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eBay-Artikelnr.:355871541290
Artikelmerkmale
- Artikelzustand
- Book Title
- Principles of Heat Transfer Raj M., Kreith, Frank, Bohn, Mark S.
- ISBN
- 9780495667704
Über dieses Produkt
Product Identifiers
Publisher
Course Technology
ISBN-10
0495667706
ISBN-13
9780495667704
eBay Product ID (ePID)
102923048
Product Key Features
Number of Pages
696 Pages
Publication Name
Principles of Heat Transfer
Language
English
Publication Year
2010
Subject
Mechanical, Mechanics / Thermodynamics
Type
Textbook
Subject Area
Technology & Engineering, Science
Format
Hardcover
Dimensions
Item Height
1.4 in
Item Weight
50.5 Oz
Item Length
9.2 in
Item Width
8.2 in
Additional Product Features
Edition Number
7
Intended Audience
College Audience
Dewey Edition
23
Reviews
The breadth of material in this book is excellent, and the text is well-written, informative in detail and easy to understand., The authors have done an excellent job of paying attention to their audience, defining terms, pacing the presentation and motivating the students.
Dewey Decimal
621.4022
Table Of Content
1. BASIC MODES OF HEAT TRANSFERThe Relation of Heat Transfer to Thermodynamics. Dimensions and Units. Heat Conduction. Convection. Radiation. Combined Heat Transfer Systems. Thermal Insulation. Heat Transfer and the Law of Energy Conservation. References. Problems. Design Problems.2. HEAT CONDUCTIONIntroduction. The Conduction Equation. Steady Heat Conduction in Simple Geometries. Extended Surfaces. Multidimensional Steady Conduction. Transient Heat Conduction. Charts for Transient Heat Conduction. Closing Remarks. References. Problems. Design Problems.3. NUMERICAL ANALYSIS OF HEAT CONDUCTIONIntroduction. One-Dimensional Steady Conduction. One-Dimensional Unsteady Conduction. Two-Dimensional Unsteady and Steady Conduction. Cylindrical Coordinates. Irregular Boundaries. Closing Remarks. References. Problems. Design Problems.4. ANALYSIS OF CONVECTION HEAT TRANSFERIntroduction. Convection Heat Transfer. Boundary Layer Fundamentals. Conservation Equations of Mass, Momentum, and Energy for Laminar Flow over a Flat Plate. Dimensionless Boundary Layer Equations and Similarity Parameters. Evaluation of Convection Heat Transfer Coefficients. Dimensional Analysis. Analytic Solution for Laminar Boundary Layer Flow Over a Flat Plate. Approximate Integral Boundary Layer Analysis. Analogy Between Momentum and Heat Transfer in Turbulent Flow over a Flat Surface. Reynolds Analogy for Turbulent Flow over Plane Surfaces. Mixed Boundary Layer. Special Boundary Conditions and High-Speed Flow. Closing Remarks. References. Problems. Design Problems.5. NATURAL CONVECTION Introduction. Similarity Parameters for Natural Convection. Empirical Correlation for Various Shapes. Rotating Cylinders, Disks, and Spheres. Combined Forced and Natural Convection. Finned Surfaces. Closing Remarks. References. Problems. Design Problems.6. FORCED CONVECTION INSIDE TUBES AND DUCTSIntroduction. Analysis of Laminar Forced Convection In a Long Tube. Correlations for Laminar Forced Convection. Analogy Between Heat and Momentum Transfer in Turbulent Flow. Empirical Correlations for Turbulent Forced Convection. Heat Transfer Enhancement and Electronic-Device Cooling. Closing Remarks. References. Problems. Design Problems. 7. FORCED CONVECTION OVER EXTERIOR SURFACESFlow over Bluff Bodies. Cylinders, Spheres, and Other Bluff Shapes. Packed Beds. Tube Bundles in Cross-Flow. Finned Tube Bundles in Cross-Flow. Free Jets. Closing Remarks. References. Problems. Design Problems.8. HEAT EXCHANGERSIntroduction. Basic Types of Heat Exchangers. Overall Heat Transfer Coefficient. Log Mean Temperature Difference. Heat Exchanger Effectiveness. Heat Transfer Enhancement. Microscale Heat Exchangers. Closing Remarks. References. Problems. Design Problems. 9. HEAT TRANSFER BY RADIATIONThermal Radiation. Blackbody Radiation. Radiation Properties. The Radiation Shape Factor. Enclosures with Black Surfaces. Enclosures with Gray Surfaces. Matrix Inversion. Radiation Properties of Gases and Vapors. Radiation Combined with Convection and Conduction. Closing Remarks. References. Problems. Design Problems.10. HEAT TRANSFER WITH PHASE CHANGEIntroduction to Boiling. Pool Boiling. Boiling in Forced Convection. Condensation. Condenser Design. Heat Pipes. Freezing and Melting. References. Problems. Design Problems. APPENDIX 1: THE INTERNATIONAL SYSTEM OF UNITSAPPENDIX 2: TABLESProperties of Solids. Thermodynamic Properties of Liquids. Heat Transfer Fluids. Liquid Metals. Thermodynamic Properties of Gases. Miscellaneous Properties, Computer Codes, and Error Function. Correlation Equations for Physical Properties. APPEDNIX 3: TRIDIAGONAL MATIRX COMPUTER PROGRAM APPENDIX 4: COMPUTER CODES FOR HEAT TRANSFERAPPENDIX 5: THE HEAT TRANSFER LITERATURE
Synopsis
PRINCIPLES OF HEAT TRANSFER was first published in 1959, and since then it has grown to be considered a classic within the field, setting the standards for coverage and organization within all other Heat Transfer texts. The book is designed for a one-semester course in heat transfer at the junior or senior level, however, flexibility in pedagogy has been provided. Following several recommendations of the ASME Committee on Heat Transfer Education, Kreith, Manglik, and Bohn present relevant and stimulating content in this fresh and comprehensive approach to heat transfer, acknowledging that in today's world classical mathematical solutions to heat transfer problems are often less influential than computational analysis. This acknowledgement is met with the emphasize that students must still learn to appreciate both the physics and the elegance of simple mathematics in addressing complex phenomena, aiming at presenting the principles of heat transfer both within the framework of classical mathematics and empirical correlations.
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