Fr. 198.00

Principles of Heat Transfer in Porous Media

English · Paperback / Softback

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Description

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Convective heat tranfer is the result of fluid flowing between objects of different temperatures. Thus it may be the objective of a process (as in refrigeration) or it may be an incidental aspect of other processes. This monograph reviews in a concise and unified manner recent contributions to the principles of convective heat transfer for single- and multi-phase systems: 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. After a review of the basic physics and thermodynamics, the book divides the subject into three parts. Part 1 deals with single-medium transfer, specifically with intraphase transfers in single-phase flows and with intramedium transfers in two-phase flows. Part 2 deals with fluid-solid transfer processes, both in cases where the interface is small and in cases where it is large, as well as liquid-liquid transfer processes. Part 3 considers three media, addressing both liquid-solid-solid and gas-liquid-solid systems.

List of contents

1 Introduction.- 1.1 Historical Background.- 1.2 Length, Time, and Temperature Scales.- 1.3 Scope.- 1.4 References.- I Single-Phase Flow.- 2 Fluid Mechanics.- 3 Conduction Heat Transfer.- 4 Convection Heat Transfer.- 5 Radiation Heat Transfer.- 6 Mass Transfer in Gases.- 7 Thermal Nonequilibrium Between Fluid and Solid Phases.- II Two-Phase Flow.- 8 Fluid Mechanics.- 9 Thermodynamics.- 10 Conduction and Convection.- 11 Transport Through Bounding Surfaces.- 12 Phase Change.- Nomenclature.- Citation Index.

Product details

Authors Maasoud Kaviany, Massoud Kaviany
Publisher Springer, Berlin
 
Languages English
Product format Paperback / Softback
Released 25.07.2012
 
EAN 9781461287100
ISBN 978-1-4612-8710-0
No. of pages 712
Dimensions 156 mm x 38 mm x 234 mm
Weight 1132 g
Illustrations XXII, 712 p.
Series Mechanical Engineering Series
Mechanical Engineering Series
Subject Natural sciences, medicine, IT, technology > Physics, astronomy > Thermodynamics

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