Engineering Heat Transfer
Autor Donatello Annaratoneen Limba Engleză Paperback – 8 noi 2014
Two criteria constitute the foundation of Annaratone’s books, including the present one.
The first one consists of indispensable scientific rigor without theoretical exasperation.
The inclusion in the book of some theoretical studies, even if admirable for their scientific rigor, would have strengthened the scientific foundation of this publication, yet without providing the reader with further applicable know-how.
The second criterion is to deliver practical solution to operational problems.
This criterion is fulfilled through equations based on scientific rigor, as well as a series of approximated equations, leading to convenient and practically acceptable solutions, and through diagrams and tables. When a practical case is close to a well defined theoretical solution, corrective factors are shown to offer simple and correct solutions to the problem.
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Specificații
ISBN-13: 9783642425677
ISBN-10: 3642425674
Pagini: 344
Ilustrații: XIII, 329 p.
Dimensiuni: 155 x 235 x 18 mm
Greutate: 0.48 kg
Ediția:2010
Editura: Springer Berlin, Heidelberg
Colecția Springer
Locul publicării:Berlin, Heidelberg, Germany
ISBN-10: 3642425674
Pagini: 344
Ilustrații: XIII, 329 p.
Dimensiuni: 155 x 235 x 18 mm
Greutate: 0.48 kg
Ediția:2010
Editura: Springer Berlin, Heidelberg
Colecția Springer
Locul publicării:Berlin, Heidelberg, Germany
Public țintă
Professional/practitionerCuprins
to Heat Transfer.- Steady Conduction.- Transient Conduction.- Dimensional Analysis.- Convection.- Radiation.- Heat Exchangers and Tube Banks.- Pressure Drops.
Textul de pe ultima copertă
This book is a generalist textbook; it is designed for anybody interested in heat transmission, including scholars, designers and students.
Two criteria constitute the foundation of Annaratone’s books, including the present one.
The first one consists of indispensable scientific rigour without theoretical exasperation
The inclusion in the book of some theoretical studies, even if admirable for their scientific rigor, would have strengthened the scientific foundation of this publication, yet without providing the reader with further applicable know-how.
The second criterion is to deliver practical solution to operational problems.
This criterion is fulfilled through equations based on scientific rigor, as well as a series of approximated equations, leading to convenient and practically acceptable solutions, and through diagrams and tables. When a practical case is close to a well defined theoretical solution, corrective factors are shown to offer simple and correct solutions to the problem.
After a brief introduction in Chapter 1, heat transfer by conduction in both steady and unsteady state is examined in Chapter 2 as well as Chapter 3.
Chapter 4 develops the dimensional analysis as an indispensable premise to Chapter 5 with its focus on heat transfer by convection.
Chapter 6 analyzes heat transfer by radiation including radiation by flame.
Chapter 7 illustrates the required behavior when examining heat transfer in heat exchangers, as well as tube banks.
Chapter 8 discusses pressure drops in detail.
Appendix A shows a series of Tables relative to thermal characteristics of the materials. Appendix B includes a series of Tables about the corrective factors to be adopted to obtain the real value of the mean temperature difference in design computation.
Appendix C includes a series of Tables about the corrective factors to be adopted toobtain the real value of the exit temperature of the heating fluid in verification computation.
Two criteria constitute the foundation of Annaratone’s books, including the present one.
The first one consists of indispensable scientific rigour without theoretical exasperation
The inclusion in the book of some theoretical studies, even if admirable for their scientific rigor, would have strengthened the scientific foundation of this publication, yet without providing the reader with further applicable know-how.
The second criterion is to deliver practical solution to operational problems.
This criterion is fulfilled through equations based on scientific rigor, as well as a series of approximated equations, leading to convenient and practically acceptable solutions, and through diagrams and tables. When a practical case is close to a well defined theoretical solution, corrective factors are shown to offer simple and correct solutions to the problem.
After a brief introduction in Chapter 1, heat transfer by conduction in both steady and unsteady state is examined in Chapter 2 as well as Chapter 3.
Chapter 4 develops the dimensional analysis as an indispensable premise to Chapter 5 with its focus on heat transfer by convection.
Chapter 6 analyzes heat transfer by radiation including radiation by flame.
Chapter 7 illustrates the required behavior when examining heat transfer in heat exchangers, as well as tube banks.
Chapter 8 discusses pressure drops in detail.
Appendix A shows a series of Tables relative to thermal characteristics of the materials. Appendix B includes a series of Tables about the corrective factors to be adopted to obtain the real value of the mean temperature difference in design computation.
Appendix C includes a series of Tables about the corrective factors to be adopted toobtain the real value of the exit temperature of the heating fluid in verification computation.
Caracteristici
Concise reference for the fast solution of practical problems Well structured and easy to understand Limited to the equations and aspects important for Engineering solutions so key material is very quick and easy to find Includes supplementary material: sn.pub/extras