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Comparative study of the performances of a bio-inspired flexible-bladed wind turbine and a rigid-bladed wind turbine in centimeter-scale

机译:生物启发柔性叶片风力涡轮机和刚性风力涡轮机厘米厘米的比较研究

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摘要

The objective of this study was to investigate the behavior and performance of a novel flexible-bladed wind turbine (FBWT). A bio-inspired flexible-bladed centimeter-scale wind turbine was proposed, fabricated, and tested in a closed-loop wind tunnel. The performance of the FBWT was compared with that of a rigid-bladed wind turbine (RBWT) on four main aspects: electrical power output, start-up, blade coning, and yawing. The results showed that the FBWT had a higher power output than the RBWT: the maximum power coefficient, C_p for the FBWT was 0.0870 at a tip speed ratio, TSR, of 3.20 and a wind speed of 1.83 m/s, while that for the RBWT was 0.0576 at a TSR of 3.56 and a wind speed of 2.04 m/s. The total time of the yawing phases with a 180° yaw-error angle was 6.12 s for the FBWT, which was 35.85% shorter than that of the RBWT. The blade-coning video footage showed that the blades of the FBWT underwent a substantial deformation and exhibited a passive pitching mechanism. These features allowed the FBWT to rotate and yaw faster than the RBWT. These results demonstrate the advantage of using biomimicry-based design and flexible materials for the fabrication of centimeter-scale wind turbines.
机译:本研究的目的是研究新型柔性叶片风力涡轮机(FBWT)的行为和性能。提出,制造和在闭环风洞中提出了一种生物启发的柔性叶片厘米风涡轮机。将FBWT的性能与四个主要方面的刚性叶片风力涡轮机(RBWT)进行比较:电力输出,启动,叶片绑带和偏航。结果表明,FBWT具有比RBWT更高的功率输出:最大功率系数,FBWT的C_P为0.0870,尖端速比,TSR为3.20,风速为1.83米/秒,而且TSR为3.56的RBWT为0.0576,风速为2.04米/秒。对于FBWT,具有180°偏航误差角的偏航相的总时间为6.12秒,比RBWT的35.85%短。刀片式扫描录像显示FBWT的叶片经历了大量变形并表现出一种被动俯仰机构。这些功能允许FBWT旋转和偏航比RBWT更快。这些结果证明了利用基于生物化的设计和柔性材料制造厘米级风力涡轮机的优点。

著录项

  • 来源
    《Energy》 |2020年第15期|118835.1-118835.16|共16页
  • 作者

    Yung-Jeh Chu; Heung-Fai Lam;

  • 作者单位

    Department of Architecture and Civil Engineering City University of Hong Kong Tat Chee Avenue Kowloon Hong Kong;

    Department of Architecture and Civil Engineering City University of Hong Kong Tat Chee Avenue Kowloon Hong Kong School of Civil and Environmental Engineering Harbin Institute of Technology Shenzhen China;

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

    Wind turbine; Bio-inspiration; Borneo camphor; HAWT; Flexible blades; Centimeter-scale;

    机译:风力涡轮机;生物启发;婆罗洲樟脑;hawt;柔性刀片;厘米级;

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