Dynamic Flow Modelling for Model-Predictive Wind Farm Control

Journal Article (2020)
Author(s)

Maarten J. Van Den Broek (TU Delft - Mechanical Engineering)

Jan Willem Van Wingerden (TU Delft - Mechanical Engineering)

Research Group
Team Jan-Willem van Wingerden
DOI related publication
https://doi.org/10.1088/1742-6596/1618/2/022023 Final published version
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Publication Year
2020
Language
English
Research Group
Team Jan-Willem van Wingerden
Issue number
2
Volume number
1618
Article number
022023
Event
Science of Making Torque from Wind 2020, TORQUE 2020 (2020-09-28 - 2020-10-02), Online, Virtual, Online, Netherlands
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Abstract

We aim to improve wind farm control for power output by building on the results from WFSim for the development of a dynamic wind farm model. This model will be part of a closed-loop, economic model-predictive control approach for wind farms. It is constructed from first principles using open-source tools to be suitable for adjoint-based optimisation of turbine yaw angles. In a steady-state inflow configuration with two turbines, the new control model matches power expectations from high fidelity simulations in SOWFA to within 15 %. Under time-varying wind directions, it shows time delays in wake direction as inflow changes propagate through the farm with the wind speed, although the dynamics still differ from the SOWFA reference. The model runs flow simulations for a wind farm with a 3 x 3 array of turbines at a real-time order of magnitude on a regular laptop computer. The new control model shows dynamic flow behaviour as wake changes propagate through the wind farm. Some further adjustments are necessary to accurately model three-dimensional flow in two dimensions. With more validation of the wake dynamics, it will be suitable for application in a new closed-loop wind farm controller.