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Criticality Analysis of Process Systems

机译:过程系统的关键性分析

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This paper presents a systematic methodology for formal Criticality analysis of process systems, which properly accounts for process interactions, equipment failure, stochastic process variations and events related to process safety. Important extensions are also presented for the use of such Criticality analysis tools for safety and maintenance considerations. In the first part a quantitative measure for estimating the expected level for critical operations of process systems is introduced. Next a systematic algorithm of rating the equipment or events according to an associated Criticality index is presented, coupled with a methodology for condition based maintenance for enhancing overall system efficiency and safety. The developed tools and the algorithms are demonstrated via a realistic case study of a compressor system, where (FOR) and (COR) are properly identified for the operable states. The proposed methodology is applied in order to rank the critical parts of the equipment or events, and then to result in the maintenance policy which fulfill certain efficiency and safety targets. While the Criticality analysis methodology developed in this work predicts variable information regarding the overall system expected critical operations, the relative importance of the equipment to the process and identification of process and/or reliability bottlenecks, its link to the design optimization algorithm has not been formally established. However, as it is shown via the case study, the proposed methodology could be an efficient tool for the proper balance of preventive and condition based maintenance activities and the prediction of their impact to process operational decisions.
机译:本文介绍了对过程系统的正式关键性分析的系统方法,该方法适当地占处理交互,设备故障,随机过程变化和与过程安全相关的事件。还提供了用于使用此类关键性分析工具进行安全和维护考虑的重要扩展。在第一部分中,介绍了用于估计过程系统的关键操作的预期水平的定量措施。接下来,提出了根据相关临界索引的额定设备或事件的系统或事件的系统算法,与基于条件的维护的方法进行耦合,以提高整体系统效率和安全性。开发的工具和算法经由对压缩机系统的现实案例研究来说明,其中(for)和(cor)被适当地识别可操作状态。提出的方法是应用的,以便对设备或事件的关键部分进行排名,然后导致符合某些效率和安全目标的维护策略。虽然在本工作中开发的临界分析方法预测了关于整体系统预期的关键操作的可变信息,但设备对过程和/或可靠性瓶颈的过程和识别的相对重要性,其与设计优化算法的链接尚未正式已确立的。然而,正如通过案例研究所示的,所提出的方法可以是有效的工具,可以是适当平衡的预防性和条件的维护活动的平衡以及对过程运行决策的影响预测。

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