On Uncertainty Assessment of Fatigue Damage of Propulsion Shaft Under Ice Impact

Etienne Purcell, A. Nejad, M. Valavi, A. Bekker
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Abstract

In this paper, the importance of maintenance of marine propulsion is discussed with specific focus on the use of condition monitoring to inform maintenance schedules. The design requirements of DNV GL for shafts expected to operate in ice infested waters is adapted and a method is proposed to calculate the short-term fatigue damage during ice impacts. This method uses the Palmgren-Miner rule to calculate fatigue damage based on a transient, lumped-mass model simulation of the shaft with ice loads calculated from shaft measurements using inverse methods. Relevant sources of uncertainty in this assessment method are identified and quantified in order to express the short-term fatigue damage in a stochastic form. Sources of uncertainty include uncertainty in the calculation of ice loads, uncertainty of the transient analysis and uncertainty regarding the actual failure of the shaft as predicted by the S-N material curve and the Palmgren-Miner method. Uncertainties that influence the stress history are found to be the greatest contributor to fatigue damage uncertainty. A method is discussed that calculates the remaining useful life of the shaft as a function of short-term fatigue damage and the identified sources of uncertainty. The S.A. Agulhas is used as a case study to quantify the fatigue damage.
冰冲击下推进轴疲劳损伤的不确定性评定
本文讨论了船舶推进装置维修的重要性,并着重讨论了使用状态监测来通知维修计划。根据DNV GL的设计要求,提出了一种计算冰冲击时短期疲劳损伤的方法。该方法使用Palmgren-Miner规则来计算疲劳损伤,该方法基于瞬态集总质量模型模拟,并使用反方法从井筒测量中计算冰载荷。对该评估方法中的相关不确定因素进行了识别和量化,使短期疲劳损伤以随机形式表达。不确定性的来源包括冰荷载计算的不确定性、瞬态分析的不确定性以及根据S-N材料曲线和Palmgren-Miner方法预测的竖井实际破坏的不确定性。发现影响应力历史的不确定性是疲劳损伤不确定性的最大贡献者。讨论了一种计算轴的剩余使用寿命作为短期疲劳损伤和确定的不确定性来源的函数的方法。以sa Agulhas为例进行了疲劳损伤量化研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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