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Optimized linearization of chord and twist angle profiles for fixed-pitch fixed-speed wind turbine blades

机译:固定螺距定速风力涡轮机叶片的弦和扭转角轮廓的优化线性化

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摘要

The chord and twist angle radial profiles of a fixed-pitch fixed-speed (FPFS) horizontal-axis wind turbine blade are based on a particular design wind speed and design tip speed ratio. Because the tip speed ratio varies with wind speed, the originally optimized chord and twist angle radial profiles for a preliminary blade design through optimum rotor theory do not necessarily provide the highest annual energy production (AEP) for the wind turbine on a specific site with known wind resources. This paper aims to demonstrate a novel optimal blade design method for an FPFS wind turbine through adopting linear radial profiles of the blade chord and twist angle and optimizing the slope of these two lines. The radial profiles of the blade chord and twist angle are linearized on a heuristic basis with fixed values at the blade tip and floating values at the blade root based on the preliminary blade design, and the best solution is determined using the highest AEP for a particular wind speed Weibull distribution as the optimization criteria with constraints of the top limit power output of the wind turbine. The outcomes demonstrate clearly that the proposed blade design optimization method offers a good opportunity for FPFS wind turbine blade design to achieve a better power performance and low manufacturing cost. This approach can be used for any practice of FPFS wind turbine blade design and refurbishment.
机译:固定螺距固定速度(FPFS)水平轴风力涡轮机叶片的弦和扭转角径向轮廓基于特定的设计风速和设计叶尖速比。由于叶尖速比随风速变化,通过最佳转子理论对叶片进行初步设计时,最初优化的弦和扭转角径向轮廓不一定能在已知的特定地点为风力涡轮机提供最高的年发电量(AEP)风资源。本文旨在通过采用叶片弦和扭转角的线性径向轮廓并优化这两条线的斜率,来论证FPFS风力涡轮机的一种新颖的最佳叶片设计方法。叶片弦和扭转角的径向轮廓在启发式基础上线性化,基于初步的叶片设计,叶片尖端的固定值和叶片根部的浮动值,并且针对特定情况使用最高AEP确定最佳解决方案风速Weibull分布作为优化标准,并限制了风力涡轮机的上限功率输出。结果清楚地表明,提出的叶片设计优化方法为FPFS风力涡轮机叶片设计提供了一个很好的机会,以实现更好的动力性能和较低的制造成本。该方法可用于FPFS风力涡轮机叶片设计和翻新的任何实践。

著录项

  • 来源
    《Renewable energy》 |2013年第9期|111-119|共9页
  • 作者单位

    Sustainable Engineering, University of Cumbria, Energus Campus, Workington CA14 4JW, UK;

    Wind Energy Engineering Research Group, School of Computing, Engineering and Physical Sciences, University of Central Lancashire, Preston PR1 2HE, UK;

    Wind Energy Engineering Research Group, School of Computing, Engineering and Physical Sciences, University of Central Lancashire, Preston PR1 2HE, UK;

  • 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

    blade design; chord; optimization; linearization; wind turbine; FPFS;

    机译:叶片设计;弦;优化;线性化风力发电机FPFS;

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