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Hazard analysis: Application of STPA to ship-to-ship transfer of LNG

机译:危害分析:STPA在LNG运输到船舶转移中的应用

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摘要

The process industry has experienced technological advances, such as automatic handling of hazardous substances, process equipment, and valves. High levels of automation, as well as system interactions at component and system levels, have brought new challenges to risk management. A modern process system involves multiple controllers. Even if each controller can control the process individually, an unexpected event may occur due to unintended interactions or insufficient attention to safety requirements and constraints. Recent accidents in Plymouth, UK, and Nigeria have attracted the attention of scientists, who have concluded that approaches currently being used are insufficient. A traditional hazard analysis tool, such as Hazard and Operability Studies (HAZOP) or simple reliability analysis methods such as Failure Mode and Effect Analysis (FMEA) cannot investigate the lack of complex systems properly. System Theoretical Process Analysis (STPA) is established to evaluate the safety of such complex systems. It has been used successfully in automated missiles and driving vehicles. However, the use of STPA in process industry applications is scarce. This paper is written to evaluate the feasibility of using STPA in process industry applications. A comparative analysis is conducted between STPA and HAZOP to determine whether STPA can replace traditional HAZOP or not with the help of a case study: Liquefied Natural Gas (LNG) Ship-to-Ship (STS) transfer. The results of the analysis show that STPA is complementary to traditional HAZOP. However, this conclusion is drawn based on only one specific case study (LNG STS transfer) and requires further analysis of other process applications for validation.
机译:该工艺业经历了技术进步,如自动处理危险物质,工艺设备和阀门。高水平的自动化以及组件和系统级别的系统交互,对风险管理带来了新的挑战。现代化的过程系统涉及多个控制器。即使每个控制器都可以单独控制该过程,也可能由于意外的交互而发生意外的事件,或者不充分关注安全要求和约束。最近普利茅斯,英国和尼日利亚的事故引起了科学家的关注,他们得出结论,他得出的目前正在使用的方法是不够的。传统的危险分析工具,如危险和可操作性研究(HAZOP)或简单的可靠性分析方法,如故障模式和效果分析(FMEA)无法正常调查缺乏复杂的系统。建立了系统理论过程分析(STPA)以评估这种复杂系统的安全性。它已在自动导弹和驾驶车辆中成功使用。但是,在工艺行业应用中使用STPA是稀缺的。本文是编写的,以评估使用STPA在过程行业应用中的可行性。在STPA和HAZOP之间进行比较分析,以确定STPA是否可以取代传统的HAZOP或者在案例研究的帮助下:液化天然气(LNG)船舶(STS)转移。分析结果表明,STPA与传统HAZOP互补。但是,这一结论是基于一个特定的案例研究(LNG STS转移)绘制,并且需要进一步分析其他过程应用程序进行验证。

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