4.7 Article

Preliminary Analysis on the Hydrostatic Stability of a Self-Aligning Floating Offshore Wind Turbine

期刊

出版社

MDPI
DOI: 10.3390/jmse10122017

关键词

FOWT; self-alignment; SPM; renewable energy; wind energy

资金

  1. European Union's Horizon 2020 research and innovation programme [856887]
  2. Maritime Seed Award 2020
  3. VENTuRE project

向作者/读者索取更多资源

This paper provides a detailed analysis of the hydrostatic stability characteristics of a novel floating wind turbine concept. The study focuses on offshore wind resources with water depths greater than 100 m and validates the theoretical calculations using SESAM. The results show that the floating structure exhibits hydrostatic stability characteristics that comply with industry standards.
There exist vast areas of offshore wind resources with water depths greater than 100 m that require floating structures. This paper provides a detailed analysis on the hydrostatic stability characteristics of a novel floating wind turbine concept. The preliminary design supports an 8 MW horizontal-axis wind turbine with a custom self-aligning single-point mooring (SPM) floater, which is to be constructed within the existing shipyard facilities in the Maltese Islands, located in the Central Mediterranean Sea. The theoretical hydrostatic stability calculations used to find the parameters to create the model are validated using SESAM (R). The hydrostatic stability analysis is carried out for different ballast capacities whilst also considering the maximum axial thrust induced by the rotor during operation. The results show that the entire floating structure exhibits hydrostatic stability characteristics for both the heeling and pitching axes that comply with the requirements set by the DNV ST-0119 standard. Numerical simulations using partial ballast are also presented.

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