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首页> 外文期刊>Safety science >Comparing capability of scenario hazard identification methods by the PIC (Plant-People-Procedure Interaction Contribution) network metric
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Comparing capability of scenario hazard identification methods by the PIC (Plant-People-Procedure Interaction Contribution) network metric

机译:比较PIC(植物 - 人工互动贡献)网络度量的情景危险识别方法的能力

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摘要

Comparing the results of hazard identification (HAZID) methods is a complex task, but the question that drives this activity is vitally important: which HAZID method should be used to best identify an accident scenario? Despite many efforts to address this, effective metrics do not yet readily exist for clearly comparing HAZID results for a particular scenario. The complexity of socio-technical systems is often cited as a key factor that limits effective scenario identification, calling into question traditional HAZID efforts. Motivated by the observation that interactions between multiple component types, such as People, Plant and Procedures (P3), often significantly contribute to major process system accidents, being an expression of the complexity of the system, a novel, precise, network topology-based metric for calculating the contribution of P3 Interactions to accident scenarios is presented. This metric, called the P3 Interaction Contribution (PIC), is intended to be used for comparing the HAZID results. An illustrative example of using the PIC for HAZID comparison is included, whereby Failure Mode and Effects Analysis (FMEA), Blended Hazard Identification methodology (BLHAZID) and Systems Theoretic Process Analysis (STPA) were each applied to a heat exchanger start-up operation.
机译:比较危险识别(Hazid)方法的结果是一个复杂的任务,但驱动这项活动的问题是至关重要的:哪种Hazid方法应该用来最好地识别事故情景?尽管有许多努力解决这一问题,但尚未容易地存在有效的指标,以便明确比较特定情景的Hazid结果。社会技术系统的复杂性往往被引用为限制有效场景识别的关键因素,呼吁质疑传统的HATID努力。观察的观察,诸如人,植物和程序(P3)的多种组分类型之间的相互作用通常会显着贡献主要的过程系统事故,这是一种表达系统的复杂性,新颖,精确,网络拓扑基础提出了计算P3与事故方案的P3交互贡献的指标。这种称为P3交互贡献(PIC)的度量旨在用于比较HARMID结果。包括用于HATID比较的PIC的说明性示例,其中失败模式和效果分析(FMEA),混合危险识别方法(BLHAZID)和系统理论过程分析(STPA)各自应用于热交换器启动操作。

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