• Title of article

    Numerical simulation of particle motion in vibrated fluidized beds

  • Author/Authors

    Xiang، نويسنده , , Li and Shuyan، نويسنده , , Wang and Huilin، نويسنده , , Lu and Goudong، نويسنده , , Liu and Juhui، نويسنده , , Chen and Yikun، نويسنده , , Liu، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2010
  • Pages
    11
  • From page
    25
  • To page
    35
  • Abstract
    Flow behavior of particles is simulated in a two-dimensional vibrated bubbling fluidized bed. The motion of particles is simulated by discrete element method (DEM). The distributions of velocity and concentration of particles are analyzed at the different amplitudes and frequencies of vibration. In the case with vertical vibration, the bed consists of three different regimes along bed height: a low particle concentration regime with a vibration gap near the bottom, a high concentration regime in the middle of the bed and a transition regime at the bed surface. The gas pressure losses are reduced with the vibration. The phase delay time between the time at the maximum pressure loss and the time at the maximum displacement of vibrated distributor in one cycle decreases with the increase of amplitudes. The contacting interaction between the vibrated distributor and particles increases as the distributor moves up, and trends to zero as the distributor moves down with the increase of frequency of vibration. The vibrating energy is transferred by collisions between the vibrated distributor and particles at the period of acceleration of the distributor.
  • Keywords
    Discrete element method , Numerical simulation , Interaction , Vibrated fluidized bed
  • Journal title
    Powder Technology
  • Serial Year
    2010
  • Journal title
    Powder Technology
  • Record number

    1694333