Efficient design of an artificially roughened solar air heater with semi-cylindrical side walls: CFD and exergy analysis

dc.contributor.authorNidhul, K.
dc.contributor.authorYadav, A.
dc.contributor.authorAnish, S.
dc.contributor.authorArunachala, U.C.
dc.date.accessioned2026-02-05T09:28:15Z
dc.date.issued2020
dc.description.abstractSolar air heater (SAH) with semi-cylindrical sidewalls and W-baffles is analyzed for energy and exergy efficiency in the turbulent flow regime. Computational fluid dynamics (CFD) analysis is carried out for a fixed baffle inclination (?) and varying the relative baffle height (R<inf>h</inf> = e/D) and relative baffle pitch (R<inf>p</inf> = P/D) in the range 0.046–0.115 and 0.46–1.15, respectively. For Reynolds number (5000 < Re < 17,500), the numerical methodology is substantiated using experimental and theoretical correlations obtained from the literature. Smaller vortices near the sharp corners are removed by rounding the sharp edges, allowing the flow of fluid from inside and horizontal walls of the duct towards the semi-cylindrical sidewalls. This increases the overall turbulent kinetic energy. A peak augmentation of 3.24 and 4.03 times is obtained for Nusselt number (Nu) and friction factor (f), respectively, in contrast to conventional SAH. With a maximum enhancement of 127% in the effectiveness parameter relative to smooth SAH, this novel SAH design is evidently energy efficient. Based on CFD results, new correlations are developed in terms of R<inf>h</inf> and R<inf>p</inf>, which predicts the values with an absolute deviation of 4% and 7.4%, respectively. With lower exergy destruction, maximum enhancement in thermal and exergetic efficiency is obtained as 40.7% and 95.4%, respectively, for the proposed SAH relative to conventional SAH. Upon comparison with ribbed rectangular duct SAH configurations, the present design with semi-cylindrical side walls outperforms at all flow Re. © 2020 International Solar Energy Society
dc.identifier.citationSolar Energy, 2020, 207, , pp. 289-304
dc.identifier.issn0038092X
dc.identifier.urihttps://doi.org/10.1016/j.solener.2020.06.054
dc.identifier.urihttps://idr.nitk.ac.in/handle/123456789/23751
dc.publisherElsevier Ltd
dc.subjectAir
dc.subjectAir preheaters
dc.subjectDucts
dc.subjectEnergy efficiency
dc.subjectExergy
dc.subjectHeating equipment
dc.subjectKinetic energy
dc.subjectKinetics
dc.subjectReynolds number
dc.subjectSolar equipment
dc.subjectSolar heating
dc.subjectWall flow
dc.subjectAbsolute deviations
dc.subjectComputational fluid dynamics analysis
dc.subjectEnergy and exergy efficiency
dc.subjectExergetic efficiency
dc.subjectExergy destructions
dc.subjectNumerical methodologies
dc.subjectRectangular ducts
dc.subjectTurbulent kinetic energy
dc.subjectComputational fluid dynamics
dc.titleEfficient design of an artificially roughened solar air heater with semi-cylindrical side walls: CFD and exergy analysis

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