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Phys. Rev. E 74, 021302 (2006) [6 pages]

High viscosity gas fluidization of fine particles: An extended window of quasihomogeneous flow

Jose Manuel Valverde and Antonio Castellanos
Facultad de Fisica, Universidad de Sevilla, Avenida Reina Mercedes s/n, 41012 Sevilla, Spain
Received 21 April 2006; published 8 August 2006

We explore the role of gas viscosity in the behavior of gas-fluidized beds of fine powders by means of experimental measurements using nitrogen and neon as fluidizing gases, and theoretical considerations. The existence of a nonbubbling fluidlike regime has been recently observed in beds of fine powders fluidized with nitrogen. Our experiments with neon reveal a discontinuous transition from heterogeneous fluidization to a highly expanded homogeneous fluidization state. We point out that increasing gas viscosity enhances the coherence of agglomerate swarms, which promotes a local void-splitting mechanism, thus improving the uniformity of fluidization. Our theoretical analysis predicts that further increase of gas viscosity would produce a full suppression of the bubbling regime, i.e., the uniformly fluidized bed would undergo a direct transition to a turbulent regime as seen in beds of nanoparticles fluidized by nitrogen and in liquid-fluidized beds of moderate-density beads.

©2006 The American Physical Society

URL: http://link.aps.org/doi/10.1103/PhysRevE.74.021302
DOI: 10.1103/PhysRevE.74.021302
PACS: 83.80.Fg; 47.55.Kf; 81.20.Ev
  • 83.80.Fg
    Granular solids (rheology)
  • 47.55.Kf
    Multiphase and particle-laden flows
  • 81.20.Ev
    Powder processing including powder metallurgy, compaction, sintering, mechanical alloying, and granulation
  • YEAR: 2006
KEYWORDS: fluidisation, fluidised beds, granular flow, viscosity

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