摘要
我国近海风资源丰富,但由于海洋环境条件的复杂性,开发利用近海风资源的规模和效益受到很大的制约;而风、波浪和海流等作为近海主要环境荷载对近海风机的正常运行起到决定性作用。采用谐波叠加法模拟得到近海风电场的风荷载时程,利用Morison方程和非线性波浪理论推导了波浪荷栽和波流荷栽的计算公式,最后根据Turkstra准则将风浪流荷载进行叠加组合,建立风浪流荷载共同作用下海上风电基础与海床动力相互作用的三维有限元计算模型。基于此模型,针对不同荷载组合条件下风机塔筒的水平位移、竖向应力以及基础的水平位移、桩身弯矩、桩身剪力等进行了动力分析,同时对风浪流荷载共同作用下桩基础周围海床的超孔隙水压力响应进行了计算分析,讨论了不同的荷载参数对海床超孔隙水压力的影响。结果表明:风荷栽对风机塔筒顶端水平位移、塔底应力影响较大,波流荷载对风机基础顶端水平位移、桩身弯矩、桩身剪力影响较大,而波浪荷栽则对海床孔隙水压力影响较大。可取最大风荷载和最大波流荷载叠加波浪荷载时程的组合为最不利组合方式。
Wind resources are rich in offshore areas of China, but the scale and efficiency of devel- oping and utilizing offshore wind resources are greatly restricted due to the complex conditions of marine environment conditions. As the main environmental loads, wind, wave, and current play a decisive role in the normal operation of offshore wind turbines. In this paper, the time history of an offshore wind farm is simulated by using the harmonic superposition method, and the for- mula for calculating wave and current loadings are derived based on the nonlinear wave theory and the Morison equation. Then, the wind, wave, and current loadings are combined according to the Turkstra criterion. Based on the above theories, a three-dimensional finite element model for dy- namic interaction of offshore wind power foundation and seabed is established under the combinedwind, wave and current loadings. vertical stress of wind turbines Based on this model, the dynamic horizontal displacement, the tower, and the horizontal displacement, bending moment and shear force of the foundation are analyzed under different loading combinations. Moreover, the excess pore pressure response of seabed around the pile foundation is examined under the com- bined action of wind, wave, and current loadings. Finally, the influence of different load parame- ters on the excess pore water pressure of seabed is discussed. It can be concluded from the com- putation results that the wind loading has a great influence on the horizontal displacement at the tower top and the stress at the tower hottom; the wave and current loadings greatly affect the horizontal displacement of the foundation, and the bending moment and shearing force of the pile~ and the wave loading is the most important factor affecting the pore water pressure of the seabed. The most unfavorable loading combination is the combination of the maximum wind loading and the maximum wave and current loadings with wave loading time history in this computation.
作者
张小玲
刘建秀
杜修力
许成顺
ZHANG Xiaoling;LIU Jianxiu;DU Xiuli;XU Chengshun(College of Architecture and Civil Engineering,Beijing University of Technology,Beijing 100124;Key Laboratory of Urban Security and Disaster Engineering,Ministry of Education,Beijing University of Technology,Beijing 100124,China)
出处
《防灾减灾工程学报》
CSCD
北大核心
2018年第4期658-668,共11页
Journal of Disaster Prevention and Mitigation Engineering
基金
国家自然科学基金面上项目(51778020)
国家自然科学基金创新研究群体项目(51421005)资助
关键词
海上风电基础
海床
共同作用
风浪流
荷载组合
offshore wind power foundation
seabed
combined action
wind, wave and current
load combination