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PDF Download Radiative Heat Transfer

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Radiative Heat Transfer

Radiative Heat Transfer


Radiative Heat Transfer


PDF Download Radiative Heat Transfer

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Radiative Heat Transfer

Review

Jennifer X. Wen, Kingston University, UK:"This book can simply be summed up as the 'bible' for thermal radiation and its calculation methods.""I expect to see it on the bookshelf of every university and major research laboratory.""Because of the level of details the book has gone into in each specific topic, this book will be especially suitable for occasions where students are expected to read extensively outside the classroom as part of the syllabus."Andrei Fedorov, Georgia Tech:"The book is up-to-date and provides excellent coverage.""Excellent writing style with nice historical highlights. The most important asset of the book is its clear and consistent notation used throughout the manuscript. It is probably the most comprehensive treatment of the topic that is currently in existence. It has up-to-date bibliography and very sound treatment of electromagnetism foundation of thermal radiation." Peter Wong, Tufts University:"Modest has compiled together a comprehensive and detailed understanding in thermal radiative heat transfer for graduate students and practicing engineers."Yildiz Bayazitoglu, Rice University:"Very much up to date and has a good selection of topics.""Comprehensive, detailed, but simplified.""The author presented the radiative heat transfer and its interactions with other modes of heat transfer in a coherent and integrated manner emphasizing the fundamentals...The book is directed towards the graduate level students as well as towards the scientists and engineers already engaged in subject matter."

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From the Back Cover

Radiative Heat Transfer, Third Edition is a comprehensive reference for scientists, engineers, and graduate students working in the field of heat transfer and thermal radiation. This new edition has been updated to include significant advances and the emergence of new research topics over the last decade. Acknowledged in the field as the industry standard resource for radiative heat transfer, the third edition provides basic physics and computational tools, such as models, methodologies, and calculations that are of pivotal importance in energy, combustion, aeronautics, nanotechnology, lighting, and environmental applications. Written in modular fashion, the new edition of Radiative Heat Transfer is now divided into 24 chapters, offering complete coverage comprising the four major areas in the field: surface properties; surface transport; properties of participating media; and transfer through participating media. Each chapter shows the development of all analytical methods in substantial detail, aided by numerous examples and chapter-end problems to show how the developed relations may be applied in practice. This makes the new edition an ideal resource for classroom use, for self-study, as well as for reference. The updated and expanded third edition features: • An all-new chapter on nanoscale radiative heat transfer • Significant new developments in conventional radiative transfer equation (RTE) solution methods • Greatly expanded coverage of statistical RTE (Monte Carlo) solutions • Significant new information on inverse radiation • More computational methods and up-to-date computer codes, now with many in Matlab® versions • Significant new developments in spectral radiation properties and models, including nonequilibrium • Discussion of modern applications and materials, including interaction with conduction, convection, combustion and turbulence • Available solutions manual to adopting instructors and student materials

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Product details

Hardcover: 904 pages

Publisher: Academic Press; 3 edition (February 15, 2013)

Language: English

ISBN-10: 9780123869449

ISBN-13: 978-0123869449

ASIN: 0123869447

Product Dimensions:

9 x 1.5 x 11 inches

Shipping Weight: 5 pounds (View shipping rates and policies)

Average Customer Review:

4.0 out of 5 stars

13 customer reviews

Amazon Best Sellers Rank:

#1,111,178 in Books (See Top 100 in Books)

For anyone really interested in radiative heat transfer, especially at high temperatures, this book covers it all and the third edition has been brought fully up to date on advances in the field. I've found everything I wanted to know about gas and solids heat transfer in this text, including integrated conduction and convection heat transfer. I've found that the simple equation development from first principals on upward to advanced modeling concepts fits my study style exactly, neither too much nor too little is covered, and all in a logical progression. The topic development is so clear and comprehensive that this is the only resource that I'll use.

Has been a very useful textbook in my Radiative Heat Transfer Course! It's nice to have a hard copy to flip through instead of an electronic version.

This is very informative. The book is quite advanced, yet it describes radiation in a simplistic manner which builds on itself. I bought this book to study radiation in participating media (chapters 10, 21, and 22 specifically) and I am very happy with the purchase. I would highly recommend the book to anyone looking for an advanced book on radiative heat transfer.

I come from a Computer Graphics background and I wish I had this book years ago. I highly recommend it for the level of discussion and the mathematics presented. I particularly enjoyed the fact that it explained the Fresnel equations for non-absorbing materials (AKA metals). I was able to make a pretty decent simulation of Gold with the information in this book. As a whole, it has a ton of material in it.

I got this book last year and before buying it, I checked out the older version from my graduate school's library. It is very advanced textbook, covering a lot of topics and theories. The author of this book, Dr. Modest was my undergrad Heat and Mass Transfer professor at UC Merced. I really enjoyed his class. Also, last two chapters of Fundamentals of Heat and Mass Transfer undergrad text book talks about the radiative heat transfer and this book talks deeply about this concept.

The book discusses radiation exchange topics, in some detail.It does not discuss the solution of practical radiation heat transfer problems.Examples in the book emphasize reflection, absorption, emission, and scattering,in the various forms that they might occur (as in gases, liquids, and from surfaces).The discussion includes F-factors, and various methods for deriving them.The majority of examples involve parallel planes, or the use of "enclosures,"typically with a "participating medium" in between the surfaces.The book shows techniques for deriving expressions for gray behavior and forvarious forms of non-gray behavior, including general spectral behavior.The techniques are spread throughout the book, in different chapters.The reader must pay very close attention to the "enclosure" context applicablein each specific chapter.Temperature change in a system, due to the effect of energy transfer, andthe thee-dimensional temperature field resulting from such energy transfer,is not the main topic in this book. The classic conservation of energy equationinvolving system change via thermal radiation, convection, and conductionis mentioned a few times [26,282,680]. For practical applications, the authorrefers the reader to "applications ... reported in the literature" [680].A few examples show how to derive expressions involving heat flux orheat flow rate explicitly [such as 164,166,171,177,213,218-219,282].Many example cases are distinctive for the detail in mathematical exposition,accompanied by numerous supporting references.However, the utility sometimes seems to be disconnected from the real world.For instance, a large number of examples involve parallel planes, or "black" surfaces.For instance, the non-dimensionalized graphs of convective heat transfer coefficient,and flow over the flat plate [698,699], while properly constructed mathematically,are not representative of professional heat transfer practice in general.For instance, the classic Hollands V-corrugated surface is discussed [107] for reflectivesurfaces, followed by a broad-based discussion for "apparent" absorptance and emittance [215]on the V-corrugated surface [213]. In the example [214], the author discusses apparent emissivitydue to the geometry, which is indeed correct, but surprisingly, he does not discuss theseminal tradeoff between the "flat black" surface and the "selective surface," as itoccurs in the V-corrugated case, in particular.The author does not seem to understand why heat transfer engineers must, in practice,employ certain analytical methods in a real job environment [276 and 277].The terms "of course" and "obviously" occur too many times in the book.

I thought the content was very helpful to my research. I would recommend this material for any graduate student in Mechanical Engineering but the actual condition of the book (as new as it may look) is actually quite terrible. This product might actually be a counterfeit. The paper material reminds me of a bible. The images are smudged. The finer print (it doesn't even have to be fine print) can be hard to read. It looks like it was bounded by a two year old. The book sits as if its paper has not had the time to settle and lie flat. Compare it to any other textbook you have and you will immediately see where the faults lie. I would be alright with this purchase if it was $30 but it was just about $100 so maybe going for the 3rd edition is a better option if money allows it.

Perfect condition as far as I can tell

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