期刊文献+

海上风电风机整体安装重心纠偏方法

Gravity Center Correction Method for Integral Installation of Offshore Turbine
下载PDF
导出
摘要 风机整体安装过程中,由于整体重心偏移导致风机处于前倾状态,施工时风机底法兰前后端存在高差,会影响软着陆系统的缓冲及精定位对中操作。为解决该问题,通过计算分析风机整体吊装时重心偏移状态及方案比选,最终采用机舱方向平衡梁上吊耳板比叶轮方向加长8.4 cm的纠偏措施。改进后,风机整体吊装吊心和合成重心位于同一轴线,无前倾现象,缓冲及精定位操作准确、快速,可为其他项目风机整体安装重心纠偏提供参考。
作者 苏凯 Su Kai
出处 《港工技术与管理》 2021年第1期27-33,共7页 Technology & Management Of Port & Harbor Engineering
  • 相关文献

参考文献2

二级参考文献17

  • 1Wieczorek A. J., Negro S. O., Harmsen R., et al. A Review of the European Offshore Wind Innovation System[J]. Renewable and Sustainable Energy Reviews, 2013, 26: 294-306.
  • 2EWEA. Wind in Our Sails-the Coming of Europe's Offshore Wind Energy Industry[R]. Brussels: The European Wind Energy Association, 2011.
  • 3国家能源局.2020年我国海上风电将达3000万千瓦[EB/OL]. [2014-09-15]. http://news.xinhuanet.com/tech/ 2011-06/22/c 121569363.htm.
  • 4Mostafaeipour Ali. Feasibility Study of Offshore Wind Turbine Installation in lran Compared with the World[J]. Renewable and Sustainable Energy Reviews, 2010, 14: 1722-1743.
  • 5Breton S P, Moe G. Statue, Plans and Technologies for Offshore Wind Turbines in Europe and North America[J]. Renewable Enerzy, 2009, 34: 646-654.
  • 6A2SEA. A2SEA powered by knowhow [EB/OL]. [2014-7-15] .http://www.a2 sea.corn/.
  • 7van Bussel GJW, Zaaljer MB. Reliability, Availability and Maintenance Aspects of Large-scale Offshore Wind Farms, a Concepts Study[C]//Proceedings of MAREC, 2001.
  • 8Kaiser M. J., Snyder B. E Modeling Offshore Wind Installation Costs on the U.S. Outer Continental Shelf[J]. Renewable Energy, 2013, 50: 676-691.
  • 9Nikolaus Ederer. The Right Size Matters: Investigating the Offshore Wind Turbine Market Equilibrium[J]. Energy, 2014, 68: 910-921.
  • 10Weinzettel J., Reenaas M., Solli C., et al. Life Cycle Assessment of a Floating Offshore Wind Turbine[J]. Renewable Energy, 2009, 34: 742-747.

共引文献40

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