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Design of Jack-Up Platform for 6 MW Wind Turbine: Parametric Analysis Based Dimensioning of Platform Legs

机译:6 MW风力涡轮机升降平台设计:基于参数分析平台腿的尺寸

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The article presents the results of the research conducted within the framework of the project entitled WIND-TU-PLA (ERA-NET, MARTEC II), the general aim of which was to design and analyse supporting structures for wind turbines intended for operation on the South Baltic area. The research part described in the article aimed at developing a preliminary design for a jack-up platform which can operate on water areas with depth of 40 m. The main task was to determine optimal dimensions of platform legs and the radius of their spacing. Two jack-up platform concepts differing by spacing radius and hull dimensions were designed with the intention to be used as a supporting structure for a 6-MW offshore wind turbine. For each concept, the parametric analysis was performed to determine optimal dimensions of platform legs (diameter Dleg and plating thickness tleg). Relevant calculations were performed to assess the movements of the platform with parameters given in Table 1 in conditions simulating the action of the most violent storm in recent 50 years. The obtained results, having the form of amplitudes of selected physical quantities, are shown in comprehensive charts in Fig. 6 and 7. Based on the critical stress values (corresponding to the yield stress), the area was defined in which the impact strength conditions are satisfied (Fig. 14).
机译:本文介绍了题为WIND-TU-PLA(ERA-NET,MARTEC II)的项目框架内进行的研究结果,其普遍目的是设计和分析用于操作的风力涡轮机的支持结构南波罗的海地区。本文中描述的研究部分旨在开发用于升高的平台的初步设计,该平台可以在深度为40米的水域上运行。主要任务是确定平台腿的最佳尺寸和间距的半径。通过间距半径和船体尺寸不同的两个升降平台概念是设计用于6兆瓦海上风力涡轮机的支撑结构的设计。对于每个概念,进行参数分析以确定平台腿的最佳尺寸(直径DLEG和电镀厚度TLEG)。进行了相关的计算,以评估平台与表1中的参数的运动,在近50年来模拟最暴力风暴的动作的条件下。具有所选择的物理量的幅度的所得结果在图2中的综合图表中示出。在图6和7中,基于临界应力值(对应于屈服应力),定义了该区域,其中冲击强度条件满意(图14)。

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