首页> 外文期刊>Oceanographic Literature Review >A COMPLEMENTAL ANALYSIS OF WAVE IRREGULARITY EFFECT ON THE HYDRODYNAMIC RESPONSES OF OFFSHORE WIND TURBINES WITH THE SEMI-SUBMERSIBLE PLATFORM
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A COMPLEMENTAL ANALYSIS OF WAVE IRREGULARITY EFFECT ON THE HYDRODYNAMIC RESPONSES OF OFFSHORE WIND TURBINES WITH THE SEMI-SUBMERSIBLE PLATFORM

机译:具有半潜式平台的海上风力涡轮机流体动力学效应的波浪不规则效应的互补分析

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摘要

Changes in the spectral shape and the directional spreading are typical properties of irregular waves in nature. The effect of wave irregularity on the hydrodynamic responses of floating offshore wind turbines (FOWT) has been investigated in several studies. However, a complemental analysis of the effects of frequency spectrum shape and wave multi-directionality on the low-frequency (LF) and the wave-frequency (WF) responses due to the second order and the first order hydrodynamic loads, respectively and cable tensions of FOWT under a complete range of mean wave directions is missing. In this study, two hydro-dynamic models are developed firstly using different calibration methods based on the free decay tests and wave loading tests. They are compared with the experimental data for validation. No wind loads were considered in this analysis. The validation results show that the model calibrated using wave loading has better agreement with the experimental data, especially in the LF region, and therefore used for further analysis. Then the hydrodynamic responses are investigated under irregular waves with different spectral shapes. As the spectral shape becomes narrower with pronounced wave grouping and the larger waves in the time series, the responses and tensions increase in the WF region. Furthermore, the narrower the spectrum, the more snap loads in the mooring cables occur. Hydrodynamic responses are also compared under a uni-directional and multi-directional wave excitation from all angles of attack in terms of LF and WF amplitudes. The condition that the responses under multidirectional waves are higher than the ones under uni-directional waves has appeared in multiple cases, especially in the WF region, although it does not lead to excessive responses like the uni-directional wave. Therefore, it is concluded that the wave irregularity in terms of the spectral shape and the directional spreading should be considered during the design stage for better comprehension of the actual motion of floating wind turbines.
机译:光谱形状的变化和方向扩展是性质中不规则波的典型特性。几种研究,研究了波浪不规则对浮动近海风力涡轮机(家禽)的流体动力学反应的影响。然而,由于二阶和第一阶流体动力负载分别和电缆张力,对低频(LF)和波频(WF)响应的频谱形状和波多方向性的互补分析和波频(WF)响应的互补分析,以及电缆张力在均匀的平均波方向下的家禽缺失。在这项研究中,首先使用基于自由衰减测试和波浪装载测试的不同校准方法开发了两个水力动力学模型。将它们与实验数据进行比较进行验证。在该分析中没有考虑风力载荷。验证结果表明,使用波浪载荷校准的模型与实验数据,特别是在LF区域中具有更好的协议,因此用于进一步分析。然后在具有不同光谱形状的不规则波下研究流体动力学响应。由于光谱形状与发音波分组和时间序列中的较大波变得较窄,因此WF区域的响应和张力增加。此外,较窄的光谱,系泊电缆中的卡扣越多。在LF和WF幅度方面的各个攻击角度下,还在单向和多向波激发下进行流体动力响应。多向波下的响应的条件高于单向波下的多个情况下的响应,特别是在WF区域中,尽管它不会导致像单向波的过度响应。因此,结论是在设计阶段期间应考虑光谱形状和方向扩展方面的波不规则,以更好地理解浮动风力涡轮机的实际运动。

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  • 来源
    《Oceanographic Literature Review》 |2021年第9期|2089-2089|共1页
  • 作者

    Y. R. Alkarem; B.O. Ozbahceci;

  • 作者单位

    Izmir Institute of Technology Faculty of Engineering Department of Civil Engineering Urla Izmir 35430 Turkey;

    Izmir Institute of Technology Faculty of Engineering Department of Civil Engineering Urla Izmir 35430 Turkey;

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  • 正文语种 eng
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