期刊文献+

达里厄垂直轴风力机叶片螺旋变异优化研究

Research on Optimization of Helical Twisted Blade of Darrieus Vertical Axis Wind Turbine
下载PDF
导出
摘要 针对传统达里厄(Darrieus)直叶片垂直轴风力机在运行过程中出现叶片动转矩周期波动性大,动转矩系数曲线震荡剧烈,造成对风轮旋转主轴的强烈冲击及风力机功率输出不稳定等问题,文章提出对Darrieus垂直轴风力机传统直叶片进行螺旋扭曲变异设计,以改善风力机叶片的动转矩输出性能。结合Solid Works和MATLAB完成风力机模型的三维参数化建模,在流体仿真软件FLUENT中完成模型的数值模拟仿真计算。通过螺旋扭曲角的单因素试验验证了变异设计叶片输出的动转矩性能周期波动性降低,平均动转矩得到提高,并确定螺旋扭曲角的优化区间。文章构建了风力机系统模型建立与仿真体系,采取螺旋扭曲变异设计,改善了风力机叶片输出的动转矩性能,初步确定合理的螺旋扭曲角分布范围为:70°~110°。 In order to solve the problems of strong torque pulse,lower average torque,and strong cyclic fatigue force on the blades and unsmooth power output in the operation of traditional Darrieus straight-blade vertical axis wind turbine( VAWT),a helical twisted design for the traditional straight-blades was put forward in this paper. By combining Solid Works and MATLAB,the parametric modeling of variant wind rotor was finished,and the dynamic numerical simulation for the operation process of Darrieus wind rotor was done with the CFD software of FLUENT. The single factor experimental study of helical twisted angle showed that the new design reduced the cyclic pulse of the torque and improved the torque,which determined an initial reasonable distribution range of helical twisted angle. This paper indicated the construction of the wind turbine system model and simulation system and helical twisted design could be used to improve the output of the wind turbine blade dynamic torque performance,the range had been optimized helical twist of the foot which was between 70° and 110°.
出处 《轻工机械》 CAS 2016年第4期44-48,共5页 Light Industry Machinery
关键词 Darrieus风力机 螺旋扭曲 计算流体动力学(CFD) 动转矩 动转矩系数周期标准差 Darrieus wind turbine helical twisted angle CFD(Computational Fluid Dynamics) torque coefficient standard deviation of torque coefficient
  • 相关文献

参考文献7

  • 1ISLAM M, TING D S K, FARTAJ A. Aerodynamic models for Darrieus-type straighted-blade vertical axis wind turbines [ J ]. Renewable and sustainable energy" review ,2008,12 (4) :1087 - 1109.
  • 2ROH S C, KANG S H. Effects of a blade profile, the Reynolds number, and the solidity on the performance of a straight bladed vertical axis wind turbine [ J ]. Journal of mechanical seiem:e and technology, 2013,27 ( 11 ) : 3299 - 3307.
  • 3杨从新,巫发明,王立鹏,张玉良.设计参数对直叶片垂直轴风力机功率系数的影响[J].兰州理工大学学报,2009,35(5):47-50. 被引量:20
  • 4MARINI M, GAZZANO R,SATI'A A. Semi-empirical methods for the analysis of vertical axis wind turbines with helical blades[ C]//ASME Turbo Expo 2010: Power for Land, Sea, and Air. Glasgow, UK: American Society of Mechanical Engineers ,2010:883 - 890.
  • 5Van BUSSEL G J W, MERTENS S, POLINDER H, et al. Turby: concetpt and realization of a small VAWT for the built environment [ C]//The science of making torque from Wind. Delft ,Netherlands: EAWE/EWEA Special Topic Conference ,2004 : 19 - 21.
  • 6李岩.垂直轴风力机技术讲座(五) 垂直轴风力机设计与实验[J].可再生能源,2009,27(5):120-122. 被引量:10
  • 7SMITH T C. Aerodynamic design of wind turbine blades fi~r maximum wind power extraction [ D ]. Sheffield, UK: The University of Sheffield ,2006 : 1 - 15.

二级参考文献9

  • 1程兆雪.水平轴风力机转轮气动性能的数值解法[J].甘肃工业大学学报,1996,22(1):52-57. 被引量:7
  • 2朱丰泉.立轴风力机的气动性能.中国科技大学学报,1982,12(2):68-78.
  • 3施鹏飞.风力机的理论与设计[M].北京:机械工业出版社,1987.
  • 4PARASCHIVOIU I. Wind turbine design emphasis on Darrieus concept [M]. Montreal: Polytechnic International Press, 2002.
  • 5PONTA F L,SEMINARA J J,OTEROA A D. On the aerodynamics of variable-geometry oval-trajectory Darrieus wind turbines [J]. Renewable Energy, 2007(32) : 35-56.
  • 6PARASCHIVOIU L Aerodynamic loads and performance of the Darrrieus wind turbines [J]. AIAA Journal of Energy, 1982,9(6) :406-412.
  • 7PARASCHIVOIU I. Double multiple streamtube model for studying Vertical-Axis wind turbines [J]. AIAA Journal of Propulsion and Power, 1988,4: 250-255.
  • 8ISLAM M,TING DS K,FARTAJ A. Aerodynamic models for Darrieus-type straight-bladed vertical axis wind turbines [J]. Renewable and Sustainable Energy Reviews, 2008, 12(4): 1087-1109.
  • 9JIANG Zhi-chao,DOI Yasuaki,ZHANG Shu-you.Numerical investigation on the flow and power of small-sized multi-bladed straight Darrieus wind turbine[J].Journal of Zhejiang University-Science A(Applied Physics & Engineering),2007,8(9):1414-1421. 被引量:10

共引文献28

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部