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Risk-based decision-making on corrosion delay for ship hull tankers

机译:船舶船体油轮腐蚀延迟的风险决策

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Corrosion addition, as defined by the International Association of Classification Societies (IACS), is a proactive design measure against corrosion-induced structural deterioration. In conjunction with regular dry-docking maintenance (e.g., coating and steel renewal), corrosion addition is aimed to sustain the intended functionality of a corroding ship toward the end of its service life. It is expected that corrosion addition can improve hull strength and save the lifetime maintenance cost. However, the benefit of upfront steel investment in corrosion addition on the ship's life-cycle cost, including construction, dry-docking maintenance, and failure consequence, remains unclear. Obtaining such knowledge is very helpful in ship design and lifetime dry-docking planning. This paper presents a risk-based approach to study the most economically optimal corrosion addition. The method is illustrated on a very large crude carrier (VLCC) and the benefit analysis takes into account different magnitudes of the construction, dry-docking, steel renewal, and failure costs. The results show that corrosion addition by IACS may not be economically optimal; the reduction in the life-cycle cost through corrosion addition and the optimal corrosion addition achieving the maximum benefit varies with the item costs specified.
机译:由国际分类社会协会(IACS)所定义的腐蚀加法是抗腐蚀诱导的结构恶化的主动设计措施。结合定期干坞维护(例如,涂层和钢更新),腐蚀加入旨在维持腐蚀船的预期功能,以实现其使用寿命的结束。预计腐蚀添加可以提高船体强度并节省寿命维护成本。然而,提升钢材投资对船舶生命周期成本的腐蚀添加,包括施工,干坞维护和失败后果,仍不清楚。获得这些知识在船舶设计和终身干坞规划方面非常有用。本文介绍了一种基于风险的方法来研究最经济上最佳的腐蚀添加。该方法在非常大的粗载波(VLCC)上示出,益处分析考虑了建筑,干坞,钢更新和失效成本的不同幅度。结果表明,IACS的腐蚀添加可能在经济上不佳;通过腐蚀的生命周期成本降低和实现最大效益的最佳腐蚀添加随着所指定的项目成本而变化。

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