅是可行的。通过简化多孔结构域,例如,在孔网络模型方面,耦合的混合模型可以更有效。在这项工作中,我们展示了一个耦合的孔网/自由流模型,考虑到在自由流动和孔之间的局部界面处考虑孔隙率滑动。我们考虑二维和三维设置并表明我们所提出的滑动条件可以显着提高耦合模型的精度:与完全解决的等值数值参考解决方案相比,速度的归一化误差减少了超过五个,取决于五个以上的因素超过五个。在流配置上。在预处理步骤中以数字上测定滑动条件所需的孔隙率滑动参数β(孔)。我们发现β(孔)的线性缩放行为,具有三维和二维域的界面孔体的尺寸。因此,可以在不引起任何运行时间成本的情况下应用滑移条件。在这项工作的最后一部分中,我们使用耦合模型来重新计算微流体实验,在那里我们另外利用微模的平坦结构,允许使用准3D自由流模型。扩展耦合模型是准确和高效的。

著录项

  • 来源
    《Transport in Porous Media》 |2020年第1期|243-270|共28页
  • 作者单位

    Univ Stuttgart Dept Hydromech & Modelling Hydrosyst Stuttgart Germany;

    Stanford Univ Dept Mech Engn Stanford CA 94305 USA;

    NCSR Demokritos Inst Nucl & Radiol Sci & Technol Energy & Safety Athens Greece;

    Shanghai Jiao Tong Univ Sch Mech Engn Shanghai Peoples R China;

    Univ Stuttgart Dept Hydromech & Modelling Hydrosyst Stuttgart Germany;

    Univ Utrecht Dept Earth Sci Environm Hydrogeol Grp Utrecht Netherlands;

    Univ Stuttgart Dept Hydromech & Modelling Hydrosyst Stuttgart Germany;

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

    Coupling; Free flow; Pore-network model; Porous medium; Micromodel;

    机译:耦合;自由流动;孔网络模型;多孔介质;微啮合;

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