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Experimental Comparison of Three Floating Wind Turbine Concepts

机译:三种漂浮式风力涡轮机概念的实验比较

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摘要

Beyond many of Earth's coasts exists a vast deepwater wind resource that can be tapped to provide substantial amounts of clean, renewable energy. However, much of this resource resides in waters deeper than 60 m where current fixed bottom wind turbine technology is no longer economically viable. As a result, many are looking to floating wind turbines as a means of harnessing this deepwater offshore wind resource. The preferred floating platform technology for this application, however, is currently up for debate. To begin the process of assessing the unique behavior of various platform concepts for floating wind turbines, 1/50th scale model tests in a wind/wave basin were performed at the Maritime Research Institute Netherlands (MARIN) of three floating wind turbine concepts. The Froude scaled tests simulated the response of the 126 m rotor diameter National Renewable Energy Lab (NREL) 5 MW, horizontal axis Reference Wind Turbine attached via a flexible tower in turn to three distinct platforms, these being a tension leg-platform, a spar-buoy, and a semisubmersible. A large number of tests were performed ranging from simple free-decay tests to complex operating conditions with irregular sea states and dynamic winds. The high-quality wind environments, unique to these tests, were realized in the offshore basin via a novel wind machine, which exhibited low swirl and turbulence intensity in the flow field. Recorded data from the floating wind turbine models include rotor torque and position, tower top and base forces and moments, mooring line tensions, six-axis platform motions, and accelerations at key locations on the nacelle, tower, and platform. A comprehensive overview of the test program, including basic system identification results, is covered in previously published works. In this paper, the results of a comprehensive data analysis are presented, which illuminate the unique coupled system behavior of the three floating wind turbines subjected to combined wind and wave environments. The relative performance of each of the three systems is discussed with an emphasis placed on global motions, flexible tower dynamics, and mooring system response. The results demonstrate the unique advantages and disadvantages of each floating wind turbine platform.
机译:在地球许多海岸之外,存在着巨大的深水风能,可以利用它来提供大量清洁,可再生能源。但是,这些资源中的大部分都位于深于60 m的水域中,在该海域中,当前的固定式底部风力涡轮机技术不再具有经济可行性。结果,许多人正在寻找浮动风力涡轮机,以利用这种深水离岸风力资源。但是,目前尚有针对该应用程序的首选浮动平台技术。为了开始评估浮动式风力涡轮机各种平台概念的独特性能,荷兰海事研究所(MARIN)对三种浮动式风力涡轮机概念进行了1/50比例模型测试。 Froude规模测试模拟了转子直径126 m的5 MW国家可再生能源实验室(NREL)的水平轴参考风力涡轮机的响应,该风力涡轮机通过柔性塔架依次连接到三个不同的平台,这些平台是张紧腿平台,梁-浮标和半潜水器。从简单的自由衰减测试到具有不规则海况和动态风的复杂运行条件,进行了大量测试。这些测试所独有的高质量风环境是通过新型风电机在近海盆地实现的,该风电机在流场中表现出低涡流和湍流强度。浮动式风力涡轮机模型的记录数据包括转子扭矩和位置,塔架顶部和基础力和力矩,系泊缆线张力,六轴平台运动以及机舱,塔架和平台上关键位置的加速度。先前发布的作品涵盖了对测试程序的全面概述,包括基本的系统识别结果。在本文中,我们给出了综合数据分析的结果,该结果阐明了在风浪混合环境下三台漂浮式风力涡轮机的独特耦合系统性能。讨论了这三个系统中每个系统的相对性能,重点放在整体运动,灵活的塔架动力学和系泊系统响应上。结果证明了每个浮动风力涡轮机平台的独特优势和劣势。

著录项

  • 来源
    《Journal of offshore mechanics and arctic engineering》 |2014年第2期|020906.1-020906.9|共9页
  • 作者单位

    Advanced Structures and Composites Center,University of Maine,35 Flagstaff Road,Orono, ME 04469;

    Technip USA, Inc.,11700 Katy Freeway, Suite 150,Houston, TX 77079;

    Maine Maritime Academy,54 Pleasant Street,Castine, ME 04420;

    Technip USA, Inc.,11700 Katy Freeway, Suite 150,Houston, TX 77079;

    Advanced Structures and Composites Center,University of Maine,35 Flagstaff Road,Orono, ME 04469;

  • 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

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