Aerospace Propulsion Engineering brings the entire discipline together in one comprehensive 464-page volume. Beginning with the momentum principle and the physics of thrust generation, the book develops every major propulsion system in a logical sequence, from turbojets and turbofans to rockets, hypersonic propulsion, and advanced spacecraft engines. Each chapter builds upon the last, connecting thermodynamics, fluid mechanics, combustion, turbomachinery, and orbital mechanics into one unified engineering framework.
Rather than asking you to memorize equations, this book develops them from first principles. Every variable is defined. Every derivation is explained. Every one of the 551 worked examples is solved step by step, allowing you to reproduce every calculation and understand the engineering behind every result. Whether you are studying for university examinations, preparing for a career in aerospace engineering, or expanding your professional knowledge, this book provides both the mathematical foundation and engineering insight needed to master propulsion systems.
• 16 comprehensive chapters covering the complete field of aerospace propulsion
• The physics of thrust generation, momentum conservation, specific thrust, TSFC, efficiency, and specific impulse
• Brayton cycle analysis, thermodynamics, component efficiency, polytropic efficiency, and exergy
• Compressible flow, isentropic relations, shock waves, Rayleigh flow, Fanno flow, and the method of characteristics
• Converging-diverging nozzles, choking, altitude effects, diffuser design, and engine performance analysis
• Turbojets, afterburners, turbofans, geared turbofans, turboprops, and propeller aerodynamics
• Ramjets, scramjets, supersonic combustion, hypersonic propulsion, and advanced inlet systems
• Axial and centrifugal compressors, cascade aerodynamics, velocity triangles, surge, and rotating stall
• Combustion chemistry, fuel atomization, flame stabilization, combustion instability, emissions control, and afterburners
• Turbine aerodynamics, blade cooling, thermal barrier coatings, superalloys, creep, and fatigue
• Rocket propulsion fundamentals, the rocket equation, delta-v analysis, orbital mechanics, and launch vehicle performance
• Chemical rocket engines, combustion chambers, turbopumps, propellants, cooling systems, and rocket power cycles
• Rocket nozzle design, bell nozzles, aerospike engines, extendible nozzles, and flow separation
• Electric propulsion, Hall thrusters, ion engines, nuclear propulsion, solar electric propulsion, solar sails, and emerging spacecraft propulsion technologies
• 551 fully worked engineering examples with complete solutions
• Approximately 1,000 practice problems with answers
• Hundreds of engineering equations, derivations, and technical illustrations
• Physical constants, Standard Atmosphere data, isentropic and normal shock tables
• Complete glossary, symbol list, and comprehensive index
• Covers aircraft engines and rocket propulsion in one integrated reference
• Develops every major equation from first principles instead of presenting formulas without explanation
• Connects theory directly to engineering practice through detailed worked examples
• Explains not only how propulsion systems operate but why they are designed that way
• Bridges classical propulsion theory with modern technologies such as geared turbofans, scramjets, reusable launch vehicles, Hall thrusters, and nuclear propulsion
• Organized as a progressive learning path suitable for classroom study, self-study, and professional reference
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Da: California Books, Miami, FL, U.S.A.
Condizione: New. Print on Demand. Codice articolo I-9798186486923
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Da: PBShop.store UK, Fairford, GLOS, Regno Unito
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Da: AHA-BUCH GmbH, Einbeck, Germania
Taschenbuch. Condizione: Neu. Neuware. Codice articolo 9798186486923
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