CFD Convective Flow Simulation of the Varying Properties of CO2-H2O Mixtures in Geothermal Systems
Numerical simulation of a geothermal reservoir, modelled as a bottom-heated square box, filled with water-CO2 mixture is presented in this work. Furthermore, results for two limiting cases of a reservoir filled with either pure water or CO2 are presented. Effects of different parameters including CO...
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my.um.eprints.193412018-09-21T01:07:44Z http://eprints.um.edu.my/19341/ CFD Convective Flow Simulation of the Varying Properties of CO2-H2O Mixtures in Geothermal Systems Yousefi, S. Atrens, A.D. Sauret, E. Dahari, M. Hooman, K. Q Science (General) TJ Mechanical engineering and machinery TK Electrical engineering. Electronics Nuclear engineering Numerical simulation of a geothermal reservoir, modelled as a bottom-heated square box, filled with water-CO2 mixture is presented in this work. Furthermore, results for two limiting cases of a reservoir filled with either pure water or CO2 are presented. Effects of different parameters including CO2 concentration as well as reservoir pressure and temperature on the overall performance of the system are investigated. It has been noted that, with a fixed reservoir pressure and temperature, any increase in CO2 concentration leads to better performance, that is, stronger convection and higher heat transfer rates. With a fixed CO2 concentration, however, the reservoir pressure and temperature can significantly affect the overall heat transfer and flow rate from the reservoir. Details of such variations are documented and discussed in the present paper. Hindawi Publishing Corporation 2015 Article PeerReviewed Yousefi, S. and Atrens, A.D. and Sauret, E. and Dahari, M. and Hooman, K. (2015) CFD Convective Flow Simulation of the Varying Properties of CO2-H2O Mixtures in Geothermal Systems. Scientific World Journal, 2015. pp. 1-8. ISSN 2356-6140 http://dx.doi.org/10.1155/2015/843068 doi:10.1155/2015/843068 |
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Q Science (General) TJ Mechanical engineering and machinery TK Electrical engineering. Electronics Nuclear engineering Yousefi, S. Atrens, A.D. Sauret, E. Dahari, M. Hooman, K. CFD Convective Flow Simulation of the Varying Properties of CO2-H2O Mixtures in Geothermal Systems |
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Numerical simulation of a geothermal reservoir, modelled as a bottom-heated square box, filled with water-CO2 mixture is presented in this work. Furthermore, results for two limiting cases of a reservoir filled with either pure water or CO2 are presented. Effects of different parameters including CO2 concentration as well as reservoir pressure and temperature on the overall performance of the system are investigated. It has been noted that, with a fixed reservoir pressure and temperature, any increase in CO2 concentration leads to better performance, that is, stronger convection and higher heat transfer rates. With a fixed CO2 concentration, however, the reservoir pressure and temperature can significantly affect the overall heat transfer and flow rate from the reservoir. Details of such variations are documented and discussed in the present paper. |
format |
Article |
author |
Yousefi, S. Atrens, A.D. Sauret, E. Dahari, M. Hooman, K. |
author_facet |
Yousefi, S. Atrens, A.D. Sauret, E. Dahari, M. Hooman, K. |
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Yousefi, S. |
title |
CFD Convective Flow Simulation of the Varying Properties of CO2-H2O Mixtures in Geothermal Systems |
title_short |
CFD Convective Flow Simulation of the Varying Properties of CO2-H2O Mixtures in Geothermal Systems |
title_full |
CFD Convective Flow Simulation of the Varying Properties of CO2-H2O Mixtures in Geothermal Systems |
title_fullStr |
CFD Convective Flow Simulation of the Varying Properties of CO2-H2O Mixtures in Geothermal Systems |
title_full_unstemmed |
CFD Convective Flow Simulation of the Varying Properties of CO2-H2O Mixtures in Geothermal Systems |
title_sort |
cfd convective flow simulation of the varying properties of co2-h2o mixtures in geothermal systems |
publisher |
Hindawi Publishing Corporation |
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2015 |
url |
http://eprints.um.edu.my/19341/ http://dx.doi.org/10.1155/2015/843068 |
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1643690959200845824 |