Logo image
Pool boiling on defective graphene−coated surfaces: a molecular dynamics study
Accepted manuscript   Open access   Peer reviewed

Pool boiling on defective graphene−coated surfaces: a molecular dynamics study

Jue Min and Zhixiong Guo
Journal of Enhanced Heat Transfer, Vol.28(1), pp.85-99
01/05/2021
DOI:
https://doi.org/10.7282/00000297

Abstract

Heat Transfer
Proven to have superior mechanical and thermal properties, graphene has the potential to enhance the boiling heat transfer performance as a coating material. As defective graphene is inevitably produced together with pristine graphene, however, it is more practical to examine the impact of defective graphene. In the current work, a molecular dynamics simulation was adopted to investigate water pool boiling on copper substrate coated with five types of stable defective graphene monolayer. The results show that most of the cases coated with defective graphene have higher initial heat flux and reach equilibrium faster than the pristine graphene−coated case under the isothermal heating condition. Nevertheless, the percentage of pentagon-heptagon defect in the graphene unit cell does not have a clear correlation with its heat transfer performance. In particular, all the graphene coatings enhance the critical heat flux (CHF) value for water boiling by nearly two orders of magnitude, regardless of defectiveness. This is of practical significance to enable graphene thermal management applications.
pdf
Jue min_final_R2.56 MBDownloadView
Accepted Manuscript (AM) Open Access
url
https://doi.org/10.1615/JEnhHeatTransf.2020037002View
Version of Record (VoR) Journal of enhanced heat transfer
url
Report an accessibility issueView
Please complete a content remediation request to report an accessibility issue with a library electronic resource, website, or service.

Metrics

111 File downloads
59 Record Views

Details

Logo image