Non-Darcy behavior of two-phase channel flow

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Abstract

We study the macroscopic behavior of two-phase flow in porous media from a phase-field model. A dissipation law is first derived from the phase-field model by homogenization. For simple channel geometry in pore scale, the scaling relation of the averaged dissipation rate with the velocity of the two-phase flow can be explicitly obtained from the model which then gives the force-velocity relation. It is shown that, for the homogeneous channel surface, Dacry's law is still valid with a significantly modified permeability including the contribution from the contact line slip. For the chemically patterned surfaces, the dissipation rate has a non-Darcy linear scaling with the velocity, which is related to a depinning force for the patterned surface. Our result offers a theoretical understanding on the prior observation of non-Darcy behavior for the multiphase flow in either simulations or experiments. © 2014 American Physical Society.

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Xu, X., & Wang, X. (2014). Non-Darcy behavior of two-phase channel flow. Physical Review E - Statistical, Nonlinear, and Soft Matter Physics, 90(2). https://doi.org/10.1103/PhysRevE.90.023010

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