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Dataset supporting the publication "Effects of surface roughness on the propulsive performance of pitching foils"

Dataset supporting the publication "Effects of surface roughness on the propulsive performance of pitching foils"
Dataset supporting the publication "Effects of surface roughness on the propulsive performance of pitching foils"
This dataset is supporting the publication Vilumbrales Garcia, R et al (2024) "Effects of surface roughness on the propulsive performance of pitching foils" Journal of Fluid Mechanics. https://doi.org/10.1017/jfm.2023.1009 The dataset contains the excel files that relate to each of the figures within the paper: Fig2, Fig3, Fig4, Fig5, Fig6, Fig7 The data highlight that the effect of roughness on dynamic systems is very different than that on static systems, thereby, cannot be accounted for by only using information obtained from static cases. This also indicates that the performance of unsteady, flapping systems is more robust to the changes in surface roughness. The data is accessible via license CC BY
University of Southampton
Vilumbrales Garcia, Rodrigo
9019c50c-015c-4480-aea5-4d88b41d323a
Vilumbrales Garcia, Rodrigo
9019c50c-015c-4480-aea5-4d88b41d323a

Vilumbrales Garcia, Rodrigo (2024) Dataset supporting the publication "Effects of surface roughness on the propulsive performance of pitching foils". University of Southampton doi:10.5258/SOTON/D2943 [Dataset]

Record type: Dataset

Abstract

This dataset is supporting the publication Vilumbrales Garcia, R et al (2024) "Effects of surface roughness on the propulsive performance of pitching foils" Journal of Fluid Mechanics. https://doi.org/10.1017/jfm.2023.1009 The dataset contains the excel files that relate to each of the figures within the paper: Fig2, Fig3, Fig4, Fig5, Fig6, Fig7 The data highlight that the effect of roughness on dynamic systems is very different than that on static systems, thereby, cannot be accounted for by only using information obtained from static cases. This also indicates that the performance of unsteady, flapping systems is more robust to the changes in surface roughness. The data is accessible via license CC BY

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README.txt - Dataset
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dataset_jfm.zip - Dataset
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More information

Published date: 2024

Identifiers

Local EPrints ID: 487018
URI: http://eprints.soton.ac.uk/id/eprint/487018
PURE UUID: 3ecee63e-ba27-487a-95c7-f8be9eaf4855

Catalogue record

Date deposited: 09 Feb 2024 17:44
Last modified: 19 Feb 2024 16:12

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Contributors

Creator: Rodrigo Vilumbrales Garcia

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