LAPSE:2023.18187v1
Published Article

LAPSE:2023.18187v1
Finite Element Analysis of Tidal Turbine Blade Subjected to Impact Loads from Sea Animals
March 7, 2023
Abstract
The present work investigates structural response of tidal stream turbine blades subjected to impact loads from sea animals. A full-scale tidal turbine blade model was developed using a finite element modelling software ABAQUS, while a simplified geometry of an adult killer whale (Orcinus orca) was assumed in simulating impact on the blade. The foil profiles along the turbine blade were based on the NACA 63-8XX series, while the geometric and material properties of the sea animal were calibrated with experimental results. The numerical model simulated the dynamic response of the blade, accounting for radial velocities of the blade corresponding to real life scenarios. Different magnitudes and trajectories of the velocity vector of the sea animal were simulated, in order to investigate their influence on the turbine blade’s plastic deformation. Furthermore, multiple impacts were analysed, in order to monitor the accumulation of plastic strain in the material of the blade. Finally, the potential application of stainless steel material in tidal stream turbine blades for impact resistance was evaluated, through comparison of numerical results obtained from models using stainless steel and mild carbon steel materials.
The present work investigates structural response of tidal stream turbine blades subjected to impact loads from sea animals. A full-scale tidal turbine blade model was developed using a finite element modelling software ABAQUS, while a simplified geometry of an adult killer whale (Orcinus orca) was assumed in simulating impact on the blade. The foil profiles along the turbine blade were based on the NACA 63-8XX series, while the geometric and material properties of the sea animal were calibrated with experimental results. The numerical model simulated the dynamic response of the blade, accounting for radial velocities of the blade corresponding to real life scenarios. Different magnitudes and trajectories of the velocity vector of the sea animal were simulated, in order to investigate their influence on the turbine blade’s plastic deformation. Furthermore, multiple impacts were analysed, in order to monitor the accumulation of plastic strain in the material of the blade. Finally, the potential application of stainless steel material in tidal stream turbine blades for impact resistance was evaluated, through comparison of numerical results obtained from models using stainless steel and mild carbon steel materials.
Record ID
Keywords
dynamic response, impact, killer whale, strain rate, tidal turbine blade
Subject
Suggested Citation
Gavriilidis I, Huang Y. Finite Element Analysis of Tidal Turbine Blade Subjected to Impact Loads from Sea Animals. (2023). LAPSE:2023.18187v1
Author Affiliations
Journal Name
Energies
Volume
14
Issue
21
First Page
7208
Year
2021
Publication Date
2021-11-02
ISSN
1996-1073
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Original Submission
Other Meta
PII: en14217208, Publication Type: Journal Article
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LAPSE:2023.18187v1
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https://doi.org/10.3390/en14217208
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Mar 7, 2023
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