LAPSE:2023.2445
Published Article

LAPSE:2023.2445
Study of the Impact of Tube Configurations on the Local Heat Transfer Coefficient in Mimicked Fischer-Tropsch Bubble Column Reactor
February 21, 2023
Abstract
An experimental investigation was conducted to examine, for the first time, the influences of using different designs of tube arrangements on the local heat transfer coefficient (LHTC) in a bubble column (with a diameter of 0.13 m) equipped densely with a bundle of tubes. The effect of using two different designs of tube arrangements has been examined for a broad range of gas flow rates using a sophisticated heat transfer technique. The obtained results indicate that the LHTC increases significantly with increasing the gas velocity, regardless of the design and installation of the tubes in the column. Additionally, the shape of the LHTC’s profiles alters considerably by the presence of a bundle of tubes and their arrangements. Moreover, the results indicate that the square tube pitch arrangement provides uniform heat transfer profiles, which enhance the performance of the bubble column reactor by 30%. Furthermore, the heat transfer profiles were found to be varied with the axial height of the column. The new experimental results obtained in this investigation will provide experimental reference data for creating and validating a mathematical model for predicting LHTCs. In addition, this will facilitate this kind of reactor’s design, scale-up, and operation.
An experimental investigation was conducted to examine, for the first time, the influences of using different designs of tube arrangements on the local heat transfer coefficient (LHTC) in a bubble column (with a diameter of 0.13 m) equipped densely with a bundle of tubes. The effect of using two different designs of tube arrangements has been examined for a broad range of gas flow rates using a sophisticated heat transfer technique. The obtained results indicate that the LHTC increases significantly with increasing the gas velocity, regardless of the design and installation of the tubes in the column. Additionally, the shape of the LHTC’s profiles alters considerably by the presence of a bundle of tubes and their arrangements. Moreover, the results indicate that the square tube pitch arrangement provides uniform heat transfer profiles, which enhance the performance of the bubble column reactor by 30%. Furthermore, the heat transfer profiles were found to be varied with the axial height of the column. The new experimental results obtained in this investigation will provide experimental reference data for creating and validating a mathematical model for predicting LHTCs. In addition, this will facilitate this kind of reactor’s design, scale-up, and operation.
Record ID
Keywords
bubble column, bundle of heat exchanging tubes, Fischer-Tropsch process, heat transfer coefficient, sophisticated heat transfer technique, tube configurations
Subject
Suggested Citation
Alzamily AN, Sultan AJ, Abdulrahman AA, Majdi HS. Study of the Impact of Tube Configurations on the Local Heat Transfer Coefficient in Mimicked Fischer-Tropsch Bubble Column Reactor. (2023). LAPSE:2023.2445
Author Affiliations
Alzamily AN: Department of Chemical Engineering, University of Technology-Iraq, Baghdad 10066, Iraq [ORCID]
Sultan AJ: Department of Chemical Engineering, University of Technology-Iraq, Baghdad 10066, Iraq; Multiphase Flow and Reactor Engineering, Applications and Education Laboratory (mFReael), Linda and Bipin Doshi Department of Chemical and Biochemical Engineering, Mis [ORCID]
Abdulrahman AA: Department of Chemical Engineering, University of Technology-Iraq, Baghdad 10066, Iraq [ORCID]
Majdi HS: Department of Chemical Engineering and Petroleum Industries, Al-Mustaqbal University College, Babylon 51001, Iraq
Sultan AJ: Department of Chemical Engineering, University of Technology-Iraq, Baghdad 10066, Iraq; Multiphase Flow and Reactor Engineering, Applications and Education Laboratory (mFReael), Linda and Bipin Doshi Department of Chemical and Biochemical Engineering, Mis [ORCID]
Abdulrahman AA: Department of Chemical Engineering, University of Technology-Iraq, Baghdad 10066, Iraq [ORCID]
Majdi HS: Department of Chemical Engineering and Petroleum Industries, Al-Mustaqbal University College, Babylon 51001, Iraq
Journal Name
Processes
Volume
10
Issue
5
First Page
976
Year
2022
Publication Date
2022-05-13
ISSN
2227-9717
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Original Submission
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PII: pr10050976, Publication Type: Journal Article
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LAPSE:2023.2445
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https://doi.org/10.3390/pr10050976
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Feb 21, 2023
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