Experimental data, Green's function correction code and numerical setups used in Wave propagation modelling approach for improved assessment of the acoustic field in closed test section wind tunnels
DOI: 10.4121/e159dc57-9a31-49bc-a12f-6b3de76d9fc4
Datacite citation style
Dataset
This dataset contains experimental acoustic data recorded in a Low Turbulence wind Tunnel (LTT) 2020 campaign. This data was collected with a phased-microphone array. The goal of the campaign was to investigate the influence of reflections and any acoustic disturbances (such as background noise) on the accuracy of the acoustic results. Numerical acoustic simulations were run to predict the acoustic response of the wind tunnel test section. Based on the results from the numerical simulations, the post-processing of experimental acoustic data was improved, by correcting the Green's function used in Beamforming. The numerical setups, the numerical results and the MATLAB code used to calculate the Green's function correction are included in this dataset.
This experimental data, numerical simulations and post-processing code provide the basis for the results of the publication: Mourão Bento, H. F., et. al. Wave propagation modelling approach for improved assessment of the acoustic field in closed test section wind tunnels. Journal of Sound and Vibration (2025).
The numerical setups can be opened with COMSOL Multiphysics software.
This dataset includes:
- dataset_main.7z: COMSOL acoustic numerical setups and their results. Post-processing MATLAB code to calculate a Green's function correction from the numerical acoustic data.
- LTT_experimental_data.7z: Experimental phased-microphone array acoustic data collected during the LTT campaign.
- README File: This file provides an overview of the content of the folder, explanation of the data format, and the relevant context for understanding the dataset. This file also contains citation guidelines
History
- 2025-06-30 first online, published, posted
Publisher
4TU.ResearchDataFormat
'.mat', '.m', '.txt', '.mph', '.7z' and '.JPG'Associated peer-reviewed publication
Wave propagation modelling approach for improved assessment of the acoustic field in closed test section wind tunnelsReferences
Organizations
TU Delft, Faculty of Aerospace Engineering, Department of Flow Physics and Technology, Wind Energy SectionDATA
Files (3)
- 21,138 bytesMD5:
ebed0a02362f37dced27c1033139b5bc
README.txt - 10,841,980,227 bytesMD5:
dab12665e7e60de21402877199225c53
dataset_main.7z - 202,411,058,882 bytesMD5:
82783eacf93af54246245c27d3f5535b
LTT_experimental_data.7z -
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