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The book provides an easy way to understand the fundamentals of heat transfer. The reader will acquire the ability to design and analyze heat exchangers. Without extensive derivation of the fundamentals, the latest correlations for heat transfer coefficients and their application are discussed. The following topics are presented - Steady state and transient heat conduction - Free and forced convection - Finned surfaces - Condensation and boiling - Radiation - Heat exchanger design - Problem-solving After introducing the basic terminology, the reader is made familiar with the different mechanisms of heat transfer. Their practical application is demonstrated in examples, which are available in the Internet as MathCad files for further use. Tables of material properties and formulas for their use in programs are included in the appendix. This book will serve as a valuable resource for both students and engineers in the industry.
The authors experience indicates that students, after 40 lectures and exercises?of 45 minutes?based?on this textbook, have proved capable of designing independently complex heat exchangers such as for cooling of rocket propulsion chambers, condensers and evaporators for heat pumps.
This book explains how to design and analyze heat exchangers, offering the latest correlations for heat transfer coefficients and their application. Covers steady state and transient heat conduction; free and forced convection; heat exchanger design and more.1. Introduction and definitions.- 2. Heat conduction in static bodies.- 3.Forced convection.- 4. Free convection.- 5. Condensation.- 6. Boiling heat transfer.- 7. Radiation.- 8. Heat exchanger.- 9. Appendix.- 10. Index.- 11.Literature.Peter von B?ckh: University Karlsruhe, Germany: MS in physics, PHD in thermal engineering under Prof. Dr. Ing. J. M. Chawla, theme critical two phase flow. 14 years with BBC/ABB, Switzerland: development of steam power plant heat exchanglƒ½
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