KAVIANY M PRINCIPLES OF HEAT TRANSFER IN POROUS MEDIA PDF

Although the empirical treatment of fluid flow and heat transfer in porous media is over a century old, only in the last three decades has the. Principles of Heat Transfer in Porous Media by M. Kaviany, , available at Book Depository with free delivery worldwide. Modelling heat transfer in porous media requires to take into account multiple- scale Corresponding M. Quintard: [email protected]

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Principles of Heat Transfer in Porous Media

The theoretical treatment is based on the volume-averaging of the momentum and energy equations with the closure conditions necessary for obtaining solutions. Articles Cited by Co-authors. Progress in Energy and Combustion Science 27 5, Principles of Heat Transfer in Porous Media.

It summarizes the role of the fundamental mechanism, discusses the governing differential equations, describes approximation schemes and phenomenological models, and examines their solutions and applications. We use cookies to give you the best possible experience. The following articles are merged in Scholar. Part 1 deals with single-medium transfer, mesia with intraphase transfers in single-phase flows and with intramedium transfers in two-phase flows.

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International Journal of Heat and Mass Transfer 52, Thermal conductivity decomposition and analysis using molecular dynamics simulations. Check out the top books of the year on our page Best Books of New articles related to this author’s research.

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Principles of Heat Transfer in Porous Media : M. Kaviany :

International Journal of Heat and Mass Transfer 35 4, Part 3 considers three media, addressing both liquid-solid-solid and gas-liquid-solid systems. Description Convective heat tranfer is the result of fluid flowing between objects of different temperatures. This “Cited by” count includes citations to the following articles in Scholar.

Although the empirical treatment of fluid flow and heat transfer in porous media is over a century old, only in the last three decades has the transport in these heterogeneous systems been addressed in detail. Home Contact Us Help Free delivery worldwide. kavkany

Kaviany M. Principles of Heat Transfer in Porous Media

Mass Transfer in Gases. Quasi-Stationary Distributions Pierre Collet. So far, single-phase flows in porous media have been treated or at least formulated satisfactorily, while the subject of two-phase flow and the related heat-transfer in porous media is still in its infancy.

Foundations of Modern Probability Olav Kallenberg. Account Options Sign in. Articles 1—20 Show more.

Massoud Kaviany – Google Scholar Citations

Their combined citations are counted only for the first article. Phonon transport in molecular dynamics simulations: Slip and no-slip temperature boundary conditions at the interface of porous, plain media: Visit our Beautiful Books page and find lovely books for kids, photography lovers and more.

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The system can’t perform the operation now. Product details Format Hardback pages Dimensions x x Quantitative validation of the Boltzmann transport equation phonon thermal conductivity model under the single-mode relaxation time approximation AJH McGaughey, M Kaviany Physical Review B 69 9, Conduction Heat Transfer The Best Transfrr of Selected pages Page Other books in this series. Transport through Bounding Surfaces.

Thus it may be the objective of a process as in refrigeration or it may be an incidental aspect of other processes. New articles by this author.

International Pricniples of Od and Mass Transfer 44 22, This book identifies the principles of transport in porous media and compares the avalaible predictions based on theoretical treatments of various transport mechanisms with the existing experimental results.

New citations to this author. Book ratings by Goodreads. Principles of Heat Transfer in Porous Media. Get my own profile Heatt by View all All Since Citations h-index 54 38 iindex Luciana Wasnievski da Silva de Luca Verified email at umich. My library Help Advanced Book Search. Slip and no-slip velocity boundary conditions at interface of porous, plain media M Sahraoui, M Kaviany International Journal of Heat and Mass Transfer 35 4,

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