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Fully developed laminar natural convection in a vertical parallel plate channel with symmetric uniform wall temperatureWillie, Robert H. 07 June 1996 (has links)
Described in this thesis is an investigation of the fully developed natural convection
heat transfer in a vertical channel formed by two infinitely wide parallel plates
maintained at a uniform wall temperature. Closed-form solutions for the velocity
and temperature profiles are developed along with local and averaged Nusselt
numbers. The local Nusselt number based on bulk temperature is found to be 3.77.
This result is an analog corresponding to 7.60 for fully developed laminar forced
convection in a parallel plate channel with uniform wall temperature boundary
condition. The local Nusselt number based on the ambient temperature is deduced
as a function of flowwise location. Results are compared with existing numerical
and experimental data to find good agreement. / Graduation date: 1997
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A fundamental study of boiling heat transfer mechanisms related to impulse dryingRudemiller, Gary R. 01 January 1989 (has links)
No description available.
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Thermal Performance of Helium-cooled Divertors for Magnetic Fusion ApplicationsWeathers, James Brandon 21 June 2007 (has links)
The heat transfer performance of the Helium-cooled Multi-jet (HEMJ) divertor was investigated. The HEMJ design uses impinging jets to significantly enhance its heat transfer capability. The convective heat transfer coefficient predicted by computational fluid dynamics software packages is on the order of 50,000 W/(m2-K). The high predicted values of the convective heat transfer coefficient necessitated experimental validation, which was the focus of this investigation.
A test section which simulates the thermal performance of the HEMJ divertor was designed, constructed, and instrumented for testing an in air flow loop. The operating conditions of the air flow loop were chosen to match the non-dimensional operating conditions expected for the HEMJ divertor in a post-ITER fusion power plant. The air flow loop experiments were performed for mass flow rates of 2.0 g/s to 8.0 g/s and with incident nominal heat fluxes of 0.8 MW/m2 and 1.0 MW/m2. The angular variation of the heat transfer coefficient was also investigated. Numerical simulations which matched the experimental operating conditions were performed using the computational fluid dynamics software package, FLUENT® 6.2. Comparisons of the experimental and numerical pressure drop, temperature, and heat transfer coefficient were made. The experimental results agreed with the numerical predictions for all operating conditions in this investigation. This provided a strong degree of confidence in using the FLUENT® software package to analyze the HEMJ divertor design.
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Non-fourier heat equations in solids analyzed from phonon statisticsBright, Trevor James. January 2009 (has links)
Thesis (M. S.)--Mechanical Engineering, Georgia Institute of Technology, 2010. / Committee Chair: Zhang, Zhuomin; Committee Member: Kumar, Satish; Committee Member: Peterson, G. P. Part of the SMARTech Electronic Thesis and Dissertation Collection.
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The attenuation and reduction of a simulated hot streak due to mainstream turbulence, hot streak pitch position and film coolingJenkins, Sean Craig 28 August 2008 (has links)
Not available / text
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HEAT TRANSFER FROM THE ROUGHENED SURFACE OF GAS COOLED FAST BREEDER REACTOR FUEL ELEMENTTang, Ing Mao January 1979 (has links)
No description available.
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Perfusion and heat transfer in the canine prostateYuan, David Yang-wei, 1967- 24 May 2011 (has links)
Not available / text
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Inferential measurement of film thicknesses from dynamic temperature measurementDe Schutter, Richard Urbain January 1965 (has links)
No description available.
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Prediction of heat transfer rates for low Reynolds number turbulent flow in tubesOrmand, Lowell Wesner, 1932- January 1965 (has links)
No description available.
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An experimental technique to measure convection in liquid metals /Sismanis, Panagiotis G., 1959- January 1985 (has links)
No description available.
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