Heat transfer enhancement in fin-tube heat exchangers by winglet type vortex generators

Numerical investigations of the flow structure and heat transfer enhancement in a channel with a built-in circular tube and a winglet type vortex generator are presented. The geometrical configuration represents an element of a gas-liquid fin-tube crossflow heat exchanger. In the absence of the wing...

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Published inInternational journal of heat and mass transfer Vol. 37; no. 2; pp. 283 - 291
Main Authors Biswas, G., Mitra, N.K., Fiebig, M.
Format Journal Article
LanguageEnglish
Published Oxford Elsevier Ltd 1994
Elsevier
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Abstract Numerical investigations of the flow structure and heat transfer enhancement in a channel with a built-in circular tube and a winglet type vortex generator are presented. The geometrical configuration represents an element of a gas-liquid fin-tube crossflow heat exchanger. In the absence of the winglet type vortex generator, relatively little heat transfer takes place in the downstream of the circular tube which is a recirculation region with low velocity fluid. However, in the presence of a winglet type longitudinal vortex generator in the wake region behind the cylinder, heat transfer in this region can be enhanced as high as 240%. Results show a marked increase in overall channel heat transfer. The enhancement shows great promise in reducing the size of the heat exchangers.
AbstractList Numerical investigations of the flow structure and heat transfer enhancement in a channel with a built-in circular tube and a winglet type vortex generator are presented. The geometrical configuration represents an element of a gas-liquid fin-tube crossflow heat exchanger. In the absence of the winglet type vortex generator, relatively little heat transfer takes place in the downstream of the circular tube which is a recirculation region with low velocity fluid. However, in the presence of a winglet type longitudinal vortex generator in the wake region behind the cylinder, heat transfer in this region can be enhanced as high as 240%. Results show a marked increase in overall channel heat transfer. The enhancement shows great promise in reducing the size of the heat exchangers.
Author Biswas, G.
Mitra, N.K.
Fiebig, M.
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Keywords Temperature distribution
Heat exchanger
Finned tube
Vortex generator
Velocity distribution
Experimental study
Heat transfer
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Snippet Numerical investigations of the flow structure and heat transfer enhancement in a channel with a built-in circular tube and a winglet type vortex generator are...
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SubjectTerms Applied sciences
Devices using thermal energy
Energy
Energy. Thermal use of fuels
Exact sciences and technology
Heat exchangers (included heat transformers, condensers, cooling towers)
Title Heat transfer enhancement in fin-tube heat exchangers by winglet type vortex generators
URI https://dx.doi.org/10.1016/0017-9310(94)90099-X
Volume 37
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