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A framework for evaluating the bearing capacity of offshore wind power foundation under complex loadings

机译:复杂负载下的海上风电基础承载力的框架

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摘要

Offshore wind power foundations are known to bear complex loadings, not only vertical loading V induced by self-weight, but also horizontal loadings H induced by wind, wave and current, and the bending loading M transferred from superstructure. In this paper a framework for evaluating the bearing capacity of the foundations is presened and the bearing characteristics of offshore wind power foundation under combined horizontal, vertical and bending loadings are analyzed. The bearing capacity of offshore wind power foundation under unidirectional horizontal, vertical and bending loadings is examined, and the relationship between the ultimate bearing capacity and the ratio of diameter to length of pile foundation is obtained. Based on the side-swipe method, the envelope of bearing capacity and failure mode of offshore wind power foundation in V-H, V-M, H-M loading space and V-H-M loading space are studied in details, and the parameter analysis of the envelope of foundation bearing capacity in different loading space are discussed. Finally, a simple and practical method is proposed to judge the stability of the offshore wind power and the seabed. A verification example reveals that the estimates of the presented framework shows good agreement with observations.
机译:已知海上风力基础承受复杂的载荷,而不仅是由自重引起的垂直载荷V,而且也是由风,波浪和电流引起的水平载荷H,以及从上部结构转移的弯曲负载。本文分析了一种评估基础轴承能力的框架,并分析了水平,垂直和弯曲载荷组合下海上风电基础的轴承特性。研究了海上风电基础的承载力在单向水平,垂直和弯曲载荷下,获得了最终承载能力与直径与桩基长度的关系。基于侧刷方法,研究了VH,VM,HM加载空间和VHM装载空间海上风电基础轴承容量和故障模式的包套,以及基础承载力集中的参数分析讨论了不同的装载空间。最后,提出了一种简单实用的方法来判断海上风力和海底的稳定性。验证示例揭示了所提出的框架的估计与观察结果良好。

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