MengyingSEWPG's Stars
IEAWindTask37/IEA-15-240-RWT
15MW reference wind turbine repository developed in conjunction with IEA Wind
ebranlard/matlab2python
Simple matlab2python converter
Stability-AI/stablediffusion
High-Resolution Image Synthesis with Latent Diffusion Models
WassimTenachi/PhySO
Physical Symbolic Optimization
BecMax/IECWind
WISDEM/CCBlade
A blade element momentum method for analyzing wind turbine aerodynamic performance that is robust (guaranteed convergence), fast (superlinear convergence rate), and smooth (continuously differentiable).
YingyiLiu/HAMS
An open-source computer program for the analysis of wave diffraction and radiation of three-dimensional floating or submerged structures
NREL/pCrunch
WISDEM/WEIS
Wind Energy with Integrated Servo-controls Toolset
NVIDIA/modulus
Open-source deep-learning framework for building, training, and fine-tuning deep learning models using state-of-the-art Physics-ML methods
old-NWTC/TurbSim
A stochastic, full-field, turbulence simulator
edwardsmith999/pyDataView
Data Viewer GUI written in python, wxpython and matplotlib
WISDEM/WISDEM
Wind Plant Integrated System Design and Engineering Model
NREL/windtools
Python tools for wind simulation setup, data processing, and analysis
ebranlard/pyDatView
A crossplatform GUI to plot tabulated data from files (e.g. CSV, Excel, OpenFAST, HAWC2, Flex...), or python pandas dataframes
OpenFAST/python-toolbox
Suite of Python tools to work with OpenFAST
ebranlard/welib
Wind energy library, python and matlab tools for wind turbines analyses
ebranlard/weio
Library to read and write files (in particular files used in the Wind Energy community)
yang7857854/F2A
F2A is an aero-hydro-servo-elastic tool developed based on AQWA by Yang Yang, a postdoctoral research associate in Liverpool John Moores University for performing fully coupled analysis of floating offshore wind turbines (FOWT). The aero-servo-elastic simulation capabilities are fully implemented within the user_force64.dll which is a built-in DLL of AQWA for external force calculation. For a coupled analysis of a floating offshore wind turbine subjected to wind, wave and current loadings, the aerodynamic loads acting on the rotor, the elastic responses of the blades and tower, and the servo-control are examined through the DLL, considering the influence from the platform motions. The platform position, velocity and acceleration at each degree of freedom are passed into the DLL to update the kinematics of the upper structures. Before being passed into DLL, these terms are transformed from the inertial coordinate system to the local coordinate system of the platform.
DTUWindEnergy/WindEnergyToolbox
Mirror of https://gitlab.windenergy.dtu.dk/toolbox/WindEnergyToolbox
DLR-AE/pyBladed
Wrapper around Bladed API and access to binary result files.
NEU-ABLE-LAB/ATLAS_FAST-par
Parallelization of the ATLAS FAST code
NREL/floris
A controls-oriented engineering wake model.