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Slow-drift of a floating wind turbine: An assessment of frequency-domain methods based on model tests

机译:浮动风力涡轮机的慢速漂移:基于模型测试的频域方法评估

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The second-order hydrodynamics of a semisubmersible offshore wind turbine is investigated in this paper by analyzing and proposing a set of different options for estimating the slow-drift motions during its design. A case study consisting of a three-floater semisubmersible designed to support a 1.5Mw turbine is considered. An experimental campaign focused on characterizing second-order surge response was carried out and its most salient results are documented in the paper. The campaign was conducted in two different facilities and comprised decay tests, regular, bichromatic and irregular waves. Wind has not been considered in this phase of the research. Numerical modeling with frequency domain solver WAMIT has been carried out. Due to location depth and mooring length restrictions, the natural periods of horizontal excursions are smaller than those of well studied DeepCwind platform. This may change the importance of the different second-order components, something investigated in present research by comparing simplified and full Quadratic Transfer Functions (QTF) computations. Results obtained with experiments and simulations are compared, focusing on the mean and slow-drift motions and forces. It is shown that the Newman approximation underestimates the second-order response in some cases while the white noise model retains the main physics involved, a novel result which may change the paradigm for mooring design of these artifacts in the near future. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文通过分析和提出一组不同的方法来估算半潜式海上风力发电机的慢速漂移运动,研究其设计过程中的二阶流体动力学特性。考虑了一个案例研究,该案例由设计用于支撑1.5Mw涡轮机的三浮式半潜水器组成。进行了旨在表征二阶电涌响应特性的实验活动,其最显着的结果已记录在本文中。这项运动是在两个不同的场所进行的,包括衰减测试,规则波,双色波和不规则波。在此研究阶段尚未考虑风能。使用频域求解器WAMIT进行了数值建模。由于位置深度和系泊长度的限制,水平偏移的自然周期要比经过充分研究的DeepCwind平台的自然周期小。这可能会改变不同二阶分量的重要性,这是本研究通过比较简化和完整二次传递函数(QTF)计算得出的结果。比较了通过实验和模拟获得的结果,重点是平均漂移速度和缓慢漂移运动以及力。结果表明,在某些情况下,纽曼近似值低估了二阶响应,而白噪声模型保留了所涉及的主要物理原理,这是一个新颖的结果,可能会在不久的将来改变这些工件的系泊设计范例。 (C)2017 Elsevier Ltd.保留所有权利。

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