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Flow boiling characteristics in porous heat sink with reentrant microchannels

  • Daxiang Deng*
  • , Yong Tang
  • , Dejie Liang
  • , Hao He
  • , Song Yang
  • *Corresponding author for this work
  • South China University of Technology
  • Xiamen University

Research output: Contribution to journalArticlepeer-review

Abstract

A novel porous heat sink with reentrant microchannels has been developed by traditional sintering fabrication method. It features 14 parallel Ω-shaped reentrant microchannels with a hydraulic diameter of 786 μm. Two-phase boiling heat transfer performance of the reentrant porous microchannels (RPM) was evaluated to explore the feasibility of the enhancement and application in heat sink cooling. Using deionized water as coolant, flow boiling tests were conducted at the inlet temperature of 33, 60 and 90 C, mass flux of 125-300 kg/m2 s. Comparisons with solid copper microchannels of the same reentrant configuration were performed, and the test results show that the reentrant porous microchannels presented a significant decrease of the wall superheat for the boiling incipience, delay and mitigation of two-phase flow instabilities, and 2-5 folds enhancement in two-phase heat transfer coefficient at low to moderate heat fluxes. It was also found that during the flow boiling of the reentrant porous microchannels, nucleation boiling governed the heat transfer mechanism at low heat fluxes and vapor quality, while forced convective boiling associated with thin film evaporation dominated at moderate to high heat fluxes. Furthermore, the two-phase flow instabilities characteristics were also accessed for the reentrant porous microchannels.

Original languageEnglish
Pages (from-to)463-477
Number of pages15
JournalInternational Journal of Heat and Mass Transfer
Volume70
DOIs
StatePublished - Mar 2014
Externally publishedYes

Keywords

  • Flow boiling
  • Flow instabilities
  • Microchannels
  • Porous heat sink
  • Reentrant

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