General Aviation Aircraft Design
portes grátis
General Aviation Aircraft Design
Applied Methods and Procedures
Gudmundsson, Snorri
Elsevier - Health Sciences Division
04/2022
1142
Dura
Inglês
9780128184653
15 a 20 dias
2470
Descrição não disponível.
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
Appendix A. Atmospheric modeling B. Aerospace engineer's formula sheet C. Design of biplanes and seaplanes D. Derivation of landing side-constraint
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aircraft design; aircraft weight; power plant; airfoil; wing; lift enhancement; tail; fuselage; landing gear; tires; brakes; leading edge; trailing edge; piston engine; turboprop; turbofan; turbojet; inlet; electric motor; airframe; single engine; multi-engine; subsonic; supersonic; seaplane; sailplane; general aviation; airplane engines; take-off; climb; cruise; range; descent; landing; longitudinal stability; directional stability; lateral stability; dynamic stability; formula sheet; atmospheric modeling; drag modeling; thrust modeling; general aviation
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
Appendix A. Atmospheric modeling B. Aerospace engineer's formula sheet C. Design of biplanes and seaplanes D. Derivation of landing side-constraint
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.
aircraft design; aircraft weight; power plant; airfoil; wing; lift enhancement; tail; fuselage; landing gear; tires; brakes; leading edge; trailing edge; piston engine; turboprop; turbofan; turbojet; inlet; electric motor; airframe; single engine; multi-engine; subsonic; supersonic; seaplane; sailplane; general aviation; airplane engines; take-off; climb; cruise; range; descent; landing; longitudinal stability; directional stability; lateral stability; dynamic stability; formula sheet; atmospheric modeling; drag modeling; thrust modeling; general aviation