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   Chuang-Yao Zhao is an Associate Professor, Ph.D. supervisor, visiting scholar at Imperial College London, Category "D" high-level talent introduced by Xi'an University of Architecture and Technology (2018), "Yanta Scholar" of Xi'an University of Architecture and Technology (2020), and a core member of a "Huang Danian-style national university teaching team". He received his Ph.D. from the School of Energy and Power Engineering at Xi'an Jiaotong University, under the supervision of Academician Wen-Quan Tao. His research focuses on enhanced heat transfer in phase change processes and energ...
Chuang-Yao Zhao
Associate Professor
Paper Publications
Experimental investigation of R410A and R32 falling film evaporation on horizontal enhanced tubes
Release time:2024-09-23 Hits:

Journal:
Applied Thermal Engineering
Key Words:
Falling film evaporation Plain tube Enhanced tubes Nucleate boiling heat transfer R410A R32
Abstract:
In this study, heat transfer performance on horizontal copper tubes of high pressure refrigerants R32 and R410A was investigated. An integrated fin (condensation enhanced) tube and three boiling enhanced tubes with 3-D different enhancement structures were tested. A plain tube was also tested for comparison. Effects of film flow rate, saturation temperature and heat flux on the falling film heat transfer coefficients were investigated. A tube bundle comprised of 6 enhanced boiling tubes was also tested to find the bundle effect. Experiments were carried out at saturation temperatures of 6, 10 and 16 °C, heat fluxes from 20 to 150 kW·m−2 and film flow rates from 0.01 kg·m−1·s−1 to 0.14 kg·m−1·s−1. It is found that the effect of film Reynolds number on HTCs of enhanced tubes can be separated into two regimes, a quasi-plateau regime and a sharp decrease regime. HTCs increase with heat flux. Increase of saturation temperature has negligible effect on enhanced tubes as well as the tube bundle. The integrated fin tube performs best among the tubes tested. As a whole, R410A is inferior than R32. Tubes positioned below the top row possess the similar variation trend of HTCs with that of the first row but suffer an earlier dryout.
Co-author:
Chuang-Yao Zhao,Wen-Tao Ji
First Author:
Pu-Hang Jin
Indexed by:
Journal paper
Correspondence Author:
Wen-Quan Tao
Volume:
137
Page Number:
739-748
ISSN No.:
1359-4311
Translation or Not:
no
Date of Publication:
2018-01-01

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