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Optimizing the design of waveplates for gas-liquid separation
D. Wilkinson
School of Engineering & Physical Sciences
Research output
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Contribution to journal
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Article
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peer-review
16
Citations (Scopus)
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Earth and Planetary Sciences
Air
14%
Air Duct
42%
Correlation
14%
Datum
14%
Description
14%
Diameter
14%
Gas Streams
14%
Liquid
14%
Loss
14%
Plain
28%
Radii
14%
Ratio
14%
Separator
100%
Side
14%
Size
14%
Sprayer
14%
Water
14%
Width
14%
Engineering
Bends
28%
Collection Efficiency
14%
Correlation
14%
Design
42%
Experimental Measurement
14%
Gas Stream
14%
Larger Drop
14%
Liquid Gas
14%
Losses
14%
Low Pressure
14%
Performance
14%
Pressure Drop
14%
Pressure Loss
14%
Radius
14%
Separators
100%
Water
14%
Chemistry
Flow
14%
Liquid
14%
Particle Size
14%
Pressure Drop
14%
Procedure
14%
Separator
100%
Spray
14%
Water Type
14%
Physics
Air
14%
Correlation
14%
Diameters
14%
Ducts
42%
Gas Streams
14%
Liquids
14%
Performance
14%
Ratios
14%
Sides
14%
Water
14%
Width
14%