Free PDF Classical and Modern Engineering Methods in Fluid Flow and Heat Transfer: An Introduction for Engineers and Students, by Abram Dorfman
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Classical and Modern Engineering Methods in Fluid Flow and Heat Transfer: An Introduction for Engineers and Students, by Abram Dorfman
Free PDF Classical and Modern Engineering Methods in Fluid Flow and Heat Transfer: An Introduction for Engineers and Students, by Abram Dorfman
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This book presents contemporary theoretical methods in fluid flow and heat transfer, emphasizing principles of investigation and modeling of natural phenomena and engineering processes. It is organized into four parts and 12 chapters presenting classical and modern methods. Following the classical methods in Part 1, Part 2 offers in-depth coverage of analytical conjugate methods in convective heat transfer and peristaltic flow. Part 3 explains recent developments in numerical methods including new approaches for simulation of turbulence by direct solution of Navier-Stokes equations. Part 4 provides a wealth of applications in industrial systems, technology processes, biology, and medicine. More than a hundred examples show the applicability of the methods in such areas as nuclear reactors, aerospace, crystal growth, turbine blades, electronics packaging, optical fiber coating, wire casting, blood flow, urinary problems, and food processing. Intended for practicing engineers and students, the book balances strong formulation of problems with detailed explanations of definitions and terminology. Author comments give attention to special terms like singularity, order of magnitude, flow stability, and nonisothermicity characteristics. More than 400 exercises and questions are offered, many of which divide derivations between you and the author. For these exercises, the author describes the solution method and the results in the text, but you are directed to complete specific portions of the solutions. You then have a choice to accept the results or to further explore the underlying problem. Extensive references are provided for further study.
- Published on: 2012-02-26
- Released on: 2012-02-26
- Format: Kindle eBook
About the Author
Abram Dorfman, Doctor of Science, Ph.D, was a leading scientist in fluid mechanics and heat transfer at the Institute of Thermophysics of the Ukrainian Academy of Science in Kiev and was associate editor of Promyshlennaya Teploteknika (1978 - 1990). He emigrated to the United States in 1990, where he continues his research as a visiting professor at the University of Michigan in Ann Arbor (since 1996). During this period, he has published several papers in leading American journals and a book Conjugate Problems in Convective Heat Transfer, 2010 Taylor & Francis. Dr. Dorfman has published more than 140 papers and three books in Russian (mostly) and in English. More than 50 of his papers published in Russian are also available in English.
Most helpful customer reviews
0 of 0 people found the following review helpful.
Good math, poor English, insufficient figures...
By Michael J Richards
This book could benefit significantly from a native English speaker's editing. If you already understand, or at least have a good idea what the author is explaining, the language shouldn't be a problem. Most of the time, that has been my case. There have a been a number of times where I've had to read a sentence a few times before I could figure out exactly what the author was trying to say, however. Most of the problems are with articles, subject verb agreement, and word order. It helps if I try reading it with a Russian accent...
I assume the technical accuracy is very good (I don't know, precisely, that's why I've got the book), and the things covered within the book are exactly what the description led me to believe would be included.
More figures would also help in readability. Reading about a 3 dimensional scenario with geometry and boundary conditions described only in words is just asking for confusion. A small, simple figure makes it much easier to discuss directions without forcing the reader to spend time trying to figure out which way along an un-illustrated body is longitudinal and which way is transverse.
Overall, I give it 3 stars for (assumed) technical accuracy and covering what I need (and what it claims to cover). I remove two stars for readability--poor grammar that requires more effort to comprehend and lack of illustrations that also require more effort than should be necessary.
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