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Experimental Heat Transfer
A Journal of Thermal Energy Generation, Transport, Storage, and Conversion
Volume 32, 2019 - Issue 1
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Articles

Condensation heat transfer and pressure drop characteristics of R-134a inside the flattened tubes at high mass flux and different saturation temperature

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Pages 69-84 | Received 19 Jul 2017, Accepted 01 Jun 2018, Published online: 20 Jun 2018
 

ABSTRACT

In this study, heat transfer coefficients and pressure drops of R-134a inside round and flat tubes are investigated experimentally with mass flux of 450, 550, and 650 kg m−2 s−1 at saturation temperatures of 35°, 40°, and 45°C. The effects of mass flux and saturation temperature on heat transfer coefficient and pressure drop are examined. The maximum enhancement factor and pressure drop penalty are obtained by flat tube (FT-2) up to 2.101 at 450 kg m−2 s−1 and 3.01 at 650 kg m−2 s−1, respectively. The correlation for flat tubes is proposed to predict the heat transfer coefficient within ±20% error.

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