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Aerospace engineering

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Revision as of 20:58, 17 December 2006 by wikademia>Remi0o (→Materials Science)

Aerospace Engineering

For editors For lecturers For students

Suggested Structure

General Prerequisites

  • Basic Mathematics - differentials, integrals, basic mechanics, vector algebra, matrices and matrix manipulation, total derivative (for mass and momentum equations, among others)
  • Thermodynamics/Heat Transfer - Zereoth, First, Second and Third Laws, Enthalpy, Entropy, Clausius Inequality and ??, Steady State Equation, Modelling Gas Turbines/Engines, Conduction, Convection, Radiation (Black Body, Grey Body)
  • Circuits/Electronics
  • Physics - Forces, Gravity Equation

Statics

  • Structural Analysis
  • Mechanics - Friction on a surface, Rolling bodies, Stability, Pure/Damped/Forced Harmonic Motion, Orbits (reaching orbit, geostationary point, changing orbit, escape velocity)

Fluid mechanics

  • Aerodynamics - Derivation of shear stress on a fluid, perfect gas equation, Bernoulli equation, Langrangian and Eulerian reference frames, control volumes and control surfaces, Conservation of mass up to 3-d, balance of momentum equations up to 3-d, Aerofoils, Circulation, Mach Number & Renauld's Number, Laminar and turbulent flow, Propulsion & Turbomachinery

Materials Science

  • Material Classes - Metals, Ceramics, Composites, Polymers, Ionic and Covalents
  • Material Microstructure
  • Properties of Materials - Strength, Stiffness, Young's Modulus, Elasiticity and Modulus of Elasticity, Hardness, Toughness, Electrical Properties?
  • Materials Selection
  • Material Processes - Annealing, Quenching, Precipitaiton Hardening, Case Hardening
  • Failure - Fatigue, Creep, Fracture, Case studies (aircraft)
  • Composites - matrix and fibers, explanation of directional properties, case studes (carbon fibre, kevlar, fibreglass)

Aircraft Design

  • Basic Aircraft Performance - Air density at altitudes, Perfect Gas equation,
  • Dynamics and Control - Control Surfaces,