Supporting data for "Validation of the near-wake of a scaled X-Rotor vertical-axis wind turbine predicted by a free-wake vortex model"

DOI:10.4121/64997800-697a-4a94-bb16-f5bb66e8a5ff.v1
The DOI displayed above is for this specific version of this dataset, which is currently the latest. Newer versions may be published in the future. For a link that will always point to the latest version, please use
DOI: 10.4121/64997800-697a-4a94-bb16-f5bb66e8a5ff

Datacite citation style

Giri Ajay, Adhyanth; Bensason, David; De Tavernier, Delphine (2025): Supporting data for "Validation of the near-wake of a scaled X-Rotor vertical-axis wind turbine predicted by a free-wake vortex model". Version 1. 4TU.ResearchData. dataset. https://doi.org/10.4121/64997800-697a-4a94-bb16-f5bb66e8a5ff.v1
Other citation styles (APA, Harvard, MLA, Vancouver, Chicago, IEEE) available at Datacite

Dataset

This is a numerical data repository on 4TU.ResearchData identified through [DOI] thanks to 4TU.ResearchData (https://doi.org/10.4121/64997800-697a-4a94-bb16-f5bb66e8a5ff). The data supports the results presented in the manuscript titled "Validation of the near-wake of a scaled X-Rotor vertical-axis wind turbine predicted by a free-wake vortex model (doi: https://doi.org/10.5194/wes-2025-54)". The data presented here contains 3D flow field data for the X-Rotor types at 36 azimuthal positions as well as 3 pitch offsets, resulting with an overall 108 different cases.


One zip folder, entitled "data_CACTUS_discrete_dynamic_stall_72_azimuth.zip", is provided containing all the corresponding data used in this study. A detailed overview of this data set is presented below. For further details, please check the markdown file 'README.md' to get detailed information on how the study data is structured and how to use it. All of these files require MATLAB R2022a or above or any tools that can read *.mat files to open and use.


History

  • 2025-07-04 first online, published, posted

Publisher

4TU.ResearchData

Format

*.mat, *.in, *.geom, *.zip

Organizations

TU Delft, Faculty of Aerospace Engineering, Department of Flow Physics and Technology, Wind Energy Section

DATA

Files (2)