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首页> 外文期刊>Journal of marine science and technology >Mechanism of mooring line breakage of floating offshore wind turbine under extreme coherent gust with direction change condition
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Mechanism of mooring line breakage of floating offshore wind turbine under extreme coherent gust with direction change condition

机译:在极端相干阵风下浮动近海风力涡轮机系泊线破裂机制,方向变化条件

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摘要

With an extreme load condition, the mooring system of a floating offshore wind turbine (FOWT) will be led to failure, such as mooring line breakage. However, the induced FOWT mooring line breakage in extreme gust still requires further study for design optimization in the future. In this paper, an aero-hydro-cable-servo time domain coupled simulation have been carried out of a NREL's 5 MW OC4-DeepCwind semi-submersible type FOWT for investigate the mooring system response under extreme coherent gust with direction change (ECD) condition. The platform is assumed to be installed at 50 m depth location in the South China Sea. The practical ECD is simulated by a fast conversion between two wind conditions with different mean wind speeds and wind direction. In addition, the gust characteristics that can generate snap tension of mooring lines were identified, and the consequence of the induced ECD accident is investigated. ECD condition with rise time of 10 s is prone to cause a snap tension of the mooring line, and it may eventually lead to cascading mooring line breakage and potential catastrophic collision events.
机译:具有极端负载条件,浮动海上风力涡轮机(家禽)的系泊系统将导致失效,如系泊线断裂。然而,极端阵风的诱导的家禽系泊线破裂仍需要进一步研究未来的设计优化。本文采用了空气 - 水电缆 - 伺服时域耦合模拟,采用了NRER的5 MW OC4-Deepcwind半潜水型家禽,用于在极端相干阵风下进行系泊系统响应,方向变化(ECD)条件。假设平台安装在南海50米的深度位置。实际的ECD通过两个风条件之间的快速转换模拟,具有不同的风速和风向。另外,鉴定了可以产生系泊线的卡扣张力的阵风特性,并研究了诱导的ECD事故的结果。具有10秒的上升时间的ECD条件容易导致系泊线的张力张力,并且最终可能导致级联系泊线破裂和潜在的灾难性碰撞事件。

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