过程(计算)
级联故障
工艺安全
工程类
可靠性工程
风险评估
风险分析(工程)
风险管理
炼油厂
在制品
炼油厂
上游(联网)
计算机科学
计算机安全
运营管理
电力系统
电信
操作系统
医学
量子力学
物理
经济
功率(物理)
管理
废物管理
作者
Hao Sun,Haiqing Wang,Ming Yang,Genserik Reniers
出处
期刊:Safety Science
[Elsevier]
日期:2023-11-19
卷期号:171: 106375-106375
被引量:4
标识
DOI:10.1016/j.ssci.2023.106375
摘要
To maintain continuous production, chemical plant operators may ignore faults or handle faults online rather than shutting down process systems. However, interaction and interdependence links between components in a digitalized process system are substantial. Thus, faults will be propagated to downstream nodes, potentially leading to risk accumulation and major accidents. However, limited attention has been paid to this type of risk. To model the risk accumulation process, a dynamic risk assessment method is proposed by integrating the system-theoretic accident model and process approach (STAMP) and the cascading failure propagation model (CFPM). Firstly, STAMP is used to model and analyze the system safety of a process system. Two CFPMs are then proposed to measure risk accumulation under two different engineering situations. The proposed method is applied to the Chevron Richmond refinery crude unit and its associated upstream process. The results show that the proposed approach can effectively quantify the process of risk accumulation. This method can generate a real-time dynamic risk profile to support auxiliary decision-making.
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