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




This entry explains the fundamental operating principles of heat exchangers and heat pipes. Reprinted from [45], with kind permission from Springer Science+Business Media. [7] introduced porous inserts with high temperature conductivity to improve heat transfer by providing a large surface area for a given volume. Of a newtonian fluid in a vertical asymmetric channel with heat transfer and porous medium. This equation appears in a number of physical applications, such as to describe processes involving fluid flow, heat transfer or diffusion. Abstract: Convection-diffusion equations provide the basis for describing heat and mass transfer phenomena as well as processes of continuum mechanics. Heat pipes are additional types of heat exchange devices that use a porous wick material in a tube structure. The system is assembled in three layers: the porous medium is located . [15] designed a microchip based on this principle. Thermal actuation of microfluidic valves by generating a heating . 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. 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. To simulate large vessels, either constant wall temperature or constant convective heat transfer coefficient (h) have been assumed at the vessel surface to simulate convection. Elshehaway [19] has studied peristaltic transport in an asymmetric channel through a porous medium. Of the nonlinear heat equation usually called the Porous Medium Equation (PME).

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