• AirCONICS (Python/Rhinoceros) download
  • Aircraft Geometry Toolbox (Matlab)
  • Chapter 2: Geometry parameterization – philosophy and practice
  • Chapter 3: Curves
  • Chapter 4: Surfaces
  • Chapter 5: Aerofoil Engineering – Fundamentals
  • Chapter 6: Families of Legacy Aerofoils
  • Chapter 7: Aerofoil Parameterization
  • Chapter 8: Planform Parameterization
  • Chapter 9: Three-Dimensional Wing Synthesis
  • Chapter_10: Design Sensitivities
  • Chapter_11: Basic Aerofoil Analysis: A Worked Example
  • Chapter_12: Human-Powered Aircraft Wing Design: A Case Study in Aerodynamic Shape Optimization
  • An AirCONICS-based unmanned air vehicle model
  • Terms & Conditions

Aircraft Geometry Codes

~ Parametric Models for Optimization, scripted in Python, Rhino and Matlab

Monthly Archives: December 2014

AirCONICS v0.2 to be released shortly…

27 Saturday Dec 2014

Posted by András Sóbester in Uncategorized

≈ Leave a comment

A major update to AirCONICS is being tested and is due for release in the next few days. This includes a number of bug fixes and enhancements, as well as a parametric airliner model, built upon the AirCONICS lifting surface class and other methods included in the toolbox. Watch this space…

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Codes, etc.

  • AirCONICS (Python/Rhinoceros) download
  • Aircraft Geometry Toolbox (Matlab)
  • An AirCONICS-based unmanned air vehicle model
  • Chapter 2: Geometry parameterization – philosophy and practice
  • Chapter 3: Curves
  • Chapter 4: Surfaces
  • Chapter 5: Aerofoil Engineering – Fundamentals
  • Chapter 6: Families of Legacy Aerofoils
  • Chapter 7: Aerofoil Parameterization
  • Chapter 8: Planform Parameterization
  • Chapter 9: Three-Dimensional Wing Synthesis
  • Chapter_10: Design Sensitivities
  • Chapter_11: Basic Aerofoil Analysis: A Worked Example
  • Chapter_12: Human-Powered Aircraft Wing Design: A Case Study in Aerodynamic Shape Optimization
  • Errata
  • Terms & Conditions
  • UAV design book

Recent Posts

  • ADRpy – Aircraft Design Recipes in Python
  • Small Unmanned Fixed-Wing Aircraft Design
  • Wing sizing via constraint analysis
  • Standalone AirCONICS for Python
  • Design Optimization tools – some completely biased suggestions

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