Kamis, 04 September 2014

[M793.Ebook] Fee Download Chemically Reacting Flow : Theory and Practice, by Robert J. Kee, Michael Elliott Coltrin, Peter Glarborg

Fee Download Chemically Reacting Flow : Theory and Practice, by Robert J. Kee, Michael Elliott Coltrin, Peter Glarborg

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Chemically Reacting Flow : Theory and Practice, by Robert J. Kee, Michael Elliott Coltrin, Peter Glarborg

Chemically Reacting Flow : Theory and Practice, by Robert J. Kee, Michael Elliott Coltrin, Peter Glarborg



Chemically Reacting Flow : Theory and Practice, by Robert J. Kee, Michael Elliott Coltrin, Peter Glarborg

Fee Download Chemically Reacting Flow : Theory and Practice, by Robert J. Kee, Michael Elliott Coltrin, Peter Glarborg

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Chemically Reacting Flow : Theory and Practice, by Robert J. Kee, Michael Elliott Coltrin, Peter Glarborg

Complex chemically reacting flow simulations are commonly employed to develop quantitative understanding and to optimize reaction conditions in systems such as combustion, catalysis, chemical vapor deposition, and other chemical processes. Although reaction conditions, geometries, and fluid flow can vary widely among the applications of chemically reacting flows, all applications share a need for accurate, detailed descriptions of the chemical kinetics occurring in the gas-phase or on reactive surfaces. Chemically Reacting Flow: Theory and Practice combines fundamental concepts in fluid mechanics and physical chemistry, assisting the student and practicing researcher in developing analytical and simulation skills that are useful and extendable for solving real-world engineering problems.

The first several chapters introduce transport processes, primarily from a fluid-mechanics point of view, incorporating computational simulation from the outset. The middle section targets physical chemistry topics that are required to develop chemically reacting flow simulations, such as chemical thermodynamics, molecular transport, chemical rate theories, and reaction mechanisms. The final chapters deal with complex chemically reacting flow simulations, emphasizing combustion and materials processing. Among other features, Chemically Reacting Flow: Theory and Practice:

-Advances a comprehensive approach to interweaving the fundamentals of chemical kinetics and fluid mechanics
-Embraces computational simulation, equipping the reader with effective, practical tools for solving real-world problems
-Emphasizes physical fundamentals, enabling the analyst to understand how reacting flow simulations achieve their results
-Provides a valuable resource for scientists and engineers who use Chemkin or similar software

Computer simulation of reactive systems is highly effective in the development, enhancement, and optimization of chemical processes. Chemically Reacting Flow helps prepare both students and professionals to take practical advantage of this powerful capability.

  • Sales Rank: #1373903 in Books
  • Published on: 2003-03-06
  • Original language: English
  • Number of items: 1
  • Dimensions: 10.12" h x 1.81" w x 7.26" l, 3.72 pounds
  • Binding: Hardcover
  • 928 pages

Review
"...one of the best books...on reacting flows...strongly recommended..." (Choice, Vol. 41, No. 1, September 2003)

From the Back Cover
A guide to the theoretical underpinnings and practical applications of chemically reacting flow

Complex chemically reacting flow simulations are commonly employed to develop quantitative understanding and to optimize reaction conditions in systems such as combustion, catalysis, chemical vapor deposition, and other chemical processes. Although reaction conditions, geometries, and fluid flow can vary widely among the applications of chemically reacting flows, all applications share a need for accurate, detailed descriptions of the chemical kinetics occurring in the gas-phase or on reactive surfaces. Chemically Reacting Flow: Theory and Practice combines fundamental concepts in fluid mechanics and physical chemistry, assisting the student and practicing researcher in developing analytical and simulation skills that are useful and extendable for solving real-world engineering problems.

The first several chapters introduce transport processes, primarily from a fluid-mechanics point of view, incorporating computational simulation from the outset. The middle section targets physical chemistry topics that are required to develop chemically reacting flow simulations, such as chemical thermodynamics, molecular transport, chemical rate theories, and reaction mechanisms. The final chapters deal with complex chemically reacting flow simulations, emphasizing combustion and materials processing. Among other features, Chemically Reacting Flow: Theory and Practice:

  • Advances a comprehensive approach to interweaving the fundamentals of chemical kinetics and fluid mechanics
  • Embraces computational simulation, equipping the reader with effective, practical tools for solving real-world problems
  • Emphasizes physical fundamentals, enabling the analyst to understand how reacting flow simulations achieve their results
  • Provides a valuable resource for scientists and engineers who use Chemkin or similar software

Computer simulation of reactive systems is highly effective in the development, enhancement, and optimization of chemical processes. Chemically Reacting Flow helps prepare both students and professionals to take practical advantage of this powerful capability.

About the Author
ROBERT J. KEE, PhD, is the George R. Brown Distinguished Professor of Engineering at the Colorado School of Mines in Golden, Colorado.

MICHAEL E. COLTRIN, PhD, is a Distinguished Member of the Technical Staff at Sandia National Laboratories in Albuquerque, New Mexico.

PETER GLARBORG, PhD, is a Professor of Chemical Engineering at the Technical University of Denmark in Lyngby, Denmark.

Most helpful customer reviews

13 of 13 people found the following review helpful.
best book on this subject
By James A. Miller
In my opinion this is the best book ever written on chemically reacting flow. Unlike many other books on this subject, it focuses on formulating models exactly and solving them using state-of-the-art computational methods. By "exactly" I mean models that attempt to simulate chemical kinetics and transport phenomena at the molecular level. The book is aimed at chemical engineering applications, and consequently it is limited to thermally compressible flows ( low Mach numbers). The problems at the end of the chapters are generally very good and frequently involve issues that arise in real research applications. My only quibble is that the chapter on reaction-rate theory focuses too much on QRRK methods, which were really superseded by RRKM theory about 50 years ago.

See all 1 customer reviews...

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