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Confined jet impingement with boiling on a variety of enhanced surfaces
Matthew J. Rau
, Suresh V. Garimella
Mechanical Engineering
Research output
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Contribution to journal
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Article
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peer-review
40
Scopus citations
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Keyphrases
Surface Enhancement
100%
Flat Surface
100%
Heat Transfer Coefficient
66%
Microporous Layer
66%
Target Surface
66%
Jet Impingement
66%
Pin Fin
66%
Hybrid Surface
66%
Performance Characteristics
33%
Performance Enhancement
33%
Pressure Drop
33%
Dielectric
33%
High-temperature Heat Transfer
33%
Pumping Power
33%
Low Flow Rate
33%
Transfer Pressure
33%
High Heat Flux
33%
Uniform Temperature
33%
Volumetric Flow Rate
33%
Heat Transfer Performance
33%
Working Fluid
33%
Total Pressure Drop
33%
Thermal Management
33%
Critical Heat Flux
33%
Heat Transfer Factor
33%
Copper Target
33%
Maximum Heat Flux
33%
Jet Orifice
33%
HFE-7100
33%
Engineering
Operation Phase
100%
Confined Jet
100%
Heat Transfer Coefficient
66%
Pressure Drop
66%
Target Surface
66%
Flow Rate
33%
Dielectrics
33%
Performance Characteristic
33%
Mm Diameter
33%
Low Flow Rate
33%
Orifice
33%
Macroscale
33%
Pumping Power
33%
Flux Component
33%