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Fatigue strength assessment of ship structures accounting for a coating life and corrosion degradation

机译:考虑涂层寿命和腐蚀退化的船舶结构疲劳强度评估

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Purpose - Fatigue strength and reliability assessment of complex double hull oil tanker structures, based on different local structural finite element approaches, is performed accounting for the uncertainties originating from load, nominal stresses, hot spot stress calculations, weld quality estimations and misalignments and fatigue S-N parameters including the correlation between load cases and the coating life and corrosion degradation. The paper aims to discuss these issues. Design/methodology/approach - Ship hull wave-induced vertical and horizontal bending moments and pressure are considered in the analysis. Stress analyses are performed based on the nominal, local hot spot and notch stress approaches. A linear elastic finite element analysis is used to determine the stress distribution around the welded details and to estimate structural stresses of all critical locations. Fatigue damage is estimated by employing the Palmgren-Miner approach. The importance of the contribution of each random variable to the uncertainty of the fatigue limit state function is also estimated. The probability of fatigue damage of hot spots is evaluated taking into account random coating life and corrosion wastage. Fatigue reliability, during the service life, is modelled as a system of correlated events. Findings - The fatigue analysis showed that the fatigue damage at the hot spot, located at the flange of the stiffener close to the cut-out, is always highest in the cases of the structural hot spot stress and effective notch stress approaches, except for the one of the nominal stress approach. The sensitivities of the fatigue limit state function with respect to changes in the random variables were demonstrated showing that the uncertainty in the fatigue stress estimation and fatigue damage are the most important. Fatigue reliability, modelled as a parallel system of structural hot spots and as a serial system of correlated events (load cases) was evaluated based on the Ditlevsen bounds. As a result of the performed analysis, reliability and Beta reliability indexes of lower and upper bounds were estimated, which are very similar to the ones adopted for ultimate strength collapse as reported in literature. Originality/value - This paper develops a very complex fatigue strength and reliability assessment model for analysing a double hull oil tanker structure using different local structural finite element approaches accounting for the associated uncertainties and the correlation between load cases and the coating life and corrosion degradation. The developed model is flexible enough to be applied for analysing different structural failure modes.
机译:目的-基于不同的局部结构有限元方法,对复杂的双壳油轮结构进行疲劳强度和可靠性评估,考虑到载荷,标称应力,热点应力计算,焊缝质量估算以及未对准和疲劳SN所带来的不确定性这些参数包括工况与涂层寿命和腐蚀退化之间的相关性。本文旨在讨论这些问题。设计/方法/方法-分析中考虑了船体波浪引起的垂直和水平弯曲力矩和压力。应力分析是根据名义应力,局部热点应力和缺口应力方法进行的。线性弹性有限元分析用于确定焊接细节周围的应力分布,并估计所有关键位置的结构应力。疲劳损伤是通过采用Palmgren-Miner方法估算的。还估计了每个随机变量对疲劳极限状态函数的不确定性的重要性。考虑随机涂层寿命和腐蚀浪费,评估热点疲劳损坏的可能性。在使用寿命期间,疲劳可靠性被建模为相关事件的系统。研究结果-疲劳分析表明,在结构热点应力和有效缺口应力逼近的情况下,位于加劲肋凸缘上靠近切口的热点处的疲劳损伤始终最高。标称应力方法之一。证明了疲劳极限状态函数对随机变量变化的敏感性,表明疲劳应力估计和疲劳损伤的不确定性是最重要的。基于Ditlevsen边界评估了疲劳可靠性,将其建模为结构热点的并行系统和相关事件(负载工况)的串行系统。作为进行分析的结果,估计了上限和下限的可靠性和Beta可靠性指标,这与文献中报道的用于极限强度塌陷的指标非常相似。原创性/价值-本文建立了一个非常复杂的疲劳强度和可靠性评估模型,该模型使用不同的局部结构有限元方法来分析双壳油轮结构,并考虑了相关的不确定性以及载荷工况与涂层寿命以及腐蚀退化之间的相关性。开发的模型具有足够的灵活性,可用于分析不同的结构破坏模式。

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