The influence of finite size particles on fluid velocity and transport though porous media

Fuente: arXiv
Enregistré dans:
Détails bibliographiques
Auteurs principaux: Residori, Mirko, Praetorius, Simon, de Anna, Pietro, Voigt, Axel
Format: Preprint
Publié: 2022
Sujets:
Accès en ligne:
Tags: Ajouter un tag
Pas de tags, Soyez le premier à ajouter un tag!
_version_ 1866910865488347136
author Residori, Mirko
Praetorius, Simon
de Anna, Pietro
Voigt, Axel
author_facet Residori, Mirko
Praetorius, Simon
de Anna, Pietro
Voigt, Axel
contents Understanding the coupling between flow, hydrodynamic transport and dispersion of colloids with finite-size in porous media is a long-standing challenge. This problem is relevant for a broad range of natural and engineered subsurface processes, including contaminant and colloidal transport, mixing of bio-chemical compounds, kinetics of reactions and groundwater bio-remediation, but also transport phenomena related to different systems like membranes, or blood flow. While classical models for colloidal transport rely on macro-dispersion theory and do not take into consideration the complex and heterogeneous structure of the porous host medium, recent studies take into consideration the detailed structure of the porous system and its impact on the fluid velocity. However, the impact of confinement condition, represented by the ratio of particles radius $a$ and pore throat size $λ$, has been overlooked. Here, we use numerical simulations of fluid particle dynamics in resolved porous media to demonstrate that particles confinement affects the fluid macroscopic velocity field u which in turn affects the particles transport itself. Our results show that even for small confinement conditions ($a/λ\sim 2$~\%), fluid and transported particles are dynamically re-routed towards more permeable paths. This leads to the emergence of ephemeral laminar vortexes at pore throat entrances and affects the variance and mean fluid velocity.
format Preprint
id arxiv_https___arxiv_org_abs_2212_11555
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle The influence of finite size particles on fluid velocity and transport though porous media
Residori, Mirko
Praetorius, Simon
de Anna, Pietro
Voigt, Axel
Fluid Dynamics
Understanding the coupling between flow, hydrodynamic transport and dispersion of colloids with finite-size in porous media is a long-standing challenge. This problem is relevant for a broad range of natural and engineered subsurface processes, including contaminant and colloidal transport, mixing of bio-chemical compounds, kinetics of reactions and groundwater bio-remediation, but also transport phenomena related to different systems like membranes, or blood flow. While classical models for colloidal transport rely on macro-dispersion theory and do not take into consideration the complex and heterogeneous structure of the porous host medium, recent studies take into consideration the detailed structure of the porous system and its impact on the fluid velocity. However, the impact of confinement condition, represented by the ratio of particles radius $a$ and pore throat size $λ$, has been overlooked. Here, we use numerical simulations of fluid particle dynamics in resolved porous media to demonstrate that particles confinement affects the fluid macroscopic velocity field u which in turn affects the particles transport itself. Our results show that even for small confinement conditions ($a/λ\sim 2$~\%), fluid and transported particles are dynamically re-routed towards more permeable paths. This leads to the emergence of ephemeral laminar vortexes at pore throat entrances and affects the variance and mean fluid velocity.
title The influence of finite size particles on fluid velocity and transport though porous media
topic Fluid Dynamics
url https://arxiv.org/abs/2212.11555