首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >ACTIVE LOAD MITIGATION TO COUNTER THE FATIGUE DAMAGE CONTRIBUTIONS FROM UNAVAILABILITY IN OFFSHORE WIND TURBINES
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ACTIVE LOAD MITIGATION TO COUNTER THE FATIGUE DAMAGE CONTRIBUTIONS FROM UNAVAILABILITY IN OFFSHORE WIND TURBINES

机译:主动载荷缓解以抵消海上风轮机不可用造成的疲劳损伤

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The offshore wind industry continues to grow, but there is still a need for more economical designs. As unavailability conditions can be critical for the fatigue damage in support structures, design standards use conservative values for availability. This leads to most turbines having an unused fatigue capacity at the end of the lifetime. This paper investigates the potential for reducing this unused capacity in order to reduce the capital expenses. The proposed strategy is to design the turbines for a higher availability, closer to the expected value. For individual turbines that experience lower availability than the design value, active load mitigation is imposed to reduce the fatigue damage. The potential of this methods is explored, together with its limitations. It is found that the effect of faults occurring early in the turbines lifetime can be reduced. This is not the case for faults occurring towards the end of the lifetime.
机译:海上风电行业继续增长,但是仍然需要更经济的设计。由于不可用条件对于支撑结构中的疲劳损伤可能至关重要,因此设计标准使用保守性值作为可用性。这导致大多数涡轮机在使用寿命结束时具有未使用的疲劳能力。本文研究了减少这种未使用容量以减少资本支出的潜力。建议的策略是将涡轮机设计为具有更高的可用性,更接近于预期值。对于可用性低于设计值的单个涡轮机,必须采取主动负荷减轻措施以减少疲劳损伤。探索了这种方法的潜力及其局限性。已经发现,可以减少在涡轮机寿命早期发生的故障的影响。对于使用寿命即将结束的故障,情况并非如此。

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