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Towing Operation Methods of Offshore Integrated Meteorological Mast for Offshore Wind Farms

机译:海上风电场海上综合气象桅杆牵引作业方法

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An offshore integrated meteorological mast (OIMM) is introduced which has great application potential for the development of offshore wind turbine power. This innovative OIMM features in two aspects: the integrated construction and the integrated transportation. Its integrated techniques enable this OIMM to be prefabricated onshore and transported by a relatively small tugboat to the installation site. It is efficient in construction, rapid in transportation and saving in cost. The towing process is an important section for the integrated transportation, which makes the towing operation necessary to investigate. With the numerical simulation software MOSES, the hydrodynamic behavior of the towing operation is investigated. Two special wet towing methods (surface towing and submerged towing) are adopted and analyzed in terms of the towing resistance, towing speed, fairlead position and the motion response. The results show that for both towing methods, to obtain a higher speed by increasing the towing force is uneconomic since the towing resistance increases a much higher percentage than the towing speed dose. Surface towing has a smaller resistance but larger motion response compared to submerged towing. The submerged towing shows a clear descending heave motion. The heave and pitch motions are smaller with the lower fairlead position and fluctuate less with deeper submerged depth.
机译:介绍了一种海上综合气象桅杆(OIMM),它在海上风力发电的发展中具有巨大的应用潜力。这种创新的OIMM具有两个方面的特征:集成结构和集成运输。它的集成技术使该OIMM可以预制在岸上,并通过较小的拖船运输到安装地点。施工效率高,运输迅速,节省成本。拖曳过程是综合运输的重要环节,这使得拖曳操作需要进行调查。使用数值模拟软件MOSES,研究了拖曳操作的水动力特性。根据拖曳阻力,拖曳速度,导缆位置和运动响应,采用两种特殊的湿拖曳方法(表面拖曳和水下拖曳)进行了分析。结果表明,对于两种牵引方法,通过增加牵引力来获得更高的速度是不经济的,因为牵引阻力增加的百分比远大于牵引速度剂量。与水下拖带相比,表面拖带阻力较小,但运动响应较大。水下拖曳显示出明显的下降波动。较低的导缆器位置,升沉和俯仰运动较小,而淹没深度较深时,波动较小。

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