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Propulsion Shaft and Gearbox Failure in Marine Vessels: A Duration Model Analysis

机译:海洋船舶的推进轴和齿轮箱失效:持续时间模型分析

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The need to mitigate downtime in marine vessels arising from propulsion system failures has led ship operating companies to devote enormous resources for research based solutions. This paper applied duration models to determine failure probabilities of shaft and gearbox systems in service boats. Using dockyard’s event history data on boat repairs and maintenance, we applied Kaplan Meier hazard and survival curves to analyse probability of failure of shaft and gearbox systems in supply, crew and tug boats. We found that average time to shaft and gearbox failure was 8.33, 5.23 and 5.21 months for tug, supply and crew boats respectively. The hazard plots however, showed that supply boats had higher probability of failure than crew boats and then tug boats in that order. Further analysis using Cox regression model showed that t he boats’ shaft and gearbox system failures were significantly affected by level of lubrication oil, stress corrosion cracking and impacts on the propul sion system’s components. The paper proposes that design of maintenan ce schedules for service boats should take the following into consideration: 1) estimated survival limits or failure times of propulsion system’s shaft and gearboxes , 2) significant risk factors that affect failure mode of the propulsion system components.
机译:需要减轻推进系统故障所引起的海洋船舶停机时间的必要性已导致船舶运营公司为基于研究的解决方案投入巨大资源。本文施加了持续时间模型,以确定轴和齿轮箱系统在使用船上的失效概率。在船修理和维护上使用Dockyard的活动历史数据,我们应用了Kaplan Meier危险和生存曲线,分析了供应,船员和拖船的轴和变速箱系统失效的可能性。我们发现平均时间到轴和变速箱故障的时间为8.33,5.23和5.21个月,分别用于拖船,供应和船员船。然而,危险地块显示,供应船的失效概率高于船员,然后按此顺序拖船。使用Cox回归模型的进一步分析表明,船舶轴和齿轮箱系统故障受润滑油,应力腐蚀开裂水平的显着影响,对Propul Sion系统的组件的影响。本文提出了维护船舶的维护计划的设计应考虑以下事项:1)估计的存活限制或推进系统的轴和变速箱的失效时间,2)影响推进系统组件的失效模式的显着风险因素。

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