Modeling of Pressure and Temperature Profiles for the Flow of CO2 through a Restriction
CO2 emissions due to massive industrialization have led to several environmental issues. Carbon Capture and Storage (CCS) is one of the most important technologies that can be used to reduce anthropogenic CO2 emissions worldwide. CCS projects mainly involve three processes: carbon capture, transport...
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fthsosloakersoda:oai:oda.oslomet.no:11250/2754858 2023-05-15T18:49:26+02:00 Modeling of Pressure and Temperature Profiles for the Flow of CO2 through a Restriction Leyli, Amir Nadem Jackson, Steven Khawaja, Hassan Moatamedi, Mojtaba 2021-04-19T14:33:20Z application/pdf https://hdl.handle.net/11250/2754858 https://doi.org/10.21152/1750-9548.15.2.235 eng eng International Society of Multiphysics International Journal of Multiphysics;15 (2) The International Journal of Multiphysics. 2021, 15 (2), 235-250. urn:issn:1750-9548 https://hdl.handle.net/11250/2754858 https://doi.org/10.21152/1750-9548.15.2.235 cristin:1905115 Navngivelse 4.0 Internasjonal http://creativecommons.org/licenses/by/4.0/deed.no Copyright (c) 2021 A Leyli, S Jackson, H Khawaja, M Moatamedi CC-BY The International Journal of Multiphysics 15 2 235-250 Pressure models Temperature profiles CO2 emissions Environmental issues Journal article Peer reviewed 2021 fthsosloakersoda https://doi.org/10.21152/1750-9548.15.2.235 2021-10-11T16:54:48Z CO2 emissions due to massive industrialization have led to several environmental issues. Carbon Capture and Storage (CCS) is one of the most important technologies that can be used to reduce anthropogenic CO2 emissions worldwide. CCS projects mainly involve three processes: carbon capture, transportation, and storage. In the transportation process, the modeling of the flow in pipelines and the relationships between pressure, flow velocity, temperature, density, and phase stability are of significance. Orifice plates are a common tool used for flowrate measurements. Several standards provide the specifications and implementation approach for this type of equipment item in pipelines. In this study, flow through an orifice plate is simulated with computational fluid dynamics (CFD) modeling software, namely ANSYS®, to obtain fluid pressure, velocity, and temperature profiles. Model geometry and fluid properties are defined that are suitable for making a comparison with ISO-5167 empirical correlations and a similar reference study, which are used to validate the simulation results. A mesh sensitivity analysis is conducted to ensure the correctness of the results. A reasonable agreement is found between the simulation results, empirical correlations, and previous studies. The Joule Thompson cooling effect is also considered in this work for high-pressure CO2 cases, and the plots showed good agreement with reference studies. The publication charges for this article were funded by a grant from the publication fund of UiT-The Arctic University of Norway. publishedVersion Article in Journal/Newspaper Arctic University of Norway UiT The Arctic University of Norway OsloMet (Oslo Metropolitan University): ODA (Open Digital Archive) Arctic Norway The International Journal of Multiphysics 15 2 235 250 |
institution |
Open Polar |
collection |
OsloMet (Oslo Metropolitan University): ODA (Open Digital Archive) |
op_collection_id |
fthsosloakersoda |
language |
English |
topic |
Pressure models Temperature profiles CO2 emissions Environmental issues |
spellingShingle |
Pressure models Temperature profiles CO2 emissions Environmental issues Leyli, Amir Nadem Jackson, Steven Khawaja, Hassan Moatamedi, Mojtaba Modeling of Pressure and Temperature Profiles for the Flow of CO2 through a Restriction |
topic_facet |
Pressure models Temperature profiles CO2 emissions Environmental issues |
description |
CO2 emissions due to massive industrialization have led to several environmental issues. Carbon Capture and Storage (CCS) is one of the most important technologies that can be used to reduce anthropogenic CO2 emissions worldwide. CCS projects mainly involve three processes: carbon capture, transportation, and storage. In the transportation process, the modeling of the flow in pipelines and the relationships between pressure, flow velocity, temperature, density, and phase stability are of significance. Orifice plates are a common tool used for flowrate measurements. Several standards provide the specifications and implementation approach for this type of equipment item in pipelines. In this study, flow through an orifice plate is simulated with computational fluid dynamics (CFD) modeling software, namely ANSYS®, to obtain fluid pressure, velocity, and temperature profiles. Model geometry and fluid properties are defined that are suitable for making a comparison with ISO-5167 empirical correlations and a similar reference study, which are used to validate the simulation results. A mesh sensitivity analysis is conducted to ensure the correctness of the results. A reasonable agreement is found between the simulation results, empirical correlations, and previous studies. The Joule Thompson cooling effect is also considered in this work for high-pressure CO2 cases, and the plots showed good agreement with reference studies. The publication charges for this article were funded by a grant from the publication fund of UiT-The Arctic University of Norway. publishedVersion |
format |
Article in Journal/Newspaper |
author |
Leyli, Amir Nadem Jackson, Steven Khawaja, Hassan Moatamedi, Mojtaba |
author_facet |
Leyli, Amir Nadem Jackson, Steven Khawaja, Hassan Moatamedi, Mojtaba |
author_sort |
Leyli, Amir Nadem |
title |
Modeling of Pressure and Temperature Profiles for the Flow of CO2 through a Restriction |
title_short |
Modeling of Pressure and Temperature Profiles for the Flow of CO2 through a Restriction |
title_full |
Modeling of Pressure and Temperature Profiles for the Flow of CO2 through a Restriction |
title_fullStr |
Modeling of Pressure and Temperature Profiles for the Flow of CO2 through a Restriction |
title_full_unstemmed |
Modeling of Pressure and Temperature Profiles for the Flow of CO2 through a Restriction |
title_sort |
modeling of pressure and temperature profiles for the flow of co2 through a restriction |
publisher |
International Society of Multiphysics |
publishDate |
2021 |
url |
https://hdl.handle.net/11250/2754858 https://doi.org/10.21152/1750-9548.15.2.235 |
geographic |
Arctic Norway |
geographic_facet |
Arctic Norway |
genre |
Arctic University of Norway UiT The Arctic University of Norway |
genre_facet |
Arctic University of Norway UiT The Arctic University of Norway |
op_source |
The International Journal of Multiphysics 15 2 235-250 |
op_relation |
International Journal of Multiphysics;15 (2) The International Journal of Multiphysics. 2021, 15 (2), 235-250. urn:issn:1750-9548 https://hdl.handle.net/11250/2754858 https://doi.org/10.21152/1750-9548.15.2.235 cristin:1905115 |
op_rights |
Navngivelse 4.0 Internasjonal http://creativecommons.org/licenses/by/4.0/deed.no Copyright (c) 2021 A Leyli, S Jackson, H Khawaja, M Moatamedi |
op_rightsnorm |
CC-BY |
op_doi |
https://doi.org/10.21152/1750-9548.15.2.235 |
container_title |
The International Journal of Multiphysics |
container_volume |
15 |
container_issue |
2 |
container_start_page |
235 |
op_container_end_page |
250 |
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1766243028703379456 |