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Flow condensation heat transfer coefficients of R22, R134a, R407C, and R410A inside plain and microfin tubes
Authors:Dongsoo Jung  Youngmok Cho  Kiho Park
Affiliation:Department of Mechanical Engineering, Inha University, Incheon 402-751, South Korea
Abstract:Flow condensation heat transfer coefficients (HTCs) of R22, R134a, R407C, and R410A inside horizontal plain and microfin tubes of 9.52 mm outside diameter and 1 m length were measured at the condensation temperature of 40 °C with mass fluxes of 100, 200, and 300 kg m−2 s−1 and a heat flux of 7.7–7.9 kW m−2. For a plain tube, HTCs of R134a and R410A were similar to those of R22 while HTCs of R407C are 11–15% lower than those of R22. For a microfin tube, HTCs of R134a were similar to those of R22 while HTCs of R407C and R410A were 23–53% and 10–21% lower than those of R22. For a plain tube, our correlation agreed well with the present data for all refrigerants exhibiting a mean deviation of 11.6%. Finally, HTCs of a microfin tube were 2–3 times higher than those of a plain tube and the heat transfer enhancement factor decreased as the mass flux increased for all refrigerants tested.
Keywords:Heat transfer coefficient  Measurement  Condensation  Refrigerant  R22  R134a  R407C  R410A  Smooth tube  Microfin tubeCoefficient de transfert de chaleur  Mesure  Condensation  Frigorigè  ne  R22  R134a  R407C  R410A  Tube lisse  Tube aileté  
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