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A review on mooring lines and anchors of floating marine structures

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Listed:
  • Rui, Shengjie
  • Zhou, Zefeng
  • Gao, Zhen
  • Jostad, Hans Petter
  • Wang, Lizhong
  • Xu, Hang
  • Guo, Zhen

Abstract

Marine resources and energy exploitation has driven the advancement of floating structures, e.g., the oil & gas platforms, the floaters to support floating wind turbines. Mooring systems, encompassing mooring lines and anchors, are adopted to position the floaters and restrict their motions due to the environmental loads. The evolving diversity of floating structures poses new challenges to mooring systems, needing to be summarized for further development. This review introduces the recent advancements in the research and application of mooring lines and anchors, and some crucial issues related to design and analysis are discussed. First, the applications of floating structures are reviewed, and different types of floaters are compared based on the characteristics. Subsequently, the mooring system classification and shared mooring line and anchor are reviewed and discussed, and then design principles and analysis methodologies of mooring systems are summarized. Furthermore, mooring line components are discussed, the modelling and analysis methods of mooring lines are introduced. A critical threat to mooring safety, seabed trenches, is scrutinized. Finally, various anchors are compared and summarized based on their capacities and installation methods. Some problems related to anchor long-term capacities are discussed. This review provides a guide on further research and applications of moorings and anchors, which targets to benefit more precise mooring and anchor design, potentially prompting significant cost reductions in the deployment of floating wind turbines.

Suggested Citation

  • Rui, Shengjie & Zhou, Zefeng & Gao, Zhen & Jostad, Hans Petter & Wang, Lizhong & Xu, Hang & Guo, Zhen, 2024. "A review on mooring lines and anchors of floating marine structures," Renewable and Sustainable Energy Reviews, Elsevier, vol. 199(C).
  • Handle: RePEc:eee:rensus:v:199:y:2024:i:c:s1364032124002703
    DOI: 10.1016/j.rser.2024.114547
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    References listed on IDEAS

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    1. Muehlenbachs, Lucija & Cohen, Mark A. & Gerarden, Todd, 2013. "The impact of water depth on safety and environmental performance in offshore oil and gas production," Energy Policy, Elsevier, vol. 55(C), pages 699-705.
    2. Evgeny Solomin & Evgeny Sirotkin & Erdem Cuce & Shanmuga Priya Selvanathan & Sudhakar Kumarasamy, 2021. "Hybrid Floating Solar Plant Designs: A Review," Energies, MDPI, vol. 14(10), pages 1-25, May.
    3. Bento, Nuno & Fontes, Margarida, 2019. "Emergence of floating offshore wind energy: Technology and industry," Renewable and Sustainable Energy Reviews, Elsevier, vol. 99(C), pages 66-82.
    4. Goggins, Jamie & Finnegan, William, 2014. "Shape optimisation of floating wave energy converters for a specified wave energy spectrum," Renewable Energy, Elsevier, vol. 71(C), pages 208-220.
    5. Chen, Jiahao & Hu, Zhiqiang & Liu, Geliang & Wan, Decheng, 2019. "Coupled aero-hydro-servo-elastic methods for floating wind turbines," Renewable Energy, Elsevier, vol. 130(C), pages 139-153.
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    1. Zhang, Zhongchang & Rui, Shengjie & Liu, Zhongqiang & Yang, Kongkuan & Sun, Xingye & Zhang, Shihong, 2024. "Attention based surrogate model to predict load envelope of monopile supporting offshore wind turbines," Renewable Energy, Elsevier, vol. 229(C).

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