This robust introduction to aerothermodynamics for jet propulsion provides students with a solid theoretical foundation, consistent mathematical derivations, and example-based learning which connects key abstract concepts to practical scenarios in jet propulsion. Accompanied by online materials for course instructors.
This robust introduction to aerothermodynamics for jet propulsion provides students with a solid theoretical foundation, consistent mathematical derivations, and example-based learning which connects key abstract concepts to practical scenarios in jet propulsion. Accompanied by online materials for course instructors.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Paul G. A. Cizmas is Professor of Aerospace Engineering at Texas A&M University. Over the past 25 years, he has conducted research into numerical simulations of transport phenomena in propulsion systems, covering a large range of topics, including reduced-order modeling, aeroelasticity, combustion and computational fluid dynamics. He is a Fellow of American Society of Mechanical Engineers and an Associate Fellow of American Institute of Aeronautics and Astronautics.
Inhaltsangabe
Part I. Basic Fluid Mechanics and Thermodynamics for Propulsion: 1. Jet Propulsion Principle 2. Aerothermodynamics Review 3. Steady One-Dimensional Gas Dynamics 4. Viscous Boundary Layer and Thermal Boundary Layer 5. Introduction to Combustion Part II. Air-Breathing Engines: 6. Thermodynamics of Air-Breathing Engines 7. Jet Engine Components 8. Thrust Augmentation Part III. Rocket Engines: 9. Classification of Rocket Propulsion Systems 10. Chemical Rocket Performance.
Part I. Basic Fluid Mechanics and Thermodynamics for Propulsion: 1. Jet Propulsion Principle 2. Aerothermodynamics Review 3. Steady One-Dimensional Gas Dynamics 4. Viscous Boundary Layer and Thermal Boundary Layer 5. Introduction to Combustion Part II. Air-Breathing Engines: 6. Thermodynamics of Air-Breathing Engines 7. Jet Engine Components 8. Thrust Augmentation Part III. Rocket Engines: 9. Classification of Rocket Propulsion Systems 10. Chemical Rocket Performance.
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