A Mechanics project that explores Downforce in F1
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Updated
Jun 9, 2025
A Mechanics project that explores Downforce in F1
A research framework that unifies Generative AI, Reinforcement Learning, and CFD-based simulation to autonomously design and optimize aerodynamic shapes.
A data-driven airfoil model that predicts the aerodynamic coefficients for different operating conditions
A python project to simulate vortices displacements using potential flow
Implementazione di metodi numerici in ambito aerodinamico
C++ tool to determine optimal inflation layer growth ratio for CFD boundary layer meshing
Fork of the original repository by Rafael Oliveira. Launch XFOIL from MATLAB
Airfoil design for a straight-bladed VAWT at Re=4e5. Report + XFLR5 project with validation against literature.
Simple Python program with GUI for calculating simple Compressible Aerodynamics Problems
Open-source graphical interface for mesh setup and CFD solver for OpenFOAM
Tutorial for the aerodyn software for teaching in ENERGI210
3 Dimensional parametric active surface engine developed for Aerodynamic Shape and Topology parametrisation and optimisation.
It calculates the general properties of the flow that will occur as a result of the intersection of two shock waves from the same family.
Scripts for pressure measurement processing
Library for aerodynamic, metrology and physics computations. Same calculations as in ADC and other aircraft computers. This also can be used in flight simulations.
Computation of the noise intensity spectrum induced by turbulent boundary layer on the surface of subsonic passenger aircraft using eigen frequencies approach.
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