• Title of article

    In-depth system parameters of transition flow pattern between turbulent and fast fluidization regimes in high solid particle density circulating fluidized bed reactor

  • Author/Authors

    Chalermsinsuwan، نويسنده , , Benjapon and Gidaspow، نويسنده , , Dimitri and Piumsomboon، نويسنده , , Pornpote، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2014
  • Pages
    15
  • From page
    522
  • To page
    536
  • Abstract
    The transition flow between turbulent and fast fluidization regimes in high solid particle density circulating fluidized bed reactor was successfully investigated in this study. In addition, the effects of computational cell and simulation time were compared. Then, the comprehensive explanation and in-depth system parameters were discussed. The results showed the unique system characteristics. For the transition flow between turbulent and fast fluidization regimes, lower range of energy spectrum than the turbulent and fast fluidization regimes was found. As the increasing of gas inlet velocity, the axial and radial solid particle dispersion coefficients increased and decreased, respectively. For the axial and radial gas dispersion coefficients, both of them were increased with the increasing of gas inlet velocity. At the near wall region, the transition flow had no obvious power spectrum peak except the one below 0.2 Hz, while, at the center region, the maximum peak at 5.0 Hz was found. All the velocities had no significant correlation with solid volume fraction. The solid particle–solid particle interaction or collision then governs the system characteristic. The transition flow between turbulent and fast fluidization regimes will be an alternative choice for applying with circulating fluidized bed reactor in other new physical and chemical processes.
  • Keywords
    Circulating fluidized bed , Computational fluid dynamics , Hydrodynamics , In-depth system parameter , Flow Regimes , Experiment
  • Journal title
    Powder Technology
  • Serial Year
    2014
  • Journal title
    Powder Technology
  • Record number

    1704923