Abstract

Aiming at the long-distance cross-sea transport of offshore wind turbines blades, and proposing a solution of multilayer marine transportation through the analysis of the characteristics and requirements of marine transport of blades. Designing a multilayer marine transportation tooling for the large wind power blade GW90 which is 90 meters long and weighs 32 tons. Designing the main structure to solve the problem of complicated and large load on blades, designing the connecting structure to solve the problem of stable connection between each multilayer tooling, designing the position structure to solve the problem of installation and positioning of blades and tooling, and using the finite element analysis method to verify the design. Finally, a multilayer offshore transportation tool with safe structure, clear function and feasible design is proposed, which provides new exploration and ideas for the efficient and safe transportation of offshore wind power blades.

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