Fluid Mechanics in SI Units - Yunus Cengel, John Cimbala

Fluid Mechanics in SI Units

Buch | Softcover
1016 Seiten
2013 | 3rd edition
McGraw-Hill Education (Verlag)
978-1-259-01122-1 (ISBN)
73,55 inkl. MwSt
Fluid Mechanics: Fundamentals and Applications is written for the first fluid mechanics course for undergraduate engineering students, with sufficient material for a two-course sequence. This Third Edition in SI Units has the same objectives and goals as previous editions:

Communicates directly with tomorrow’s engineers in a simple yet precise manner Covers the basic principles and equations of fluid mechanics in the context of numerous and diverse real-world engineering examples and applications Helps students develop an intuitive understanding of fluid mechanics by emphasizing the physical underpinning of processes and by utilizing numerous informative figures, photographs, and other visual aids to reinforce the basic concepts Encourages creative thinking, interest and enthusiasm for fluid mechanics
New to this edition

All figures and photographs are enhanced by a full color treatment. New photographs for conveying practical real-life applications of materials have been added throughout the book. New Application Spotlights have been added to the end of selected chapters to introduce industrial applications and exciting research projects being conducted by leaders in the field about material presented in the chapter. New sections on Biofluids have been added to Chapters 8 and 9. Addition of Fundamentals of Engineering (FE) exam-type problems to help students prepare for Professional Engineering exams.

Yunus A. ï¿engel is Professor Emeritus of Mechanical Engineering at the University of Nevada, Reno. He received his B.S. in mechanical engineering from Istanbul Technical University and his M.S. and Ph.D. in mechanical engineering from North Carolina State University. His areas of interest are renewable energy, energy efficiency, energy policies, heat transfer enhancement, and engineering education. He served as the director of the Industrial Assessment Center (IAC) at the University of Nevada, Reno, from 1996 to 2000. He has led teams of engineering students to numerous manufacturing facilities in Northern Nevada and California to perform industrial assessments, and has prepared energy conservation, waste minimization, and productivity enhancement reports for them. He has also served as an advisor for various government organizations and corporations.  Dr. ï¿engel is the recipient of several outstanding teacher awards, and he has received the ASEE Meriam/Wiley Distinguished Author Award for excellence in authorship in 1992 and again in 2000. Dr. ï¿engel is a registered Professional Engineer in the State of Nevada, and is a member of the American Society of Mechanical Engineers (ASME) and the American Society for Engineering Education (ASEE). John M. Cimbala is Professor of Mechanical Engineering at The Pennsylvania State University (Penn State), University Park, PA. He received his B.S. in Aerospace Engineering from Penn State and his M.S. in Aeronautics from the California Institute of Technology (CalTech). He received his Ph.D. in Aeronautics from CalTech in 1984. His research areas include experimental and computational fluid mechanics and heat transfer, turbulence, turbulence modeling, turbomachinery, indoor air quality, and air pollution control. More information can be found at www.mne.psu.edu/cimbala.  Professor Cimbala is the recipient of several outstanding teaching awards and views his book writing as an extension of his love of teaching. He is a member and Fellow of the American Society of Mechanical Engineers (ASME).  He is also a member of the American Society for Engineering Education (ASEE), and the American Physical Society (APS).

Preface
Chapter 1Introduction and Basic Concepts
Chapter 2Properties of Fluids
Chapter 3Pressure and Fluid Statics
Chapter 4Fluid Kinematics
Chapter 5Bernoulli and Energy Equations
Chapter 6Momentum Analysis of Flow Systems
Chapter 7Dimensional Analysis and Modeling
Chapter 8Internal Flow
Chapter 9 Differential Analysis of Fluid Flow
Chapter 10Approximate Solutions of the Navier-stokes Equation
Chapter 11External Flow: Drag and Lift
Chapter 12Compressible Flow
Chapter 13Open-channel Flow
Chapter 14Turbomachinery
Chapter 15Introduction to Computational Fluid Dynamics
Appendix Property Table and Charts
Glossary
Index

Erscheint lt. Verlag 16.10.2013
Verlagsort OH
Sprache englisch
Maße 202 x 257 mm
Gewicht 1750 g
Themenwelt Naturwissenschaften Physik / Astronomie Strömungsmechanik
Technik Maschinenbau
ISBN-10 1-259-01122-4 / 1259011224
ISBN-13 978-1-259-01122-1 / 9781259011221
Zustand Neuware
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