Description: FREE SHIPPING UK WIDE Turbulent Flow by Peter S. Bernard, James M. Wallace Provides unique coverage of the prediction and experimentation necessary for making predictions. * Covers computational fluid dynamics and its relationship to direct numerical simulation used throughout the industry. * Covers vortex methods developed to calculate and evaluate turbulent flows. FORMAT Hardcover LANGUAGE English CONDITION Brand New Publisher Description Provides unique coverage of the prediction and experimentation necessary for making predictions. * Covers computational fluid dynamics and its relationship to direct numerical simulation used throughout the industry. * Covers vortex methods developed to calculate and evaluate turbulent flows. * Includes chapters on the state-of-the-art applications of research such as control of turbulence. Back Cover Comprehensive, unique coverage of turbulent flow including modern prediction and measurement Turbulent Flow presents the essential physical and analytical background that enables readers to make informed decisions when choosing the best method for the study and prediction of turbulent flows. Critical focus is given to experimental and numerical methods as well as what these methods have revealed about turbulent motion. Coverage includes an introduction to turbulence theory, the fundamental equations of turbulent flow and their meaning, the techniques used in physical experiments and computer simulations, a review of the progress made in understanding the properties of turbulence, turbulence closures and their applications, and large eddy simulation methods. Cutting-edge material includes: * State-of-the-art turbulence closure and simulation techniques * Up-to-date presentations of major theoretical and experimental advances * Vortex analysis of turbulence structure, transport, and modeling Turbulent Flow is an essential book for students and an invaluable reference for mechanical and aerospace engineers, physicists and mathematicians in related disciplines, and engineers and scientists in such fields as chemical, biological, and ocean engineering. Flap Comprehensive, unique coverage of turbulent flow including modern prediction and measurement Turbulent Flow presents the essential physical and analytical background that enables readers to make informed decisions when choosing the best method for the study and prediction of turbulent flows. Critical focus is given to experimental and numerical methods as well as what these methods have revealed about turbulent motion. Coverage includes an introduction to turbulence theory, the fundamental equations of turbulent flow and their meaning, the techniques used in physical experiments and computer simulations, a review of the progress made in understanding the properties of turbulence, turbulence closures and their applications, and large eddy simulation methods. Cutting-edge material includes: * State-of-the-art turbulence closure and simulation techniques * Up-to-date presentations of major theoretical and experimental advances * Vortex analysis of turbulence structure, transport, and modeling Turbulent Flow is an essential book for students and an invaluable reference for mechanical and aerospace engineers, physicists and mathematicians in related disciplines, and engineers and scientists in such fields as chemical, biological, and ocean engineering. Author Biography Peter S. Bernard, PhD, is Professor of Mechanical Engineering at the University of Maryland. He is a fellow of the American Physical Society and serves as Chief Technology Officer of VorCat, Inc., a start-up company developing computer software for turbulent flow prediction based on his research in gridfree vortex methods. James M. Wallace, PhD, is Professor of Mechanical Engineering at the University of Maryland. He is a fellow of the American Physical Society and an inductee in the Academy of Distinguished Engineering Alumni of the Georgia Institute of Technology. Table of Contents Preface. Acknowledgments. 1. Preliminaries. 2. Overview of Turbulent Flow Physics and Equations. 3. Experimental and Numerical Methods. 4. Properties of Bounded Turbulent Flows. 5. Properties of Turbulent Free Shear Flows. 6. Turbulent Transport. 7. Theory of Idealized Turbulent Flows. 8. Turbulence Modeling. 9. Applications of Turbulence Modeling. 10. Large Eddy Simulations. 11. Analysis of Turbulent Scalar Fields. 12. Turbulence Theory. Author Index. Subject Index. Review "It is strongly recommended by this reviewer" (Applied Mechanics Reviews, 11/1/2003) "Of the recent books on turbulence, this is probably the best for classroom use or private study..." (Journal of Fluid Mechanics, Vol.478, 2003) Long Description Comprehensive, unique coverage of turbulent flow including modern prediction and measurement Turbulent Flow presents the essential physical and analytical background that enables readers to make informed decisions when choosing the best method for the study and prediction of turbulent flows. Critical focus is given to experimental and numerical methods as well as what these methods have revealed about turbulent motion. Coverage includes an introduction to turbulence theory, the fundamental equations of turbulent flow and their meaning, the techniques used in physical experiments and computer simulations, a review of the progress made in understanding the properties of turbulence, turbulence closures and their applications, and large eddy simulation methods. Cutting-edge material includes: State-of-the-art turbulence closure and simulation techniques Up-to-date presentations of major theoretical and experimental advances Vortex analysis of turbulence structure, transport, and modeling Turbulent Flow is an essential book for students and an invaluable reference for mechanical and aerospace engineers, physicists and mathematicians in related disciplines, and engineers and scientists in such fields as chemical, biological, and ocean engineering. Review Text "It is strongly recommended by this reviewer" (Applied Mechanics Reviews, 11/1/2003) "Of the recent books on turbulence, this is probably the best for classroom use or private study..." (Journal of Fluid Mechanics, Vol.478, 2003) Review Quote "It is strongly recommended by this reviewer." ( Applied Mechanics Reviews , 11/1/2003) "Of the recent books on turbulence, this is probably the best for classroom use or private study..." ( Journal of Fluid Mechanics , Vol.478, 2003) Promotional "Headline" "It is strongly recommended by this reviewer" (Applied Mechanics Reviews, 11/1/2003)"Of the recent books on turbulence, this is probably the best for classroom use or private study..." (Journal of Fluid Mechanics, Vol.478, 2003) Feature Provides unique coverage of the prediction and experimentation necessary for making predictions. Covers computational fluid dynamics and its relationship to direct numerical simulation used throughout the industry. Covers vortex methods developed to calculate and evaluate turbulent flows. Includes chapters on the state-of-the-art applications of research such as control of turbulence. Details ISBN0471332194 Author James M. Wallace Short Title TURBULENT FLOW Pages 512 Language English ISBN-10 0471332194 ISBN-13 9780471332190 Media Book Format Hardcover Year 2002 Imprint John Wiley & Sons Inc Place of Publication New York Country of Publication United States Residence MD, US Edition 0003rd Subtitle Analysis, Measurement, and Prediction DOI 10.1604/9780471332190 UK Release Date 2002-09-02 AU Release Date 2002-08-05 NZ Release Date 2002-08-05 Publisher John Wiley & Sons Inc Publication Date 2002-09-02 DEWEY 620.1064 Illustrations Photos: 10 B&W, 0 Color; Drawings: 195 B&W, 0 Color Audience Undergraduate US Release Date 2002-09-02 We've got this At The Nile, if you're looking for it, we've got it. 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ISBN-13: 9780471332190
Book Title: Turbulent Flow
Subject Area: Mechanical Engineering
Item Height: 243 mm
Item Width: 167 mm
Author: Peter S. Bernard, James M. Wallace
Publication Name: Turbulent Flow: Analysis, Measurement, and Prediction
Format: Hardcover
Language: English
Publisher: John Wiley & Sons INC International Concepts
Publication Year: 2002
Type: Textbook
Item Weight: 1004 g
Number of Pages: 512 Pages