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Effect of high freestream turbulence with large length scale on blade heat/mass transfer
H. P. Wang
, R. J. Goldstein
, S. J. Olson
Mechanical Engineering
Research output
:
Chapter in Book/Report/Conference proceeding
›
Conference contribution
1
Scopus citations
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Dive into the research topics of 'Effect of high freestream turbulence with large length scale on blade heat/mass transfer'. Together they form a unique fingerprint.
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Keyphrases
Heat Mass Transfer
100%
Free-stream Turbulence
100%
Turbulence Level
33%
Mass Transfer Rate
33%
Boundary Layer Transition
16%
Turbulence
16%
Turbulent Boundary Layers
16%
Turbine Blade
16%
Laminar Boundary Layer
16%
Linear Cascade
16%
Naphthalene Sublimation Method
16%
Low Reynolds number
16%
Suction Surface
16%
Reynolds number
16%
Integral Length Scale
16%
Engineering
Length Scale
100%
Mass Transfer Rate
66%
Reynolds' Number
33%
Laminar Boundary Layer
33%
Blade Turbine
33%
Integral Length Scale
33%
Suction Surface
33%
Turbulent Boundary Layer
33%
Boundary Layer Transition
33%
Leading Edge
33%