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Parametric study of fine particle fluidization under mechanical vibration
Chunbao Xu, Jesse Zhu
Research output
:
Journal Publication
›
Article
›
peer-review
110
Citations (Scopus)
Overview
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Dive into the research topics of 'Parametric study of fine particle fluidization under mechanical vibration'. Together they form a unique fingerprint.
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Keyphrases
Agglomerates
25%
Agglomeration
25%
Amplitude Frequency
25%
Bed Pressure Drop
25%
Bed Voidage
25%
Cohesive Particles
25%
Drop Strength
25%
Effective Means
25%
Fine Particles
100%
Fine Powder
25%
Fluidization
75%
Fluidization Quality
75%
Interparticle Interactions
25%
Mechanical Vibration
100%
Particle Bed
50%
Particle Fluidization
100%
Particle Type
25%
Pressure Drop
25%
Primary Particles
25%
Superficial Gas Velocity
25%
Tensile Strength
50%
Vibration Parameters
25%
Engineering
Effective Mean
12%
Finer Powder
12%
Fluidization
100%
Fluidized Bed
25%
Mechanical Vibration
100%
Parametric Study
100%
Pressure Drop
25%
Superficial Gas Velocity
12%
Ultimate Tensile Strength
25%
Voidage
12%
Chemical Engineering
Fluidization
100%
Fluidized Bed
25%