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CFD analysis of fin tube heat exchanger with a pair of delta winglet vortex generators
Seong Won Hwang, Dong Hwan Kim, June Kee Min and Ji Hwan Jeong*
The Journal of Mechanical Science and Technology, vol. 26, no. 9, pp.2949-2958, 2012
Abstract : Among tubular heat exchangers, fin-tube types are the most widely used in refrigeration and air-conditioning equipment. Efforts to enhance
the performance of these heat exchangers included variations in the fin shape from a plain fin to a slit and louver type. In the context
of heat transfer augmentation, the performance of vortex generators has also been investigated. Delta winglet vortex generators have
recently attracted research interest, partly due to experimental data showing that their addition to fin-tube heat exchangers considerably
reduces pressure loss at heat transfer capacity of nearly the same level. The efficiency of the delta winglet vortex generators widely varies
depending on their size and shape, as well as the locations where they are implemented. In this paper, the flow field around delta winglet
vortex generators in a common flow up arrangement was analyzed in terms of flow characteristics and heat transfer using computational
fluid dynamics methods. Flow mixing due to vortices and delayed separation due to acceleration influence the overall fin performance.
The fin with delta winglet vortex generators exhibited a pressure loss lower than that of a plain fin, and the heat transfer performance was
enhanced at high air velocity or Reynolds number.
Keyword : Fin-tube heat exchanger; Plate and fin tube; Delta winglet; Vortex generators; Flow separation |
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