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Results of Root Cause Analyses of Spring Operated Pressure Relief Valve Failures

机译:弹簧操作减压阀故障的根本原因分析结果

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A subset of 44 failed spring operated pressure relief valves (SORV) from a set of over 5600 Process Equipment Reliability Database (PERD) proof tests was subjected to root cause of failure analysis (RCA). This paper reports on the findings of those 44 analyses and includes specific examples of root causes (RC) identified. We considered SORV failures detected in both new and used valves over a period of almost seven years. We categorized the failures using the PERD taxonomy and, additionally, divided the failures into systematic (where reasonable changes to processes or procedures might prevent future failures) and random failures based on each RC. Further, we identified a number of subcategories of RC because they suggest possible actions to significantly reduce failure rates and improve safety performance. We considered how remedial attention to some root causes has markedly improved proof test results at the facility that provided the proof test data. We provide recommendations for conducting such RCA as well as for initiating a RCA program and discuss how time to valve failure (important information for computing valve failure rates) can be estimated based on the RCA findings. Non- Newtonian fluids are outside the scope of this paper.
机译:来自一组超过5600个工艺设备可靠性数据库(PERD)证明测试的44个失效的弹簧操作压力释放阀(SORV)的子集经受了故障分析(RCA)的根本原因。本文报告了那些44分析的结果,并包括所识别的根本原因(RC)的具体例子。我们考虑了在近七年的新增阀门中检测到的SORV故障。我们使用PERD分类系统分类失败,另外,将故障划分为系统性的(在处理或程序可能会阻止未来的故障)和基于每个RC的随机故障。此外,我们确定了一些RC的子类别,因为它们建议可能的行动,以显着降低失败率并提高安全性能。我们考虑了对某些根本原因的补救措施如何显着改善了提供了证明测试数据的设施的证明测试结果。我们提供了进行此类RCA的建议,并启动RCA程序,并讨论如何基于RCA发现估计阀门故障的时间(计算阀门故障率的重要信息)。非牛顿流体超出了本文的范围。

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