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Turboelectric Propulsion Systems: Integrating Gas Turbines, Generators, Electrical Distribution, Power Electronics, Motors, and Propulsors for Advanced Aircraft - Softcover

Merrivale, Orlin

 
9798171091446: Turboelectric Propulsion Systems: Integrating Gas Turbines, Generators, Electrical Distribution, Power Electronics, Motors, and Propulsors for Advanced Aircraft

Synopsis

A practical, aircraft-level guide to the technologies and design decisions behind advanced turboelectric propulsion. This book explains how gas turbines, high-speed generators, electrical networks, power converters, motors, thermal systems, controls, and propulsors operate as one coordinated powertrain.

Rather than treating each subsystem in isolation, the book follows the complete path from fuel energy to useful thrust. It introduces the principal series, parallel, and partial turboelectric architectures, then connects mission requirements with propulsion performance, electrical loading, mass, volume, efficiency, thermal limits, and power quality.

What the book covers

  • System fundamentals: definitions, boundaries, energy-conversion paths, aircraft architectures, and propulsion trade studies.
  • Mission and performance analysis: flight phases, thrust and shaft-power requirements, fuel burn, electrical load analysis, and representative aircraft power budgets.
  • Prime movers and generators: turboshaft and turbofan cores, part-load behavior, transient operation, generator topologies, electromagnetic losses, insulation, bearings, and engine-generator matching.
  • Distribution and power electronics: AC, DC, and variable-frequency networks, bus structures, protection, voltage selection, rectifiers, inverters, switching devices, harmonics, filters, packaging, and converter losses.
  • Motors and propulsors: machine selection, torque-speed operation, field-oriented control, cooling, demagnetization limits, propeller and fan performance, blade constraints, noise, and airframe integration.
  • Thermal and control systems: heat-source identification, cooling methods, heat-exchanger trade-offs, component derating, hierarchical control, load sharing, bus regulation, power limiting, and transient coordination.
  • Safety and validation: functional hazard assessment, failure analysis, redundancy, high-voltage protection, arc-fault control, requirements management, simulation, hardware-in-the-loop testing, instrumentation, and integrated verification.

Designed for engineering application

Five focused examples in each chapter show how the concepts support real design work, including power-flow evaluation, aircraft power budgeting, engine-generator sizing, fault isolation, converter loss analysis, motor-drive matching, propulsor mapping, thermal balance, thrust-transient control, safety allocation, and system verification.

With its integrated treatment of propulsion, electrical engineering, aerodynamics, thermal management, control, and certification, this reference is suited to aerospace engineers, propulsion and power-system specialists, researchers, graduate students, and multidisciplinary teams developing hybrid-electric or distributed-propulsion aircraft.

"synopsis" may belong to another edition of this title.