Heat transfer analysis in a tube contained with louver-punched triangular baffles

dc.contributor.authorJayranaiwachira, Nuthvipa
dc.contributor.authorPromvonge, Pongjet
dc.contributor.authorPromthaisong, Pitak
dc.contributor.authorNakhchi, Mahdi Erfanian
dc.contributor.authorSkullong, Sompol
dc.date.accessioned2026-08-06T10:46:18Z
dc.date.available2026-08-06T10:46:18Z
dc.date.issued2024-06-01
dc.description.abstractThe present research assesses the thermal effectiveness of a heat exchange tube incorporating louver-punched triangular baffle (LPTB) vortex generators under turbulent conditions. For Reynolds numbers between 4760 and 29,270, the heat transfer and flow behaviors in the consistent heat-fluxed tube equipped with LPTBs were studied numerically and experimentally. A single baffle height/blockage ratio (b/D = B<inf>R</inf> = 0.25) and relative baffle pitch (P/D = P<inf>R</inf> = 1) were used for both baffle attack angles, (α) 30° and 45°, along with three louver size ratios (e/b = L<inf>R</inf> = 0.24–0.56) as well as five louver angles (θ = 0°, 20°, 30°, 45°, 60°, and 90°). The results show that as the L<inf>R</inf> and θ values decrease, the Nusselt number (Nu) and friction factor (f) of the LPTB rise owing to the improved fluid mixing process generated by streamwise vortices with stronger turbulence kinetic energy. The LPTB with L<inf>R</inf> = 0 and θ = 0° provides the greatest f and Nu of about 22.18 and 5.1 times, respectively, although the one with L<inf>R</inf> = 0.24 and θ = 45° has the largest TEF of about 2.39 and 2.5 for the α = 30° and 45° LPTBs, respectively. Furthermore, an examination into the thermal and flow patterns was conducted through a three-dimensional computation; the validation of the numerical and experimental data yielded satisfactory results. Using measured data, the f and Nu correlations of the α = 30° and 45° LPTBs were additionally established.
dc.identifier.citationResults in Engineering, 22, 2024
dc.identifier.doi10.1016/j.rineng.2024.102276
dc.identifier.issn25901230
dc.identifier.other2-s2.0-85193431016
dc.identifier.urihttps://dspace.kmitl.ac.th/handle/123456789/15695
dc.sourceResults in Engineering
dc.subjectHeat exchanger
dc.subjectHeat transfer enhancement
dc.subjectThermal effectiveness
dc.subjectTriangular baffle
dc.subjectVortex generator
dc.titleHeat transfer analysis in a tube contained with louver-punched triangular baffles
dc.typeArticle

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