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Condensing heat transfer coefficients of R134a in smooth and grooved multiport flat tubes of automotive heat exchanger: An experimental investigation

Authors
Ammar, S.M.Abbas, N.Abbas, S.Ali, H.M.Hussain, I.Janjua, M.M.Sajjad, U.Dahiya, A.
Issue Date
May-2019
Publisher
Elsevier Ltd
Keywords
Automotive heat exchanger; Flattened tube; R134a; Heat transfer coefficient; Pure two-phase vapor
Citation
International Journal of Heat and Mass Transfer, v.134, pp 366 - 376
Pages
11
Journal Title
International Journal of Heat and Mass Transfer
Volume
134
Start Page
366
End Page
376
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/45053
DOI
10.1016/j.ijheatmasstransfer.2019.01.047
ISSN
0017-9310
1879-2189
Abstract
Condensation heat transfer coefficient of R134a was obtained in multi-port micro channel smooth and grooved flat tubes of automotive heat exchanger. The test consisted of two smooth and one grooved tube. The test range covered mass flux 490–1600 kg/m 2 s, heat flux 5.5–19 kW/m 2 and saturation temperature 51–68 °C. Results revealed that condensation heat transfer coefficient increased with an increment of mass flux, vapor quality and decreased with the increase of saturation temperature. The effect of heat flux on heat transfer coefficient was negligible. The grooved tube showed larger heat transfer coefficient than that of smooth tubes. A comparison of the present data of flat tube with existing correlations revealed that the heat transfer coefficient was not reasonably predicted, therefore new correlation was developed for heat transfer coefficient that predicted 86% data within ±30% with a mean error of 16%. © 2019 Elsevier Ltd
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