Abstract
In this paper, the primary objective is to investigate flow structures in the wake of wind turbines based on applying a truncated Proper Orthogonal Decomposition (POD) approach. This scheme decomposes the three-dimensional velocity fields produced by the high-fidelity PArallelized LES Model (PALM) into a number of orthogonal spatial modes and time-dependent weighting coefficients. PALM has been combined with an actuator disk model with rotation to incorporate the effects of a turbine array. The time-dependent deterministic weights from applying the POD scheme are replaced by stochastic weights, estimated from two independent stochastic techniques that aim to account for unresolved small-scale features for a number of POD modes. We then reconstruct the flow field by a small number of stochastic modes to investigate how well the applied stochastic methodologies can reproduce the flow field compared to the original LES results.
Cite
CITATION STYLE
Paskyabi, M. B., Krutova, M., Nielsen, F. G., Reuder, J., & Guernaoui, O. E. (2020). On Stochastic Reduced-Order and LES-based Models of Offshore Wind Turbine Wakes. In Journal of Physics: Conference Series (Vol. 1669). IOP Publishing Ltd. https://doi.org/10.1088/1742-6596/1669/1/012018
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