We study two-dimensional incompressible inertial flows through porous media. At core (small) scale, we prove that the constitutive, nonlinear model can be rewritten into a linear one by means of a new parameter K* which encompasses all the inertial effects. In natural (large-scale) formations, K* is erratically changing, and we analytically compute its counterpart, which is coined generalized effective conductivity, by the self-consistent approach (SCA). In spite of its approximate nature, the SCA leads to simple results that are in good agreement with Monte Carlo simulations.

Severino G., Giannino F., De Paola F., Di Federico V. (2023). Effective conductivity of inertial flows through porous media. PHYSICAL REVIEW. E, 107(3), 035102-1-035102-7 [10.1103/PhysRevE.107.035102].

Effective conductivity of inertial flows through porous media

Di Federico V.
Ultimo
2023

Abstract

We study two-dimensional incompressible inertial flows through porous media. At core (small) scale, we prove that the constitutive, nonlinear model can be rewritten into a linear one by means of a new parameter K* which encompasses all the inertial effects. In natural (large-scale) formations, K* is erratically changing, and we analytically compute its counterpart, which is coined generalized effective conductivity, by the self-consistent approach (SCA). In spite of its approximate nature, the SCA leads to simple results that are in good agreement with Monte Carlo simulations.
2023
Severino G., Giannino F., De Paola F., Di Federico V. (2023). Effective conductivity of inertial flows through porous media. PHYSICAL REVIEW. E, 107(3), 035102-1-035102-7 [10.1103/PhysRevE.107.035102].
Severino G.; Giannino F.; De Paola F.; Di Federico V.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/924636
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