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Operational risk analysis for undesired polymerization in overhead condenser of butadiene column

机译:丁二烯塔顶冷凝器不良聚合的操作风险分析

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摘要

An accident model based on fault tree analysis was developed and applied to analyze the recurrence of undesired reactions producing popcorn polymers in the overhead condenser of an industrial butadiene distillation column. The modeling framework incorporates reliability data associated with asset integrity and human performance along with data on selected process variables. These variables, i.e., pressure, feed velocity and temperature of the condenser, which were identified from root cause analysis of the incident provided dynamic contributions to the model, and were represented in the form of Weibull distribution functions. The results obtained proved the potentials of the proposed methodology. Based on the case study considered, operating pressure was identified as the most influential process variables that needed closer monitoring. The methodology provides an opportunity for risk management to be implemented dynamically to facilitate maintenance plan and management of change.
机译:建立了基于故障树分析的事故模型,并将其应用于工业丁二烯蒸馏塔塔顶冷凝器中意外反应产生爆米花聚合物的反应的发生。建模框架结合了与资产完整性和人员绩效相关的可靠性数据,以及有关选定过程变量的数据。这些变量,即冷凝器的压力,进料速度和温度,是从事故的根本原因分析中识别出来的,为模型提供了动态贡献,并以威布尔分布函数的形式表示。获得的结果证明了所提出方法的潜力。根据所考虑的案例研究,工作压力被确定为最有影响力的过程变量,需要对其进行密切监视。该方法为动态实施风险管理提供了机会,以促进维护计划和变更管理。

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