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Our Syllabus

In each of these sections, systematic emphasis will be placed on risk assessment and control, as well as on aerospace quality concepts and indicators.

  • Major Aeronautical Challenges
  • State of the Art in Aeronautical Propulsion
  • Aircraft Mission and Environment
  • Flight Control and Human Factors
  • Accident Investigation and Regulations
  • Engine Design: From Mission to Specification (Civil and Military)
  • Performance and Cycles (On- and Off-Design)
  • Design and Experimentation Methodologies
  • Aircraft Integration (constraints and aircraft/engine tandem, nacelle focus and ancillary systems)
  • Multidisciplinary Approach - Space, Chemical and Electric Propulsion
  • Pre-Projects and Incremental and Breakthrough Innovations
  • Turbulence, Instability, and Transition
  • Computational Fluid Dynamics
  • Advanced Fluid Dynamics (Compressible and Unsteady)
  • Aeroacoustics
  • Aeroelasticity
  • Chemical and Electric Propulsion
  • Two-phase Flows and Combustion
  • Aerodynamics of Turbomachinery
  • Case study in design of a combustion chamber or a turbomachine stage
  • Integrating all aspects of a project: technical component, project management, and team management