Python finite-element library for wind turbine blade and tower modal analysis (OpenFAST/ElastoDyn)
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Updated
Aug 13, 2026 - Python
Python finite-element library for wind turbine blade and tower modal analysis (OpenFAST/ElastoDyn)
Continuous Section Fields: A Computational Modelling Framework for Axially Graded Non-Uniform Structural Members
Preparation, execution, and post-processing workflow for OpenFAST simulation campaigns
Op^3 (OptumGX-OpenSeesPy-OpenFAST) integrated numerical modeling framework for offshore wind turbines. 11 examples (NREL 5MW + IEA 15MW + Gunsan + 4 isolation tests + 2 jackets), 33/33 analyses passing, fully open-source path with industry-standard 6x6 stiffness formulas (DNV, ISO, API, OWA).
Real-time monitoring and visualization tool for OpenFAST simulations. Dynamically plots wind turbine parameters (wind speed, pitch angles, loads, etc.) from .out files, either during live simulations or for post-processing analysis. Eliminates manual Excel charting and handles thousands of data points automatically.
stablib is a Python toolbox for computational stability analysis of dynamical systems, with support for eigenvalue methods, modal analysis, Floquet theory, and periodic state-space systems. It is aimed at research applications in aeroelasticity, rotating machinery, and engineering dynamics.
This project facilitates the execution and management of OpenFAST simulations by dynamically updating input files, running simulations, and organizing outputs for Design Load Cases.
Python tools and engineering methods for wind turbine scaling, retrofit studies, and concept design
Modern Python package for IECWind-style IEC wind condition generation for OpenFAST InflowWind
Runs multiple OpenFAST DLC simulations sequentially as a campaign
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