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Investigation on the sensitivity of flexible foundation models of an offshore wind turbine under earthquake loadings

机译:地震载荷下近海风力涡轮机柔性基础模型的敏感性研究

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摘要

This paper presents an investigation on the sensitivity of flexible foundation models of offshore wind turbines subjected to earthquake loadings. A novel seismic analysis framework (SAF) is developed and implemented in an open source aero-hydro-elastic analysis tool, "FAST", for accurately modelling the effects of seismic loadings on offshore wind turbines. SAF has been validated through comparisons against experimentally validated numerical tools, GH Bladed and NREL Seismic. The behaviours of three flexible foundation models, namely, the apparent fixity (AF), coupled springs (CS) and distributed springs (DS) methods, subjected to earthquake loadings have been examined in relation to a fixed foundation. A total of 224 fully coupled nonlinear simulations of the foundation models are performed using a dataset of 28 earthquake records which are scaled using the target spectrum matching technique to represent the actual seismic effects of the selected sites. The results reveal that the AF model appropriately reflects realistic situations in comparison to the CS model. In addition, the amplitudes of vibration induced by the earthquake loadings are larger for flexible foundations compared to the rigid foundation. The main contribution to the out-of-plane bending moment of the support structure at the mudline comes from the wind loading for all the foundation models. This study has also found that the 2nd flap mode of blade is activated by the earthquake loadings for the AF and DS models but not for the rigid and CS models. As a result, the peak blade-root bending moment is found to be more sensitive to pseudo spectral acceleration (PSA) for the AF and DS models. Furthermore, the peak tower-top displacement and mudline bending moment increase linearly with PSA for all the examined models. This study contributes to the evaluation of the wind turbine responses subjected to earthquakes or combined multi-hazard loadings in the operational state.
机译:本文介绍了海上风力涡轮机柔性基础模型的敏感性研究。一种新的地震分析框架(SAF)是在开源航空水力 - 水力分析工具中开发和实施的,用于准确地建模抗震载荷对海上风力涡轮机的影响。通过对针对实验验证的数值工具,GH Bladed和NREL地震的比较验证了SAF。已经研究了与固定基础相关的三种柔性基础模型的行为,即表观固定性(AF),耦合弹簧(CS)和分布式弹簧(DS)方法。使用28个地震记录的数据集进行总共224个完全耦合的非线性模拟,该数据集使用目标频谱匹配技术进行缩放,以表示所选地点的实际地震效果。结果表明,与CS模型相比,AF模型适当地反映了现实情况。此外,与刚性基础相比,由地震载荷引起的振动振动幅度较大。在泥线上支撑结构的平面外弯矩的主要贡献来自所有基础模型的风装。本研究还发现,由AF和DS模型的地震载荷激活第二瓣叶片模式,但不适用于刚性和CS型号。结果,发现峰值刀片根弯曲力矩对AF和DS模型的伪光谱加速度(PSA)更敏感。此外,对于所有检查模型,峰顶塔顶位移和泥线弯曲力矩随着PSA线性而增加。该研究有助于评估经受地震或在运营状态下组合的多灾害负荷的风力涡轮机响应。

著录项

  • 来源
    《Engineering Structures》 |2019年第15期|756-769|共14页
  • 作者单位

    Univ Shanghai Sci & Technol Sch Energy & Power Engn Shanghai 200093 Peoples R China|Liverpool John Moores Univ Dept Maritime & Mech Engn Byrom St Liverpool L3 3AF Merseyside England;

    Univ Shanghai Sci & Technol Sch Energy & Power Engn Shanghai 200093 Peoples R China;

    Liverpool John Moores Univ Dept Maritime & Mech Engn Byrom St Liverpool L3 3AF Merseyside England;

    Liverpool John Moores Univ Dept Maritime & Mech Engn Byrom St Liverpool L3 3AF Merseyside England;

    China Univ Min & Technol Sch Elect & Power Engn Xuzhou 221116 Jiangsu Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Offshore wind turbine; Dynamic behaviour analysis; Flexible foundation; Earthquake loading;

    机译:海上风力涡轮机;动态行为分析;柔性基础;地震载荷;

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