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A New 3D Mathematical Model for Simulating Nanofluid Flooding in a Porous Medium for Enhanced Oil Recovery

Two-phase Darcy’s law is a well-known mathematical model used in the petrochemical industry. It predicts the fluid flow in reservoirs and can be used to optimize oil production using recent technology. Indeed, various models have been proposed for predicting oil recovery using injected nanofluids (N...

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Autores principales: Al-Yaari, Abdullah, Ling Chuan Ching, Dennis, Sakidin, Hamzah, Sundaram Muthuvalu, Mohana, Zafar, Mudasar, Haruna, Abdurrashid, Merican Aljunid Merican, Zulkifli, Azad, Abdus Samad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10420021/
https://www.ncbi.nlm.nih.gov/pubmed/37570118
http://dx.doi.org/10.3390/ma16155414
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author Al-Yaari, Abdullah
Ling Chuan Ching, Dennis
Sakidin, Hamzah
Sundaram Muthuvalu, Mohana
Zafar, Mudasar
Haruna, Abdurrashid
Merican Aljunid Merican, Zulkifli
Azad, Abdus Samad
author_facet Al-Yaari, Abdullah
Ling Chuan Ching, Dennis
Sakidin, Hamzah
Sundaram Muthuvalu, Mohana
Zafar, Mudasar
Haruna, Abdurrashid
Merican Aljunid Merican, Zulkifli
Azad, Abdus Samad
author_sort Al-Yaari, Abdullah
collection PubMed
description Two-phase Darcy’s law is a well-known mathematical model used in the petrochemical industry. It predicts the fluid flow in reservoirs and can be used to optimize oil production using recent technology. Indeed, various models have been proposed for predicting oil recovery using injected nanofluids (NFs). Among them, numerical modeling is attracting the attention of scientists and engineers owing to its ability to modify the thermophysical properties of NFs such as density, viscosity, and thermal conductivity. Herein, a new model for simulating NF injection into a 3D porous media for enhanced oil recovery (EOR) is investigated. This model has been developed for its ability to predict oil recovery across a wide range of temperatures and volume fractions (VFs). For the first time, the model can examine the changes and effects of thermophysical properties on the EOR process based on empirical correlations depending on two variables, VF and inlet temperature. The governing equations obtained from Darcy’s law, mass conservation, concentration, and energy equations were numerically evaluated using a time-dependent finite-element method. The findings indicated that optimizing the temperature and VF could significantly improve the thermophysical properties of the EOR process. We observed that increasing the inlet temperature (353.15 K) and volume fraction (4%) resulted in better oil displacement, improved sweep efficiency, and enhanced mobility of the NF. The oil recovery decreased when the VF (>4%) and temperature exceeded 353.15 K. Remarkably, the optimal VF and inlet temperature for changing the thermophysical properties increased the oil production by 30%.
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spelling pubmed-104200212023-08-12 A New 3D Mathematical Model for Simulating Nanofluid Flooding in a Porous Medium for Enhanced Oil Recovery Al-Yaari, Abdullah Ling Chuan Ching, Dennis Sakidin, Hamzah Sundaram Muthuvalu, Mohana Zafar, Mudasar Haruna, Abdurrashid Merican Aljunid Merican, Zulkifli Azad, Abdus Samad Materials (Basel) Article Two-phase Darcy’s law is a well-known mathematical model used in the petrochemical industry. It predicts the fluid flow in reservoirs and can be used to optimize oil production using recent technology. Indeed, various models have been proposed for predicting oil recovery using injected nanofluids (NFs). Among them, numerical modeling is attracting the attention of scientists and engineers owing to its ability to modify the thermophysical properties of NFs such as density, viscosity, and thermal conductivity. Herein, a new model for simulating NF injection into a 3D porous media for enhanced oil recovery (EOR) is investigated. This model has been developed for its ability to predict oil recovery across a wide range of temperatures and volume fractions (VFs). For the first time, the model can examine the changes and effects of thermophysical properties on the EOR process based on empirical correlations depending on two variables, VF and inlet temperature. The governing equations obtained from Darcy’s law, mass conservation, concentration, and energy equations were numerically evaluated using a time-dependent finite-element method. The findings indicated that optimizing the temperature and VF could significantly improve the thermophysical properties of the EOR process. We observed that increasing the inlet temperature (353.15 K) and volume fraction (4%) resulted in better oil displacement, improved sweep efficiency, and enhanced mobility of the NF. The oil recovery decreased when the VF (>4%) and temperature exceeded 353.15 K. Remarkably, the optimal VF and inlet temperature for changing the thermophysical properties increased the oil production by 30%. MDPI 2023-08-02 /pmc/articles/PMC10420021/ /pubmed/37570118 http://dx.doi.org/10.3390/ma16155414 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Al-Yaari, Abdullah
Ling Chuan Ching, Dennis
Sakidin, Hamzah
Sundaram Muthuvalu, Mohana
Zafar, Mudasar
Haruna, Abdurrashid
Merican Aljunid Merican, Zulkifli
Azad, Abdus Samad
A New 3D Mathematical Model for Simulating Nanofluid Flooding in a Porous Medium for Enhanced Oil Recovery
title A New 3D Mathematical Model for Simulating Nanofluid Flooding in a Porous Medium for Enhanced Oil Recovery
title_full A New 3D Mathematical Model for Simulating Nanofluid Flooding in a Porous Medium for Enhanced Oil Recovery
title_fullStr A New 3D Mathematical Model for Simulating Nanofluid Flooding in a Porous Medium for Enhanced Oil Recovery
title_full_unstemmed A New 3D Mathematical Model for Simulating Nanofluid Flooding in a Porous Medium for Enhanced Oil Recovery
title_short A New 3D Mathematical Model for Simulating Nanofluid Flooding in a Porous Medium for Enhanced Oil Recovery
title_sort new 3d mathematical model for simulating nanofluid flooding in a porous medium for enhanced oil recovery
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10420021/
https://www.ncbi.nlm.nih.gov/pubmed/37570118
http://dx.doi.org/10.3390/ma16155414
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