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Fundamentals of Heat and Mass Transfer [Englisch] [Gebundene Ausgabe]

Frank P. Incropera , David P. DeWitt , Theodore L. Bergman , Adrienne S. Lavine
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Kurzbeschreibung

1. September 2006
This bestselling book in the field provides a complete introduction to the physical origins of heat and mass transfer. Noted for its crystal clear presentation and easy-to-follow problem solving methodology, Incropera and Dewitt's systematic approach to the first law develops reader confidence in using this essential tool for thermal analysis. Readers will learn the meaning of the terminology and physical principles of heat transfer as well as how to use requisite inputs for computing heat transfer rates and/or material temperatures.

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Produktinformation

  • Gebundene Ausgabe: 1024 Seiten
  • Verlag: John Wiley & Sons; Auflage: 6. Auflage (1. September 2006)
  • Sprache: Englisch
  • ISBN-10: 0471457280
  • ISBN-13: 978-0471457282
  • Größe und/oder Gewicht: 25,8 x 21,2 x 3,9 cm
  • Durchschnittliche Kundenbewertung: 5.0 von 5 Sternen  Alle Rezensionen anzeigen (1 Kundenrezension)
  • Amazon Bestseller-Rang: Nr. 191.469 in Fremdsprachige Bücher (Siehe Top 100 in Fremdsprachige Bücher)
  • Komplettes Inhaltsverzeichnis ansehen

Produktbeschreibungen

Synopsis

This is the standard for mastering heat and mass transfer. Respected for its readability, comprehensiveness, and relevance, Incropera and DeWitt's text is the recognized standard for learning heat and mass transfer. This text combines detailed coverage with the resources students need to learn the concepts and apply them to solving realistic and relevant problems. Using a rigorous and systematic problem solving methodology, the text is filled with examples and problems that reveal the richness and beauty of the discipline. The 6th Edition introduces coauthors Ted Bergman and Adrienne Lavine, who bring their record of success in teaching and research in heat and mass transfer to the text.

This title includes features such as: expanded coverage of areas of recent interest in heat transfer, including fuel cells and alternative energy devices, electronics cooling, micro scale heat transfer, and biological as well as bioheat transfer; new examples and homework problems which are included for each area; introduction to the concepts of nano scale transport and unified treatment of transient conduction; new material on two phase heat transfer and enhanced internal forced convection; new and revised presentation of mass transfer including applications in materials science and biological engineering; and, new, revised, and updated problems and examples. Model, solve, and explore heat transfer problems. Interactive Heat Transfer and Finite Element Heat Transfer software with User's Guide CD and print booklet, ISBN: 0 471 76115 X - Completely updated with a modern graphical user interface and better graphing tools, Interactive Heat Transfer (IHT) software will help you learn how to build thermal models, solve specific conditions, and explore the effects of multiple parameter variations. IHT is now capable of solving 300+ equations.

The Finite Element Heat Transfer software enhances capabilities for treating steady state and transient one and two dimensional conduction problems.

Buchrückseite

The standard for mastering heat and mass transfer
 
Respected for its readability, comprehensiveness, and relevance, Incropera and DeWitt's text is the recognized standard for learning heat and mass transfer. This text combines detailed coverage with the resources students need to learn the concepts and apply them to solving realistic and relevant problems. Using a rigorous and systematic problem-solving methodology, the text is filled with examples and problems that reveal the richness and beauty of the discipline.
 

The 6th Edition introduces coauthors Ted Bergman and Adrienne Lavine, who bring their record of success in teaching and research in heat and mass transfer to the text.
 
New Features
* Expanded coverage of areas of recent interest in heat transfer, including fuel cells and alternative energy devices, electronics cooling, micro-scale heat transfer, and biological as well as bioheat transfer. New examples and homework problems are included for each area.
* Introduction to the concepts of nano-scale transport and unified treatment of transient conduction.
* New material on two-phase heat transfer and enhanced internal forced convection.
* New and revised presentation of mass transfer including applications in materials science and biological engineering.
* New, revised, and updated problems and examples.
 
Model, solve, and explore heat transfer problems:
 

Interactive Heat Transfer and Finite Element Heat Transfer software with User's Guide
CD and print booklet, ISBN: 0-471-76115-X
 

Completely updated with a modern graphical user interface and better graphing tools, Interactive Heat Transfer (IHT) software will help you learn how to build thermal models, solve specific conditions, and explore the effects of multiple parameter variations. IHT is now capable of solving 300+ equations. The Finite Element Heat Transfer software enhances capabilities for treating steady-state and transient one- and two-dimensional conduction problems.

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5.0 von 5 Sternen Great book - must have 13. Juni 2012
Format:Gebundene Ausgabe
Ein absoluter Klassiker und Pflicht für jeden Thermodynamiker. Auf fast 1.000 Seiten werden nicht nur die Grundlagen der Wärmeübertragung dargestellt, sondern auch viele Spezialprobleme im Detail beleuchtet. Das Buch eignet sich gleichermaßen als Nachschlagewerk für die Lösung von Standardproblemen wie z.B. die Umströmung von Zylindern und Kugeln als auch für sehr spezielle Wärmeübertragungsprobleme an unregelmäßigen Geometrien.Besonders zu betonen ist die ausführliche mathematische Herleitung vieler Zusammenhänge, die in anderen Büchern zum Thema Wärmeübertragung einfach nur postuliert werden. Jedes Kapitel enthält mehrere Dutzend Übungsaufgaben, viele davon mit Musterlösungen. Zusammenfassend kann gesagt werden, dass dieses Buch zu den wichtigsten in unserer Bibliothek gehört.
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Die hilfreichsten Kundenrezensionen auf Amazon.com (beta)
Amazon.com: 4.3 von 5 Sternen  39 Rezensionen
5 von 5 Kunden fanden die folgende Rezension hilfreich
3.0 von 5 Sternen jomud 22. November 2009
Von jomud - Veröffentlicht auf Amazon.com
Format:Gebundene Ausgabe|Verifizierter Kauf
I find this book very annoying. Although it reads reasonably well, the authors bury significant concepts in unexpected areas of the text. I have found it tremendously confusing when to use film temperature, mean temperature, surface temperature, etc. When to use them is not listed in the equations, sometimes they are buried in an example problem several pages later. One of the biggest annoyances for me is in chapter 7 (page 440). For heat flow through banks of tubes, they say to use the mean of the inlet and outlet temps to calculate the Nusselt number (eq 7.64). They make no mention as to how to solve if you do not know the outlet temp. Buried in example 7.7, you might notice that they use the inlet temperature to solve for the Nusselt number! This is not what the description of equation 7.64 says. Buried in the fine print of example 7.7 on page 446 is that you may need to iterate values until you get the desired accuracy (and if you do not know the outlet temp - they do not say this). Why don't they just come out and say this in the discussion and theory, rather than bury big ideas in the examples? Another example is in chapter 9 for vertical channels. They do not say anything about how to come up with a basic spacing, S. If you look at example 9.1 an equation is provided for thermal boundary layer thickness. Is "S" equal to twice this value? The reason I am on-line is I am looking for another textbook that can explain concepts better. Much of this book is ok to read, so I would not give it a terrible rating. It is a difficult subject that could be made easier. I also find it ridiculous that they do not provide any problems with answers in the back of the book. What good does it do to spend hours on a problem and not know if you have a good answer? At least a handful of problems would be helpful.
2 von 2 Kunden fanden die folgende Rezension hilfreich
5.0 von 5 Sternen I hated it in college, but love it now. 3. Oktober 2011
Von Benjamin P. L. Turner - Veröffentlicht auf Amazon.com
Format:Gebundene Ausgabe
I honestly didn't enjoy this book when I was in school, but now working as a mechanical engineer in the chemical sector, I can honestly say that this book is worth its weight in gold. If you're ever going to solve real problems (tube exchangers, tube bundle cross flow), then this is the book you need to keep on your shelf. Even if solving complex problems, the book can give you basic theory for which you to expand on with more accurate models. I'd recommend to any chemical, mechanical or electric engineer that needs to deal with heat transfer. If you're a student, then pay extra attention, because the theories in this book pop up daily.
5.0 von 5 Sternen Great! 20. August 2014
Von anon - Veröffentlicht auf Amazon.com
Format:Gebundene Ausgabe|Verifizierter Kauf
I love this book and I loved this class. The book is well written and someone with a good handle on calculus (including multivariable calculus) should be able to follow most of the arguments. About midway through the book, some series solutions to differential equations are used for estimation purposes, but we didn't cover too much of that in my course. The book is beautifully written with a big emphasis on the physical understanding of the three transfer processes (i.e., conduction, convection, radiation), rather than just memorization of a bunch of equations.
4.0 von 5 Sternen good 18. März 2014
Von Maher - Veröffentlicht auf Amazon.com
Format:Gebundene Ausgabe|Verifizierter Kauf
overall it was good book as advertised
I recommend others to buy it although it is an old edition but it is the same as the 7th edition so it is good as a reference book
2.0 von 5 Sternen Very challenging read 18. Dezember 2013
Von Marcus - Veröffentlicht auf Amazon.com
Format:Gebundene Ausgabe|Verifizierter Kauf
This book is definatly for a mechanical engineer. I used it for a biomedical engineering thermodynamics course, and damn was it hard to read. I don't know why, but they show you about ten different ways to represent equations, and some are helpful and some or not. Very very confusing unless your professor points out which to use. The calculus isnt too heavy in the book but is used in long complicated derivations that skip steps. A few sections do require integration. The concepts aren't too bad and are well defined, but my god the math behind it is presented so skewed that it's a wonder anyone would publish it. 99% of the material in this book is useless. Art least to a BME like me, so I'm probably biased here. Whoever wrote it was smart, but can't teach....kinda familiar with my college experiences.
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