Fundamentals of aerodynamics
著者
書誌事項
Fundamentals of aerodynamics
(McGraw-Hill series in aeronautical and aerospace engineering)
McGraw-Hill, c2011
5th ed. in SI units
- : pbk
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注記
"McGraw Hill higher education"--T.p. verso
Includes bibliographical references (p. 1071-1076) and index
内容説明・目次
内容説明
John D. Anderson's textbooks in aeronautical and aerospace engineering have been a cornerstone of McGraw-Hill's success in the engineering discipline for more than two decades. The fifth SI edition of Fundamentals of Aerodynamics continues to offer the most reliable, interesting and up-to-date resources for students and teachers of aerodynamics. Users of past editions will appreciate the continued use of design boxes, historical contents, plentiful worked examples, chapter-opening road maps and other pedagogical features that play a supporting role in Anderson's focus on fundamental concepts. New features: new sections on airplane lift and drag, the blended-wing-body concept, the origin of the swept-wing concept, supersonic flow over cones, hypersonic viscous flow and aerodynamic heating and the design of hypersonic waverider configurations; many additional worked examples and homework problems to provide even more key concept practice for students; and shortened and streamlined Part 4, "Viscous Flow".
目次
TABLE OF CONTENTS
Preface to the Fifth Edition
Part 1: Fundamental Principles
1. Aerodynamics: Some Introductory Thoughts
2. Aerodynamics: Some Fundamental Principles and Equations
Part 2: Inviscid, Incompressible Flow
3. Fundamentals of Inviscid, Incompressible Flow
4. Incompressible Flow Over Airfoils
5. Incompressible Flow Over Finite Wings
6. Three-Dimensional Incompressible Flow
Part 3: Inviscid, Compressible Flow
7. Compressible Flow: Some Preliminary Aspects
8. Normal Shock Waves and Related Topics
9. Oblique Shock and Expansion Waves
10. Compressible Flow Through Nozzles, Diffusers and Wind Tunnels
11. Subsonic Compressible Flow Over Airfoils: Linear Theory
12. Linearized Supersonic Flow
13. Introduction to Numerical Techniques for Nonlinear Supersonic Flow
14. Elements of Hypersonic Flow
Part 4: Viscous Flow
15. Introduction to the Fundamental Principles and Equations of Viscous Flow
16. A Special Case: Couette Flow
17. Introduction to Boundary Layers
18. Laminar Boundary Layers
19. Turbulent Boundary Layers
20. Navier-Stokes Solutions: Some Examples
Appendix A: Isentropic Flow Properties
Appendix B: Normal Shock Properties
Appendix C: Prandtl-Meyer Function and Mach Angle
Appendix D: Standard Atmosphere
Bibliography
Index
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