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Accelerating Computational Aerodynamics

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Higher order shape function distributions to represent solution (piecewise linear) ... up behind a rectangular wing computed using vortons ( particles' of vorticity) ... – PowerPoint PPT presentation

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Title: Accelerating Computational Aerodynamics


1
Accelerating Computational Aerodynamics
David Willis, Prof. Jaime Peraire and Prof.
Jacob White
  • Goal To develop a fast and robust computational
    tool for preliminary design and optimization of
    3-D aerodynamic bodies.
  • Approach
  • Boundary Element Methods
  • Surface solutions rather than domain simulations.
  • Faster simulation
  • Implement fast boundary element method solvers,
    eg fast multipole methods or precorrected-FFT
    approaches ( O(n) or O(nlog(n)) solution time ).
  • Increased accuracy
  • Higher order shape function distributions to
    represent solution (piecewise linear)
  • Account for surface curvature using higher order
    surface patch discretization (cubic surface
    panels).
  • Unsteady and steady flow simulation
  • Approaches to handle the free wake automatically
    have been investigated and developed.
  • User friendly
  • The goal is to maintain a user friendly approach
    while including all necessary components for
    rapid design evaluation.
  • Possible future work
  • Structural coupling, preliminary design shape
    optimization, flight simulation, stability and
    control, applications etc.

2
Examples
?The surface potential on a translating unit
sphere (non-lifting)
Above The wake position and roll up behind a
rectangular wing computed using vortons
(particles of vorticity).
?The surface pressure distribution on a swept
wing (NACA 2412).
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