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A Comprehensive Review of Saline Water Correlations and Data: Part II—Thermophysical Properties
This paper reviews the thermophysical properties of saline water correlations and data. The key parameters that influence the properties are considered, such as multi-component composition, high salinity, temperature, and pressure. Since the thermodynamic properties are reviewed in part I of the pap...
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Published in: | Arabian journal for science and engineering (2011) 2021-03, Vol.46 (3), p.1941-1979 |
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container_end_page | 1979 |
container_issue | 3 |
container_start_page | 1941 |
container_title | Arabian journal for science and engineering (2011) |
container_volume | 46 |
creator | Qasem, Naef A. A. Generous, Muhammad M. Qureshi, Bilal A. Zubair, Syed M. |
description | This paper reviews the thermophysical properties of saline water correlations and data. The key parameters that influence the properties are considered, such as multi-component composition, high salinity, temperature, and pressure. Since the thermodynamic properties are reviewed in part I of the paper, this part (# II) focuses on the thermophysical properties involving viscosity, surface tension, electrical conductivity, thermal conductivity, osmotic coefficient, activity coefficient, and thermal expansivity. The properties are comprehensive to include all saline water types, i.e., brackish water, seawater, high saline water from basins, lakes, produced water from oil and gas hydraulic fracturing, and so on. The correlations are summarized in tabular forms and assessed based on their accuracy against available experimental data. Besides, guidelines for choosing some correlations are also discussed. Since the thermal conductivity has no multi-component model, a novel and straightforward model is proposed with excellent accuracy. |
doi_str_mv | 10.1007/s13369-020-05020-5 |
format | article |
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A. ; Generous, Muhammad M. ; Qureshi, Bilal A. ; Zubair, Syed M.</creator><creatorcontrib>Qasem, Naef A. A. ; Generous, Muhammad M. ; Qureshi, Bilal A. ; Zubair, Syed M.</creatorcontrib><description>This paper reviews the thermophysical properties of saline water correlations and data. The key parameters that influence the properties are considered, such as multi-component composition, high salinity, temperature, and pressure. Since the thermodynamic properties are reviewed in part I of the paper, this part (# II) focuses on the thermophysical properties involving viscosity, surface tension, electrical conductivity, thermal conductivity, osmotic coefficient, activity coefficient, and thermal expansivity. The properties are comprehensive to include all saline water types, i.e., brackish water, seawater, high saline water from basins, lakes, produced water from oil and gas hydraulic fracturing, and so on. The correlations are summarized in tabular forms and assessed based on their accuracy against available experimental data. Besides, guidelines for choosing some correlations are also discussed. 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A.</creatorcontrib><creatorcontrib>Generous, Muhammad M.</creatorcontrib><creatorcontrib>Qureshi, Bilal A.</creatorcontrib><creatorcontrib>Zubair, Syed M.</creatorcontrib><title>A Comprehensive Review of Saline Water Correlations and Data: Part II—Thermophysical Properties</title><title>Arabian journal for science and engineering (2011)</title><addtitle>Arab J Sci Eng</addtitle><description>This paper reviews the thermophysical properties of saline water correlations and data. The key parameters that influence the properties are considered, such as multi-component composition, high salinity, temperature, and pressure. Since the thermodynamic properties are reviewed in part I of the paper, this part (# II) focuses on the thermophysical properties involving viscosity, surface tension, electrical conductivity, thermal conductivity, osmotic coefficient, activity coefficient, and thermal expansivity. The properties are comprehensive to include all saline water types, i.e., brackish water, seawater, high saline water from basins, lakes, produced water from oil and gas hydraulic fracturing, and so on. The correlations are summarized in tabular forms and assessed based on their accuracy against available experimental data. Besides, guidelines for choosing some correlations are also discussed. Since the thermal conductivity has no multi-component model, a novel and straightforward model is proposed with excellent accuracy.</description><subject>Activity coefficients</subject><subject>Brackish water</subject><subject>Correlation</subject><subject>Electrical resistivity</subject><subject>Engineering</subject><subject>Heat conductivity</subject><subject>Heat transfer</subject><subject>Humanities and Social Sciences</subject><subject>Hydraulic fracturing</subject><subject>Lakes</subject><subject>Model accuracy</subject><subject>multidisciplinary</subject><subject>Review-Mechanical Engineering</subject><subject>Saline water</subject><subject>Science</subject><subject>Seawater</subject><subject>Surface tension</subject><subject>Thermal conductivity</subject><subject>Thermal expansion</subject><subject>Thermodynamic properties</subject><subject>Thermophysical properties</subject><issn>2193-567X</issn><issn>1319-8025</issn><issn>2191-4281</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2021</creationdate><recordtype>article</recordtype><recordid>eNp9kM1Kw0AURgdRsNS-gKsB19H5ySQTd6VqLRQsWtDdMJnc2JE0E2fSSnc-hE_ok5g2gjs3997F-b4LB6FzSi4pIelVoJwnWUQYiYjYT3GEBoxmNIqZpMeHm0ciSV9O0SgEm5NY8kxQygdIj_HErRsPK6iD3QJ-hK2FD-xK_KQrWwN-1i34DvIeKt1aVwes6wLf6FZf44X2LZ7Nvj-_livwa9esdsEaXeGFdw341kI4QyelrgKMfvcQLe9ul5P7aP4wnU3G88hwKdoI0pwmJOExF0YzakTG4sKwtBR5UYosLYwUsSRUCFnmmnS4EUZKk5i4JIbyIbroaxvv3jcQWvXmNr7uPioWyywRKU1kR7GeMt6F4KFUjbdr7XeKErWXqXqZqtOoDjKV6EK8D4UOrl_B_1X_k_oBdM14Tw</recordid><startdate>20210301</startdate><enddate>20210301</enddate><creator>Qasem, Naef A. 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Since the thermodynamic properties are reviewed in part I of the paper, this part (# II) focuses on the thermophysical properties involving viscosity, surface tension, electrical conductivity, thermal conductivity, osmotic coefficient, activity coefficient, and thermal expansivity. The properties are comprehensive to include all saline water types, i.e., brackish water, seawater, high saline water from basins, lakes, produced water from oil and gas hydraulic fracturing, and so on. The correlations are summarized in tabular forms and assessed based on their accuracy against available experimental data. Besides, guidelines for choosing some correlations are also discussed. 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issn | 2193-567X 1319-8025 2191-4281 |
language | eng |
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source | Springer Nature:Jisc Collections:Springer Nature Read and Publish 2023-2025: Springer Reading List |
subjects | Activity coefficients Brackish water Correlation Electrical resistivity Engineering Heat conductivity Heat transfer Humanities and Social Sciences Hydraulic fracturing Lakes Model accuracy multidisciplinary Review-Mechanical Engineering Saline water Science Seawater Surface tension Thermal conductivity Thermal expansion Thermodynamic properties Thermophysical properties |
title | A Comprehensive Review of Saline Water Correlations and Data: Part II—Thermophysical Properties |
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