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王国粹, 王伟, 杨敏. 3.6MW海上风机单桩基础设计与分析[J]. 岩土工程学报, 2011, 33(sup2): 95-100.
引用本文: 王国粹, 王伟, 杨敏. 3.6MW海上风机单桩基础设计与分析[J]. 岩土工程学报, 2011, 33(sup2): 95-100.
WANG Guo-cui, WANG Wei, YANG Min. Design and analysis of monopile foundation for 3.6 MW offshore wind turbine[J]. Chinese Journal of Geotechnical Engineering, 2011, 33(sup2): 95-100.
Citation: WANG Guo-cui, WANG Wei, YANG Min. Design and analysis of monopile foundation for 3.6 MW offshore wind turbine[J]. Chinese Journal of Geotechnical Engineering, 2011, 33(sup2): 95-100.

3.6MW海上风机单桩基础设计与分析

Design and analysis of monopile foundation for 3.6 MW offshore wind turbine

  • 摘要: 统计数据表明海上风机基础中单桩基础形式所占比例在 65% 以上,因此对单桩基础设计与分析方法的研究更显其重要性。基于多个海上风电场设计实践和经验归纳了海上风机单桩基础的设计要点。海上风机所处的海洋环境决定了单桩基础所受荷载多为水平向长期循环荷载,为此,在总结现有水平受荷桩计算方法的基础上,建立了可以考虑长期循环荷载影响的理想弹塑性桩土相互作用计算模型。以我国某海上风电场为例,采用单桩基础形式进行了基础方案设计,并在设计计算中展开了上述方法与国际上其他单桩分析方法的对比分析,以验证其有效性。理想弹塑性方法计算方便,能够考虑土层分布和施工条件以及长期循环荷载对桩基性状的影响,可应用于单桩海上风机单桩基础设计。

     

    Abstract: Statistical data show that more than 65% of offshore wind turbines select monopile foundation, so design and analysis of the monopile foundation are an important issue. Based on the design practice and experience of multiple offshore wind farms, the design elements of the monopile foundation are summarized. Determined by the offshore marine environment in which the wind turbines are located, the primary load on the monopile foundation is long-term cyclic load. After summarizing the methods for current laterally loaded piles, an ideal elastic-plastic pile-soil interaction model considering the effect of long-term cyclic load is established. In the case of an offshore wind farm, a monopile foundation program is designed using the above model, and comparative analyses are carried out to verify its effectiveness. The ideal elastic-plastic method is convenient to consider the effect of all the environmental loads, soil distribution and construction, and can be applied to the design of pile foundation offshore wind turbines.

     

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