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dc.contributor.author | Okafor, Izuchukwu F.![]() |
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dc.contributor.author | Dirker, Jaco![]() |
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dc.contributor.author | Meyer, Josua P.![]() |
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dc.date.accessioned | 2017-04-07T05:06:28Z | |
dc.date.issued | 2017-08 | |
dc.description.abstract | Non-uniform heat flux profiles on circular tubes are found in a number of heat transfer applications, including solar heating. In this numerical study the influence of the circumferential angle spans of non-uniform heat flux distributions are considered on the secondary buoyancy-driven flow, internal fluid heat transfer coefficients, and friction factors in horizontal absorber tubes in parabolic trough solar collector applications for water heating in the laminar flow regime. Inlet Reynolds numbers ranging from 130 to 2200 for 10 m long tubes with different inner diameters were considered. Sinusoidal type incident heat flux distributions, tube-wall heat conduction and heat losses were taken into account. It was found that due to buoyancy-driven secondary flow, overall and local internal heat transfer coefficients were increased significantly due to the non-uniformity of the incident heat flux. Average internal heat transfer coefficient increased with the heat flux intensity, the incident heat flux angle span and the inlet fluid temperature. The effective friction factor decreased with an increase in the absorber tube inlet fluid temperature. It was found that improved thermal efficiencies can be achieved for low mass flow rate water heating applications by employing parabolic trough collector systems compared to flat plate systems. | en_ZA |
dc.description.department | Mechanical and Aeronautical Engineering | en_ZA |
dc.description.embargo | 2018-08-31 | |
dc.description.librarian | hb2017 | en_ZA |
dc.description.sponsorship | The NRF/DST, TESP, Stellenbosch University, University of Pretoria, SANERI/SANEDI, CSIR, EEDSM Hub and NAC. | en_ZA |
dc.description.uri | http://www.elsevier.com/locate/renene | en_ZA |
dc.identifier.citation | Okafor, IF, Dirker, J & Meyer, JP 2017, 'Influence of non-uniform heat flux distributions on the secondary flow, convective heat transfer and friction factors for a parabolic trough solar collector type absorber tube', Renewable Energy, vol. 108, pp. 287-302. | en_ZA |
dc.identifier.issn | 0960-1481 (print) | |
dc.identifier.issn | 1879-0682 (online) | |
dc.identifier.other | 10.1016/j.renene.2017.02.053 | |
dc.identifier.uri | http://hdl.handle.net/2263/59695 | |
dc.language.iso | en | en_ZA |
dc.publisher | Elsevier | en_ZA |
dc.rights | © 2017 Elsevier Ltd. All rights reserved. Notice : this is the author’s version of a work that was accepted for publication in Renewable Energy. Changes resulting from the publishing process, such as peer review, editing, corrections, structural formatting, and other quality control mechanisms may not be reflected in this document. A definitive version was subsequently published in Renewable Energy, vol. 108, pp. 287-302 2017. doi : 10.1016/j.renene.2017.02.053. | en_ZA |
dc.subject | Parabolic trough | en_ZA |
dc.subject | Absorber tube | en_ZA |
dc.subject | Heat transfer coefficients | en_ZA |
dc.subject | Friction factor | en_ZA |
dc.subject | Non-uniform heat flux distributions | en_ZA |
dc.subject | Secondary flow | en_ZA |
dc.subject.other | Engineering, built environment and information technology articles SDG-07 | |
dc.subject.other | SDG-07: Affordable and clean energy | |
dc.subject.other | Engineering, built environment and information technology articles SDG-09 | |
dc.subject.other | SDG-09: Industry, innovation and infrastructure | |
dc.subject.other | Engineering, built environment and information technology articles SDG-12 | |
dc.subject.other | SDG-12: Responsible consumption and production | |
dc.subject.other | Engineering, built environment and information technology articles SDG-13 | |
dc.subject.other | SDG-13: Climate action | |
dc.title | Influence of non-uniform heat flux distributions on the secondary flow, convective heat transfer and friction factors for a parabolic trough solar collector type absorber tube | en_ZA |
dc.type | Postprint Article | en_ZA |