4.7 Article

Fast Laplace solver approach to pore-scale permeability

Journal

PHYSICAL REVIEW E
Volume 97, Issue 2, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevE.97.023303

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Funding

  1. Australian Research Council [FT120100216]
  2. ANU/UNSW Digital Core Consortium
  3. Australian Government [m65]
  4. Australian Research Council [FT120100216] Funding Source: Australian Research Council

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We introduce a powerful and easily implemented method to calculate the permeability of porous media at the pore scale using an approximation based on the Poiseulle equation to calculate permeability to fluid flow with a Laplace solver. The method consists of calculating the Euclidean distance map of the fluid phase to assign local conductivities and lends itself naturally to the treatment of multiscale problems. We compare with analytical solutions as well as experimental measurements and lattice Boltzmann calculations of permeability for Fontainebleau sandstone. The solver is significantly more stable than the lattice Boltzmann approach, uses less memory, and is significantly faster. Permeabilities are in excellent agreement over a wide range of porosities.

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