The impact of porous media heterogeneity on non-Darcy flow behaviour from pore-scale simulation

The effect of pore-scale heterogeneity on non-Darcy flow behaviour is investigated by means of direct flow simulations on 3-D images of a beadpack, Bentheimer sandstone and Estaillades carbonate. The critical Reynolds number indicating the cessation of the creeping Darcy flow regime in Estaillades c...

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Main Authors: Muljadi, Bagus P., Blunt, Martin J., Raeini, Ali Q., Bijeljic, Branko
Format: Article
Published: Elsevier 2016
Subjects:
Online Access:https://eprints.nottingham.ac.uk/46421/
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author Muljadi, Bagus P.
Blunt, Martin J.
Raeini, Ali Q.
Bijeljic, Branko
author_facet Muljadi, Bagus P.
Blunt, Martin J.
Raeini, Ali Q.
Bijeljic, Branko
author_sort Muljadi, Bagus P.
building Nottingham Research Data Repository
collection Online Access
description The effect of pore-scale heterogeneity on non-Darcy flow behaviour is investigated by means of direct flow simulations on 3-D images of a beadpack, Bentheimer sandstone and Estaillades carbonate. The critical Reynolds number indicating the cessation of the creeping Darcy flow regime in Estaillades carbonate is two orders of magnitude smaller than in Bentheimer sandstone, and is three orders of magnitude smaller than in the beadpack. It is inferred from the examination of flow field features that the emergence of steady eddies in pore space of Estaillades at elevated fluid velocities accounts for the early transition away from the Darcy flow regime. The non-Darcy coefficient β, the onset of non-Darcy flow, and the Darcy permeability for all samples are obtained and compared to available experimental data demonstrating the predictive capability of our approach. X-ray imaging along with direct pore-scale simulation of flow provides a viable alternative to experiments and empirical correlations for predicting non-Darcy flow parameters such as the β factor, and the onset of non-Darcy flow.
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spelling nottingham-464212020-05-04T18:08:55Z https://eprints.nottingham.ac.uk/46421/ The impact of porous media heterogeneity on non-Darcy flow behaviour from pore-scale simulation Muljadi, Bagus P. Blunt, Martin J. Raeini, Ali Q. Bijeljic, Branko The effect of pore-scale heterogeneity on non-Darcy flow behaviour is investigated by means of direct flow simulations on 3-D images of a beadpack, Bentheimer sandstone and Estaillades carbonate. The critical Reynolds number indicating the cessation of the creeping Darcy flow regime in Estaillades carbonate is two orders of magnitude smaller than in Bentheimer sandstone, and is three orders of magnitude smaller than in the beadpack. It is inferred from the examination of flow field features that the emergence of steady eddies in pore space of Estaillades at elevated fluid velocities accounts for the early transition away from the Darcy flow regime. The non-Darcy coefficient β, the onset of non-Darcy flow, and the Darcy permeability for all samples are obtained and compared to available experimental data demonstrating the predictive capability of our approach. X-ray imaging along with direct pore-scale simulation of flow provides a viable alternative to experiments and empirical correlations for predicting non-Darcy flow parameters such as the β factor, and the onset of non-Darcy flow. Elsevier 2016-09-30 Article PeerReviewed Muljadi, Bagus P., Blunt, Martin J., Raeini, Ali Q. and Bijeljic, Branko (2016) The impact of porous media heterogeneity on non-Darcy flow behaviour from pore-scale simulation. Advances in Water Resources, 95 . pp. 329-340. ISSN 0309-1708 Non-Darcy flow 3-D X-ray images Direct simulation Heterogeneous porous media https://doi.org/10.1016/j.advwatres.2015.05.019 doi:10.1016/j.advwatres.2015.05.019 doi:10.1016/j.advwatres.2015.05.019
spellingShingle Non-Darcy flow
3-D X-ray images
Direct simulation
Heterogeneous porous media
Muljadi, Bagus P.
Blunt, Martin J.
Raeini, Ali Q.
Bijeljic, Branko
The impact of porous media heterogeneity on non-Darcy flow behaviour from pore-scale simulation
title The impact of porous media heterogeneity on non-Darcy flow behaviour from pore-scale simulation
title_full The impact of porous media heterogeneity on non-Darcy flow behaviour from pore-scale simulation
title_fullStr The impact of porous media heterogeneity on non-Darcy flow behaviour from pore-scale simulation
title_full_unstemmed The impact of porous media heterogeneity on non-Darcy flow behaviour from pore-scale simulation
title_short The impact of porous media heterogeneity on non-Darcy flow behaviour from pore-scale simulation
title_sort impact of porous media heterogeneity on non-darcy flow behaviour from pore-scale simulation
topic Non-Darcy flow
3-D X-ray images
Direct simulation
Heterogeneous porous media
url https://eprints.nottingham.ac.uk/46421/
https://eprints.nottingham.ac.uk/46421/
https://eprints.nottingham.ac.uk/46421/