• Title of article

    Study of Pressure dro‎p in the 2D Spouted Bed with Conical Base of Binary Particle Mixtures: Effects of Particle Size and Density

  • Author/Authors

    Hosseini, Seyyed Hossein Department of Chemical Engineering - Faculty of Engineering - Ilam University - Ilam, I.R. IRAN , Ahmadi, Goodarz Department of Mechanical and Aeronautical Engineering - Clarkson University - Potsdam - NY 13699-5725, USA , Rahimi, Mahmoud Reza Department of Chemical Engineering - Faculty of Engineering - Yasouj University - Yasouj, I.R. IRAN , Kiani, Mehrdad Department of Chemical Engineering - Faculty of Engineering - Yasouj University - Yasouj, I.R. IRAN

  • Pages
    10
  • From page
    183
  • To page
    192
  • Abstract
    In this study, the pressure drop for the binary mixtures of particles differing in size and density in a pseudo-2D spouted bed was experimentally studied. A binary mixture of solid particles including sand, Gypsum, and polyurethane was used in the experimental setup. Effects of static bed height, cone angle, particles diameter, and a particles weight fraction on the bed pressure drop were evaluated. The relationship between the peak pressure drops of the binary mixtures to the minimum spouting velocity was discussed. The trend of variation of pressure drop versus superficial gas velocities for binary particle mixtures in the spouted beds was found to be similar with that for the single sized particle system. The particles that sink to the bed bottom are called jetsam, whereas those gathered at the upper section of the bed are called flotsam. At the same air velocity for jetsam and flotsam rich systems, the maximum pressure drop in the jetsam rich system was larger than the flotsam one. The measured values of minimum spouting velocity were compared with some empirical correlations for single sized particles in spouted beds.
  • Keywords
    Experiment , Binary particles , Minimum spouting velocity , 2D spouted bed , Pressure drop
  • Journal title
    Astroparticle Physics
  • Serial Year
    2018
  • Record number

    2449163