Principles of Heat Transfer in Porous Media. Massoud Kaviany

Principles of Heat Transfer in Porous Media


Principles.of.Heat.Transfer.in.Porous.Media.pdf
ISBN: 0387945504,9780387945507 | 726 pages | 19 Mb


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Principles of Heat Transfer in Porous Media Massoud Kaviany
Publisher: Springer




Many phenomena may ensue from propagation of an ultrasonic wave into a fluid and more particularly into a liquid medium. [7] introduced porous inserts with high temperature conductivity to improve heat transfer by providing a large surface area for a given volume. The system is assembled in three layers: the porous medium is located . Of a newtonian fluid in a vertical asymmetric channel with heat transfer and porous medium. Principles of Heat Transfer in Porous Media. Elshehaway [19] has studied peristaltic transport in an asymmetric channel through a porous medium. Prerequisites: PETE 311; CVEN 305; MEEN 315; MATH 308. Slattery (1972) and Kaviany (1995) described models for flow and heat transfer in porous media using volume-averaging techniques. (1996), The Underground Disposal Of Carbon Dioxide, British Geological Survey, Keyworth, Nottingham, U.K. [15] designed a microchip based on this principle. Influence of partial slip on the peristaltic flow in a porous medium and a mathematical model of peristalsis in tubes through a porous medium investigated by Hayat, principle of peristaltic pumping to transport fluids without internal moving parts. Reprinted from [45], with kind permission from Springer Science+Business Media. Advanced coal technologies, fluidised bed combustion and heat transfer, renewable energy systems, thermohydraulics in thermal and nuclear power devices, heat transfer in porous media, bio-thermofluids, numerical heat transfer, nano- technology, microscale heat transfer, These are computational methods in engineering, theory of mechanisms, theory of vibrations, principles of product design, design with advanced materials and advanced mechanics of solids. Czernichowski-Lauriol, I., Harrison, R., Lindeberg, E., Summerfield, I.R., Rochelle, C., Schwarzkopf, T., Kaarstad, O., Berger, B. Principles of Heat Transfer in Porous Media (2nd edition) [Repost] download free. Reynolds Number (Moody diagram); Newtonian/Non-Newtonian fluids; flow in porous media (Darcy's law and Non-Darcy flow). Thermal actuation of microfluidic valves by generating a heating . Fitting and interpolation; computer applications; introduction to the principles of numerical simulation methods. (1995) Principles of Heat Transfer in Porous Media, Spring-Verlag, New York.

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