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Influence of the Mean Load on the Fatigue Performance of Mooring Chains

机译:平均载荷对系泊链疲劳性能的影响

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Whilst it is known that mean stress has an effect on the fatigue endurance of steel components, this effect is not considered when designing mooring system components. The S-N and T-N fatigue design curves for mooring chain in the standards are based on tests carried out at a single mean load, which is 20% of the chain minimum breaking load (MBL), and these curves are used to compute the damage of all load cycles regardless of their mean value. Lately it has been found that the effect of the mean load can be larger than probably expected, and that mooring chains exhibit a significant increase of fatigue capacity when cyclically loaded at reduced mean load. In the majority of the floating units, the pre-tension of the moorings without environmental loads is below or well below 15% of the chain MBL, and most, if not all, of the in-service damage is produced at mean loads below 20% MBL. This in practice results in additional conservatism to the fatigue life computed using the existing design curves. Some deepwater units, subjected to high pre-tension level, can experience some or relevant damage occurring at mean loads above 20% MBL, which would be underestimated with the present design approach. The paper provides an insight on the effect of the mean load on the fatigue endurance of mooring chains and quantifies this dependency based on a large number of fatigue tests carried out on different chain diameters between 70 and 171 mm, different grades, and different mean loads ranging between 7% and 20% of the MBL of the tested chains. The Smith-Watson-Topper (SWT) mean stress correction model is used to transform the stress state of the tested chains into different stress states associated to different mean loads. Then regression analyses are performed and correction functions derived for the design curves of both S-N and T-N approaches to account for the mean load while keeping the same confidence of the existing curves.
机译:尽管已知平均应力会影响钢构件的疲劳强度,但在设计系泊系统构件时并未考虑这种影响。标准中系泊链的SN和TN疲劳设计曲线基于在单个平均载荷下进行的测试,该平均载荷为链条最小断裂载荷(MBL)的20%,这些曲线用于计算所有锚链的破坏负载循环,无论其平均值如何。最近发现,平均载荷的影响可能比可能预期的要大,并且当以降低的平均载荷循环加载时,系泊链表现出疲劳能力的显着提高。在大多数浮动装置中,没有环境载荷的系泊设备的预应力低于或远低于MBL链的15%,并且大多数(如果不是全部)在役损坏是在平均载荷低于20时产生的%MBL。实际上,这会导致使用现有设计曲线计算出的疲劳寿命具有更多的保守性。某些承受高预紧力的深水单元,在平均负荷超过20%MBL时,可能会遭受一些或相关的损害,而使用当前的设计方法可能会低估这些损害。本文提供了有关平均负载对系泊链疲劳强度的影响的见解,并基于对70至171 mm的不同链径,不同等级和不同平均负载进行的大量疲劳测试,量化了这种依赖性。占测试链MBL的7%至20%之间。 Smith-Watson-Topper(SWT)平均应力校正模型用于将测试链的应力状态转换为与不同平均负载关联的不同应力状态。然后进行回归分析,并为S-N和T-N方法的设计曲线导出校正函数,以在保持现有曲线相同置信度的同时考虑平均负载。

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