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With mesh refining, the observed minimum bubbling velocity approaches its experimental value.
Correlations for the minimum fluidization velocity, homogeneous bed expansion rate and the minimum bubbling velocity were proposed.
Good quantitative agreement between DEM and two-fluid predictions of minimum bubbling velocity was also observed when the model was used to predict minimum bubbling velocity, in contrast to the predictions from a non-cohesive, Wen Yu model.
Minimum bubbling velocity was obtained not only by analysis of the experimental differential pressure fluctuation signals, also by the relationship between bed voidage and superficial velocity.
The minimum bubbling velocity, which demarcates the homogeneous and heterogeneous fluidization regimes, plays a pivotal role in gas fluidization of Geldart A particles.
To our best knowledge, this is the first time that the minimum bubbling velocity is correctly predicted by Eulerian Eulerian models, without using an artificial ad-hoc modification of the gas solid interaction force.
Similar(39)
A carefully formulated strategy is presented for establishing the minimum fluidization and minimum bubbling velocities by DEM simulations.
The distinct difference between beds of group A and B particles in the gently bubbling regime reported by Cody et al. (Powder Technol. 87 (1996) 211) is thus likely to be due to changes in the dynamics of the bubbles, as we observed no striking difference between these beds at gas velocities below minimum bubbling conditions.
Minimum detectable velocity.
Minimum fluidizing velocity (m s-1).
Minimum fluidization velocity was determined by measuring pressure drop.
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