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Application of an Enhanced Version of Recursive Operability Analysis for Combustible Dusts Risk Assessment

机译:增强版本的递归可操作性分析在可燃粉尘风险评估中的应用

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摘要

Organic dust explosions were and are still today a critical issue in the food, pharmaceutical, and fine chemical industry. Materials such as flour, corn starch, sugar and APIs represent a cause of severe accidents. In this framework, we investigated a modified version of Recursive Operability Analysis−Incidental Sequence Diagrams (ROA–ISD), called ROA Plus−ISD, specifically tailored to describe industrial processes involving organic combustible dusts. Compared to more classical techniques such as Hazard and Operability (HazOp), ROA−ISD allows for a direct generation of fault trees, providing a useful tool to connect Qualitative with Quantitative Risk Analysis (QRA). ROA Plus−ISD is very similar to ROA−Cause Consequence Diagrams (CCD), which has already proven to be an effective tool to perform both risk assessment on existing plants and reconstructing already occurred accidents, given its logical structure and width of the application fields. In this work, we modified specific parts of the standard ROA−CCD method: (1) the Failure Mode and Operability Analysis (FMEA) database has been structured in order to retrieve the well-known explosion pentagon (for dusts) and all the instruments, devices, apparatuses and controllers typical of industries which process organic dusts; (2) a new comprehensive list of process variables has been compiled. In this way, it is possible to tailor the information required for the generation of the fault trees concerning top events involving mainly dust explosions and fires. This method has been implemented in order to reconstruct the dynamics of the February 2008 Imperial Sugar refinery plant accident (Port Wentworth, GA, USA). Results demonstrated the applicability of the enhanced method by highlighting the criticalities of the process already showed by a previously detailed reconstruction performed by the Chemical Safety Board.
机译:在食品,制药和精细化工行业中,有机粉尘爆炸一直是并且仍然是当今的关键问题。面粉,玉米淀粉,糖和原料药等材料是造成严重事故的原因。在此框架中,我们研究了递归可操作性分析-偶然序列图(ROA-ISD)的改进版本,称为ROA Plus-ISD,专门用于描述涉及有机可燃粉尘的工业过程。与危害和可操作性(HazOp)等更经典的技术相比,ROA-ISD可以直接生成故障树,提供了将定性与定量风险分析(QRA)联系起来的有用工具。 ROA Plus-ISD与ROA-Cause结果图(CCD)非常相似,鉴于其合理的逻辑结构和应用领域的广度,它已经被证明是对现有工厂进行风险评估和重建已发生事故的有效工具。 。在这项工作中,我们修改了标准ROA-CCD方法的特定部分:(1)构造了故障模式和可操作性分析(FMEA)数据库,以便检索众所周知的爆炸五边形(用于粉尘)和所有仪器,用于处理有机粉尘的典型行业的设备,装置和控制器; (2)已编制了新的过程变量综合列表。以这种方式,有可能针对与主要涉及粉尘爆炸和火灾的顶级事件有关的故障树的生成,定制所需的信息。为了重建2008年2月Imperial Sugar精炼厂事故(美国乔治亚州温特沃斯港)的动态,已采用了该方法。结果通过强调化学安全委员会先前进行的详细改造已经显示出的过程的关键性,证明了改进方法的适用性。

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