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Fundamental principles of heat transfer

Author: Stephen Whitaker
Publisher: New York : Pergamon Press, ©1977.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Database:WorldCat
Summary:
Fundamental Principles of Heat Transfer introduces the fundamental concepts of heat transfer: conduction, convection, and radiation. It presents theoretical developments and example and design problems and illustrates the practical applications of fundamental principles. The chapters in this book cover various topics such as one-dimensional and transient heat conduction, energy and turbulent transport, forced  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Whitaker, Stephen.
Fundamental principles of heat transfer.
New York : Pergamon Press, ©1977
(DLC) 75041701
(OCoLC)1993206
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Stephen Whitaker
ISBN: 9781483159430 1483159434
OCLC Number: 570286149
Reproduction Notes: Electronic reproduction. [S.l.] : HathiTrust Digital Library, 2010. MiAaHDL
Description: 1 online resource (xv, 556 pages) : illustrations
Details: Master and use copy. Digital master created according to Benchmark for Faithful Digital Reproductions of Monographs and Serials, Version 1. Digital Library Federation, December 2002.
Contents: Front Cover; Fundamental Principles of Heat Transfer; Copyright Page; Table of Contents; Preface; Nomenclature; The Author; Design Problem I; Chapter 1. Introduction; 1.1 The Continuum Postulate; 1.2 The Laws of Continuum Physics; 1.3 Mechanisms of Energy Transport; 1.4 Units; 1.5 Design Objectives; PROBLEMS; REFERENCES; Design Problem II; Chapter 2. Steady, One-Dimensional Heat Conduction; 2.1 The Fundamental Energy Postulate; 2.2 Steady Heat Conduction; 2.3 Steady, One-Dimensional Heat Conduction in Rectangular Coordinates. 2.4 Steady, One-Dimensional Heat Conduction in Cylindrical Coordinates2.5 Steady, One-Dimensional Heat Conduction in Spherical Coordinates; 2.6 Extended Surfaces The Rectangular Fin; 2.7 The Annular Fin; 2.8 Fin Effectiveness; 2.9 Order-of-Magnitude Analysis; 2.10 An Application of Order-of-Magnitude Analysis; PROBLEMS; REFERENCES; Design Problem lII Chapter 3. Two -Dimensional, Steady Heat Conduction; 3.1 Rectangular Coordinates; 3.2 Cylindrical Coordinates; 3.3 Numerical Solution of Two-Dimensional Heat Conduction Problemsin Rectangular Coordinates. 3.4 Numerical Solution of Two-Dimensional Heat Conduction Problemsin Cylindrical Coordinates3.5 Graphical Solution for Steady, Two-Dimensional Heat Conduction; PROBLEMS; REFERENCES; Design Problem IV; Chapter 4. Transient Heat Conduction; 4.1 The Governing Equation for Transient Heat Conduction; 4.2 Transient Heat Conduction for Bodies with Negligible Internal Resistance; 4.3 Transient Heat Conduction in a Semi-Infinite Slab; 4.4 Periodic Processes-The Semi-Infinite Slab; 4.5 Transient Heat Conduction in Rectangular Coordinates; 4.6 Transient Heat Conduction in Cylindrical Coordinates. 4.7 Numerical Solution of Transient, One-Dimensional Heat Conduction Problems in Rectangular Coordinates4.8 Flux Boundary Conditions for Finite-Difference Equations; 4.9 Numerical Solution of Transient, One-Dimensional Heat Conduction Problems in Cylindrical Coordinates; PROBLEMS REFERENCES; Design Problem V; Chapter 5. The Basic Equations of Momentum and Energy Transfer; 5.1 Kinematics; 5.2 The Laws of Mechanics; 5.3 The Energy Principle; 5.4 The Thermal Energy Equation; 5.5 The Thermal Energy Equation for General Flow Processes; 5.6 Dimensional Analysis for Forced-Convection Heat Transfer. 5.7 The Momentum and Energy Equations for Laminar Boundary Layer Flow5.8 Exact Solution of the Laminar Boundary Layer Equations; 5.9 Approximate Solution of the Laminar Boundary Layer Equations; 5.10 Dimensional Analysis for Free Convection; 5.11 Boundary Layer Analysis of Free Convection; PROBLEMS; REFERENCES; Design Problem VI; Chapter 6. Turbulent Flow; 6.1 Time Averages; 6.2 Time-Averaged Form of the Transport Equations; 6.3 Turbulent Momentum and Energy Transport; 6.4 Turbulent Transport Coefficients; 6.5 Hydrodynamic Mixing Length Theory; PROBLEMS; REFERENCES; Design Problem VII.
Responsibility: Stephen Whitaker.

Abstract:

Fundamental Principles of Heat Transfer introduces the fundamental concepts of heat transfer: conduction, convection, and radiation. It presents theoretical developments and example and design problems and illustrates the practical applications of fundamental principles. The chapters in this book cover various topics such as one-dimensional and transient heat conduction, energy and turbulent transport, forced convection, thermal radiation, and radiant energy exchange. There are example problems and solutions at the end of every chapter dealing with design problems. This book is a valuable int.

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