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Turbulent pipe flow of an internally heat generating fluid
R. B. Kinney
, E. M. Sparrow
Mechanical Engineering
Research output
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Contribution to journal
›
Article
›
peer-review
21
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Scopus citations
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Keyphrases
Reynolds number
100%
Temperature Difference
100%
Turbulent pipe Flow
100%
Heat Generating
100%
Bulk Temperature
100%
Prandtl number
66%
Fully Developed
66%
Turbulent Regime
33%
Aqueous Solution
33%
Heat Transfer Characteristics
33%
Analytical Solution
33%
Numerical Results
33%
Sodium Chloride
33%
Diffusivity
33%
Analytical Results
33%
Heat Transfer Measurement
33%
Thermal Entrance Region
33%
Turbulent Heat Transfer
33%
Working Fluid
33%
Eddy Diffusivity
33%
Fully Turbulent
33%
Analytical Calculation
33%
Chloride Salt
33%
Electrical Dissipation
33%
Special Care
33%
Engineering
Pipeline Fluid Flow
100%
Reynolds' Number
100%
Bulk Temperature
100%
Prandtl Number
66%
Experimental Measurement
33%
Experimental Result
33%
Analytical Result
33%
Eddy Diffusivity
33%
Thermal Entrance Region
33%
Sodium
33%
Aqueous Solution
33%
Diffusion
33%
Chemical Engineering
Prandtl Number
100%
Diffusion
100%
Sodium Chloride
50%