Aerospace Propulsion 1st Edition by TW Lee – Ebook PDF Instant Download/Delivery: 1118307984, 9781118307984
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Product details:
ISBN 10: 1118307984
ISBN 13: 9781118307984
Author: TW Lee
Aerospace propulsion devices embody some of the most advanced technologies, ranging from materials, fluid control, and heat transfer and combustion. In order to maximize the performance, sophisticated testing and computer simulation tools are developed and used.
Aerospace Propulsion comprehensively covers the mechanics and thermal-fluid aspects of aerospace propulsion, starting from the fundamental principles, and covering applications to gas-turbine and space propulsion (rocket) systems. It presents modern analytical methods using MATLAB and other advanced software and includes essential elements of both gas-turbine and rocket propulsion systems. Gas turbine coverage includes thermodynamic analysis, turbine components, diffusers, compressors, turbines, nozzles, compressor-turbine matching, combustors and afterburners. Rocket coverage includes chemical rockets, electrical rockets, nuclear and solar sail
Key features:
- Both gas-turbine and rocket propulsion covered in a single volume
- Presents modern analytical methods and examples
- Combines fundamentals and applications, including space applications
- Accompanied by a website containing MATLAB examples, problem sets and solutions
Aerospace Propulsion is a comprehensive textbook for senior undergraduate graduate and aerospace propulsion courses, and is also an excellent reference for researchers and practicing engineers working in this area.
Aerospace Propulsion 1st Table of contents:
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Introduction to Aerospace Propulsion
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Overview of propulsion systems
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History and evolution of aerospace propulsion
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Basic principles and terminology
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Thermodynamics and Fluid Mechanics in Propulsion
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Thermodynamic cycles
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Compressible flow fundamentals
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Gas dynamics in propulsion systems
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Gas Turbine Engines
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Components of gas turbine engines
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Brayton cycle and performance
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Turbofan, turbojet, and turboprop engines
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Rocket Propulsion
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Rocket engine fundamentals
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Propellants and combustion
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Performance parameters
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Propeller and Rotorcraft Propulsion
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Propeller theory
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Performance and efficiency
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Helicopter rotor propulsion
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Combustion in Propulsion Systems
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Combustion processes and flame dynamics
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Fuel types and delivery systems
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Emissions and environmental considerations
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Materials and Structural Aspects
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Materials for high-temperature applications
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Structural design of propulsion components
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Propulsion System Design and Integration
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Design considerations
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Integration with airframes
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Control systems and instrumentation
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Future Trends in Aerospace Propulsion
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Emerging propulsion technologies
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Alternative fuels and green propulsion
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Hypersonic propulsion systems
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