水平轴风力机轮毂风荷载特性试验研究
作者:
作者单位:

1.湖南科技大学 结构抗风与振动控制湖南省重点实验室,湘潭 411201;2.湖南科技大学 土木工程学院,湘潭 411201

作者简介:

E-mail: lyg@hunst.edu.cnE-mail: lyg@hunst.edu.cn

通讯作者:

E-mail: lyg@hunst.edu.cn

基金项目:

国家自然科学基金资助项目(51878271,51508183,51708207),湖南省教育厅优秀青年基金项目(18B206)


EXPERIMENTAL RESEARCH ON WIND LOAD CHARACTERISTICS OF HUB OF HORIZONTAL AXIS WIND TURBINE
Author:
  • Ma Jinxiao 1,2

    Ma Jinxiao

    Hunan Provincial Key Laboratory of Structures for Wind Resistance and Vibration Control,Hunan University of Science and Technology,Xiangtan 411201,China;School of Civil Engineering,Hunan University of Science and Technology,Xiangtan 411201,China
    在期刊界中查找
    在百度中查找
    在本站中查找
  • Li Yonggui 1,2

    Li Yonggui

    Hunan Provincial Key Laboratory of Structures for Wind Resistance and Vibration Control,Hunan University of Science and Technology,Xiangtan 411201,China;School of Civil Engineering,Hunan University of Science and Technology,Xiangtan 411201,China
    在期刊界中查找
    在百度中查找
    在本站中查找
  • Xiao Chixiang 1,2

    Xiao Chixiang

    Hunan Provincial Key Laboratory of Structures for Wind Resistance and Vibration Control,Hunan University of Science and Technology,Xiangtan 411201,China;School of Civil Engineering,Hunan University of Science and Technology,Xiangtan 411201,China
    在期刊界中查找
    在百度中查找
    在本站中查找
  • Li Yi 1,2

    Li Yi

    Hunan Provincial Key Laboratory of Structures for Wind Resistance and Vibration Control,Hunan University of Science and Technology,Xiangtan 411201,China;School of Civil Engineering,Hunan University of Science and Technology,Xiangtan 411201,China
    在期刊界中查找
    在百度中查找
    在本站中查找
  • Lv Weirong 1,2

    Lv Weirong

    Hunan Provincial Key Laboratory of Structures for Wind Resistance and Vibration Control,Hunan University of Science and Technology,Xiangtan 411201,China;School of Civil Engineering,Hunan University of Science and Technology,Xiangtan 411201,China
    在期刊界中查找
    在百度中查找
    在本站中查找
Affiliation:

1.Hunan Provincial Key Laboratory of Structures for Wind Resistance and Vibration Control,Hunan University of Science and Technology,Xiangtan 411201,China;2.School of Civil Engineering,Hunan University of Science and Technology,Xiangtan 411201,China

Fund Project:

The project supported by the National Natural Science Foundation of China (51878271,51508183,51708207) ,the Excellent Youth Fund Project of Hunan Provincial Department of Education (18B206)

  • 摘要
  • |
  • 图/表
  • |
  • 访问统计
  • |
  • 参考文献 [12]
  • |
  • 相似文献 [20]
  • | | |
  • 文章评论
    摘要:

    以2.0 MW水平轴风力机为研究对象,采用自主设计的风力机模型在边界层风洞中进行了测力天平试验,研究了A、B两类地貌,叶片桨距角呈0°、90°时,风力机轮毂处的风力系数、脉动风力的功率谱和相干性等特性.结果表明:风力机轮毂平均和脉动风力系数值随风向角增减的规律性明显.各风向角下B、A类地貌下平均风力系数之比的平均值在80%左右.相比0°桨距角,90°桨距角时各风向角下y轴向平均风力系数平均减小67%,x轴向平均风力系数平均增大108%.脉动风力功率谱在折减频率0.6处存在天平-模型共振引起的尖锐谱峰,采用半刚性模型风力谱修正方法可以消除由于天平-模型系统因刚度不足引起的共振响应.

    Abstract:

    With 2.0 MW horizontal axis wind turbines as the research object, self-designed wind turbine model was tested by force balance in a boundary layer wind tunnel. The wind load characteristics including wind force coefficient, power spectrum and coherence of fluctuating wind at the hub of wind turbine with a 0 ° or 90 ° pitch angle in A, B terrain categories were studied. The results show that the mean and fluctuating wind force coefficients of wind turbine hub increase or decrease obviously with the wind direction. The average value of mean wind force coefficients in all wind directions in B terrain category is about 80% of that in A terrain category. Compared with 0 ° pitch angle, the mean wind force coefficient in the y-axis decreases by 67% and that in the x-axis increases by 108% with 90 ° pitch angle. There is a sharp peak caused by the balance model resonance at the reduced frequency 0.6 on the fluctuating wind power spectrum. The resonance response caused by the insufficient stiffness of the balance model system can be eliminated by using the semi-rigid model wind spectrum correction method.

    表 2 频率和阻尼比识别结果Table 2 Recognition results of frequency and damping ratio
    表 1 模型参数Table 1 Parameters of the model
    Fig.
    图3 作用于风力机的风力Fig.3 Wind forces on wind turbine
    图4 坐标系统Fig.4 The coordinate system
    图1 试验模型Fig.1 Testing model
    参考文献
    [1] Gao M, Li Y Y. Energy and environmental challenges and coping strategies. Journal of Applied Mechanics and Materials, 2014, 535: 489~494
    [2] Zhe W, Baoju L, Dongju W,et al. The status and prospect of wind power generation in China. In: International Conference on Sustainable Power Generation & Supply, China, IEEE, 2009
    [3] 周新坪.风力发电机叶片叶根的受力性能综述.科技风, 2016(16): 159
    [4] Kawai H, Michishita K, Deguchi A. Design wind load on a wind turbine for strong winds. In: BBAA VI International Colloquium on: Bluff Bodies Aerodynamics & Applications Milano, Italy, July, 20-24 2008: 20~24
    [5] Makridis A, Chick J. Validation of a CFD model of wind turbine wakes with terrain effects. Journal of Wind Engineering & Industrial Aerodynamics,2013,123(4): 12~29
    [6] 李强,李岩,冯放,等.小型水平轴风力机导流罩结冰的风洞试验.可再生能源, 2013, 31(6): 66~69
    [7] 李大宝.风电机组风轮气动特性仿真与风洞试验[硕士学位论文].北京:华北电力大学,2014
    [8] 郭辉,岳良明,王海文.大型水平轴风力机风轮模型风洞试验.太阳能学报, 2018, 39(1): 253~257
    [9] Cook N J.A sensitive 6-component high-frequency-range balance for buliding aerodynamics.Journal of physics E: Scientific Instruments, 1983, 116: 390~393
    [10] GB 50009-2012 建筑结构荷载规范.北京:中国建筑工业出版,2012(GB 50009-2012, Load code for building structures. Beijing: China Architecture Industry Press, 2012(in Chinese) )
    [11] 程丰,胡国风.高频底座天平的研制与应用.气动实验与测量控制,1995(1):58~61(Cheng F, Hu G F. Design and application of high frequency dynamic balance JZW001. Journal of Aerodynamic Experiment and Measurement & Control, 1995(1):58~61(in Chinese)
    [12] 邹良浩,梁枢果.半刚性模型风洞试验荷载谱的处理方法.实验流体力学, 2007(3):76~81(Zou L H , Liang S G.A method to evaluate wind force spectra of semi-rigid model in wind tunnel tests. Journal of Experiments in Fluid Mechanics, 2007(3):76~81(in Chinese))
    引证文献
    网友评论
    网友评论
    分享到微博
    发 布
引用本文

马进骁,李永贵,肖翅翔,李毅,吕伟荣.水平轴风力机轮毂风荷载特性试验研究[J].动力学与控制学报,2020,18(5):63~71; Ma Jinxiao, Li Yonggui, Xiao Chixiang, Li Yi, Lv Weirong. EXPERIMENTAL RESEARCH ON WIND LOAD CHARACTERISTICS OF HUB OF HORIZONTAL AXIS WIND TURBINE[J]. Journal of Dynamics and Control,2020,18(5):63-71.

复制
分享
文章指标
  • 点击次数:706
  • 下载次数: 1325
  • HTML阅读次数: 74
  • 引用次数: 0
历史
  • 收稿日期:2019-08-25
  • 最后修改日期:2020-01-09
  • 录用日期:2020-09-29
  • 在线发布日期: 2020-11-24
文章二维码

微信公众号二维码

手机版网站二维码