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A quantitative risk analysis by using interval type-2 fuzzy FMEA approach: the case of oil spill

机译:区间2型模糊FMEA方法的定量风险分析:漏油事件。

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摘要

Risk assessment in maritime domain is one of the most cited topics since maritime transportation poses potential hazard for human life, marine environment and property. To mitigate risk and enhance safety awareness in maritime transportation, safety researchers have been seeking proactive solutions. This article prompts a quantitative risk-based approach combining interval type-2 fuzzy sets (IT2FSs) with failure mode and effect analysis (FMEA) to perform a comprehensive risk analysis. Thus, potential failure modes and their effects are revealed by calculating risk prioritisation numbers (RPNs). Whilst the FMEA method provides a robust risk analysing tool with relevant control options, the IT2FSs deals with ambiguity and vagueness of linguistic assessment of decision-makers through the FMEA. Hence, expert's linguistic assessment in risk assessment can be transformed into useful information in terms of enhancing safety and pollution prevention in maritime industry. To demonstrate the proposed approach, potential failures and effects of a real shipboard oil spill case are handled. The findings show that incomplete information exchanged with local maritime authorities, malfunction of oil skimmer and poor organization of shoreline clean-up team are the most important failures during case of oil spill. The proposed approach provides not only theoretical insight into the maritime transportation industry but also practical contributions to chemical/oil tanker safety and environmental protection by mitigating risk in terms of technical or operational aspects.
机译:海上风险评估是被引用最多的主题之一,因为海上运输会对人类生命,海洋环境和财产构成潜在危害。为了减轻海上运输的风险并提高安全意识,安全研究人员一直在寻求积极的解决方案。本文提出了一种基于风险的定量方法,该方法将区间2型模糊集(IT2FS)与故障模式和影响分析(FMEA)结合起来进行全面的风险分析。因此,通过计算风险优先级数字(RPN)可以揭示潜在的故障模式及其影响。尽管FMEA方法提供了具有相关控制选项的强大的风险分析工具,但IT2FS通过FMEA处理了决策者的语言评估的含糊不清。因此,可以将专家在风险评估中的语言评估转化为有用的信息,以增强海运行业的安全性和污染预防。为了证明所提出的方法,对实际船上溢油案例的潜在故障和影响进行了处理。调查结果表明,与当地海事部门交换的信息不完整,撇油器的故障以及海岸线清理小组的组织不善是发生漏油事件中最重要的故障。所提出的方法不仅提供了对海上运输业的理论见解,而且还通过降低技术或操作方面的风险为化学/油轮安全和环境保护做出了实际贡献。

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