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首页> 外文期刊>Italian Journal of Engineering Geology and Environment >PHYSICAL MODEL TESTS ON SPAR BUOY FOR OFFSHORE FLOATING WIND ENERGY CONVERSION
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PHYSICAL MODEL TESTS ON SPAR BUOY FOR OFFSHORE FLOATING WIND ENERGY CONVERSION

机译:海上浮动风能转换翼梁浮标物理模型试验

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摘要

The present paper describes the experiences gained from the design methodology and operation of a 3D physical model experiment aimed to investigate the dynamic behaviour of a spar buoy floating offshore wind turbine. The physical model consists in a Froude-scaled NREL 5MW reference wind turbine (RWT) supported on the OC3-Hywind floating platform. Experimental tests have been performed at Danish Hydraulic Institute (DHI) offshore wave basin within the European Union-Hydralab+ Initiative, in April 2019. The floating wind turbine model has been subjected to a combination of regular and irregular wave attacks and different wind loads. Measurements of displacements, rotations, accelerations, forces response of the floating model and at the mooring lines have been carried out. First, free decay tests have been analysed to obtain the natural frequency and the modal damping ratios of each degree of freedom governing the offshore. Then, the results concerning regular waves, with orthogonal incidence to the structure, are presented. The results show that most of longitudinal dynamic response occurs at the wave frequency and most of lateral dynamic response occurs at rigid-body frequencies.
机译:本文介绍了从旨在调查浮动海上风力涡轮机的翼梁浮标的动态行为的3D物理模型实验中获得的经验。物理模型包括在OC3-HUWWIND浮动平台上支持的FRoude缩放的NRER 5MW参考风力涡轮机(RWT)。在2019年4月,在欧洲联盟 - Hydralab +倡议内的丹麦液压研究所(DHI)离岸波浪盆地进行了实验测试。浮风式涡轮机模型经过规则和不规则的波攻击和不同风力载荷的组合。已经进行了位移,旋转,加速度,浮动模型和系泊线的力响应的测量。首先,已经分析了自由衰变测试以获得自然频率和控制海上自由度的模态阻尼比。然后,呈现了关于常规波的结果,具有正交发动结构的正常波。结果表明,大多数纵向动态响应发生在波频处,并且在刚体频率下发生大部分横向动态响应。
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