Aerodynamics for Engineering Students, Eight Edition provides concise explanations of basic concepts combined with an excellent introduction to aerodynamic theory. This updated edition has been revised with improved pedagogy and reorganized content to facilitate student learning. The book includes new examples in many chapters, expanded use of the "aerodynamics around us" boxes to help put the content into proper context for students, and more coverage and use of computational methods like MATLAB.
Aerodynamics for Engineering Students, Eight Edition provides concise explanations of basic concepts combined with an excellent introduction to aerodynamic theory. This updated edition has been revised with improved pedagogy and reorganized content to facilitate student learning. The book includes new examples in many chapters, expanded use of the "aerodynamics around us" boxes to help put the content into proper context for students, and more coverage and use of computational methods like MATLAB.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Steven Collicott is a Professor in the Department of Aeronautics and Astronautics at Purdue University. His research interests include experimental fluid mechanics, low-gravity fluid dynamics, optical diagnostics, and applied optics. He has led the proposing, design, and construction of 27 low-gravity NASA aircraft experiments, designed 2 of 6 tests in the successful Capillary Fluids Experiments (CFE) performed in the International Space Station in 2006/07, and advised on CFE modifications scheduled for launch in 2010. Professor Collicott is the president-elect of the American Society for Gravitational and Space Research (ASGSR). He was Inducted into Purdue's "Book of Great Teachers? in 2008, which "honors outstanding teaching faculty who have demonstrated sustained excellence in the classroom.?
Inhaltsangabe
PART I: INTRODUCTION 1. Basic Concepts and Definitions PART II: FUNDAMENTALS OF FLUID MECHANICS 2. Equations of Motion 3. Viscous Boundary Layers 4. Compressible Flow PART III: AERODYNAMICS OF WINGS AND BODIES 5. Potential Flow 6. Two-Dimensional Wing Theory 7. Wing Theory 8. Airfoils and Wings in Compressible Flow PART IV: APPLICATIONS OF AERODYNAMICS 9. Computational Fluid Dynamics 10. Flow Control, Planar and Rotating Wing Designs Appendix A. Symbols and Notation B. Properties of Standard Atmosphere C. A Solution of Glauert Type Integrals Appendix D: Conversion of Imperial Units to Syst¿eme International (SI) Units
PART I: INTRODUCTION 1. Basic Concepts and Definitions PART II: FUNDAMENTALS OF FLUID MECHANICS 2. Equations of Motion 3. Viscous Boundary Layers 4. Compressible Flow PART III: AERODYNAMICS OF WINGS AND BODIES 5. Potential Flow 6. Two-Dimensional Wing Theory 7. Wing Theory 8. Airfoils and Wings in Compressible Flow PART IV: APPLICATIONS OF AERODYNAMICS 9. Computational Fluid Dynamics 10. Flow Control, Planar and Rotating Wing Designs Appendix A. Symbols and Notation B. Properties of Standard Atmosphere C. A Solution of Glauert Type Integrals Appendix D: Conversion of Imperial Units to Syst¿eme International (SI) Units
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