• DocumentCode
    2524769
  • Title

    Hydrodynamic model of pneumatic classification of powder materials

  • Author

    Shvab, A.V. ; Maltsev, A.A.

  • Author_Institution
    Tomsk State Univ., Russia
  • Volume
    2
  • fYear
    1999
  • fDate
    1999
  • Firstpage
    518
  • Abstract
    A pneumatic circulating unit allows carrying out combined processes of powder production e.g. mixing, drying, grinding, and classification. The unit consists of a cylindrical-conical chamber with coaxial pipe. The circulating motion of powder material is realized by the injection of the last by the compressed air feeding through the nozzle block in the bottom of the unit, the conveying of powder through the pipe and the precipitation of particles into the packed bed after the separation stage. For the classification of particles by their sizes a built-in vane rotating classifier is applied. The main element of the classifier is the rotor, which generates a powerful centrifugal field around itself by its rotation and allows to achieve a high performance and sharp classification. The interpenetrating and interacting continua concept is implemented in which it is a suggested that more then one phase can exist at the same location at the same time. This suggestion depends on the ideas of time and space averaging. The phases “share” this space; and they may, as they move within it, interpenetrate. This model is analyzed
  • Keywords
    conveyors; drag; finite difference methods; fluidised beds; granular flow; mixing; particle size; pneumatic systems; powder technology; separation; turbulent diffusion; built-in vane rotating classifier; centrifugal field; circulating motion; coaxial pipe; compressed air feed; conveying; cylindrical-conical chamber; drag force; drying; finite difference equations; grinding; hydrodynamic model; interpenetrating and interacting continua concept; mixing; nozzle block; packed bed; pneumatic circulating unit; pneumatic classification; powder materials; powder production; space averaging; time averaging; turbulent diffusion; two-phase flow; Blades; Construction industry; Equations; Hydrodynamics; Manufacturing; Powders; Precision engineering; Production; Rotors; Solids;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Science and Technology, 1999. KORUS '99. Proceedings. The Third Russian-Korean International Symposium on
  • Conference_Location
    Novosibirsk
  • Print_ISBN
    0-7803-5729-9
  • Type

    conf

  • DOI
    10.1109/KORUS.1999.876216
  • Filename
    876216