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General Aviation Aircraft Design
Applied Methods and Procedures

Comprehensive and trusted source for civilian aircraft design guidance

Snorri Gudmundsson (Author)

9780128184653, Elsevier Science

Hardback, published 6 April 2022

1142 pages, 700 illustrations (600 in full color)
27.6 x 21.6 x 5.2 cm, 2.47 kg

"Gudmundsson has set a benchmark for textbooks on aircraft design. Within its declared bounds this book is remarkably comprehensive, with introductory material, clearly presented mathematical tools with assumptions and derivations, notes on when and where to apply them and numerous real-world examples.

Gudmundsson truly has a feel for design, something he tries to convey throughout, describing each task, the nature of the designer’s approach and the wide-ranging set of constraints to be addressed. As well as all the analytical work described above, aircraft design requires graphic skills. A real pleasure in this book is the high quality of the illustrations; Gudmundsson is right to be proud of them.

Of the many textbooks on aircraft design this is my favourite. The author’s declared aim remained, as with the first edition, to gather information and procedures helpful to the designer. He has achieved this to a very impressive standard. By including all aspects, even organisation and management of the process, he has made this a valuable and comprehensive ‘go-to’ reference source." --John M Robertson, CEng MIMechE MRAeS, RAeS General Aviation Group

General Aviation Aircraft Design, Second Edition, continues to be the engineer’s best source for answers to realistic aircraft design questions. The book has been expanded to provide design guidance for additional classes of aircraft, including seaplanes, biplanes, UAS, high-speed business jets, and electric airplanes. In addition to conventional powerplants, design guidance for battery systems, electric motors, and complete electric powertrains is offered. The second edition contains new chapters:

  • Thrust Modeling for Gas Turbines
  • Longitudinal Stability and Control
  • Lateral and Directional Stability and Control

These new chapters offer multiple practical methods to simplify the estimation of stability derivatives and introduce hinge moments and basic control system design. Furthermore, all chapters have been reorganized and feature updated material with additional analysis methods. This edition also provides an introduction to design optimization using a wing optimization as an example for the beginner.

Written by an engineer with more than 25 years of design experience, professional engineers, aircraft designers, aerodynamicists, structural analysts, performance analysts, researchers, and aerospace engineering students will value the book as the classic go-to for aircraft design.

1. Aircraft design process 2. Aircraft cost analysis 3. Initial sizing 4. Aircraft conceptual layout 5. Aircraft structural layout 6. Aircraft weight analysis 7. Selecting the power plant 8. The anatomy of the airfoil 9. The anatomy of the wing 10. The anatomy of lift enhancement 11. The anatomy of the tail 12. The anatomy of the fuselage 13. The anatomy of the landing gear 14. Thrust modeling for gas turbines 15. Thrust modeling for propellers 16. Aircraft drag analysis 17. Performance – introduction 18. Performance – take-off 19. Performance – climb 20. Performance – cruise 21. Performance – range analysis 22. Performance – descent 23. Performance – landing 24. Longitudinal stability and control 25. Lat-dir stability and control 26. Miscellaneous design notes

Appendix A. Atmospheric modeling B. Aerospace engineer's formula sheet C. Design of biplanes and seaplanes D. Derivation of landing side-constraint

Subject Areas: Aircraft: general interest [WGM], Aerospace & aviation technology [TRP], Energy technology & engineering [TH], Aviation manufacturing industry [KNDV], Investment & securities [KFFM]

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