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Dynamic Response for a Submerged Floating Offshore Wind Turbine with Different Mooring Configurations

机译:不同系泊结构的水下浮式海上风力发电机的动力响应

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The paper discusses the effects of mooring configurations on the dynamic response of a submerged floating offshore wind turbine (SFOWT) for intermediate water depths. A coupled dynamic model of a wind turbine-tower-floating platform-mooring system is established, and the dynamic response of the platform, tensions in mooring lines, and bending moment at the tower base and blade root under four different mooring configurations are checked. A well-stabilized configuration (i.e., four vertical lines and 12 diagonal lines with an inclination angle of 30°) is selected to study the coupled dynamic responses of SFOWT with broken mooring lines, and in order to keep the safety of SFOWT under extreme sea-states, the pretension of the vertical mooring line has to increase from 1800–2780 kN. Results show that the optimized mooring system can provide larger restoring force, and the SFOWT has a smaller movement response under extreme sea-states; when the mooring lines in the upwind wave direction are broken, an increased motion response of the platform will be caused. However, there is no slack in the remaining mooring lines, and the SFOWT still has enough stability.
机译:本文讨论了在中等水深情况下,系泊配置对水下浮式海上风力涡轮机(SFOWT)动力响应的影响。建立了风轮机-塔式-浮动平台-系泊系统的耦合动力学模型,并在四种不同的系泊结构下,检验了平台的动态响应,系泊线中的张力以及塔架基座和叶片根部的弯矩。选择稳定的构型(即,四个垂直线和12条对角线,倾斜角度为30°)来研究SFOWT与系泊缆线的耦合动力响应,并在极端海况下保持SFOWT的安全性-状态,垂直系泊绳的预应力必须从1800-2780 kN增加。结果表明,优化的系泊系统可以提供更大的恢复力,并且SFOWT在极端海况下具有较小的运动响应。当在逆风方向上的系泊缆断裂时,将引起平台的运动响应增加。但是,其余的系泊缆线没有松弛,并且SFOWT仍然具有足够的稳定性。

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