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◆ Ocean Engineering2026-02-09· Subsea

Research on drift limits for floating offshore substations based on the mechanical strength of dynamic cables

Binghao Zhao, Haozhi Wang, Xudong Yan, Yu Wei, Cheng Zhang, Shanghua Wu, Dayong Zhang, Qianjin Yue

原始摘要(英文原文)· Original abstract
Floating Offshore Substations (FOSSs) are essential for far-offshore wind power. However, their design is constrained by the inherent conflict between load-bearing capacity and draft limitations. This challenge has kept FOSSs primarily at the conceptual stage, with a lack of mature design guidelines and established displacement criteria that is established to protect critical submarine cables. This study focused on the dynamic characteristics of submarine cables connected to FOSSs, and simulated a Cable–FOSSs model under dynamic wave load control. The tensile tension and bending curvature of the 100-m-deep cable under different design loads were measured. The maximum displacement of the top FOSSs when the cable first reached tensile or bending failure was analyzed, and optimization schemes related to cable attachments were made based on the failure forms. The simulation results show that the failure location and form of the cable connected to FOSSs are closely related to the layout. The obtained displacement limit is approximately 9-13% of the water depth. After optimization, the maximum value can reach 17.5% of the water depth. This provides key design criteria for the overall design of FOSSs and promotes the further construction of large-scale wind power facilities in the deep sea.
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Research on drift limits for floating offshore substations based on the mechanical strength of dynamic cables — 科研速览 Science Skim