Analytical heat transfer

Author(s)

Bibliographic Information

Analytical heat transfer

Je-Chin Han, Lesley M. Wright

CRC Press, 2022

2nd ed

  • : hbk

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Includes bibliographical references and index

Summary: "Analytical Heat Transfer explains how to analyze and solve conduction, convection, and radiation heat transfer problems. It enables students to tackle complex engineering heat transfer problems prevalent in practice. Covering heat transfer in high-speed flows and unsteady highly turbulent flows, the book also discusses enhanced heat transfer in channels, heat transfer in rotating channels, numerical modeling for turbulent flow heat transfer, and thermally developing heat transfer in a circular tube. The second edition features new content on Duhamel's superposition method, Green's function method for transient heat conduction, finite-difference method for steady state and transient heat conduction in cylindrical coordinates, and laminar mixed convection. It includes three new chapters on boiling, condensation, and heat exchanger analysis, in addition to end-of-chapter problems.

Description and Table of Contents

Description

Analytical Heat Transfer explains how to analyze and solve conduction, convection, and radiation heat transfer problems. It enables students to tackle complex engineering heat transfer problems prevalent in practice. Covering heat transfer in high-speed flows and unsteady highly turbulent flows, the book also discusses enhanced heat transfer in channels, heat transfer in rotating channels, numerical modeling for turbulent flow heat transfer, and thermally developing heat transfer in a circular tube. The second edition features new content on Duhamel's superposition method, Green's function method for transient heat conduction, finite-difference method for steady state and transient heat conduction in cylindrical coordinates, and laminar mixed convection. It includes two new chapters on laminar-to-turbulent transitional heat transfer and turbulent flow heat transfer enhancement, in addition to end-of-chapter problems. The book bridges the gap between basic heat transfer undergraduate courses and advanced heat transfer graduate courses for a single semester of intermediate heat transfer, advanced conduction/radiation heat transfer, or convection heat transfer. Features: Focuses on analyzing and solving classic heat transfer problems in conduction, convection, and radiation Covers 2-D and 3-D view factor evaluation, combined radiation with conduction and/or convection, and gas radiation optically thin and optically thick limits Features updated content and new chapters on mass and heat transfer analogy, thermally developing heat transfer in a circular tube, laminar-turbulent transitional heat transfer, unsteady highly turbulent flows, enhanced heat transfer in channels, heat transfer in rotating channels, and numerical modeling for turbulent flow heat transfer Provides step-by-step mathematical formula derivations, analytical solution procedures, and demonstration examples Includes end-of-chapter problems with an accompanying Solutions Manual for instructors This book is ideal for undergraduate and graduate students studying basic heat transfer and advanced heat transfer.

Table of Contents

1. Heat Conduction Equations. 2. 1-D Steady-State Heat Conduction. 3. 2-D Steady-State Heat Conduction. 4. Transient Heat Conduction. 5. Numerical Analysis in Heat Conduction. 6. Heat Convection Equations. 7. External Forced Convection. 8. Internal Forced Convection. 9. Natural Convection. 10. Turbulent Flow Heat Transfer. 11. Fundamental Radiation. 12. View Factors. 13. Radiation Exchange in a Nonparticipating Medium. 14. Radiation Transfer through Gases. 15. Laminar-Turbulent Transitional Heat Transfer. 16. Turbulent Flow Heat Transfer Enhancement.

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Details

  • NCID
    BD00464233
  • ISBN
    • 9780367758974
  • LCCN
    2021059841
  • Country Code
    us
  • Title Language Code
    eng
  • Text Language Code
    eng
  • Place of Publication
    Boca Raton, FL
  • Pages/Volumes
    xix, 575 p.
  • Size
    25 cm
  • Classification
  • Subject Headings
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