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Laser Doppler Anemometry of a Dispersed Mixture of Two Liquids with Similar Densities
by
Nigmatulin, T. R.
in
Accuracy
/ Anemometers
/ Conflicts of interest
/ Doppler effect
/ Drinking water
/ Engineering
/ Flow velocity
/ Lasers
/ Machines
/ Manufacturing
/ Microgravity
/ Mineral oils
/ Mixtures
/ New Technologies in Mechanical Engineering
/ Phase Doppler Anemometer
/ Processes
/ Slip velocity
/ Titanium oxide powders
/ Two phase flow
/ Velocity distribution
/ Velocity measurement
2024
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Laser Doppler Anemometry of a Dispersed Mixture of Two Liquids with Similar Densities
by
Nigmatulin, T. R.
in
Accuracy
/ Anemometers
/ Conflicts of interest
/ Doppler effect
/ Drinking water
/ Engineering
/ Flow velocity
/ Lasers
/ Machines
/ Manufacturing
/ Microgravity
/ Mineral oils
/ Mixtures
/ New Technologies in Mechanical Engineering
/ Phase Doppler Anemometer
/ Processes
/ Slip velocity
/ Titanium oxide powders
/ Two phase flow
/ Velocity distribution
/ Velocity measurement
2024
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Do you wish to request the book?
Laser Doppler Anemometry of a Dispersed Mixture of Two Liquids with Similar Densities
by
Nigmatulin, T. R.
in
Accuracy
/ Anemometers
/ Conflicts of interest
/ Doppler effect
/ Drinking water
/ Engineering
/ Flow velocity
/ Lasers
/ Machines
/ Manufacturing
/ Microgravity
/ Mineral oils
/ Mixtures
/ New Technologies in Mechanical Engineering
/ Phase Doppler Anemometer
/ Processes
/ Slip velocity
/ Titanium oxide powders
/ Two phase flow
/ Velocity distribution
/ Velocity measurement
2024
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Laser Doppler Anemometry of a Dispersed Mixture of Two Liquids with Similar Densities
Journal Article
Laser Doppler Anemometry of a Dispersed Mixture of Two Liquids with Similar Densities
2024
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Overview
The velocity profiles and volumetric concentrations were measured using a laser doppler anemometer for a vertically ascending two-phase liquid–liquid droplet flow in a cylindrical tube, where the density difference between the phases is relatively small. This regime simulates the flow of a two-phase gas–liquid mixture in microgravity. The small phase slip velocity was experimentally measured. New methods have been developed for using a laser doppler anemometer to measure the velocity and volumetric concentration of phases in a dispersed two-phase flow.
Publisher
Pleiades Publishing,Springer Nature B.V
Subject
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