• Title of article

    The effect of sparger geometry on gas holdup and regime transition points in a bubble column equipped with perforated plate spargers

  • Author/Authors

    ?al، نويسنده , , Sinan and Gül، نويسنده , , ?mer F. and ?zdemir، نويسنده , , Mustafa، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2013
  • Pages
    8
  • From page
    259
  • To page
    266
  • Abstract
    This paper investigates the effect of sparger geometry on flow regime of a bubble column. The experiments presented in this study were performed under atmospheric pressure with water/air in a cylindrical Plexiglas® column of 33.0 cm i.d. and 3.0 m height. Three different perforated plate spargers were employed. Hole diameter was varied in the range of 1–3 mm, while the free area was 1.0%. eory of linear stability is used for the prediction of regime transitions in the bubble column and a comparison has been presented between the predictions and the experimental observations. A good agreement between the predictions and the experimental values of transition gas holdup has been obtained. ition, the data from the literature has been analyzed. Experimental values of transition gas holdups and predictions by the theory of linear stability have been compared with those of literature. elation based on dimensionless numbers (Archimedes, Froude, Eötvös and Weber) and the group (do/DC) for the prediction of gas holdup in homogeneous regime is proposed. The average error between the correlation predictions and experimental values remains under ±10%. oposed correlation is compared with the published data and found to be in fairly good agreement.
  • Keywords
    Flow regime transition , Bubble column , Perforated plate sparger , Gas holdup , Regime transition points , stability analysis
  • Journal title
    Chemical Engineering and Processing: Process Intensification
  • Serial Year
    2013
  • Journal title
    Chemical Engineering and Processing: Process Intensification
  • Record number

    1611273