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Risk-informed life-cycle optimum inspection and maintenance of ship structures considering corrosion and fatigue

机译:在考虑腐蚀和疲劳的情况下,根据风险提示对船舶结构进行生命周期优化检查和维护

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During its life-cycle, a ship structure may suffer from structural deterioration associated with corrosion and/or fatigue. A prolonged exposure to these hazards results in a reduction of structural resistance which can lead to failure. Optimum inspection and maintenance planning of ship structures is a challenging process needed to ensure ship safety during the life-cycle. This paper presents a probabilistic approach to provide optimum inspection and repair plans for ship structures considering corrosion and fatigue. Uncertainties in the damage assessment associated with corrosion and fatigue are taken into account. Risk is assessed by considering the direct losses associated with flexural failure. A multi-objective optimization problem, which accounts for structural deterioration scenarios and various uncertainties, is formulated to find the optimum inspection and repair planning of ship structures. The life-cycle risk associated with flexural failure and expected total inspection and maintenance costs are considered as conflicting criteria. The proposed probabilistic optimization approach is illustrated on the VLCC ship structure. Genetic algorithms are used to solve the optimization problem. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在其生命周期中,船舶结构可能会遭受与腐蚀和/或疲劳相关的结构恶化。长时间暴露于这些危险中会导致结构强度降低,从而导致故障。船舶结构的最佳检查和维护计划是确保生命周期内船舶安全所需的具有挑战性的过程。本文提出一种概率方法,为考虑腐蚀和疲劳的船舶结构提供最佳的检查和维修计划。考虑到与腐蚀和疲劳有关的损伤评估的不确定性。通过考虑与弯曲破坏相关的直接损失来评估风险。为了解决船舶结构的最佳检查和维修计划,提出了一个多目标优化问题,该问题考虑了结构恶化的情况和各种不确定性。与弯曲破坏相关的生命周期风险以及预期的总检查和维护成本被视为矛盾的标准。 VLCC船的结构上说明了所提出的概率优化方法。遗传算法用于解决优化问题。 (C)2015 Elsevier Ltd.保留所有权利。

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