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EXPERIMENTAL STUDY ON A MOTION OF 'UNDERWATER PLATFORM' INCLUDING HYDRO-ELASTIC DEFORMATION IN WAVES

机译:波浪中包含水弹性变形的“水下平台”运动的实验研究

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A new type of floater for floating offshore wind turbine (FOWT) was proposed. The floater, named an "underwater platform", aims at high economic efficiency of energy generation of floating wind farm. The underwater platform is a large scale submerged structure which has small water plane area and can support several wind turbines. It is expected that the platform has small motion characteristics in waves because of its small water plane area, and it contributes for FOWT to generate energy safety. In this study, the feasibility and usefulness study about the platform was carried out through experiments and numerical simulations. The first experiment was conducted with partial rigid model of the platform to verify the feasibility. From the experiment, it was confirmed that the model has small motion characteristics in waves. The experimental results were compared with numerical simulations of potential theory and they were well matched. Besides, the coupling analysis with aero-hydro dynamics was also carried out and it was confirmed that the stability of the platform was enough in steady wind condition. The second experiment was conducted with elastic body model to study the elastic deformation of the platform in waves. From the experiment, it was confirmed that the deformation is small when the draft was 250mm (50m in the actual model).
机译:提出了一种新型的用于海上浮式风力发电机(FOWT)的浮子。该浮子被称为“水下平台”,旨在提高浮式风电场发电的经济效率。水下平台是大型的水下结构,具有较小的水平面面积,可以支撑多台风力涡轮机。预计该平台由于其水平面面积小而在波浪中具有较小的运动特性,并且有助于FOWT产生能量安全。本研究通过实验和数值模拟对平台进行了可行性和实用性研究。使用平台的部分刚性模型进行了第一个实验,以验证可行性。从实验中证实了该模型在波浪中具有小的运动特性。将实验结果与势能理论的数值模拟进行了比较,并得到了很好的匹配。此外,还进行了与空气-水动力学的耦合分析,并证实了平台在稳定风况下的稳定性是足够的。使用弹性体模型进行了第二个实验,以研究平台在波浪中的弹性变形。从实验中可以证实,当吃水深度为250mm(实际模型中为50m)时,变形很小。

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