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Spatial coherence of ocean waves in multiline anchor systems for floating offshore wind turbines

机译:浮动海上风力涡轮机多线锚固系统中海浪的空间相干性

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A shared multiline anchor system may reduce material and installation costs for floating offshore wind farms, but the concept also expands the physical space over which the analysis of the system must be considered. The multiline anchor force is a combination of forces that originate from different floating offshore wind turbine (FOWT) platforms, and this interconnectivity mandates investigation of spatial coherence of waves over the area of the connected turbines. The goal of this work is to determine if anchor force characteristics are sensitive to spatial coherence of the wave field, or if an assumption of independent wave fields at different FOWT locations provides sufficiently accurate anchor load characterizations. Spatially coherent irregular wave fields are generated and applied to FOWT systems in 3-line and 6-line anchor systems, revealing negligible sensitivity of multiline anchor force to wave spatial coherence. These results are continued with a parametric study showing how wave characteristics affect correlation lengths of spatially coherent waves. A review of installed offshore wind turbine spacings is presented as a context for these results. In each section, regular waves are first used to examine the dynamics in a simple context, then irregular waves are used to more realistically simulate ocean conditions.
机译:共享的多线锚固系统可以减少海上浮动风电场的材料和安装成本,但是该概念还扩展了必须考虑系统分析的物理空间。多线锚固力是源自不同的浮动海上风力涡轮机(FOWT)平台的力的组合,并且这种互连性要求对连接的涡轮机区域上的波的空间相干性进行研究。这项工作的目的是确定锚固力特性是否对波场的空间相干性敏感,或者确定在不同FOWT位置处独立波场的假设是否能够提供足够准确的锚固载荷特征。生成了空间相干的不规则波场,并将其应用于3线和6线锚固系统中的FOWT系统,显示出多行锚固力对波的空间相干性的敏感性可以忽略不计。通过参数研究继续显示这些结果,这些研究表明波的特性如何影响空间相干波的相关长度。对这些结果的背景介绍了已安装的海上风力涡轮机间距的综述。在每个部分中,首先使用规则的波浪在简单的上下文中检查动力学,然后使用不规则的波浪更实际地模拟海洋状况。

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