The role of wetting on the flow of two immiscible fluids in porous media

Fuente: arXiv
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Main Authors: Shahmardi, Armin, Salimi, Salar Zamani, Tammisola, Outi, Brandt, Luca, Rosti, Marco Edoardo
Format: Preprint
Published: 2022
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author Shahmardi, Armin
Salimi, Salar Zamani
Tammisola, Outi
Brandt, Luca
Rosti, Marco Edoardo
author_facet Shahmardi, Armin
Salimi, Salar Zamani
Tammisola, Outi
Brandt, Luca
Rosti, Marco Edoardo
contents We study the role of the capillary number, $Ca$ and of the surface wettability on the dynamics of the interface between an invading and a defending phase in a porous medium by means of numerical simulations. We employ a hybrid phase field-immersed boundary approach to successfully model the contact line dynamics over the solid objects. Using a phase-field method which naturally incorporates dynamic wetting we eliminate the need for empirical contact line models to address contact line singularity. We map the two dominant modes governing the motion of the interface, namely, capillary fingering, and stable penetration, in the ($Ca$-$θ$) plane, with $θ$ the static contact angle prescribed at the solid pores. Capillary fingering dominates at lower values of $Ca$ and pores hydrophobic to the invading phase, while a stable penetration is observed on hydrophillic surfaces. We present new measurements and analyses, including curvature probability density functions (pdf) and average curvature. We also show that the pressure needed for the invading phase to advance at constant flow rate decreases with the capillary number, and increases with the contact angle at the capillary numbers considered. The latter is due to a significant increase of the length of the interface in the case of capillary fingering. Finally, we show that it is possible to identify the different interfacial modes by measuring the penetration length and velocity during the medium filling.
format Preprint
id arxiv_https___arxiv_org_abs_2210_12507
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle The role of wetting on the flow of two immiscible fluids in porous media
Shahmardi, Armin
Salimi, Salar Zamani
Tammisola, Outi
Brandt, Luca
Rosti, Marco Edoardo
Fluid Dynamics
We study the role of the capillary number, $Ca$ and of the surface wettability on the dynamics of the interface between an invading and a defending phase in a porous medium by means of numerical simulations. We employ a hybrid phase field-immersed boundary approach to successfully model the contact line dynamics over the solid objects. Using a phase-field method which naturally incorporates dynamic wetting we eliminate the need for empirical contact line models to address contact line singularity. We map the two dominant modes governing the motion of the interface, namely, capillary fingering, and stable penetration, in the ($Ca$-$θ$) plane, with $θ$ the static contact angle prescribed at the solid pores. Capillary fingering dominates at lower values of $Ca$ and pores hydrophobic to the invading phase, while a stable penetration is observed on hydrophillic surfaces. We present new measurements and analyses, including curvature probability density functions (pdf) and average curvature. We also show that the pressure needed for the invading phase to advance at constant flow rate decreases with the capillary number, and increases with the contact angle at the capillary numbers considered. The latter is due to a significant increase of the length of the interface in the case of capillary fingering. Finally, we show that it is possible to identify the different interfacial modes by measuring the penetration length and velocity during the medium filling.
title The role of wetting on the flow of two immiscible fluids in porous media
topic Fluid Dynamics
url https://arxiv.org/abs/2210.12507