氢动力船舶安全屏障分析

Lorenzo Balestra, Ruochen Yang, I. Schjølberg, I. Utne, Ø. Ulleberg
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摘要

本文的重点是在低温氢动力容器的设计阶段使用安全屏障分析,以确定结构中可能存在的弱点。障碍分析可以用来评估一系列在行业中被确定为关键的场景。在特定场景中对这些屏障的性能评估可能导致设计的批准(如果满足安全阈值),或者包含额外的屏障以进一步降低风险。通过进行结构化分析,可以识别需要包括在系统中的关键障碍,既可以作为物理障碍(传感器、冷箱),也可以作为管理障碍(检查表、操作人员培训)。本研究选择的方法是障碍和操作风险分析(BORA)方法。本文介绍了这种用于分析碳氢化合物释放的方法,并适用于分析低温氢释放。采用BORA方法进行了一个案例研究,发展了定性屏障分析。该方法的定性切片可以很容易地适用于采用相同存储溶液的不同类别和大小的容器。屏障分析提供了一个总体框架来分析系统,并检查船舶经营人和海事认证协会定义的安全要求是否得到满足。
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Towards Safety Barrier Analysis of Hydrogen Powered Maritime Vessels
This paper focuses on the use of safety barrier analysis, during the design phase of a vessel powered by cryogenic hydrogen, to identify possible weaknesses in the architecture. Barrier analysis can be used to evaluate a series of scenarios that have been identified in the industry as critical. The performance evaluation of such barriers in a specific scenario can lead to either the approval of the design, if a safety threshold is met, or the inclusion of additional barriers to mitigate risk even further. By conducting a structured analysis, it is possible to identify key barriers that need to be included in the system, intended both as physical barriers (sensors, cold box) and as administrative barriers (checklist, operator training). The method chosen for this study is the Barrier and Operational Risk Analysis (BORA) method. This method, developed for the analysis of hydrocarbon releases, is described in the paper and adapted for the analysis of cryogenic hydrogen releases. A case study is presented using the BORA method, developing the qualitative barrier analysis. The qualitative section of the method can be easily adapted to vessels of different class and size adopting the same storage solution. The barrier analysis provides a general framework to analyze the system and check that the safety requirements defined by the ship operator and maritime certification societies are met.
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