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RELIABILITY DESIGN OF INDUSTRIAL PLANTS USING PETRI NETS

机译:使用Petri网的工业设备可靠性设计

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This paper describes a reliability analysis tool for design or revamping of industrial plants. The methodology is based on Failure Modes, Effects and Criticality Analysis (FMECA) and stochastic-events simulation analysis through Petri nets. The input data for the analysis are collected by applying a FMECA technique to the industrial plants both in the design and in the revamping stage, obtaining useful information of events probability, occurrence and effects. The following step, i.e. the simulation of the system operation using Stochastic Petri Nets (SPN), makes it possible to calculate some important reliability parameters of the industrial plant, evaluating their change depending on maintenance policies on plant items. In particular, the effects of preventive maintenance on system reliability have been analysed using Petri Nets, allowing the costs/benefits analysis. The proposed methodology has been applied to the Integrated Gasification and Combined Cycle (IGCC) plant of API oil refinery in Falconara Marittima (Ancona, Italy), providing results that are consistent with the experimental reliability data, thus proving to be an effective decision-support tool for Reliability Engineering.
机译:本文介绍了工业设备的设计或改造的可靠性分析工具。该方法基于故障模式,效应和临界性分析(FMECA)和随机事件通过Petri网进行模拟分析。通过将FMECA技术应用于设计和改造阶段,通过将FMECA技术应用于设计和改造阶段来收集分析的输入数据,从而获得事件概率,发生和效果的有用信息。以下步骤即使用随机培养网(SPN)的系统操作的仿真使得可以计算工业设备的一些重要可靠性参数,根据植物物品的维护政策评估其变化。特别地,使用Petri网分析了预防性维护对系统可靠性的影响,允许成本/益处分析。该拟议的方法已应用于Falconara Marittima(Ancona,Italy)的API炼油厂的综合气化和联合循环(IGCC)植物,提供与实验可靠性数据一致的结果,从而证明是有效的决策支持可靠性工程工具。

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