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Hybrid turbulence simulation of spray impingement cooling: The effect of vortex motion on turbulent heat flux
S. Kondaraju,
Joon S. Lee
Department of Mechanical Engineering
Research output
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Contribution to journal
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Article
›
peer-review
5
Citations (Scopus)
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Dive into the research topics of 'Hybrid turbulence simulation of spray impingement cooling: The effect of vortex motion on turbulent heat flux'. Together they form a unique fingerprint.
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Physics
Area
28%
Cooling
71%
Diameters
14%
Eddy
42%
Flat Plates
14%
Heat
14%
Heat Transfer
28%
Impingement
100%
Latent Heat
14%
Model
14%
Numerical Analysis
14%
Phase Change
14%
Ratios
14%
Region
14%
Reynolds Number
28%
Scale Model
14%
Simulation
42%
Spacing
14%
Speed
14%
Temperature
28%
Turbulence
85%
Value
28%
Vapor
14%
Water
28%
Engineering
Characteristics
14%
Fire Suppression
14%
Flat Plate
14%
Fluid
14%
Heat Flux
85%
Heated Wall
42%
Hybrid
28%
Impingement
100%
Internal Combustion
14%
Large Amount
14%
Latent Heat
14%
Long Time
14%
Maximum Value
14%
Models
14%
Nozzle
28%
Numerical Analysis
14%
Reynolds' Number
28%
Scale Model
14%
Simulation
42%
Spray Water
14%
Surfaces
14%
Temperature
28%
Water
28%