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Validation of blade-resolved computational fluid dynamics for a MW-scale turbine rotor in atmospheric flow

Authors :
Grinderslev, Christian
Vijayakumar, Ganesh
Ananthan, Shreyas
Sørensen, Niels N.
Zahle, Frederik
Sprague, Michael A.
Source :
Grinderslev, C, Vijayakumar, G, Ananthan, S, Sørensen, N N, Zahle, F & Sprague, M A 2020, ' Validation of blade-resolved computational fluid dynamics for a MW-scale turbine rotor in atmospheric flow ', Journal of Physics: Conference Series (Online), vol. 1618, no. 5, 052049 . https://doi.org/10.1088/1742-6596/1618/5/052049
Publication Year :
2020

Abstract

In this study, simulation results of two different computational fluid dynamics codes, Nalu-Wind and EllipSys3D, are presented for a wind turbine rotor in complex yawed and sheared inflow. The results are compared to measurements from the DanAero experiments, to validate computed pressures and azimuthal trends. Despite different code methodologies and grid setups, the codes agree well in computed pressures and integrated forces along the blade for all blade azimuthal positions, however with some discrepancy in the very yawed case. Additionally, both codes capture well the azimuthal trends and force levels seen in measurements. Investigation into discrepancies shows that expanding grids before the rotor, lead to smearing of the wind profiles, which is likely the main cause of the differences in the results between the codes. Additionally, omission of the ground constraint cause discrepancies in relative velocity seen by the passing blade, due to an over speeding beneath the rotor.

Details

Language :
English
Database :
OpenAIRE
Journal :
Grinderslev, C, Vijayakumar, G, Ananthan, S, Sørensen, N N, Zahle, F & Sprague, M A 2020, ' Validation of blade-resolved computational fluid dynamics for a MW-scale turbine rotor in atmospheric flow ', Journal of Physics: Conference Series (Online), vol. 1618, no. 5, 052049 . https://doi.org/10.1088/1742-6596/1618/5/052049
Accession number :
edsair.od......1202..81502ab8aefbe679d387b37b93a61b6e
Full Text :
https://doi.org/10.1088/1742-6596/1618/5/052049