Zhang Jiwang, Li Weijun, Sun Yibo, Liu Yin, Li Xiaolong
China Special Equipment Inspection and Research Institute, Beijing, China.
College of Safety and Environmental Engineering, Shandong University of Science and Technology, Qingdao, China.
Heliyon. 2023 Dec 20;10(1):e23951. doi: 10.1016/j.heliyon.2023.e23951. eCollection 2024 Jan 15.
Non-routine activities such as startup, shutdown, maintenance, and operation commissioning require increased human interaction with the corresponding process. Owing to operator or procedural violations, the risk of accidents can be high during non-routine activities, even though they are performed less frequently. To identify and evaluate the hazards of non-routine processes, an integrated method combining job hazard analysis (JHA), hazard and operability analysis (HAZOP), and deviation degrees is proposed. JHA is applied to break down an operational process into steps, which are further defined as nodes in HAZOP for hazard scenario analysis. The concept of deviation degree is defined by integrating the operational and control function deviations to quantify the deviation analysis. Finally, the heating-furnace startup process in an oil and gas gathering and transmission station was selected to illustrate the proposed integrated method. The results show that this method constitutes a systematical and intuitive approach to identify hazard scenarios and evaluate risks, as well as to establish preventive measures for non-routine processes.
诸如启动、关闭、维护和运行调试等非常规活动需要增加人员与相应流程的互动。由于操作人员违规或程序违规,非常规活动期间发生事故的风险可能很高,尽管这些活动的执行频率较低。为了识别和评估非常规流程的危害,提出了一种结合工作危害分析(JHA)、危害与可操作性分析(HAZOP)和偏差度的综合方法。JHA用于将操作流程分解为步骤,这些步骤在HAZOP中进一步定义为节点,用于危害场景分析。通过整合操作和控制功能偏差来定义偏差度的概念,以量化偏差分析。最后,选取了油气集输站的加热炉启动过程来说明所提出的综合方法。结果表明,该方法构成了一种系统且直观的方法,用于识别危害场景、评估风险以及为非常规流程建立预防措施。