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PREDICTION OF SHORT-TERM EXTREME RESPONSE OF FLOATING OFFSHORE WIND TURBINE UNDER STORM CONDITION

机译:风暴条件下浮动海上风力涡轮机短期极端响应的预测

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To predict the short-term motion responses of floating offshore wind turbine under extreme wind-wave excitation, a numerical model based on the two-phase flow finite volume method was developed. In this paper, uni-directional irregular waves composed of 100 cosine waves with equal frequency interval were simulated by the wave forcing technique, resulting in the measured spectrum in accordance with the target spectrum. Then, a 100-seconds wave segment containing the maximum wave height was selected for fully coupled dynamic analysis of the OC4-DeepCwind system in CFD, and the results were compared with those of FAST under the same wind and wave sea state. It was found that the motion responses of heave and pitch motion responses predicted by two methods agree well. The second-order slow drift force generated in CFD led to the difference in surge motion. The predicted sway, roll, and yaw motions by these two methods were also compared. In addition, significant differences between two methods' predictions on mooring tension were found.
机译:为了预测极端风波励磁下浮动海上风力涡轮机的短期运动响应,开发了一种基于两相流有限体积法的数值模型。在本文中,通过波强制技术模拟了由100个频率间隔的100个余弦波组成的单向不规则波,导致根据目标频谱的测量光谱。然后,选择包含最大波高度的100秒波段用于CFD中的OC4-Deepcwind系统的完全耦合动态分析,并将结果与​​相同风和波浪海水位下的快速进行比较。有发现,通过两种方法预测的升降和音调运动响应的运动响应很好。 CFD中产生的二阶缓慢漂移力导致浪涌运动的差异。还比较了这两种方法的预测摇摆,卷和偏航运动。此外,发现了两种方法对系泊张力的预测之间的显着差异。

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