General aviation aircraft design [recurso electrónico] : applied methods and procedures / Snorri Gudmundsson.

Por: Gudmundsson, SnorriTipo de material: TextoTextoDetalles de publicación: Oxford ; Boston : Butterworth-Heinemann, 2014Descripción: 1 online resourceTipo de contenido: text Tipo de medio: computer Tipo de portador: online resourceISBN: 1299847188 (electronic bk.); 9781299847187 (electronic bk.); 9780123973290 (electronic bk.); 0123973295 (electronic bk.)Tema(s): Airplanes -- Design and construction | Airplanes / Design and construction | Airplanes -- Design and constructionGénero/Forma: Electronic books. | Electronic books.Formatos físicos adicionales: Print version:: General aviation aircraft design.Clasificación CDD: 629.133/34 Clasificación LoC:TL671.2Recursos en línea: Libro electrónico ScienceDirectTexto
Contenidos:
1. The 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. The anatomy of the propeller -- 15. Aircraft drag analysis -- 16. Performance -- introduction -- 17. Performance -- take-off -- 18. Performance -- climb -- 19. Performance -- cruise -- 20. Performance -- range analysis -- 21. Performance -- descent -- 22. Performance -- landing -- 23. Miscellaneous design notes.
Resumen: Find the right answer the first time with this useful handbook of preliminary aircraft design. Written by an engineer with close to 20 years of design experience, General Aviation Aircraft Design: Applied Methods and Procedures provides the practicing engineer with a versatile handbook that serves as the first source for finding answers to realistic aircraft design questions. The book is structured in an "equation/derivation/solved example" format for easy access to content. Readers will find it a valuable guide to topics such as sizing of horizontal and vertical tails to minimize drag, sizing of lifting surfaces to ensure proper dynamic stability, numerical performance methods, and common faults and fixes in aircraft design. In most cases, numerical examples involve actual aircraft specs. Broad and deep in coverage, it is intended for practicing engineers, aerospace engineering students, mathematically astute amateur aircraft designers, and anyone interested in aircraft design. Organized by articles and structured in an "equation/derivation/solved example" format for easy access to the content you needNumerical examples involve actual aircraft specs. Contains high-interest topics not found in other texts, including sizing of horizontal and vertical tails to minimize drag, sizing of lifting surfaces to ensure proper dynamic stability, numerical performance methods, and common faults and fixes in aircraft design. Provides a unique safety-oriented design checklist based on industry experience. Discusses advantages and disadvantages of using computational tools during the design process. Features detailed summaries of design options detailing the pros and cons of each aerodynamic solutionIncludes three case studies showing applications to business jets, general aviation aircraft, and UAVs.
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Tipo de ítem Biblioteca actual Colección Signatura Copia número Estado Fecha de vencimiento Código de barras
Libro Electrónico Biblioteca Electrónica
Colección de Libros Electrónicos TL671.2 (Browse shelf(Abre debajo)) 1 No para préstamo 380222-2001

Find the right answer the first time with this useful handbook of preliminary aircraft design. Written by an engineer with close to 20 years of design experience, General Aviation Aircraft Design: Applied Methods and Procedures provides the practicing engineer with a versatile handbook that serves as the first source for finding answers to realistic aircraft design questions. The book is structured in an "equation/derivation/solved example" format for easy access to content. Readers will find it a valuable guide to topics such as sizing of horizontal and vertical tails to minimize drag, sizing of lifting surfaces to ensure proper dynamic stability, numerical performance methods, and common faults and fixes in aircraft design. In most cases, numerical examples involve actual aircraft specs. Broad and deep in coverage, it is intended for practicing engineers, aerospace engineering students, mathematically astute amateur aircraft designers, and anyone interested in aircraft design. Organized by articles and structured in an "equation/derivation/solved example" format for easy access to the content you needNumerical examples involve actual aircraft specs. Contains high-interest topics not found in other texts, including sizing of horizontal and vertical tails to minimize drag, sizing of lifting surfaces to ensure proper dynamic stability, numerical performance methods, and common faults and fixes in aircraft design. Provides a unique safety-oriented design checklist based on industry experience. Discusses advantages and disadvantages of using computational tools during the design process. Features detailed summaries of design options detailing the pros and cons of each aerodynamic solutionIncludes three case studies showing applications to business jets, general aviation aircraft, and UAVs.

Description based on print version record.

Includes bibliographical references and index.

1. The 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. The anatomy of the propeller -- 15. Aircraft drag analysis -- 16. Performance -- introduction -- 17. Performance -- take-off -- 18. Performance -- climb -- 19. Performance -- cruise -- 20. Performance -- range analysis -- 21. Performance -- descent -- 22. Performance -- landing -- 23. Miscellaneous design notes.

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