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Theory of Aerospace Propulsion: Aerospace Engineering

Autor Pasquale M. Sforza
en Limba Engleză Paperback – 8 sep 2016
Theory of Aerospace Propulsion, Second Edition, teaches engineering students how to utilize the fundamental principles of fluid mechanics and thermodynamics to analyze aircraft engines, understand the common gas turbine aircraft propulsion systems, be able to determine the applicability of each, perform system studies of aircraft engine systems for specified flight conditions and preliminary aerothermal design of turbomachinery components, and conceive, analyze, and optimize competing preliminary designs for conventional and unconventional missions. This updated edition has been fully revised, with new content, new examples and problems, and improved illustrations to better facilitate learning of key concepts.


  • Includes broader coverage than that found in most other books, including coverage of propellers, nuclear rockets, and space propulsion to allows analysis and design of more types of propulsion systems
  • Provides in-depth, quantitative treatments of the components of jet propulsion engines, including the tools for evaluation and component matching for optimal system performance
  • Contains additional worked examples and progressively challenging end-of- chapter exercises that provide practice for analysis, preliminary design, and systems integration
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Specificații

ISBN-13: 9780128093269
ISBN-10: 0128093269
Pagini: 848
Ilustrații: Approx. 250 illustrations
Dimensiuni: 191 x 235 x 56 mm
Greutate: 1.29 kg
Ediția:2
Editura: ELSEVIER SCIENCE
Seria Aerospace Engineering


Public țintă

Undergraduate and graduate level students in aerospace or mechanical engineering studying aerospace propulsion or turbomachinery. Aerospace or mechanical engineers working in gas turbines, turbomachinery, aircraft propulsion and rocket propulsion.

Cuprins

1. Propulsion Principles and Engine Classification2. Quasi-One-Dimensional Flow Equations3. Idealized Cycle Analysis of Jet Propulsion Engines4. Combustion Chambers for Airbreathing Engines5. Nozzles for Airbreathing Engines6. Inlets for Airbreathing Engines7. Turbomachinery8. Blade Element Theory for Axial Flow Turbomachines9. Airbreathing Engine Performance and Component Integration10. Propellers11. Liquid Propellant Rocket Motors12. Solid Propellant Rocket Motors13. Space Propulsion

Recenzii

"The authors of the book have managed to write book [sic] in a manner where students can learn all the concepts from basic to advance at one-stop location in form of this book. ...I strongly recommend this textbook for aeronautical or aerospace students at either undergraduate or postgraduate level. Aerospace researchers/engineers will also find it useful as a handbook on all basics." --The Aeronautical Journal
"The authors of the book have managed to write book in a manner where students can learn all the concepts from basic to advance at one-stop location in form of this book.
I strongly recommend this textbook for aeronautical or aerospace students at either undergraduate or postgraduate level." --The Aeronautical Journal