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首页> 外文期刊>Journal of loss prevention in the process industries >Integration of process control protection layer into a simulation-based HAZOP tool
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Integration of process control protection layer into a simulation-based HAZOP tool

机译:过程控制保护层集成到基于仿真的Hazop工具中

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This paper discusses the framework methodology behind the proposed simulation-based HAZOP tool. Simulation-based approach is one of the many ways to support conventional HAZOP by its automation. Compared to knowledge-based and other approaches, a HAZOP software tool based on deviations simulation is able to examine the investigated process more into detail and so find root causes of hazardous consequences. Another advantage is the ability to identify also potential hazards which did not occur in the past and might be overlooked. The presented framework methodology uses a layer of protection analysis (LOPA) concept of independent protection layers (IPLs) testing. Control system integrated into the raw process design represents the first of various protection layers of the LOPA concept. As a case study, a CSTR chemical production with nonlinear behavior under Proportional-Integral-Derivative (PID) actions as the predominant type of classical feedback control strategy is used. The presented tool identifies hazardous regimes under conditions when control loop introduces hazardous consequences or even acts synergically with existing hazardous events. Risk derived from different consequences is ranked by the risk assessment matrix (RAM) as a part of the conventional quantitative HAZOP study.
机译:本文讨论了基于仿真的Hazop工具背后的框架方法。基于仿真的方法是通过其自动化支持传统HAZOP的许多方法之一。与基于知识和其他方法相比,基于偏差模拟的Hazop软件工具能够更详细地检查调查过程,因此找到危险后果的根本原因。另一个优点是能够识别过去不会发生的潜在危害,并且可能被忽视。呈现的框架方法使用独立保护层(IPLS)测试的保护分析(LOPA)概念。控制系统集成到原始过程设计中表示LoPA概念的各种保护层中的第一个。作为案例研究,使用与比例积分(PID)动作下的非线性行为的CSTR化学生产作为主要类型的经典反馈控制策略。当控制回路引入危险后果或甚至与现有的危险事件协同作用时,所提出的工具在条件下识别危险制度。由于传统定量HATP研究的一部分,风险评估矩阵(RAM)排名不同的后果的风险。

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