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Integrated Framework for Determining Safety Integrity Level for Improved Process Safety

机译:确定安全完整性等级以提高过程安全性的集成框架

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摘要

According to the recent trend for the integrated safety management of chemical plants as part of plant life cycle engineering, it is recommended that a safety integrity level (SIL) analysis be performed to simultaneously meet the operational efficiency and safety specifications of a process. In this paper, a unifid framework is proposed for adapting life cycle engineering to risk assessment, including reusing the results, recommending a risk reduction by using a hazard and operability (HAZOP) support tool as a hazard identification method, and determining the SIL from a layer of protection analysis combined with fuzzy logic. First, a HAZOP support system is used to select scenarios with reducing efforts when the HAZOP study is implemented. Second, a fuzzy layer of protection analysis (fLOPA) is conducted to adjust the most reliable independent protection layer (IPL) by solving the objective uncertainty, which includes the failure rate data, probability of failure on demand, and subjective uncertainty. The required SIL for each scenario is determined, and a safety instrumented system is recommended to fit the demanded SIL. This framework, which is validated for a hydroxylamine case study, makes it possible to determine the required SIL with less effort and considers the uncertainties in the process, especially for plants that handle reactive and hazardous chemicals.
机译:根据化工厂作为工厂生命周期工程的一部分进行集成安全管理的最新趋势,建议执行安全完整性等级(SIL)分析,以同时满足流程的操作效率和安全规范。在本文中,提出了一个统一的框架,用于使生命周期工程适应风险评估,包括重用结果,建议使用危害和可操作性(HAZOP)支持工具作为危害识别方法来降低风险,以及从风险评估中确定SIL。保护层结合模糊逻辑进行分析。首先,在实施HAZOP研究时,使用HAZOP支持系统来选择工作量较小的方案。其次,通过解决客观不确定性(包括失效率数据,按需失效的可能性和主观不确定性),进行保护层模糊分析(fLOPA)来调整最可靠的独立保护层(IPL)。确定每种情况所需的SIL,并建议使用安全仪表系统以适合所需的SIL。该框架已通过羟胺案例研究的验证,可以轻松确定所需的SIL,并考虑了过程中的不确定性,特别是对于处理反应性和危险化学品的工厂。

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