首页> 外文会议>25th International Conference on Offshore Mechanics and Arctic Engineering 2006(OMAE2006) vol.3 >WAVE-INDUCED FATIGUE DAMAGE OF MOORING CHAIN UNDER COMBINED NON- GAUSSIAN LOW AND WAVE FREQUENCY LOADS
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WAVE-INDUCED FATIGUE DAMAGE OF MOORING CHAIN UNDER COMBINED NON- GAUSSIAN LOW AND WAVE FREQUENCY LOADS

机译:非高斯波和低频载荷共同作用下系泊链的波致疲劳损伤

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摘要

This paper deals with the fatigue damage of catenary mooring chain under combined low frequency (LF) and wave frequency (WF) loads which are both non-Gaussian. The distribution of quasi-static LF mooring line tension is obtained by representing the slowly-varying wave force acting on the vessel as a second-order Volterra series and by taking into account the nonlinear relationship between the vessel motion and the resulting line tension. The dynamic WF tension distribution is estimated when both the drag and inertia forces on the mooring line are considered. Finally, with the narrowband assumption for both the LF and WF response spectra, the total fatigue damage is approximated by the sum of the fatigue damages due to the WF tension process and the sum process of the WF tension envelope and the LF tension. The procedure is illustrated by considering of the mooring system of a semi-submersible. Short-term distributions of LF and WF line tensions are given and compared with the results from the linearized analyses with Gaussian tension. Relative LF and WF long-term contributions to the total fatigue damage from different sea states are also provided.
机译:本文研究了非高斯组合低频(LF)和波浪频率(WF)载荷作用下的悬链系泊链的疲劳损伤。准静态LF系泊缆线张力的分布是通过将作用在船上的缓慢变化的波浪力表示为二阶Volterra级数,并考虑到舰船运动与所产生的缆线张力之间的非线性关系而获得的。当同时考虑系泊缆绳上的阻力和惯性力时,可估算动态WF张力分布。最后,在LF和WF响应谱均采用窄带假设的情况下,总疲劳损伤可近似归因于WF张力过程以及WF张力包络线和LF张力的总过程引起的疲劳损伤。通过考虑半潜水器的系泊系统来说明该过程。给出了LF和WF线张力的短期分布,并与高斯张力线性分析的结果进行了比较。还提供了不同海况下LF和WF对总疲劳损伤的长期贡献。

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