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FAILURE ANALYSIS PREDICTION VERSUS INDUSTRY FAILURE EXPERIENCE OF AIR OPERATED VALVES IN THE NUCLEAR INDUSTRY

机译:核工业中气动阀的失效分析预测与工业失效经验

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Safety related valves in the nuclear industry are designed to meet the requirements of the design specifications for the systems in which they are to be installed. In developing valve specifications, systems and valve engineers collaborate to craft the essential requirements needed to support the procurement of the valves that meet the design requirements, and thereby provide reliable service during plant life. The specification requirements, together with the ASME Boiler and Pressure Vessel Code and Standards, provide a strong basis for assuring both structural integrity and functionality of the valve assemblies. The functional requirements cover the duties of the valves. As these valves are safety related, they are generally subjected to preoperational testing and possibly additional qualification testing during manufacture, to ensure that the valves can perform their safety related functions in service. The nuclear experience of engineered products such as valves shows that considerable amount of analysis and documentation of component stresses are performed to ensure compliance with the ASME code and specification requirements. The ASME Code requirements, together with the normal controls applied during manufacture of safety related valves, enhance the reliability of the valves. However, valve failures still occur during plant operation. In this paper, the failures of air operated valves (AOVs) used in nuclear applications were reviewed and the data compared against the failures predicted by valve suppliers based on weak link analysis of the valves. The study shows that there are significant differences between what the suppliers consider structurally likely to fail, what the purchaser expects to fail, and what really fails from field experience. The study shows that field failures are complex. They can be initiated by many factors, most of which are not obvious and cannot be controlled by the valve designer. The complexity of field failures of air operated valves is discussed in this paper.
机译:核工业中与安全相关的阀门的设计符合要安装其的系统的设计规格要求。在制定阀门规格时,系统和阀门工程师共同制定必要的基本要求,以支持符合设计要求的阀门采购,从而在工厂使用寿命内提供可靠的服务。规范要求以及ASME锅炉和压力容器规范和标准为确保阀组件的结构完整性和功能性提供了坚实的基础。功能要求涵盖了阀门的职责。由于这些阀门与安全相关,因此通常会在制造过程中对其进行操作前测试以及可能的附加资格测试,以确保阀门可以在使用中执行其与安全相关的功能。阀门等工程产品的核经验表明,为了确保符合ASME规范和规范要求,对组件应力进行了大量分析和记录。 ASME规范要求以及与安全相关的阀门制造过程中应用的常规控制措施,提高了阀门的可靠性。但是,阀门故障仍会在工厂运行期间发生。本文综述了核应用中使用的气动阀门(AOV)的故障,并将数据与阀门供应商基于阀门的薄弱环节分析所预测的故障进行了比较。研究表明,在供应商认为结构上可能失败的东西,购买者希望失败的东西与实际经验中真正失败的东西之间存在显着差异。研究表明,现场故障很复杂。它们可以由许多因素引发,其中大多数并不明显,也不能由阀门设计者控制。本文讨论了气动阀现场故障的复杂性。

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