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A clear, engineering-focused guide to modern aircraft gas turbines, this book develops the connected knowledge required to understand, evaluate, and design propulsion systems. It brings thermodynamics, fluid mechanics, aerodynamics, mechanical design, materials, controls, and testing together in one structured reference for students, practicing engineers, and technically minded aviation readers.
Readers progress from the architecture of turbojets, turbofans, turboprops, and turboshafts to the detailed behavior of individual components and complete engines. Fundamental concepts are explained through physical reasoning, governing relationships, performance measures, and realistic design considerations.
Each chapter concludes with a worked application that turns theory into an engineering task. Examples include comparing propulsion architectures, calculating cycle work and thermal efficiency, correcting performance to standard-day conditions, estimating inlet recovery, interpreting a compressor map, balancing combustor airflow, sizing turbine work for a compressor, calculating turbofan net thrust, constructing an off-design analysis, evaluating rotor stress, selecting a turbine-blade material, and integrating thermodynamic, aerodynamic, and mechanical checks.
Designed as both a foundation text and a working reference, the book emphasizes how components interact inside a real engine. It helps readers move confidently from equations and diagrams to performance trade-offs, design limits, and system-level decisions in modern aircraft propulsion.
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