NeuralFoil is a practical airfoil aerodynamics analysis tool using physics-informed machine learning, exposed to end-users in pure Python/NumPy.
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Updated
Oct 17, 2025 - Python
NeuralFoil is a practical airfoil aerodynamics analysis tool using physics-informed machine learning, exposed to end-users in pure Python/NumPy.
An object-oriented Python 3 GUI and API for single- and multi-element parametric airfoil design, analysis, and optimization
Mapping, Radial Basis Function, RBF, FSI
Open-source Link between AGILE and OpenMDAO
Distributed Multidisciplinary Design Optimization
How to replace classical POD+I to do Real Time Aeroelasticity
Interactive tutorial for conceptual eVTOL design optimization using OpenMDAO, JAX, and Jupyter Notebooks.
O algoritmo MDO é utilizado para otimizar problemas complexos que envolvem múltiplas disciplinas. Ele é amplamente aplicado em engenharia, especialmente em design aeroespacial e automotivo.
A dynamic, graph-driven Multidisciplinary Design Optimization (MDO) framework integrating FalkorDB, OpenMDAO, and multi-fidelity surrogate models.
MDO on a liquid sounding rocket
Space benchmark problem repository
HYDRA-C2: Multi-Domain Operations C2 Framework — 25 actors, 18 API endpoints, MIL-STD-2525B COP dashboard, OODA/kill-web doctrine, ADS-B/AIS/SDR signal intelligence
Evaluation interface documentation and examples for ADORE.
A proof-of-concept of using DEAP as an optimization driver for OpenMDAO.
Dynamic MDO mathematical problem
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