Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/103070
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Title: Investigation on dynamic behaviour of condensation heat transfer in indirective evaporative cooler
Authors: Min, Y 
Chen, Y 
Yang, H 
Issue Date: Oct-2022
Source: Indoor and built environment, Oct. 2022, v. 31, no. 8, p. 2024-2035
Abstract: Indirect evaporative cooling is a rapidly developing air-handling technology and has great application potentials for energy recovery in hot and humid regions. The condensation in dry channels of an indirect evaporative cooler (IEC) occurs when the dew point temperature of outdoor air is high. However, the dynamic heat transfer performance of an IEC during the process of condensation evolution was rarely discussed. This paper aims to experimentally investigate the dynamic behaviour of primary air condensation and its effects on the convective and total heat transfer rate of an IEC. A transparent cover plate is placed outside an aluminium heat exchanger plate to visualize the evolution process of droplets retained on the surface. The droplets' falling frequency was recorded and the accumulated condensate mass was correlated based on an analytical method taking into account the contact angle and droplet volume. Results showed that the dynamic dehumidification performance can pose great influences on the convective heat transfer in IEC. The gradually diminished dropwise regions and increase of filmwise regions deteriorate the wet-bulb effectiveness of IEC by 14.8%. The convective heat flux keeps decreasing with the accumulation of condensate retention until a dynamic equilibrium is achieved between the retained and falling droplets.
Keywords: Condensation evolution
Droplet behaviour
Dropwise condensation
Heat transfer
Indirect evaporative cooler
Publisher: SAGE Publications
Journal: Indoor and built environment 
ISSN: 1420-326X
EISSN: 1423-0070
DOI: 10.1177/1420326X20944415
Rights: This is the accepted version of the publication Min, Y., Chen, Y., & Yang, H. (2022). Investigation on dynamic behaviour of condensation heat transfer in indirective evaporative cooler. Indoor and Built Environment, 31(8), 2024-2035. Copyright © The Author(s) 2020. DOI: 10.1177/1420326X20944415.
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