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  • 8 Similar Profiles
Heat transfer Engineering & Materials Science
heat transfer Physics & Astronomy
Natural convection Engineering & Materials Science
Heat transfer coefficients Engineering & Materials Science
Reynolds number Engineering & Materials Science
free convection Physics & Astronomy
Flow of fluids Engineering & Materials Science
Ducts Engineering & Materials Science

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Research Output 1957 2019

Application of an intermittency model for laminar, transitional, and turbulent internal flows

Abraham, J. P., Sparrow, E. M., Gorman, J. M., Zhao, Y. & Minkowycz, W. J., Jul 1 2019, In : Journal of Fluids Engineering, Transactions of the ASME. 141, 7, 071204-1.

Research output: Contribution to journalArticle

Reynolds number
Flow of fluids
Turbulence
Friction

Convective heat transfer coefficients on all external surfaces of a generic residential building in crossflow

Gorman, J. M., Sparrow, E. M., Katz, S. D. M. & Minkowycz, W. J., Jan 17 2019, In : Numerical Heat Transfer; Part A: Applications. 75, 2, p. 71-90 20 p.

Research output: Contribution to journalArticle

Cross-flow
Convective Heat Transfer
Heat Transfer Coefficient
convective heat transfer
heat transfer coefficients
heat exchangers
Nusselt number
Heat exchangers
tubes
Heat transfer

Tissue burns due to contact between a skin surface and highly conducting metallic media in the presence of inter-tissue boiling

Abraham, J. P., Stark, J., Gorman, J. M., Sparrow, E. M. & Minkowycz, W. J., Mar 1 2019, In : Burns. 45, 2, p. 369-378 10 p.

Research output: Contribution to journalArticle

Burns
Skin
Temperature
Metals
Thermal Conductivity

Design analysis of fluid-flow through perforated plates

Celik, N., Bayazit, Y., Turgut, E. & Sparrow, E. M., Jan 1 2018, In : Thermal Science. 22, 6, p. 3091-3098 8 p.

Research output: Contribution to journalArticle

Perforated plates
Flow of fluids
Taguchi methods
Porosity
Analysis of variance (ANOVA)