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FATIGUE ANALYSIS AT THE TOWER OF A 12-MW FLOATING OFFSHORE WIND TURBINE

机译:一座12兆瓦浮动海上风力涡轮机的疲劳分析

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The initial design of a 12-MW floating offshore wind turbine (FOWT) was made by the University of Ulsan (UOU) based on the 5-MW offshore wind turbine of the National Renewable Energy Laboratory (NREL) using the law of similarity. The tower design was checked through the eigenfrequency and fatigue strength analysis according to the GL guideline of tower design conditions. The direct expansion of the 5 MW wind turbine support structure caused a resonance problem of the tower of the 12-MW UOU FOWT and the tower length was adjusted to avoid the 3P resonance. Wind turbines are required to have a design life of more than 20 years and shall be designed to endure both ultimate and fatigue loads experienced during the design life. The platform pitch motion of FOWTs due to combined wave and wind loading may result severely in both fore-aft forces and moments at the base of the tower. In this study, we used the simplified fatigue analysis, which is generally applied when considering safety margins by stress to predict the fatigue life of tower. In order to calculate the fatigue load, the Markov matrix was constructed by using the cycle counting method to determine range, average value, and cycle number of loads from peak and valley values of actual load histories simulated by FAST v8 of the tower base. The predicted fatigue life at the tower base was follow by S/N curves for welded steel structures and it was calculated by the Palmgren-Miner's rule.
机译:一个12兆瓦的浮动式海上风力涡轮机(FOWT)的初始设计是由蔚山的基础上,国家可再生能源实验室(NREL)的使用相似定律的5兆瓦海上风力发电机大学(UOU)制成。该塔设计是根据塔设计条件GL指南通过固有频率和疲劳强度分析检查。 5兆瓦风力涡轮机的支撑结构的直接膨胀引起的12 MW UOU FOWT的塔和塔长度的共振问题调节以避免3P共振。风力涡轮机都要求有超过20年的设计寿命和设计应能承受的设计寿命期间经历都最终和疲劳载荷。由于合成波和风力载荷FOWTs的平台俯仰运动可能会导致严重在塔架的基部两者前后力和力矩。在这项研究中,我们使用了简化的疲劳分析,由应力考虑安全余量时预测塔的疲劳寿命被施用。为了计算的疲劳负载,该马氏矩阵通过使用循环计数的方法来确定的范围,平均值,以及从由塔架基座的FAST V8模拟实际负载履历的峰值和谷值的负载循环数构成。在塔底部的预测的疲劳寿命为后续通过用于焊接结构钢的S / N曲线和它是由Palmgren-矿工的规则计算。

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