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Correction

Correction: Sobhaniasl et al. Fatigue Life Assessment for Power Cables in Floating Offshore Wind Turbines. Energies 2020, 13, 3096

by
Mohsen Sobhaniasl
1,
Francesco Petrini
1,*,
Madjid Karimirad
2 and
Franco Bontempi
1,†
1
Department of Structural an Geotechnical Engineering, Sapienza University of Rome, 00184 Rome, Italy
2
Civil Engineering, School of Natural and Built Environment, Queen’s University Belfast (QUB), Belfast BT7 1NN, UK
*
Author to whom correspondence should be addressed.
Deceased author.
Submission received: 20 October 2021 / Accepted: 29 November 2024 / Published: 21 January 2025
(This article belongs to the Section A3: Wind, Wave and Tidal Energy)

Text Correction

There was an error in the original publication [1]. The mistake was due to incorrectly indicating the “first derivative” of the bending deflection instead of the second derivative.
A correction has been made to 5. Fatigue Analysis, 2nd paragraph, 4th sentence:
The bending curvature of the cable is obtained step-by-step as a second spatial derivative of the bending deflection starting from the time histories of the displacements of the two nodes adjacent to the focused location.
The authors state that the scientific conclusions are unaffected. This correction was approved by the Academic Editor. The original publication has also been updated.

Error in Figures

In the original publication, there was a mistake in Figure 1 as published. The mistake was due to an error in indicating the units of y-axis. The corrected Figure 1 appears below.
In the original publication, there was a mistake in Figure 7. The mistake was due to an error in presenting the calculations made in the Matlab routine. The corrected Figure 7 appears below.

Reference

  1. Sobhaniasl, M.; Petrini, F.; Karimirad, M.; Bontempi, F. Fatigue Life Assessment for Power Cables in Floating Offshore Wind Turbines. Energies 2020, 13, 3096. [Google Scholar] [CrossRef]
Figure 1. Stress–strain constitutive relationship of the cable.
Figure 1. Stress–strain constitutive relationship of the cable.
Energies 18 00457 g001
Figure 7. Fatigue analysis of dynamic electrical cable.
Figure 7. Fatigue analysis of dynamic electrical cable.
Energies 18 00457 g007
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Share and Cite

MDPI and ACS Style

Sobhaniasl, M.; Petrini, F.; Karimirad, M.; Bontempi, F. Correction: Sobhaniasl et al. Fatigue Life Assessment for Power Cables in Floating Offshore Wind Turbines. Energies 2020, 13, 3096. Energies 2025, 18, 457. https://doi.org/10.3390/en18030457

AMA Style

Sobhaniasl M, Petrini F, Karimirad M, Bontempi F. Correction: Sobhaniasl et al. Fatigue Life Assessment for Power Cables in Floating Offshore Wind Turbines. Energies 2020, 13, 3096. Energies. 2025; 18(3):457. https://doi.org/10.3390/en18030457

Chicago/Turabian Style

Sobhaniasl, Mohsen, Francesco Petrini, Madjid Karimirad, and Franco Bontempi. 2025. "Correction: Sobhaniasl et al. Fatigue Life Assessment for Power Cables in Floating Offshore Wind Turbines. Energies 2020, 13, 3096" Energies 18, no. 3: 457. https://doi.org/10.3390/en18030457

APA Style

Sobhaniasl, M., Petrini, F., Karimirad, M., & Bontempi, F. (2025). Correction: Sobhaniasl et al. Fatigue Life Assessment for Power Cables in Floating Offshore Wind Turbines. Energies 2020, 13, 3096. Energies, 18(3), 457. https://doi.org/10.3390/en18030457

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