• Title of article

    Large-eddy simulation of mixed convection-radiation heat transfer in a vertical channel

  • Author/Authors

    Darioush G. Barhaghi، نويسنده , , Lars Davidson، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2009
  • Pages
    11
  • From page
    3918
  • To page
    3928
  • Abstract
    A mixed convection boundary layer in a vertical channel is studied using large-eddy simulation. Two different cases were considered by applying constant heat flux boundary condition to one of the channel walls while the other wall was kept insulated. The Grashof to Reynolds number ratios based on the wall heat flux and the channel width are image (Case I) and image (Case II), which suggest that the buoyancy forces are comparable to the inertial forces in both cases. Owing to the large temperature differences between the hot wall and the inlet air, the governing equations were solved using two different approaches. Boussinesq approximation considering constant properties was employed in the first approach. In the other, fluid properties were assumed to be temperature dependent. A consequence of the wall high temperature is the radiation heat transfer, which is also taken into account. It is shown that an average of about image of the heat in Case I and image in Case II is transferred to the insulated wall via radiation. Differences between the results of the constant and variable property computations are rather high, which suggest that Boussinesq approximation is not accurate for very large temperature differences. The differences between the results of the variable and constant property computations are expectedly larger in Case II, where the wall temperature is higher than Case I. Large discrepancies can be observed between the numerical and experimental results. The discrepancies are larger in Case II than in Case I. The possible reasons for these discrepancies are discussed.
  • Keywords
    Radiation heat transfer , Mixed convection boundary layer , Large-eddy simulation , LES
  • Journal title
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER
  • Serial Year
    2009
  • Journal title
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER
  • Record number

    1076171