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Efficient FFT-based upscaling of the permeability of porous media discretized on uniform grids with estimation of RVE size

机译:基于FFT的基于FFT的升高的多孔介质的渗透性,在均匀栅格上离散的晶体网格估算

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An efficient numerical scheme at the crossroad of Fourier based methods and boundary element methods is derived to upscale the permeability of porous media from Stokes flow within the pore space. The method relies on a variational framework which involves trial force fields and the Green function. The discretization of the trial force fields is carried out on a uniform grid, which allows for the use of fast Fourier transforms to evaluate the convolution product arising from the Green function. A discretization of the Green function consistent with the variational framework is introduced to ensure the upper bound status of the homogenized permeability. The energy consistent discretization is compared to six alternative discretizations arising from truncation of Fourier series or from various finite difference schemes, in terms of accuracy of the homogenized permeability and of the local velocity fields as well as on the number of iterations required for convergence of the iterative solver. The method is combined to a strategy to estimate the Representative Volume Element (RVE) size at a target accuracy level from a single simulation on a large sample to study the permeability and associated RVE size for the Voronoi cell model, over the whole range of porosity. (C) 2020 Elsevier B.V. All rights reserved.
机译:推导出傅立叶的方法和边界元方法的十字路口的有效数值方案,以高度从孔隙空间内的斯托克斯流动的多孔介质的渗透性。该方法依赖于变分框架,涉及试用力字段和绿色功能。试验力场的离散化在均匀网格上进行,这允许使用快速傅里叶变换来评估由绿色功能产生的卷积产品。引入了与变分框架一致的绿色功能的离散化,以确保均质渗透性的上限状态。将能量一致的离散化与六个替代离散化进行比较,以傅里叶串的截断或各种有限差分方案,就均质渗透性和局部速度场的准确性以及局部速度场以及收敛所需的迭代次数而言迭代求解器。该方法组合到策略以在大型样品上的单个模拟中以目标精度水平估计目标精度水平,以研究磁孔的渗透率和相关的RVE尺寸,在整个孔隙率范围内。 (c)2020 Elsevier B.v.保留所有权利。

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