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The aim of the project is to build an open source PV forecast that is free and easy to use.
lang: Jupyter Notebook
stars: 65
last activity:
Allows users to perform wave energy converter device design optimization studies with constrained optimal control.
lang: Python
stars: 14
last activity:
A library for simulating wind and marine hydrokinetic turbines in OpenFOAM using the actuator line method.
lang: C++
stars: 117
last activity:
A multi-scale, Python-based library for the modeling of solar cells and semiconductor materials.
lang: Python
stars: 133
last activity:
A set of documented functions for simulating the performance of photovoltaic energy systems.
lang: Python
stars: 1.2K
last activity:
Set of tools to calculate degradation responses and degradation related parameters for PV.
lang: Jupyter Notebook
stars: 32
last activity:
Combines reservoir, wellbore, surface plant, and economic models to estimate the capital and operation and maintenance costs, instantaneous and lifetime energy production, and overall levelized cost of energy of a geothermal plant.
lang: Python
stars: 32
last activity:
NREL's Reference OpenSource Controller for wind turbine applications.
lang: Python
stars: 117
last activity:
Use AI to model and discover new catalysts for use in renewable energy storage to help in addressing climate change.
lang: Python
stars: 965
last activity:
A multi-physics, multi-fidelity tool for simulating the coupled dynamic response of wind turbines and wind farms.
lang: Fortran
stars: 688
last activity:
A collection of Python libraries for simulating the irradiation of any point on earth by the sun. It includes code for extremely precise ephemeris calculations.
lang: Jupyter Notebook
stars: 375
last activity:
A customizable Home Assistant card to emulate the Sunsynk System flow that's displayed on the Inverter screen.
lang: TypeScript
stars: 194
last activity: