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@Howland-Lab

Howland Lab

Howland Lab

Our group studies environmental fluid mechanics and the modeling, optimization, and control of renewable and efficient energy systems. This work is focused at the intersection of fluid mechanics, weather and climate modeling, uncertainty quantification, and optimization and control with an emphasis on renewable energy systems. We use synergistic approaches including simulations, laboratory and field experiments, and modeling to understand the operation of renewable energy systems, with the goal of improving the efficiency, predictability, and reliability of low-carbon energy generation. We are pursuing two coupled research themes:

  1. Modeling complex environment-energy system interactions through the use of simulations and experiments

  2. Leveraging the developed models in full-scale field experiments or case studies to improve the operation and integration of low-carbon generation

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  1. Unified-Momentum-Model Unified-Momentum-Model Public

    A reference implementation of the Unified Momentum Model for rotors, as presented in "Unified Momentum Model for Rotor Aerodynamics Across Operating Regimes"

    Jupyter Notebook 50 5

  2. MITWindfarm MITWindfarm Public

    Static wind farm simulator in Python

    Python 3 3

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