岩土力学 ›› 2023, Vol. 44 ›› Issue (12): 3639-3652.doi: 10.16285/j.rsm.2022.1709

• 数值分析 • 上一篇    

海上风机导管架基础疲劳分析

杜越明1, 2,孔德琼1, 2,王思刘1, 2,朱斌2, 3   

  1. 1. 浙江大学 超重力研究中心,浙江 杭州 310058;2. 浙江大学 建筑工程学院,浙江 杭州 310058; 3. 浙江大学 岩土工程研究所,浙江 杭州 310058
  • 收稿日期:2022-11-01 接受日期:2023-01-08 出版日期:2023-12-20 发布日期:2023-12-21
  • 通讯作者: 孔德琼,男,1986年生,博士,研究员,主要从事海洋岩土工程及大变形数值模拟方面的研究。E-mail: deqiong_kong@zju.edu.cn E-mail:yueming_du@zju.edu.cn
  • 作者简介:杜越明,男,1999年生,硕士研究生,主要从事海上风机桩−土相互作用方面的研究。
  • 基金资助:
    国家自然科学基金(No.52071289,No.51988101)。

Fatigue analysis of jacket foundations for offshore wind turbines

DU Yue-ming1, 2, KONG De-qiong1, 2, WANG Si-liu1, 2, ZHU Bin2, 3   

  1. 1. Center for Hypergravity Experimental and Interdisciplinary Research, Zhejiang University, Hangzhou, Zhejiang 310058, China; 2. College of Civil Engineering and Architecture, Zhejiang University, Hangzhou, Zhejiang 310058, China; 3. Institute of Geotechnical Engineering, Zhejiang University, Hangzhou, Zhejiang 310058, China
  • Received:2022-11-01 Accepted:2023-01-08 Online:2023-12-20 Published:2023-12-21
  • Supported by:
    This work was supported by the National Natural Science Foundation of China (52071289, 51988101).

摘要: 导管架基础因其整体刚度大,适应范围广等优势已经成为越来越多海上风电场的首选基础形式。目前对于该基础的研究多关注于承载与变形特性,对于其疲劳特性的研究相对较少。同时,针对风机基础的疲劳分析往往将桩−土系统简化为土弹簧,忽略实际的桩−土相互作用。建立了四桩导管架基础与海床相互作用三维数值模型,并通过离心模型试验进行了验证,在此基础上提出了充分考虑桩−土相互作用的导管架基础全时域疲劳分析方法。分别研究了桩−土相互作用,风浪荷载耦合,水平加载偏角等对导管架结构疲劳损伤的影响。主要发现有:忽略桩−土相互作用会严重低估导管架结构的疲劳损伤,平均低估约40%;而对于下部斜支撑节点的疲劳损伤的低估在极端工况下甚至可达90%。风荷载在导管架结构疲劳损伤中占主导地位,远大于波浪荷载影响。水平风浪荷载沿对角线加载会比沿边长方向加载产生更大的位移响应,但相应的疲劳损伤较小,约为沿边长加载的70%。

关键词: 导管架基础, 疲劳分析, 桩-土作用, 风浪耦合

Abstract: Jacket foundations are considered as the most promising solution for offshore wind turbines (OWTs), due to its large lateral stiffness and adaptability to different marine environments. Nowadays, the study on jacket foundations mainly focuses on the bearing and deformation behavior, with significantly less attention being paid to their fatigue damage. Besides, the actual pile-soil interaction is always ignored when assessing the fatigue damage or fatigue life of the foundations for OWTs. This paper presents the development of a three-dimensional numerical model of tetrapod piled jacket foundations, with the interaction between the corner piles and the soil being implemented into it. The numerical model is validated against centrifuge tests. Then, a time-domain fatigue analysis method for OWT jacket foundations is proposed. The influences of pile-soil interaction, wind-wave load coupling effect, and lateral loading direction on the fatigue damage of the jacket are examined in detail. Main findings include: (1) Neglecting the pile-soil interaction will yield significant underestimation, i.e., approximately 40%, of the fatigue damage of OWT jackets, and this becomes even more discernible at the lower oblique support joints, exhibiting an underestimation up to 90% in certain scenarios. (2) Wind load plays a dominant role in determining fatigue damage of the jacket, and the proportion of fatigue damage caused by winds is much greater than that caused by waves. (3) The lateral wind-wave loading along the diagonal direction develops a greater displacement of the jacket than that along the orthogonal direction. However, the corresponding fatigue damage is relatively small, about 70% of that along the orthogonal direction.

Key words: jacket foundation, fatigue analysis, pile-soil interaction, wind-wave coupling

中图分类号: 

  • TU473
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