Performance Assessment in a Heat Exchanger Tube with Opposite/Parallel Wing Twisted Tapes

dc.contributor.authorS. Eiamsa-ard
dc.contributor.authorM. Pimsarn
dc.contributor.authorC. Thianpong
dc.date.accessioned2025-07-21T05:55:31Z
dc.date.issued2014-12-25
dc.description.abstractThe thermohydraulic performance in a tube containing a modified twisted tape with alternate-axes and wing arrangements is reported. This work aims to investigate the effects of wing arrangements (opposite (O) and parallel (P) wings) at different wing shapes (triangle (Tri), rectangular (Rec), and trapezoidal (Tra) wings) and on the thermohydraulic performance characteristics. The obtained results show that wing twisted tapes with all wing shape arrangements (O-Tri/O-Rec/O-Tra/P-Tri/P-Rec/P-Tra) give superior thermohydraulic performance and heat transfer rate to the typical twisted tape. In addition, the tapes with opposite wing arrangement of O-Tra, O-Rec, and O-Tri give superior thermohydraulic performances to those with parallel wing arrangement of P-Tra, P-Rec, and P-Tri around 2.7%, 3.5%, and 3.2%, respectively.
dc.identifier.doi10.1155/2014/652536
dc.identifier.urihttps://dspace.kmitl.ac.th/handle/123456789/4937
dc.subject.classificationHeat Transfer Mechanisms
dc.titlePerformance Assessment in a Heat Exchanger Tube with Opposite/Parallel Wing Twisted Tapes
dc.typeArticle

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