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A risk-based approach to design warning system for processing facilities
Authors:Yanjun Chang  Faisal Khan  Salim Ahmed
Institution:aProcess Engineering, Faculty of Engineering and Applied Science, Memorial University Newfoundland, St. John's, Newfoundland, Canada;bDepartment of Chemical Engineering, Qatar University, Doha, Qatar
Abstract:Alarm flooding is a major safety issue in today's processing facilities. Important recommendations are available for alarm management; however, they are often violated in practice, especially in the alarm systems implemented through the distributed control system. An effective process alarm prioritization and management system is desired for a safe and effective operation of a process facility.In present work, authors address two main issues related to an alarm system – the reliability and the prioritization of the alarms. The main objective is to deal with the alarm-flooding problem in process facilities. A multi alert voting system based on sensor redundancy approach is proposed to improve the reliability. A quantitative risk-based alarm management approach is proposed to address the flooding issue. In the risk-based approach, an integrated model consisting of the probability (P), the impact (I) of the potential hazards, and the process safety time is proposed to prioritize these raised alarms.The proposed approach is further explained by a reactor system with pressure and temperature variable monitoring and controls, where the hazards associated with two alerts caused by over high pressure and over high temperature are analyzed and integrated with response time for alarms generation and prioritization.
Keywords:Alarm warning  Alarm management  Process safety  Risk assessment
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