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Oscillatory flow of droplets in capillary tubes. Part 2. Constricted tubes
D. R. Graham
,
J. J.L. Higdon
Chemical and Biomolecular Engineering
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Dive into the research topics of 'Oscillatory flow of droplets in capillary tubes. Part 2. Constricted tubes'. Together they form a unique fingerprint.
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Keyphrases
Constriction
100%
Capillary Tube
100%
Oscillatory Flow
100%
Constricted Tube
100%
Mean Pressure Gradient
100%
Body Force
50%
Oscillatory Frequency
50%
Effective Means
50%
Numerical Computation
50%
Droplet Velocity
50%
Fluid Droplet
50%
Mean Flow Rate
50%
Remobilization
50%
Critical Frequency
50%
Unsteady Dynamics
50%
Critical Pressure Gradient
50%
Quasi-steady Model
50%
Engineering
Oscillatory Motion
100%
Pressure Gradient
100%
Oscillating Flow
100%
Capillary Tube
100%
Flow Rate
33%
Body Force
33%
Effective Mean
33%
Numerical Computation
33%
Critical Pressure
33%
Combined Action
33%
Flow Velocity
33%
Critical Wavelength
33%
Mathematics
Pressure Gradient
100%
Wide Range
33%
Numerical Computation
33%
Flow Rate
33%
Body Force
33%
Flow Velocity
33%