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The influence of power-take-off control on the dynamic response and power output of combined semi-submersible floating wind turbine and point-absorber wave energy converters

机译:电力消耗控制对半潜水浮风式风力涡轮机和点吸收波能转换器的动态响应和功率输出的影响

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摘要

Floating offshore wind turbines (FOWTs) have received extensive attention in recent years, particularly after the successful demonstration of several pilot projects, such as Hywind and WindFloat. Integrating wave energy converters (WECs) into FOWTs could potentially help reduce cost of energy by absorbing additional power from waves and introduce restoring moments and extra damping to the floating platform thus reducing motion responses and fatigue loads. In this work, we propose a hybrid floating wind and wave power generation platform, consisting of a semi-submersible FOWT and three point-absorber WECs. Preliminary feasibility study of this concept is performed with verified integrated aero-hydro-servo-mooring numerical simulations. Dynamic response and power output of this hybrid concept are evaluated under several typical environmental conditions. Particularly, different WEC power-take-off control strategies have been comparatively studied, which have shown considerable influences on the platform dynamics and power generation. More specifically, reactive control generally worsen the platform motion responses, while spring-damping control is able to mitigate the pitch motion to certain extent. Regarding power output, reactive control leads to the highest wave power generation, almost twice as much as that of spring-damping, which has been used in most existing works on hybrid power generation system. Moreover, it is found the optimal control design for point-absorber WEC attached to fixed structures is no longer optimal for the combined floating wind and wave energy production platform, which needs further investigations in the future.
机译:浮动海上风力涡轮机(家畜)近年来受到广泛的关注,特别是在成功示范几个试点项目之后,如Hywind和Windfloat。将波能转换器(WEC)集成到家长中可能通过吸收来自波的额外电力并引入恢复时刻和额外阻尼到浮动平台来降低能量成本,从而减少运动响应和疲劳负载。在这项工作中,我们提出了一个混合浮风和波发电平台,由半潜水生长和三点吸收器WEC组成。这种概念的初步可行性研究是通过经过验证的集成航空水力系托系泊数值模拟进行的。在几个典型的环境条件下评估该混合概念的动态响应和功率输出。特别是,不同的WEC电力起飞控制策略已经相媲美,这对平台动力学和发电具有相当大的影响。更具体地,反应控制通常会使平台运动响应恶化,而弹簧阻尼控制能够在一定程度上减轻音高运动。关于功率输出,无功控制导致最高波力发电,几乎是弹簧阻尼的两倍,在混合发电系统上的大多数现有工作中已被使用。此外,发现附着于固定结构的点吸收器WEC的最佳控制设计不再适用于组合的浮风和波浪能源生产平台,这需要将来进一步调查。

著录项

  • 来源
    《Ocean Engineering》 |2021年第1期|108835.1-108835.23|共23页
  • 作者单位

    Zhejiang Univ Ocean Coll Inst Ocean Engn & Technol Zhoushan 316021 Peoples R China|Zhejiang Univ State Key Lab Fluid Power & Mechatron Syst Hangzhou 310027 Peoples R China;

    Zhejiang Univ Ocean Coll Inst Ocean Engn & Technol Zhoushan 316021 Peoples R China;

    Zhejiang Univ Ocean Coll Inst Ocean Engn & Technol Zhoushan 316021 Peoples R China;

    Zhejiang Univ Ocean Coll Inst Ocean Engn & Technol Zhoushan 316021 Peoples R China;

    Zhejiang Univ Ocean Coll Inst Ocean Engn & Technol Zhoushan 316021 Peoples R China|Zhejiang Univ State Key Lab Fluid Power & Mechatron Syst Hangzhou 310027 Peoples R China|Minist Educ Engn Res Ctr Ocean Sensing Technol & Equipment Beijing Peoples R China;

    Univ Lancaster Engn Dept Lancaster LA1 4YR England;

    Zhejiang Univ Ocean Coll Inst Ocean Engn & Technol Zhoushan 316021 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hybrid power generation platform; Semi-submersible; Point-absorber; Dynamic response; Power production; Power-take-off control;

    机译:混合动力发电平台;半潜水器;点吸收器;动态响应;电力生产;电力消耗控制;
  • 入库时间 2022-08-19 01:57:00

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