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NAUTILUS-DTU10 MW Floating Offshore Wind Turbine at Gulf of Maine: Public numerical models of an actively ballasted semisubmersible

机译:Nautilus-DTU10 MW漂浮在缅因州海湾的近海风力涡轮机:积极镇流的公共数量模型

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摘要

This study presents two numerical multiphysics models of the NAUTILUS-10 floating support structure mounting the DTU10 MW Reference Wind Turbine at Gulf of Maine site, and analyses its dynamics. With the site conditions and the FAST model of the onshore turbine as the starting point, the floating support structure: tower, floating substructure with its corresponding active ballast system and station keeping system, was designed by NAUTILUS. The numerical models were developed and the onshore DTU wind energy controller was tuned to avoid the resonance of the operating FOWT by TECNALIA, in the framework of H2020 LIFES50+ project. This concept and its subsystems are fully characterised throughout this paper and implemented in opensource code, FAST v8.16. Here, the mooring dynamics are solved using MoorDyn, and the hydrodynamic properties are computed using HydroDyn.Viscous effects, not captured by radiation-diffraction theory, are modelled using two different approaches: (1) through linear and quadratic additional hydrodynamic damping matrices and (2) by means of Morison elements. A set of simulations (such as, decay, wind only and broadband irregular waves tests) were carried out with system identification purposes and to analyse the differences between the two models presented. Then, a set of simulations in stochastic wind and waves were carried out to characterise the global response of the FOWT.
机译:本研究提出了两种数值多体型号的Nautilus-10浮动支撑结构,在缅因州海湾安装DTU10 MW参考风力涡轮机,并分析其动态。通过现场条件和陆上涡轮机的快速模型作为起点,浮动支撑结构:塔,浮动子结构与其相应的主动镇流器系统和站保存系统,由Nautilus设计。在H2020 Lifes50 +项目的框架中,调整了数控模型,避免了通过Tecnalia的操作饲料的共鸣。本文完全具有本文的概念及其子系统,并在openSource代码中实现,FAST V8.16。这里,使用Moordyn来解决系泊动力学,并且使用辐射 - 衍射理论而非捕获的效果来计算流体动力学性质,使用两种不同的方法进行建模:(1)通过线性和二次额外的流体动力阻尼矩阵和( 2)通过莫里多元素。通过系统识别目的进行了一组模拟(例如,衰减,风力和宽带不规则波测试),并分析所呈现的两种模型之间的差异。然后,进行了随机风和波的一组模拟,以表征母猪的全局响应。

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