• DocumentCode
    3277769
  • Title

    Investigation into the performance of turbulence models for fluid flow and heat transfer phenomena in electronic applications

  • Author

    Dhinsa, K. ; Bailey, C. ; Pericleous, K.

  • Author_Institution
    Centre for Numerical Modelling & Process Anal., Univ. of Greenwich, London, UK
  • fYear
    2004
  • fDate
    9-11 Mar 2004
  • Firstpage
    278
  • Lastpage
    285
  • Abstract
    Computational Fluid Dynamics (CFD) is gradually becoming a powerful and almost essential tool for the design, development and optimization of engineering applications. However the mathematical modelling of the erratic turbulent motion remains the key issue when tackling such flow phenomena. The reliability of CFD analysis depends heavily on the turbulence model employed together with the wall functions implemented. In order to resolve the abrupt changes in the turbulent energy and other parameters situated at near wall regions a particularly fine mesh is necessary which inevitably increases the computer storage and run-time requirements. Turbulence modelling can be considered to be one of the three key elements in CFD. Precise mathematical theories have evolved for the other two key elements, grid generation and algorithm development. The principal objective of turbulence modelling is to enhance computational procedures of efficient accuracy to reproduce the main structures of three dimensional fluid flows. The flow within an electronic system can be characterized as being in a transitional state due to the low velocities and relatively small dimensions encountered. This paper presents simulated CFD results for an investigation into the predictive capability of turbulence models when considering both fluid flow and heat transfer phenomena. Also a new two-layer hybrid kε/kl turbulence model for electronic application areas will be presented which holds the advantages of being cheap in terms of the computational mesh required and is also economical with regards to run-time.
  • Keywords
    computational fluid dynamics; heat transfer; thermal management (packaging); turbulence; algorithm development; computational fluid dynamics; computer storage requirements; electronic applications; erratic turbulent motion; fluid flow; grid generation; heat transfer phenomena; mathematical modelling; run-time requirements; three dimensional fluid flows; turbulence models; Computational fluid dynamics; Design engineering; Design optimization; Fluid flow; Heat transfer; Mathematical model; Power engineering and energy; Predictive models; Reliability engineering; Runtime;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Semiconductor Thermal Measurement and Management Symposium, 2004. Twentieth Annual IEEE
  • ISSN
    1065-2221
  • Print_ISBN
    0-7803-8363-X
  • Type

    conf

  • DOI
    10.1109/STHERM.2004.1291335
  • Filename
    1320486