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Mechanisms of convective heat transfer of nanofluids

  • Queen Mary University of London

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Research on nanofluids has progressed rapidly since its enhanced thermal conductivity was identified about a decade ago. Much evidence shows that the enhancement of convective heat transfer is much higher than that of thermal conductivity only. The mechanism of such enhancement, however, is still unclear. This work reviews the mechanisms of convective heat transfer of nanofluids in a single channel, and identifies two most likely mechanisms: the modification of effective properties and the migration of nanoparticles under flow conditions. A numerical simulation based on a combined Euler and Lagrange method is investigated in this work to illustrate the feature of nanoparticle migration and the drawback of the effective property approach. The motion of discrete nanoparticles is determined by the Lagrangian trajectory method based on the Newton's second law that includes influence of the body force, various hydrodynamic forces, and the Brownian and thermophoresis forces. The coupling of discrete particles with continuous flow is realized through the modification of the source term of the continuous equation. It concludes that the two-phase flow nature of nanofluids, especially the nanoparticle migration and the resultant non-uniform particle and effective property profile, needs to be considered to properly model the convective heat transfer.

Original languageEnglish
Title of host publication2008 Proceedings of the ASME Micro/Nanoscale Heat Transfer International Conference, MNHT 2008
Pages591-598
Number of pages8
DOIs
StatePublished - 2008
Externally publishedYes
Event1st ASME Micro/Nanoscale Heat Transfer International Conference, MNHT08 - Tainan, Taiwan, Province of China
Duration: 6 Jan 20089 Jan 2008

Publication series

Name2008 Proceedings of the ASME Micro/Nanoscale Heat Transfer International Conference, MNHT 2008
VolumePART A

Conference

Conference1st ASME Micro/Nanoscale Heat Transfer International Conference, MNHT08
Country/TerritoryTaiwan, Province of China
CityTainan
Period6/01/089/01/08

Keywords

  • Convective heat transfer
  • Heat intensification
  • Laminar flow
  • Migration
  • Nanofluids
  • Nanoparticles

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