期刊文献+

风力机组叶片防覆冰技术发展现状 被引量:5

下载PDF
导出
摘要 风力机组叶片覆冰会对风机运行带来的多种不利影响,包括功率损失、气动特性改变、降低疲劳寿命以及乏安全危害等。目前,越来越多的防覆冰技术被开发和应用,但是极少有在市场上被广泛推广使用。文章阐述了叶片覆冰对风力机组性能的影响,从覆冰的物理现象出发,重点分析了各种叶片防覆冰技术的优缺点,最后提出了风力机组防覆冰技术的研究方向。
出处 《电器工业》 2013年第5期62-65,共4页 CHINA ELECTRICAL EQUIPMENT INDUSTRY
  • 相关文献

参考文献16

  • 1Dalili,N,A.Edrisy. A review of surface engineering issues critical to wind turbine performance[J].{H}Renewable & Sustainable Energy Reviews,2009,(13):430.
  • 2Laakso,T,L.Talhaug. Task 19 wind energy in cold climates final report[R].Paris:IEA,2009.19.
  • 3Matthew C.Homolaa,b,Muhammad S.Virkb,Per J.Nicklassonb. Modelling of ice induced power losses and comparison with observations[A].Ume°a,Sweden,2011.
  • 4Ping Fu,Masoud,F. A CFD approach for modeling the rime-ice accretion process on a horizontal-axis wind turbine[J].J Wind Eng Ind Aerodyn,2010.181188.
  • 5Antikainen P,Peuranen S. Ice loads case study[A].2000.
  • 6Lacroix A,Manwel JF. Wind energy[J].cold weather issues,2000.117.
  • 7Mason J. The physics of clouds. Ely House, London[M].England:Oxford University Press,1971.
  • 8Battisti, L,Fedrizzi, R. 2D numerical simulation of a wind turbine de-icing system, using cycled heating[J].Wind Engineering,2007,(01):33-42.
  • 9Jasinski WJ,Noe SC,Selig MC,Bragg MB. Wind turbine performance under icing conditions[J].Trans ASME J Sol Energy Eng,1998.605.
  • 10Mayer, C. Système lectrothermique de Dégivrage pour une Pale d’olienne[D].UQAR,Rimouski,Canada,193,2007.

共引文献7

同被引文献66

  • 1王欣,薛亚鹏,王晶,李青.大型风机叶片新材料和新技术的发展[J].玻璃钢/复合材料,2011(3):55-59. 被引量:19
  • 2刘博,黄争鸣.复合材料风机叶片结构分析与铺层优化[J].玻璃钢/复合材料,2012(1):3-7. 被引量:15
  • 3卢敏,唐先贺,冯学斌,杨金水,刘魁,雷志敏.盐雾老化对风电叶片用环氧树脂性能的影响[J].玻璃钢/复合材料,2012(1):44-47. 被引量:5
  • 4贾艳华,敖国龙,康文韬.高性能氟碳涂料在风电领域的应用[J].风能,2010(12):56-60. 被引量:3
  • 5HOCHART C,FORTIN G,PERRON J,et al.Wind turbine performance under icing conditions[J].Wind Energy,2008,11(4):319-333.
  • 6G.KRAJ A,L.BIBEAU E.Phases of icing on wind turbine blades characterized by ice accumulation[J].Renewable Energy,2010,35(5):966-972.
  • 7PARENT O,ILINCA A.Anti-icing and de-icing techniques for wind turbines:Critical review[J].Cold Regions Science and Technology,2011,65(1):88-96.
  • 8FARZANEH M,C.RYERSON C.Anti-icing and deicing techniques[J].Cold Regions Science and Technology,2011,65(1):.
  • 9PENG C Y,XING S L,YUAN Z Q,XIAO J Y,WANG C Q,ZENG J C.Preparation and anti-icing of superhydrophobic PVDF coating on a wind turbine blade[J].Applied Surface Science,2012,259:764-768.
  • 10KARMOUCH R,G.ROSS G.Superhydrophobic wind turbine blade surfaces obtained by a simple deposition of silica nanoparticles embedded in epoxy[J].Applied Surface Science,2010,257:665-669.

引证文献5

二级引证文献22

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