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A study of fatigue crack growth in offshore wind monopile parent steel in air and seawater

机译:空气和海水海上风型母钢疲劳裂纹增长研究

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Offshore wind turbines supported on monopile structures have significantly different structural dynamic response characteristics compared to oil and gas structures due to the structural stiffness and machine loading characteristics. Therefore, the effect of corrosion assisted fatigue damage in offshore wind turbine support structures needs to be researched and better understood for reliable operation of the structures in service. This paper presents constant amplitude fatigue crack propagation tests conducted on representative Compact Tension specimens (CT) in air and in laboratory simulated free corrosion seawater environment similar to what might be experienced by steel monopile wind turbine support structures. Crack growth rates were shown to be faster in seawater than in air across all the applied cyclic stress intensity factor ranges tested. Mean stress effect on fatigue crack growth was accounted for at stress ratios of - 1 to 0.6 using various mean stress models. Significant difference in the predicted results is discussed.
机译:由于结构刚度和机器装载特性,与油气结构相比,近海风力涡轮机具有明显不同的结构动态响应特性。因此,需要研究腐蚀辅助疲劳损坏在海上风力涡轮机支撑结构中的效果,并更好地理解服务中结构的可靠操作。本文介绍了在空气中代表紧凑张力标本(CT)的恒定幅度疲劳裂纹传播试验,实验室模拟自由腐蚀海水环境类似于钢铁型风力涡轮机支撑结构的经历。海水中,裂缝增长率显示出比在所测试的所有循环应力强度因子范围内的空气中更快。使用各种平均应力模型的应力比对疲劳裂纹生长的平均应力效应占-1至0.6的应力比。讨论了预测结果的显着差异。

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