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Theoretical development and validation of a fatigue model for ship routing

机译:船舶航路疲劳模型的理论发展与验证

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Fatigue cracks are observed much earlier than expected in ships and marine structures due to uncertainties in the fatigue design process, such as encountered sea environments and variability in S-N curves, etc. The current study presents the theoretical development and validation of a fatigue model useful for ship routing which may contribute to better utilisation of the materials and structures by more wise operation of them. During the theoretical development of the ship routing fatigue model, various models to estimate fatigue damage intensity, including both cycle counting calculations and spectral approximations, are reviewed. The proposed ship routing fatigue model is a function of operation profiles, i.e., heading angle and ship speed, as well as encountered wave environments (significant wave height), which are easily available in today's commercial routing tool systems. Concerning the characteristics of ship response, the so-called narrow-band approximation is adopted and further simplified in order to estimate the fatigue damage in ships under an arbitrary stationary sea state. Long-term fatigue damage is estimated by a summation of fatigue damages in all encountered sea states during, for example, one voyage or a period of several years. Further, fatigue damage due to wave-induced vibrations (whipping and springing) and fatigue damage caused by various stress components are also studied and discussed. A validation using response from full-scale measurements and numerical analysis is presented. It shows that the proposed model works very well in comparison with the rainflow counting method. Finally, the proposed ship routing fatigue model is applied on real case scenarios, where its applicability in shipping industry is demonstrated.
机译:由于疲劳设计过程中的不确定性(例如遇到的海洋环境和SN曲线的变化等),在船舶和海洋结构中发现的疲劳裂纹比预期的要早得多。当前的研究提出了可用于疲劳的疲劳模型的理论开发和验证船舶路线安排,可通过更明智地操作来帮助更好地利用材料和结构。在船舶航路疲劳模型的理论开发过程中,对估计疲劳破坏强度的各种模型进行了回顾,包括周期计数计算和频谱近似。拟议的船舶航路疲劳模型是操作曲线的函数,即航向角和船速以及遇到的波浪环境(显着的波浪高度),这些功能在当今的商业航路工具系统中很容易获得。关于船舶响应的特性,采用所谓的窄带近似并进一步简化,以便估计在任意静止海况下船舶的疲劳损伤。长期疲劳损伤是通过在例如一次航行或几年内在所有遇到的海况下疲劳损伤的总和来估算的。此外,还研究和讨论了由波浪引起的振动(搅动和弹跳)引起的疲劳损伤以及由各种应力分量引起的疲劳损伤。提出了使用满量程测量和数值分析的响应进行的验证。结果表明,该模型与雨流计数方法相比效果很好。最后,将提出的船舶航路疲劳模型应用于实际案例,并证明了其在航运业中的适用性。

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